[{"_component":"text","_classes":"no-element-backgrounds","_isOptional":false,"_isAvailable":true,"title":"Text","displayTitle":"","_headingLevel":1,"body":"<h1><span><span style=\"color:#ffffff\"><span>Course Final Exam</span></span></span></h1>","_id":"6e3332204cd14298a1688b0599c0d1c8","_parentId":"40c7e21785724bb49b4ddc995e4a1786","_type":"component","_layout":"left","_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":false,"_isCompletionIndicatorEnabled":false},"_search":{"_isEnabled":true,"keywords":""},"instruction":""},{"_component":"text","_classes":"background-colour3 remove-padding-top no-element-backgrounds","_isOptional":false,"_isAvailable":true,"title":"Course Final Exam","displayTitle":"","body":"<p><span style=\"color:#ffffff\">Scroll to begin<i class=\"fa fa-arrow-circle-down\"> </i></span></p>","_id":"9e6bb88ab46e4881bb2b5d66af07641c","_parentId":"36d5c9c0108d456481531070d4c2d3a2","_type":"component","_layout":"left","_onScreen":{"_isEnabled":true,"_classes":"animated pulse infinite","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":false,"_isCompletionIndicatorEnabled":false},"_search":{"_isEnabled":true,"keywords":""},"instruction":""},{"_component":"text","_classes":"","_isOptional":false,"_isAvailable":true,"title":"CCNA: Switching, Routing, and Wireless Essentials Course Final Exam","displayTitle":"","body":"<p>This final exam will cover material from all of the CCNA2 - Switching, Routing, and Wireless Essentials (SRWE) curriculum. This exam will be scored using the Weighted Model where each MCSA (Multiple-Choice Single-Answer) is worth two points and each MCMA (Multiple-Choice Multiple-Answer) is worth one point for each correct option. Other task types such as drag and drop (matching) and Packet Tracer items may be included in this exam. For Packet Tracer tasks, you must have the latest version of Packet Tracer installed on your machine.<br /><br />This final exam will cover material from the CCNA2 - Switching, Routing, and Wireless Essentials (SRWE) curriculum. <br />This exam will be scored using the Weighted Model where each MCSA (Multiple-Choice Single-Answer) is worth two points and each MCMA (Multiple-Choice Multiple-Answer) is worth one point for each correct option. If more options are selected than required, the student will receive a score of zero.<br /><br />&#169; 2023, Cisco Systems, Inc.</p>","_id":"2e92cfb4fb3442eea43f106a2e69e513","_parentId":"33a5624799044bd79f72c14c6c4897d3","_type":"component","_layout":"full","_onScreen":{"_isEnabled":true,"_classes":"animated fadeIn","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":false,"_isCompletionIndicatorEnabled":false},"_mentor":{"_isEnabled":false,"_registeredMentors":[]},"_search":{"_isEnabled":true,"keywords":""},"_healthGauge":{"_isEnabled":false,"_onCorrectValue":1,"_onPartiallyCorrectValue":1,"_onIncorrectValue":1},"instruction":""},{"_component":"adaptiveStartScreen","_classes":"assessment-start-screen","_isOptional":false,"_isAvailable":true,"_isHidden":false,"_isVisible":true,"_ariaLevel":0,"_disableAccessibilityState":false,"title":"","displayTitle":"","body":"","_id":"1ca665b14a2344179ea57306f3631f52","_parentId":"97cf22c6edf74ea6811dc89c8d4949f4","_type":"component","_layout":"full","secureAssessmentV2":true,"_labels":{"_topContainer":{"topIcon":{"src":"./assets/complete-mark.svg","alt":"alt text"},"title":"Congratulations","description":"You have successfully completed the My Knowledge Check activity.","preSubText":"You can view My Knowledge Check History by clicking on the ","afterSubText":"button.","viewDiagnosticBtnLabel":"My Knowledge Check History","preSkillText":"If you would like, you can retake the","preSkillTextBtnLabel":"My Knowledge Check","viewDiagnosticBtnIcon":{"src":"./assets/bars.svg","alt":"alt text"}},"_introScreen":{"bottomIcon":{"src":"./assets/thinking.png","alt":"alt text"},"title":"","moduleTitle":"Course Final Exam","description":"","instructionTitle":"Instructions:","instructionDesc":"<p><ul><li>The exam consists of <b><span class='secure-question-count'>30</span></b> questions and <b><span class='secure-passing-score'>70</span></b>% is required to pass and achieve your <b>Cisco verified Credly badge</b>.</li><li>You have <b><span class='secure-attempts'>unlimited</span> <span class='secure-attempt-text'>attempts</span> </b>to complete the exam.</li> <li class='secure-dynamic-time'>You have <b><span class='secure-time'>no</span></b> per attempt to complete the exam.</li><li class='secure-static-intruction'>You have <b>no</b> time limit per attempt to complete the exam.</li><li class='secure-note'>Your responses will be automatically submitted once the given time has elapsed.</li></ul></p>","startTestBtnLabel":"Start"}}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i152243v1n1_152243.png\" alt=\"The graphic shows a router configuration commands:  RTA# configure terminal RTA(config)# interface Fa0/0 RTA(config-if)# no shutdown RTA(config-if)# interface Fa0/0.10 RTA(config-subif)# encapsulation dot1q  10 RTA(config-subif)# ip address 192.168.3.30 255.255.255.224 RTA(config-subif)# interface Fa0/0.20 RTA(config-subif)# encapsulation dot1q  20 RTA(config-subif)# ip address 192.168.3.49 255.255.255.224 RTA(config-subif)# interface Fa0/0.30 RTA(config-subif)# encapsulation dot1q  30 RTA(config-subif)# ip address 192.168.3.62 255.255.255.224\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. After attempting to enter the configuration that is shown in router RTA, an administrator receives an error and users on VLAN 20 report that they are unable to reach users on VLAN 30. What is causing the problem?</span></p>","_id":"12fe917331fd4bce987e1bc27255af94","_parentId":"6bfd07861a954d27b15f86d765510ae6","_type":"component","_layout":"full","_ravennaSourceID":"152243","_smvWiseScoring":{"ident":"it_152243","outcomes":{"decvar":[{"_varname":"490091","_maxvalue":1,"title":"correctness of response"},{"_varname":"490538","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"490091","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"490538","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Dot1q does not support subinterfaces.","_shouldBeSelected":false,"feedback":""},{"text":"There is no address on Fa0/0 to use as a default gateway.","_shouldBeSelected":false,"feedback":""},{"text":"RTA is using the same subnet for VLAN 20 and VLAN 30.","_shouldBeSelected":true,"feedback":""},{"text":"The <b>no shutdown</b> command should have been issued on Fa0/0.20 and Fa0/0.30.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The IP 192.168.2.49/27 and 192.168.3.62/27 belong to the same subnet of 192.168.3.32/27. Valid host IPv4 addresses include 192.168.3.33 to 192.168.3.62.","_incorrect":{"final":"The IP 192.168.2.49/27 and 192.168.3.62/27 belong to the same subnet of 192.168.3.32/27. Valid host IPv4 addresses include 192.168.3.33 to 192.168.3.62.","notFinal":""},"_partlyCorrect":{"final":"The IP 192.168.2.49/27 and 192.168.3.62/27 belong to the same subnet of 192.168.3.32/27. Valid host IPv4 addresses include 192.168.3.33 to 192.168.3.62.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What is the IPv6 prefix that is used for link-local addresses?</span></p>","_id":"53514d6dbfd94a929a0e7d4f9d6881ea","_parentId":"55624f9789a6463c86481dd564606ac9","_type":"component","_layout":"full","_ravennaSourceID":"208683","_smvWiseScoring":{"ident":"it_208683","outcomes":{"decvar":[{"_varname":"480345","_maxvalue":1,"title":"correctness of response"},{"_varname":"487200","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"480345","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"487200","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"2001::/3","_shouldBeSelected":false,"feedback":""},{"text":"FC00::/7","_shouldBeSelected":false,"feedback":""},{"text":"FE80::/10","_shouldBeSelected":true,"feedback":""},{"text":"FF01::/8","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The IPv6 link-local prefix is FE80::/10 and is used to create a link-local IPv6 address on an interface.","_incorrect":{"final":"The IPv6 link-local prefix is FE80::/10 and is used to create a link-local IPv6 address on an interface.","notFinal":""},"_partlyCorrect":{"final":"The IPv6 link-local prefix is FE80::/10 and is used to create a link-local IPv6 address on an interface.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i209458v1n1_Question_7.png\" alt=\"Host A has the values IP: 10.1.1.10 and MAC: 00E0.FE10.17A3. It is connected to a switch, which is connected to a router interface with the values IP: 10.1.1.1 and MAC: 00E0.FE17.1FBC. This router is connected to a second router with a serial interface. The second router has the values IP: 192.168.1.1 and MAC: 00E0.FE91.7799 on the interface connecting to a second switch. The second switch is connected to host B which has the values IP: 192.168.1.20 and MAC: 00E0.FE75.901F. An envelope with a magnifying glass is shown on the connection between the switch and host B, which is connected to a series of boxes labeled &quot;Src MAC&quot;, &quot;Dst MAC&quot;, &quot;Type 0x800&quot;, &quot;Src IP&quot;, &quot;Dst IP&quot;, and &quot;Data&quot;.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Host A has sent a packet to host B. What will be the source MAC and IP addresses on the packet when it arrives at host B?</span></p>","_id":"02607e4c4f5b45e789473f6fcc3276c9","_parentId":"0fe8c90821ca44fab3f2440aca9d3564","_type":"component","_layout":"full","_ravennaSourceID":"209458","_smvWiseScoring":{"ident":"it_209458","outcomes":{"decvar":[{"_varname":"491557","_maxvalue":1,"title":"correctness of response"},{"_varname":"499694","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"491557","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"499694","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Source MAC: 00E0.FE91.7799<br />Source IP: 192.168.1.1","_shouldBeSelected":false,"feedback":""},{"text":"Source MAC: 00E0.FE10.17A3<br />Source IP: 10.1.1.10","_shouldBeSelected":false,"feedback":""},{"text":"Source MAC: 00E0.FE91.7799<br />Source IP: 10.1.1.10","_shouldBeSelected":true,"feedback":""},{"text":"Source MAC: 00E0.FE10.17A3<br />Source IP: 192.168.1.1","_shouldBeSelected":false,"feedback":""},{"text":"Source MAC: 00E0.FE91.7799<br />Source IP: 10.1.1.1","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"As a packet traverses the network, the Layer 2 addresses will change at every hop as the packet is de-encapsulated and re-encapsulated, but the Layer 3 addresses will remain the same.","_incorrect":{"final":"As a packet traverses the network, the Layer 2 addresses will change at every hop as the packet is de-encapsulated and re-encapsulated, but the Layer 3 addresses will remain the same.","notFinal":""},"_partlyCorrect":{"final":"As a packet traverses the network, the Layer 2 addresses will change at every hop as the packet is de-encapsulated and re-encapsulated, but the Layer 3 addresses will remain the same.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which option shows a correctly configured IPv4 default static route?</span></p>","_id":"5568528e955d4f75ac23deb43f27d506","_parentId":"1c28b3395d824a36aef4c7b24b5cbbbc","_type":"component","_layout":"full","_ravennaSourceID":"210857","_smvWiseScoring":{"ident":"it_210857","outcomes":{"decvar":[{"_varname":"487727","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"487727","_view":"All","interpret":"1 point for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"<b>ip route 0.0.0.0 0.0.0.0 S0/0/0</b>","_shouldBeSelected":true,"feedback":""},{"text":"<b>ip route 0.0.0.0 255.255.255.0 S0/0/0</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ip route 0.0.0.0 255.255.255.255 S0/0/0</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ip route 0.0.0.0 255.0.0.0 S0/0/0</b>","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The static route <b>ip route 0.0.0.0 0.0.0.0 S0/0/0</b> is considered a default static route and will match all destination networks.","_incorrect":{"final":"The static route <b>ip route 0.0.0.0 0.0.0.0 S0/0/0</b> is considered a default static route and will match all destination networks.","notFinal":""},"_partlyCorrect":{"final":"The static route <b>ip route 0.0.0.0 0.0.0.0 S0/0/0</b> is considered a default static route and will match all destination networks.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i210868v1n2_210868.gif\" alt=\"The graphic shows two routers, R1 and ISP, that are connected together on two WAN links.  On the first WAN link, R1 connects to the ISP router through interface S0/0/0 and IP address 192.168.0.33/30, and the ISP router uses interface S0/0/0 and IP address 192.168.0.33/30. On the second WAN link R1 is connects to the ISP router through interface S0/0/1 and IP address 192.168.0.37/30,  and the ISP router uses interface S0/0/1 and IP address 192.168.0.38/30. OSPF is running as the routing protocol across the WAN link 192.168.0.32/30.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Router R1 has an OSPF neighbor relationship with the ISP router over the 192.168.0.32 network. The 192.168.0.36 network link should serve as a backup when the OSPF link goes down. The floating static route command <b>ip route 0.0.0.0 0.0.0.0 S0/0/1 100</b> was issued on R1 and now traffic is using the backup link even when the OSPF link is up and functioning. Which change should be made to the static route command so that traffic will only use the OSPF link when it is up?</span></p>","_id":"93dd4178f0f6472080b089927a2c9d4b","_parentId":"4c1143f2071b4d948bad1f15c58eb530","_type":"component","_layout":"full","_ravennaSourceID":"210868","_smvWiseScoring":{"ident":"it_210868","outcomes":{"decvar":[{"_varname":"502340","_maxvalue":1,"title":"correctness of response"},{"_varname":"502341","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"502340","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"502341","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Add the next hop neighbor address of 192.168.0.36.","_shouldBeSelected":false,"feedback":""},{"text":"Change the administrative distance to 1.","_shouldBeSelected":false,"feedback":""},{"text":"Change the destination network to 192.168.0.34.","_shouldBeSelected":false,"feedback":""},{"text":"Change the administrative distance to 120.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The problem with the current floating static route is that the administrative distance is set too low. The administrative distance will need to be higher than that of OSPF, which is 110, so that the router will only use the OSPF link when it is up.","_incorrect":{"final":"The problem with the current floating static route is that the administrative distance is set too low. The administrative distance will need to be higher than that of OSPF, which is 110, so that the router will only use the OSPF link when it is up.","notFinal":""},"_partlyCorrect":{"final":"The problem with the current floating static route is that the administrative distance is set too low. The administrative distance will need to be higher than that of OSPF, which is 110, so that the router will only use the OSPF link when it is up.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i210895v1n1_210895.png\" alt=\"Media Description: A screen capture of configuration and verification commands is shown as follows:  R1# configure terminal Enter configuration commands, one per line.  End with CNTL/Z. R1(config)# ipv6 unicast-routing R1(config)# ipv6 dhcp pool ACAD_CLASS R1(config-dhcp)# dns-server 2001:db8:acad:a1::10 R1(config-dhcp)# domain-name netacad.net R1(config-dhcp)# exit R1(config)# interface gigabitEthernet 0/0 R1(config-if)# ipv6 address 2001:db8:acad:1::1/64 R1(config-if)# ipv6 dhcp server ACAD_CLASS R1(config-if)# ipv6 nd other-config-flag R1(config-if)# end R1# R1# show ipv6 dhcp pool DHCPv6 pool: ACAD_CLASS   DNS server: 2001:DB8:ACAD:A1::10   Domain name: netacad.net   Active clients: 0 R1#\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. A network administrator is configuring a router as a DHCPv6 server. The administrator issues a <b>show ipv6 dhcp pool</b> command to verify the configuration. Which statement explains the reason that the number of active clients is 0?</span></p>","_id":"299ee92ae2ce4f2cb4424ea8e2d56b4b","_parentId":"7c00be38ee9a4d659bc8c8f359f05e3d","_type":"component","_layout":"full","_ravennaSourceID":"210895","_smvWiseScoring":{"ident":"it_210895","outcomes":{"decvar":[{"_varname":"498456","_maxvalue":1,"title":"correctness of response"},{"_varname":"499746","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"498456","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"499746","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The default gateway address is not provided in the pool.","_shouldBeSelected":false,"feedback":""},{"text":"No clients have communicated with the DHCPv6 server yet.","_shouldBeSelected":false,"feedback":""},{"text":"The IPv6 DHCP pool configuration has no IPv6 address range specified.","_shouldBeSelected":false,"feedback":""},{"text":"The state is not maintained by the DHCPv6 server under stateless DHCPv6 operation.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Under the stateless DHCPv6 configuration, indicated by the command <b>ipv6 nd other-config-flag</b>, the DHCPv6 server does not maintain the state information, because client IPv6 addresses are not managed by the DHCP server.  Because the clients will configure their IPv6 addresses by combining the prefix/prefix-length and a self-generated interface ID, the ipv6 dhcp pool configuration does not need to specify the valid IPv6 address range. And because clients will use the link-local address of the router interface as the default gateway address, the default gateway address is not necessary.","_incorrect":{"final":"Under the stateless DHCPv6 configuration, indicated by the command <b>ipv6 nd other-config-flag</b>, the DHCPv6 server does not maintain the state information, because client IPv6 addresses are not managed by the DHCP server.  Because the clients will configure their IPv6 addresses by combining the prefix/prefix-length and a self-generated interface ID, the ipv6 dhcp pool configuration does not need to specify the valid IPv6 address range. And because clients will use the link-local address of the router interface as the default gateway address, the default gateway address is not necessary.","notFinal":""},"_partlyCorrect":{"final":"Under the stateless DHCPv6 configuration, indicated by the command <b>ipv6 nd other-config-flag</b>, the DHCPv6 server does not maintain the state information, because client IPv6 addresses are not managed by the DHCP server.  Because the clients will configure their IPv6 addresses by combining the prefix/prefix-length and a self-generated interface ID, the ipv6 dhcp pool configuration does not need to specify the valid IPv6 address range. And because clients will use the link-local address of the router interface as the default gateway address, the default gateway address is not necessary.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_id":"57c8948f93104210a192cea3aa534de0","_parentId":"cb77aebba65943b59283359023a1b84c","_type":"component","_component":"objectMatching","_classes":"","_layout":"full","title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Match the DHCP message types to the order of the DHCPv4 process. </span></p>","instruction":"","_attempts":1,"_isRandom":true,"_shouldDisplayAttempts":false,"_shouldResetAllAnswers":true,"_questionWeight":1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_recordInteraction":true,"_isQuestionRandom":true,"_isAnswerRandom":false,"_categoryTitle":"Categories:","_optionTitle":"Options:","_defaultAnswerBGColor":"#F2F2F2","placeholder":"Please select an option","_ravennaSourceID":"210963","_smvWiseScoring":{"ident":"it_210963","outcomes":{"decvar":[{"_varname":"obs0","_maxvalue":2,"title":"title"},{"_varname":"status","_maxvalue":0,"title":"status"}],"interpretvar":[{"_varname":"obs0","_view":"All","interpret":"description"},{"_varname":"status","_view":"All","interpret":"status"}]}},"_items":[{"question":"Step 4","answer":"DHCPACK","questionBGColor":"#FCA7A7"},{"question":"Step 3","answer":"DHCPREQUEST","questionBGColor":"#FCC8A7"},{"question":"Step 1","answer":"DHCPDISCOVER","questionBGColor":"#F7F7B0"},{"question":"Step 2","answer":"DHCPOFFER","questionBGColor":"#D6F7B0"}],"_feedback":{"title":"","correct":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Step 1</td><td>DHCPDISCOVER</td></tr><tr> <td>Step 2</td><td>DHCPOFFER</td></tr><tr> <td>Step 3</td><td>DHCPREQUEST</td></tr><tr> <td>Step 4</td><td>DHCPACK</td></tr></table>","_incorrect":{"final":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Step 1</td><td>DHCPDISCOVER</td></tr><tr> <td>Step 2</td><td>DHCPOFFER</td></tr><tr> <td>Step 3</td><td>DHCPREQUEST</td></tr><tr> <td>Step 4</td><td>DHCPACK</td></tr></table>","notFinal":""},"_partlyCorrect":{"final":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Step 1</td><td>DHCPDISCOVER</td></tr><tr> <td>Step 2</td><td>DHCPOFFER</td></tr><tr> <td>Step 3</td><td>DHCPREQUEST</td></tr><tr> <td>Step 4</td><td>DHCPACK</td></tr></table>","notFinal":""}},"_comment":"","_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""},"_pageLevelProgress":{"_isEnabled":true},"_menuTOC":{"_isEnabled":false},"_courseProgress":{"_isEnabled":true}},{"_id":"efc656e0197a4969bfe7893ba77f9538","_parentId":"20ad6bc6e29449b78654e6a62dd52f14","_type":"component","_component":"objectMatching","_classes":"","_layout":"full","title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Match the description to the correct VLAN type. </span></p>","instruction":"","_attempts":1,"_isRandom":true,"_shouldDisplayAttempts":false,"_shouldResetAllAnswers":true,"_questionWeight":1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_recordInteraction":true,"_isQuestionRandom":true,"_isAnswerRandom":false,"_categoryTitle":"Categories:","_optionTitle":"Options:","_defaultAnswerBGColor":"#F2F2F2","placeholder":"Please select an option","_ravennaSourceID":"211545","_smvWiseScoring":{"ident":"it_211545","outcomes":{"decvar":[{"_varname":"obs0","_maxvalue":2,"title":"Options placed in correct order.Options matched to the correct selection."},{"_varname":"status","_maxvalue":0,"title":"status"},{"_varname":"522021","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"obs0","_view":"All","interpret":"Click on the question mark at the bottom of the item for the correct answer.There is no partial credit."},{"_varname":"status","_view":"All","interpret":"status"},{"_varname":"522021","_view":"All"}]}},"_items":[{"question":"Data VLANs","answer":"Configured to carry user generated traffic","questionBGColor":"#FDE2A6"},{"question":"Default VLAN","answer":"All switch ports are assigned to this VLAN after initial bootup of the switch","questionBGColor":"#FDE4F9"},{"question":"Native VLAN","answer":"Carries untagged traffic","questionBGColor":"#CAB5E6"},{"question":"Management VLAN","answer":"An IP address and subnet mask are assigned to this VLAN, allowing the switch to be accessed by HTTP, Telnet, SSH, or SNMP","questionBGColor":"#B0F7C9"}],"_feedback":{"title":"","correct":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Data VLANs</td><td>Configured to carry user generated traffic</td></tr><tr> <td>Default VLAN</td><td>All switch ports are assigned to this VLAN after initial bootup of the switch</td></tr><tr> <td>Native VLAN</td><td>Carries untagged traffic</td></tr><tr> <td>Management VLAN</td><td>An IP address and subnet mask are assigned to this VLAN, allowing the switch to be accessed by HTTP, Telnet, SSH, or SNMP</td></tr></table>","_incorrect":{"final":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Data VLANs</td><td>Configured to carry user generated traffic</td></tr><tr> <td>Default VLAN</td><td>All switch ports are assigned to this VLAN after initial bootup of the switch</td></tr><tr> <td>Native VLAN</td><td>Carries untagged traffic</td></tr><tr> <td>Management VLAN</td><td>An IP address and subnet mask are assigned to this VLAN, allowing the switch to be accessed by HTTP, Telnet, SSH, or SNMP</td></tr></table>","notFinal":""},"_partlyCorrect":{"final":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Data VLANs</td><td>Configured to carry user generated traffic</td></tr><tr> <td>Default VLAN</td><td>All switch ports are assigned to this VLAN after initial bootup of the switch</td></tr><tr> <td>Native VLAN</td><td>Carries untagged traffic</td></tr><tr> <td>Management VLAN</td><td>An IP address and subnet mask are assigned to this VLAN, allowing the switch to be accessed by HTTP, Telnet, SSH, or SNMP</td></tr></table>","notFinal":""}},"_comment":"","_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""},"_pageLevelProgress":{"_isEnabled":true},"_menuTOC":{"_isEnabled":false},"_courseProgress":{"_isEnabled":true}},{"_id":"945798ecfce343ff8e0b5e0f1339658c","_parentId":"f11bf550fe1d42f98d3a6cbee5651dd3","_type":"component","_component":"objectMatching","_classes":"","_layout":"full","title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Match the step to each switch boot sequence description. </span></p>","instruction":"","_attempts":1,"_isRandom":true,"_shouldDisplayAttempts":false,"_shouldResetAllAnswers":true,"_questionWeight":1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_recordInteraction":true,"_isQuestionRandom":true,"_isAnswerRandom":false,"_categoryTitle":"Categories:","_optionTitle":"Options:","_defaultAnswerBGColor":"#F2F2F2","placeholder":"Please select an option","_ravennaSourceID":"211564","_smvWiseScoring":{"ident":"it_211564","outcomes":{"decvar":[{"_varname":"obs0","_maxvalue":2,"title":"Options placed in correct order."},{"_varname":"status","_maxvalue":0,"title":"status"}],"interpretvar":[{"_varname":"obs0","_view":"All","interpret":"Click on the question mark at the bottom of the item for the correct answer. There is no partial credit."},{"_varname":"status","_view":"All","interpret":"status"}]}},"_items":[{"question":"Step 3","answer":"CPU register initializations","questionBGColor":"#FCA7A7"},{"question":"Step 1","answer":"Execute POST","questionBGColor":"#FCC8A7"},{"question":"Step 4","answer":"Flash file system initialization","questionBGColor":"#F7F7B0"},{"question":"Step 2","answer":"Load the boot loader from ROM","questionBGColor":"#D6F7B0"},{"question":"Step 5","answer":"Load the IOS","questionBGColor":"#B0F7C9"},{"question":"Step 6","answer":"Transfer switch control to the IOS","questionBGColor":"#CAB5E6"}],"_feedback":{"title":"","correct":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Step 1</td><td>Execute POST</td></tr><tr> <td>Step 2</td><td>Load the boot loader from ROM</td></tr><tr> <td>Step 3</td><td>CPU register initializations</td></tr><tr> <td>Step 4</td><td>Flash file system initialization</td></tr><tr> <td>Step 5</td><td>Load the IOS</td></tr><tr> <td>Step 6</td><td>Transfer switch control to the IOS</td></tr></table>","_incorrect":{"final":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Step 1</td><td>Execute POST</td></tr><tr> <td>Step 2</td><td>Load the boot loader from ROM</td></tr><tr> <td>Step 3</td><td>CPU register initializations</td></tr><tr> <td>Step 4</td><td>Flash file system initialization</td></tr><tr> <td>Step 5</td><td>Load the IOS</td></tr><tr> <td>Step 6</td><td>Transfer switch control to the IOS</td></tr></table>","notFinal":""},"_partlyCorrect":{"final":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Step 1</td><td>Execute POST</td></tr><tr> <td>Step 2</td><td>Load the boot loader from ROM</td></tr><tr> <td>Step 3</td><td>CPU register initializations</td></tr><tr> <td>Step 4</td><td>Flash file system initialization</td></tr><tr> <td>Step 5</td><td>Load the IOS</td></tr><tr> <td>Step 6</td><td>Transfer switch control to the IOS</td></tr></table>","notFinal":""}},"_comment":"","_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""},"_pageLevelProgress":{"_isEnabled":true},"_menuTOC":{"_isEnabled":false},"_courseProgress":{"_isEnabled":true}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">An administrator is trying to remove configurations from a switch. After using the command <b>erase startup-config</b> and reloading the switch, the administrator finds that VLANs 10 and 100 still exist on the switch. Why were these VLANs not removed?</span></p>","_id":"2ab5c16f394d4c938a5712a44bce83e8","_parentId":"8dca1dd27aba4b62b4f908850f144c0a","_type":"component","_layout":"full","_ravennaSourceID":"211583","_smvWiseScoring":{"ident":"it_211583","outcomes":{"decvar":[{"_varname":"488085","_maxvalue":1,"title":"correctness of response"},{"_varname":"499702","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"488085","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"499702","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"These VLANs are default VLANs that cannot be removed.","_shouldBeSelected":false,"feedback":""},{"text":"These VLANs cannot be deleted unless the switch is in VTP client mode.","_shouldBeSelected":false,"feedback":""},{"text":"These VLANs can only be removed from the switch by using the <b>no vlan 10</b> and <b>no vlan 100</b> commands.","_shouldBeSelected":false,"feedback":""},{"text":"Because these VLANs are stored in a file that is called vlan.dat that is located in flash memory, this file must be manually deleted.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Standard range VLANs (1-1005) are stored in a file that is called vlan.dat that is located in flash memory. Erasing the startup configuration and reloading a switch does not automatically remove these VLANs. The vlan.dat file must be manually deleted from flash memory and then the switch must be reloaded.","_incorrect":{"final":"Standard range VLANs (1-1005) are stored in a file that is called vlan.dat that is located in flash memory. Erasing the startup configuration and reloading a switch does not automatically remove these VLANs. The vlan.dat file must be manually deleted from flash memory and then the switch must be reloaded.","notFinal":""},"_partlyCorrect":{"final":"Standard range VLANs (1-1005) are stored in a file that is called vlan.dat that is located in flash memory. Erasing the startup configuration and reloading a switch does not automatically remove these VLANs. The vlan.dat file must be manually deleted from flash memory and then the switch must be reloaded.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which three pairs of trunking modes will establish a functional trunk link between two Cisco switches? (Choose three.)</span></p>","_id":"d2902f49af1b4909a265270f7fb66434","_parentId":"4e0ca22f508741b2a32ac88fb04318b6","_type":"component","_layout":"full","_ravennaSourceID":"211594","_smvWiseScoring":{"ident":"it_211594","outcomes":{"decvar":[{"_varname":"488097","_maxvalue":1,"title":"correctness of response"},{"_varname":"499760","_maxvalue":3,"title":"correctness of response"}],"interpretvar":[{"_varname":"488097","_view":"All","interpret":"1 point for Option 1, Option 3, Option 40 points for any other option"},{"_varname":"499760","_view":"All","interpret":"Option 1, Option 3, and Option 4 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"dynamic desirable - dynamic desirable","_shouldBeSelected":true,"feedback":""},{"text":"dynamic auto - dynamic auto","_shouldBeSelected":false,"feedback":""},{"text":"dynamic desirable - dynamic auto","_shouldBeSelected":true,"feedback":""},{"text":"dynamic desirable - trunk","_shouldBeSelected":true,"feedback":""},{"text":"access - trunk","_shouldBeSelected":false,"feedback":""},{"text":"access - dynamic auto","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":3,"_feedback":{"title":"","correct":"If a trunk is in dynamic desirable on either side of a trunk link, a trunk will form. The other trunking combinations will not form trunk links.","_incorrect":{"final":"If a trunk is in dynamic desirable on either side of a trunk link, a trunk will form. The other trunking combinations will not form trunk links.","notFinal":""},"_partlyCorrect":{"final":"If a trunk is in dynamic desirable on either side of a trunk link, a trunk will form. The other trunking combinations will not form trunk links.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i212103v1n1_212103.png\" alt=\"A screen capture shows the partial output of show ipv6 route command:  R1# show ipv6 route &lt;output omitted&gt; D   2001:DB8:ACAD:3::/64 [90/2681856]      via FE80::3, Serial0/0/0 D   2001:DB8:ACAD:4::/64 [90/2681856]      via FE80::5, Serial0/0/1 D   2001:DB8:ACAD:5::/64 [90/3193856]      via FE80::3, Serial0/0/0 C   2001:DB8:ACAD:A::/64 [0/0]      via ::, GigabitEthernet0/0 L   2001:DB8:ACAD:A::1/128 [0/0]      via ::, GigabitEthernet0/0 C   2001:DB8:ACAD:B::/64 [0/0]      via ::, GigabitEthernet0/1 L   2001:DB8:ACAD:B::1/128 [0/0]      via ::, GigabitEthernet0/1 D   2001:DB8:ACAD:C::/64 [90/2682112]      via FE80::3, Serial0/0/0 D   2001:DB8:ACAD:D::/64 [90/2170112]      via FE80::5, Serial0/0/1 D   2001:DB8:ACAD:E::/64 [90/2682112]      via FE80::5, Serial0/0/1\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. What is the metric to forward a data packet with the IPv6 destination address 2001:DB8:ACAD:E:240:BFF:FED4:9DD2?</span></p>","_id":"358878faf45944d7ad324002d4e48ad5","_parentId":"5e80a9bd3bfb42a7bcae2fefc17af701","_type":"component","_layout":"full","_ravennaSourceID":"212103","_smvWiseScoring":{"ident":"it_212103","outcomes":{"decvar":[{"_varname":"491488","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"491488","_view":"All","interpret":"1 point for Option 50 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"90","_shouldBeSelected":false,"feedback":""},{"text":"128","_shouldBeSelected":false,"feedback":""},{"text":"2170112","_shouldBeSelected":false,"feedback":""},{"text":"2681856","_shouldBeSelected":false,"feedback":""},{"text":"2682112","_shouldBeSelected":true,"feedback":""},{"text":"3193856","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The IPv6 destination address 2001:DB8:ACAD:E:240:BFF:FED4:9DD2 belongs to the network of 2001:DB8:ACAD:E::/64. In the routing table, the route to forward the packet has Serial 0/0/1 as an exit interface and 2682112 as the cost.","_incorrect":{"final":"The IPv6 destination address 2001:DB8:ACAD:E:240:BFF:FED4:9DD2 belongs to the network of 2001:DB8:ACAD:E::/64. In the routing table, the route to forward the packet has Serial 0/0/1 as an exit interface and 2682112 as the cost.","notFinal":""},"_partlyCorrect":{"final":"The IPv6 destination address 2001:DB8:ACAD:E:240:BFF:FED4:9DD2 belongs to the network of 2001:DB8:ACAD:E::/64. In the routing table, the route to forward the packet has Serial 0/0/1 as an exit interface and 2682112 as the cost.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i212623v1n4_212623.png\" alt=\"At the top is a router connected to a switch. Beside the router link are the following commands: interface gigabitethernet0/0.7 encapsulation dot1q ? [Note that the question mark is highlighted.] ip address 10.105.7.1 255.255.255.0 Below the switch is a connected PC. Beside the switch port are the following words: Fa0/3 - VLAN 7. Under the PC is the following IP address: 10.105.7.76/24.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. A network administrator is configuring inter-VLAN routing on a network. For now, only one VLAN is being used, but more will be added soon. What is the missing parameter that is shown as the highlighted question mark in the graphic?</span></p>","_id":"35398e7ba8e349a98a0608f3d7026de8","_parentId":"1449d50842974a07889d48894d7a52cf","_type":"component","_layout":"full","_ravennaSourceID":"212623","_smvWiseScoring":{"ident":"it_212623","outcomes":{"decvar":[{"_varname":"489171","_maxvalue":1,"title":"correctness of response"},{"_varname":"499706","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"489171","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"499706","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"It identifies the subinterface.","_shouldBeSelected":false,"feedback":""},{"text":"It identifies the VLAN number.","_shouldBeSelected":true,"feedback":""},{"text":"It identifies the native VLAN number.","_shouldBeSelected":false,"feedback":""},{"text":"It identifies the type of encapsulation that is used.","_shouldBeSelected":false,"feedback":""},{"text":"It identifies the number of hosts that are allowed on the interface.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The completed command would be <b>encapsulation dot1q 7</b>. The <b>encapsulation dot1q</b> part of the command enables trunking and identifies the type of trunking to use. The <b>7</b> identifies the VLAN number.","_incorrect":{"final":"The completed command would be <b>encapsulation dot1q 7</b>. The <b>encapsulation dot1q</b> part of the command enables trunking and identifies the type of trunking to use. The <b>7</b> identifies the VLAN number.","notFinal":""},"_partlyCorrect":{"final":"The completed command would be <b>encapsulation dot1q 7</b>. The <b>encapsulation dot1q</b> part of the command enables trunking and identifies the type of trunking to use. The <b>7</b> identifies the VLAN number.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i212628v1n1_212628.png\" alt=\"At the top router R1 connects through a lightning bolt connection to a cloud. A switch connects below the R1 router. The R1 link to the switch has the following information: Gi0/0 192.168.1.1/30. The switch port that connects to the router has the following information: Gi1/1 192.168.1.2/30. The switch icon has a ball in the middle with multiple arrows extending from the ball. A PC and an IP phone connect below the switch. The link that connects to the PC has the following information beside it: Fa0/4 VLAN 5. The link that connects to the IP phone has the following information beside it: Fa0/5 VLAN 6.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. A Layer 3 switch routes for three VLANs and connects to a router for Internet connectivity. Which two configurations would be applied to the switch? (Choose two.)</span></p>","_id":"c363854f3c0d4de68f2716552f6d18f2","_parentId":"4a7704cfeae944d087c9a61e3d4c74e1","_type":"component","_layout":"full","_ravennaSourceID":"212628","_smvWiseScoring":{"ident":"it_212628","outcomes":{"decvar":[{"_varname":"489181","_maxvalue":1,"title":"correctness of response"},{"_varname":"499767","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"489181","_view":"All","interpret":"1 point for Option 1, Option 50 points for any other option"},{"_varname":"499767","_view":"All","interpret":"Option 1 and Option 5 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"(config)# <b>interface gigabitethernet 1/1</b><br />(config-if)# <b>no switchport</b><br />(config-if)# <b>ip address 192.168.1.2 255.255.255.252</b>","_shouldBeSelected":true,"feedback":""},{"text":"(config)# <b>interface vlan 1</b><br />(config-if)# <b>ip address 192.168.1.2 255.255.255.0</b><br />(config-if)# <b>no shutdown</b>","_shouldBeSelected":false,"feedback":""},{"text":"(config)# <b>interface gigabitethernet1/1</b><br />(config-if)# <b>switchport mode trunk</b>","_shouldBeSelected":false,"feedback":""},{"text":"(config)# <b>interface fastethernet0/4</b><br />(config-if)# <b>switchport mode trunk</b>","_shouldBeSelected":false,"feedback":""},{"text":"(config)# <b>ip routing</b>","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"The <b>no switchport</b> command allows a switch port to be assigned an IP address. The port is a routed port at that point. The <b>ip routing</b> command enables routing for a switch. Use the <b>interface vlan</b> <i>x</i> command on the switch to configure routing for any VLAN that is attached to the switch, including the management VLAN. No management VLAN is shown in this scenario, but the commands <b>interface vlan 5</b> and <b>interface vlan 6</b>, along with an appropriate IP address and subnet mask for each VLAN, would be used on the switch in the exhibit. There is no need to add an IP address or use the <b>no shutdown</b> command on VLAN 1 because VLAN 1 is not used in this design and because VLAN 1 is &quot;up and up&quot; by default.","_incorrect":{"final":"The <b>no switchport</b> command allows a switch port to be assigned an IP address. The port is a routed port at that point. The <b>ip routing</b> command enables routing for a switch. Use the <b>interface vlan</b> <i>x</i> command on the switch to configure routing for any VLAN that is attached to the switch, including the management VLAN. No management VLAN is shown in this scenario, but the commands <b>interface vlan 5</b> and <b>interface vlan 6</b>, along with an appropriate IP address and subnet mask for each VLAN, would be used on the switch in the exhibit. There is no need to add an IP address or use the <b>no shutdown</b> command on VLAN 1 because VLAN 1 is not used in this design and because VLAN 1 is &quot;up and up&quot; by default.","notFinal":""},"_partlyCorrect":{"final":"The <b>no switchport</b> command allows a switch port to be assigned an IP address. The port is a routed port at that point. The <b>ip routing</b> command enables routing for a switch. Use the <b>interface vlan</b> <i>x</i> command on the switch to configure routing for any VLAN that is attached to the switch, including the management VLAN. No management VLAN is shown in this scenario, but the commands <b>interface vlan 5</b> and <b>interface vlan 6</b>, along with an appropriate IP address and subnet mask for each VLAN, would be used on the switch in the exhibit. There is no need to add an IP address or use the <b>no shutdown</b> command on VLAN 1 because VLAN 1 is not used in this design and because VLAN 1 is &quot;up and up&quot; by default.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which two statements are characteristics of routed ports on a multilayer switch? (Choose two.)​</span></p>","_id":"a828edeecd5c451ca952c66d00235af5","_parentId":"7a8f3b0c1f98486c8136472127d530a2","_type":"component","_layout":"full","_ravennaSourceID":"212647","_smvWiseScoring":{"ident":"it_212647","outcomes":{"decvar":[{"_varname":"489182","_maxvalue":1,"title":"correctness of response"},{"_varname":"499769","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"489182","_view":"All","interpret":"1 point for Option 1, Option 50 points for any other option"},{"_varname":"499769","_view":"All","interpret":"Option 1 and Option 5 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"They are not associated with a particular VLAN.","_shouldBeSelected":true,"feedback":""},{"text":"The <b>interface vlan </b><i>&lt;vlan number&gt;</i> command has to be entered to create a VLAN on routed ports.","_shouldBeSelected":false,"feedback":""},{"text":"They support subinterfaces, like interfaces on the Cisco IOS routers.","_shouldBeSelected":false,"feedback":""},{"text":"They are used for point-to-multipoint links.","_shouldBeSelected":false,"feedback":""},{"text":"In a switched network, they are mostly configured between switches at the core and distribution layers.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"Routed ports are physical ports that act similarly to a router interface. They are not associated with a particular VLAN, they do not support subinterfaces, and they are used for point-to-point links. In a switched network, they are mostly configured between switches at the core and distribution layers. To configure routed ports, the <b>no switchport interface</b> command has to be used on the appropriate ports.","_incorrect":{"final":"Routed ports are physical ports that act similarly to a router interface. They are not associated with a particular VLAN, they do not support subinterfaces, and they are used for point-to-point links. In a switched network, they are mostly configured between switches at the core and distribution layers. To configure routed ports, the <b>no switchport interface</b> command has to be used on the appropriate ports.","notFinal":""},"_partlyCorrect":{"final":"Routed ports are physical ports that act similarly to a router interface. They are not associated with a particular VLAN, they do not support subinterfaces, and they are used for point-to-point links. In a switched network, they are mostly configured between switches at the core and distribution layers. To configure routed ports, the <b>no switchport interface</b> command has to be used on the appropriate ports.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">In which situation would a technician use the <b>show interfaces</b> switch command?</span></p>","_id":"aefc76e9d77e4723b3401bf145e35b4d","_parentId":"817c486d689e4ca38012ae501853df1b","_type":"component","_layout":"full","_ravennaSourceID":"214366","_smvWiseScoring":{"ident":"it_214366","outcomes":{"decvar":[{"_varname":"491540","_maxvalue":1,"title":"correctness of response"},{"_varname":"682414","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"491540","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"682414","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"to determine if remote access is enabled","_shouldBeSelected":false,"feedback":""},{"text":"when packets are being dropped from a particular directly attached host","_shouldBeSelected":true,"feedback":""},{"text":"when an end device can reach local devices, but not remote devices","_shouldBeSelected":false,"feedback":""},{"text":"to determine the MAC address of a directly attached network device on a particular interface","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The <b>show interfaces</b> command is useful to detect media errors, to see if packets are being sent and received, and to determine if any runts, giants, CRCs, interface resets, or other errors have occurred. Problems with reachability to a remote network would likely be caused by a misconfigured default gateway or other routing issue, not a switch issue. The <b>show mac address-table</b> command shows the MAC address of a directly attached device.","_incorrect":{"final":"The <b>show interfaces</b> command is useful to detect media errors, to see if packets are being sent and received, and to determine if any runts, giants, CRCs, interface resets, or other errors have occurred. Problems with reachability to a remote network would likely be caused by a misconfigured default gateway or other routing issue, not a switch issue. The <b>show mac address-table</b> command shows the MAC address of a directly attached device.","notFinal":""},"_partlyCorrect":{"final":"The <b>show interfaces</b> command is useful to detect media errors, to see if packets are being sent and received, and to determine if any runts, giants, CRCs, interface resets, or other errors have occurred. Problems with reachability to a remote network would likely be caused by a misconfigured default gateway or other routing issue, not a switch issue. The <b>show mac address-table</b> command shows the MAC address of a directly attached device.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which information does a switch use to populate the MAC address table?</span></p>","_id":"3073ccb435f845eea1bfdf5646b62237","_parentId":"9870ddba82c34ef6a5a4d1567af6b13d","_type":"component","_layout":"full","_ravennaSourceID":"214791","_smvWiseScoring":{"ident":"it_214791","outcomes":{"decvar":[{"_varname":"491401","_maxvalue":1,"title":"correctness of response"},{"_varname":"499774","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"491401","_view":"All","interpret":"1 point for Option 50 points for any other option"},{"_varname":"499774","_view":"All","interpret":"2 points for Option 50 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"the destination MAC address and the incoming port","_shouldBeSelected":false,"feedback":""},{"text":"the destination MAC address and the outgoing port","_shouldBeSelected":false,"feedback":""},{"text":"the source and destination MAC addresses and the incoming port","_shouldBeSelected":false,"feedback":""},{"text":"the source and destination MAC addresses and the outgoing port","_shouldBeSelected":false,"feedback":""},{"text":"the source MAC address and the incoming port","_shouldBeSelected":true,"feedback":""},{"text":"the source MAC address and the outgoing port","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"To maintain the MAC address table, the switch uses the source MAC address of the incoming packets and the port that the packets enter. The destination address is used to select the outgoing port.","_incorrect":{"final":"To maintain the MAC address table, the switch uses the source MAC address of the incoming packets and the port that the packets enter. The destination address is used to select the outgoing port.","notFinal":""},"_partlyCorrect":{"final":"To maintain the MAC address table, the switch uses the source MAC address of the incoming packets and the port that the packets enter. The destination address is used to select the outgoing port.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i214900v1n2_214895.png\" alt=\"The media consists of a topology and an address table. The topology consists of three routers. The router on the left is labeled R1. This router has an interface labeled Fa0/0 connected to a switch which in turn is connected to a PC labeled PC1. Beneath PC1 is the label LAN 1. Router R1 is connected to the right via interface S0/0/0 to interface S0/0/0 of a router labeled HQ which is in the center of the topology. Router HQ is connected from the top of its icon via interface S0/1/1 to a cloud device labeled Internet. Router HQ is connected to the right via interface S0/0/1 to interface S0/1/1 to a router labeled R2 which is on the right of the topology. Router R2 has an interface labeled Fa0/0 connected to a switch which in turn is connected to a PC labeled PC2. Beneath PC2 is the label LAN 2. Beneath the topology is this address table of 4 columns and 10 rows:  Row 1 consists of thee column headings Device, Interface, IP Address, and Mask  Row 2 is PC1 NIC 10.100.1.10 255.255.0.0  Row 3 is R1 Fa0/0 10.10.1.1 255.255.0.0  Row 4 is R1 S0/0/0 192.168.1.1 255.255.255.252  Row 5 is HQ S0/0/0 192.168.1.2 255.255.255.252  Row 6 is HQ S0/0/1 192.168.2.2 255.255.255.252  Row 7 is HQ S0/1/1 172.16.200.6 255.255.255.252  Row 8 is R2 S0/0/1 192.168.2.1 255.255.255.252  Row 9 is R2 Fa0/0 10.20.1.1 255.255.0.0  Row 10 is PC2 NIC 10.20.1.100 255.255.0.0\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. In addition to static routes directing traffic to networks 10.10.0.0/16 and 10.20.0.0/16, Router HQ is also configured with the following command:<br /><br /><b>ip route 0.0.0.0 0.0.0.0 serial 0/1/1</b><br /><br />What is the purpose of this command?</span></p>","_id":"5306b14ce7754fe7aba14fef3f05fa16","_parentId":"73da166c936d47f7b84fc19b714710cf","_type":"component","_layout":"full","_ravennaSourceID":"214900","_smvWiseScoring":{"ident":"it_214900","outcomes":{"decvar":[{"_varname":"498028","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"498028","_view":"All","interpret":"1 point for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Packets that are destined for networks that are not in the routing table of HQ will be dropped.","_shouldBeSelected":false,"feedback":""},{"text":"Packets with a destination network that is not 10.10.0.0/16 or is not 10.20.0.0/16 or is not a directly connected network will be forwarded to the Internet.","_shouldBeSelected":true,"feedback":""},{"text":"Packets that are received from the Internet will be forwarded to one of the LANs connected to R1 or R2.","_shouldBeSelected":false,"feedback":""},{"text":"Packets from the 10.10.0.0/16 network will be forwarded to network 10.20.0.0/16, and packets from the 10.20.0.0/16 network will be forwarded to network 10.10.0.0/16.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The command <b>ip route 0.0.0.0 0.0.0.0 serial 0/1/1</b> configures a default route on router HQ that will cause packets with a destination network address that is not an entry on the routing table to be forwarded to the Internet out interface serial 0/1/1.","_incorrect":{"final":"The command <b>ip route 0.0.0.0 0.0.0.0 serial 0/1/1</b> configures a default route on router HQ that will cause packets with a destination network address that is not an entry on the routing table to be forwarded to the Internet out interface serial 0/1/1.","notFinal":""},"_partlyCorrect":{"final":"The command <b>ip route 0.0.0.0 0.0.0.0 serial 0/1/1</b> configures a default route on router HQ that will cause packets with a destination network address that is not an entry on the routing table to be forwarded to the Internet out interface serial 0/1/1.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i214901v1n2_214895.png\" alt=\"The media consists of a topology and an address table. The topology consists of three routers. The router on the left is labeled R1. This router has an interface labeled Fa0/0 connected to a switch which in turn is connected to a PC labeled PC1. Beneath PC1 is the label LAN 1. Router R1 is connected to the right via interface S0/0/0 to interface S0/0/0 of a router labeled HQ which is in the center of the topology. Router HQ is connected from the top of its icon via interface S0/1/1 to a cloud device labeled Internet. Router HQ is connected to the right via interface S0/0/1 to interface S0/1/1 to a router labeled R2 which is on the right of the topology. Router R2 has an interface labeled Fa0/0 connected to a switch which in turn is connected to a PC labeled PC2. Beneath PC2 is the label LAN 2. Beneath the topology is this address table of 4 columns and 10 rows:  Row 1 consists of the column headings  Device, Interface, IP Address, and  Mask  Row 2 is PC1 NIC 10.100.1.10 255.255.0.0  Row 3 is R1 Fa0/0 10.10.1.1 255.255.0.0  Row 4 is R1 S0/0/0 192.168.1.1 255.255.255.252  Row 5 is HQ S0/0/0 192.168.1.2 255.255.255.252  Row 6 is HQ S0/0/1 192.168.2.2 255.255.255.252  Row 7 is HQ S0/1/1 172.16.200.6 255.255.255.252  Row 8 is R2 S0/0/1 192.168.2.1 255.255.255.252  Row 9 is R2 Fa0/0 10.20.1.1 255.255.0.0  Row 10 is PC2 NIC 10.20.1.100 255.255.0.0\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. A network engineer is configuring IPv6 routing on the network. Which command issued on router HQ will configure a default route to the Internet to forward packets to an IPv6 destination network that is not listed in the routing table?​</span></p>","_id":"4531c668c76d462fade05d9f1a569038","_parentId":"eabbee6a14d945379d88718c1c9ae1a9","_type":"component","_layout":"full","_ravennaSourceID":"214901","_smvWiseScoring":{"ident":"it_214901","outcomes":{"decvar":[{"_varname":"498029","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"498029","_view":"All","interpret":"1 point for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"<b>ipv6 route ::/0 serial 0/0/0</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ip route 0.0.0.0 0.0.0.0 serial 0/1/1</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ipv6 route ::1/0 serial 0/1/1</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ipv6 route ::/0 serial 0/1/1</b>","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Commands that begin with <b>ip</b> relate to IPv4 processes. IPv6 specific commands begin with <b>ipv6</b>. The address ::1 is the IPv6 loopback address.","_incorrect":{"final":"Commands that begin with <b>ip</b> relate to IPv4 processes. IPv6 specific commands begin with <b>ipv6</b>. The address ::1 is the IPv6 loopback address.","notFinal":""},"_partlyCorrect":{"final":"Commands that begin with <b>ip</b> relate to IPv4 processes. IPv6 specific commands begin with <b>ipv6</b>. The address ::1 is the IPv6 loopback address.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">How will a router handle static routing differently if Cisco Express Forwarding is disabled?</span></p>","_id":"b4b91dd34eec435d85efeaf6a33e3b1d","_parentId":"7b1b0b10fc82440e97436db978eb641e","_type":"component","_layout":"full","_ravennaSourceID":"215018","_smvWiseScoring":{"ident":"it_215018","outcomes":{"decvar":[{"_varname":"500256","_maxvalue":1,"title":"correctness of response"},{"_varname":"500257","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"500256","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"500257","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"It will not perform recursive lookups.","_shouldBeSelected":false,"feedback":""},{"text":"Serial point-to-point interfaces will require fully specified static routes to avoid routing inconsistencies.","_shouldBeSelected":false,"feedback":""},{"text":"Ethernet multiaccess interfaces will require fully specified static routes to avoid routing inconsistencies.","_shouldBeSelected":true,"feedback":""},{"text":"Static routes that use an exit interface will be unnecessary.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"In most platforms running IOS 12.0 or later, Cisco Express Forwarding is enabled by default. Cisco Express Forwarding eliminates the need for the recursive lookup. If Cisco Express Forwarding is disabled, multiaccess network interfaces require fully specified static routes in order to avoid inconsistencies in their routing tables. Point-to-point interfaces do not have this problem, because multiple end points are not present. With or without Cisco Express Forwarding enabled, using an exit interface when configuring a static route is a viable option.","_incorrect":{"final":"In most platforms running IOS 12.0 or later, Cisco Express Forwarding is enabled by default. Cisco Express Forwarding eliminates the need for the recursive lookup. If Cisco Express Forwarding is disabled, multiaccess network interfaces require fully specified static routes in order to avoid inconsistencies in their routing tables. Point-to-point interfaces do not have this problem, because multiple end points are not present. With or without Cisco Express Forwarding enabled, using an exit interface when configuring a static route is a viable option.","notFinal":""},"_partlyCorrect":{"final":"In most platforms running IOS 12.0 or later, Cisco Express Forwarding is enabled by default. Cisco Express Forwarding eliminates the need for the recursive lookup. If Cisco Express Forwarding is disabled, multiaccess network interfaces require fully specified static routes in order to avoid inconsistencies in their routing tables. Point-to-point interfaces do not have this problem, because multiple end points are not present. With or without Cisco Express Forwarding enabled, using an exit interface when configuring a static route is a viable option.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i215024v1n1_215024.png\" alt=\"PCA attaches to SW1 through port Fa0/1. PCB attaches to SW1 through port Fa0/2. The Fa0/23 port of SW1 attaches to the Fa0/24 port of SW2. PCc attaches to SW2 through port Fa0/3. PCD attaches to SW2 through port Fa0/4.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. How is a frame sent from PCA forwarded to PCC if the MAC address table on switch SW1 is empty?</span></p>","_id":"aab986b5ef4f43fc850a957cdc37212c","_parentId":"fb2cf1d9e92e4c83a0c744ac16dbc213","_type":"component","_layout":"full","_ravennaSourceID":"215024","_smvWiseScoring":{"ident":"it_215024","outcomes":{"decvar":[{"_varname":"488979","_maxvalue":1,"title":"correctness of response"},{"_varname":"488980","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"488979","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"488980","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"SW1 floods the frame on all ports on the switch, excluding the interconnected port to switch SW2 and the port through which the frame entered the switch.","_shouldBeSelected":false,"feedback":""},{"text":"SW1 floods the frame on all ports on SW1, excluding the port through which the frame entered the switch.","_shouldBeSelected":true,"feedback":""},{"text":"SW1 forwards the frame directly to SW2. SW2 floods the frame to all ports connected to SW2, excluding the port through which the frame entered the switch.","_shouldBeSelected":false,"feedback":""},{"text":"SW1 drops the frame because it does not know the destination MAC address.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"When a switch powers on, the MAC address table is empty. The switch builds the MAC address table by examining the source MAC address of incoming frames. The switch forwards based on the destination MAC address found in the frame header. If a switch has no entries in the MAC address table or if the destination MAC address is not in the switch table, the switch will forward the frame out all ports except the port that brought the frame into the switch.","_incorrect":{"final":"When a switch powers on, the MAC address table is empty. The switch builds the MAC address table by examining the source MAC address of incoming frames. The switch forwards based on the destination MAC address found in the frame header. If a switch has no entries in the MAC address table or if the destination MAC address is not in the switch table, the switch will forward the frame out all ports except the port that brought the frame into the switch.","notFinal":""},"_partlyCorrect":{"final":"When a switch powers on, the MAC address table is empty. The switch builds the MAC address table by examining the source MAC address of incoming frames. The switch forwards based on the destination MAC address found in the frame header. If a switch has no entries in the MAC address table or if the destination MAC address is not in the switch table, the switch will forward the frame out all ports except the port that brought the frame into the switch.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What are two reasons a network administrator would segment a network with a Layer 2 switch? (Choose two.)</span></p>","_id":"04104db72361418c9a6e1cb7d1d804a3","_parentId":"57367a7ba0bb402aba01de3b0c83eb40","_type":"component","_layout":"full","_ravennaSourceID":"215026","_smvWiseScoring":{"ident":"it_215026","outcomes":{"decvar":[{"_varname":"487972","_maxvalue":1,"title":"correctness of response"},{"_varname":"487973","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"487972","_view":"All","interpret":"1 point for Option 2, Option 50 points for any other option"},{"_varname":"487973","_view":"All","interpret":"Option 2 and Option 5 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"to create fewer collision domains","_shouldBeSelected":false,"feedback":""},{"text":"to enhance user bandwidth","_shouldBeSelected":true,"feedback":""},{"text":"to create more broadcast domains","_shouldBeSelected":false,"feedback":""},{"text":"to eliminate virtual circuits","_shouldBeSelected":false,"feedback":""},{"text":"to isolate traffic between segments","_shouldBeSelected":true,"feedback":""},{"text":"to isolate ARP request messages from the rest of the network","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"A switch has the ability of creating temporary point-to-point connections between the directly-attached transmitting and receiving network devices. The two devices have full-bandwidth full-duplex connectivity during the transmission.","_incorrect":{"final":"A switch has the ability of creating temporary point-to-point connections between the directly-attached transmitting and receiving network devices. The two devices have full-bandwidth full-duplex connectivity during the transmission.","notFinal":""},"_partlyCorrect":{"final":"A switch has the ability of creating temporary point-to-point connections between the directly-attached transmitting and receiving network devices. The two devices have full-bandwidth full-duplex connectivity during the transmission.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which three statements accurately describe duplex and speed settings on Cisco 2960 switches? (Choose three.)</span></p>","_id":"a1a4cdd6c5f449b49be927ee2a545c86","_parentId":"491a52ab830247718dec4dd20279f8d7","_type":"component","_layout":"full","_ravennaSourceID":"215690","_smvWiseScoring":{"ident":"it_215690","outcomes":{"decvar":[{"_varname":"495115","_maxvalue":1,"title":"correctness of response"},{"_varname":"500843","_maxvalue":3,"title":"correctness of response"}],"interpretvar":[{"_varname":"495115","_view":"All","interpret":"1 point for Option 1, Option 2, Option 50 points for any other option"},{"_varname":"500843","_view":"All","interpret":"Option 1, Option 2, and Option 5 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"When the speed is set to 1000 Mb/s, the switch ports will operate in full-duplex mode.","_shouldBeSelected":true,"feedback":""},{"text":"An autonegotiation failure can result in connectivity issues.","_shouldBeSelected":true,"feedback":""},{"text":"By default, the autonegotiation feature is disabled.","_shouldBeSelected":false,"feedback":""},{"text":"Enabling autonegotiation on a hub will prevent mismatched port speeds when connecting the hub to the switch.","_shouldBeSelected":false,"feedback":""},{"text":"The duplex and speed settings of each switch port can be manually configured.","_shouldBeSelected":true,"feedback":""},{"text":"By default, the speed is set to 100 Mb/s and the duplex mode is set to autonegotiation.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":3,"_feedback":{"title":"","correct":"By default, autonegotiation is enabled on a Catalyst 2960 switch. However, the duplex and speed settings can be manually configured for each switch port. If the speed is set to 1000 Mb/s, the switch ports will operate in full-duplex mode. Switches, not hubs, can be configured for auto negotiation.","_incorrect":{"final":"By default, autonegotiation is enabled on a Catalyst 2960 switch. However, the duplex and speed settings can be manually configured for each switch port. If the speed is set to 1000 Mb/s, the switch ports will operate in full-duplex mode. Switches, not hubs, can be configured for auto negotiation.","notFinal":""},"_partlyCorrect":{"final":"By default, autonegotiation is enabled on a Catalyst 2960 switch. However, the duplex and speed settings can be manually configured for each switch port. If the speed is set to 1000 Mb/s, the switch ports will operate in full-duplex mode. Switches, not hubs, can be configured for auto negotiation.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i215705v8n1_215705.png\" alt=\"The graphic shows the router configuration:  R1# config terminal Enter configuration commands, one per line.  End with CNTL/Z. R1(config)# interface gigabitEthernet 0/0.1 R1(config-subif)# encapsulation dot1Q 10 R1(config-subif)# ip add 192.168.10.254 255.255.255.0 R1(config-subif)# interface gigabitEthernet 0/0.20 R1(config-subif)# encapsulation dot1Q 2 R1(config-subif)# ip add 192.168.20.254 255.255.255.0 R1(config-subif)# exit R1(config)# interface gigabitEthernet 0/0 R1(config-if)# no shutdown\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. A network administrator configures R1 for inter-VLAN routing between VLAN 10 and VLAN 20. However, the devices in VLAN 10 and VLAN 20 cannot communicate. Based on the configuration in the exhibit, what is a possible cause for the problem?</span></p>","_id":"de7003cc822a4c7e9616b125d0af6c64","_parentId":"3040cf3298cf4b8e84032fc5dd0c437f","_type":"component","_layout":"full","_ravennaSourceID":"215705","_smvWiseScoring":{"ident":"it_215705","outcomes":{"decvar":[{"_varname":"861542","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"861542","_view":"All","interpret":"1 point for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The command <b>interface gigabitEthernet 0/0.1</b> is wrong.","_shouldBeSelected":false,"feedback":""},{"text":"The port Gi0/0 should be configured as trunk port.","_shouldBeSelected":false,"feedback":""},{"text":"The encapsulation is misconfigured on a subinterface.","_shouldBeSelected":true,"feedback":""},{"text":"A <b>no shutdown</b> command should be added in each subinterface configuration.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"In configuring router-on-a-stick inter-VLAN routing, subinterfaces are used, one for each network to be routed. Although it is recommended that the subinterface number match the VLAN number, it is not required. However, the encapsulation line needs to match the VLAN number. In inter-VLAN routing with router-on-a-stick, the switch port that connects to the router interface needs to be a trunk port, not the router interface. The <b>no shutdown</b> command should be applied to the physical interface.","_incorrect":{"final":"In configuring router-on-a-stick inter-VLAN routing, subinterfaces are used, one for each network to be routed. Although it is recommended that the subinterface number match the VLAN number, it is not required. However, the encapsulation line needs to match the VLAN number. In inter-VLAN routing with router-on-a-stick, the switch port that connects to the router interface needs to be a trunk port, not the router interface. The <b>no shutdown</b> command should be applied to the physical interface.","notFinal":""},"_partlyCorrect":{"final":"In configuring router-on-a-stick inter-VLAN routing, subinterfaces are used, one for each network to be routed. Although it is recommended that the subinterface number match the VLAN number, it is not required. However, the encapsulation line needs to match the VLAN number. In inter-VLAN routing with router-on-a-stick, the switch port that connects to the router interface needs to be a trunk port, not the router interface. The <b>no shutdown</b> command should be applied to the physical interface.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A network administrator is using the router-on-a-stick model to configure a switch and a router for inter-VLAN routing. What configuration should be made on the switch port that connects to the router?</span></p>","_id":"75e13fceb54444b68b06f816dca9826e","_parentId":"7c54e48da5e74795968d9bc080e44a0f","_type":"component","_layout":"full","_ravennaSourceID":"215714","_smvWiseScoring":{"ident":"it_215714","outcomes":{"decvar":[{"_varname":"500060","_maxvalue":1,"title":"correctness of response"},{"_varname":"500856","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"500060","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"500856","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Configure the port as an access port and a member of VLAN1.","_shouldBeSelected":false,"feedback":""},{"text":"Configure the port as an 802.1q trunk port.","_shouldBeSelected":true,"feedback":""},{"text":"Configure the port as a trunk port and assign it to VLAN1.","_shouldBeSelected":false,"feedback":""},{"text":"Configure it as a trunk port and allow only untagged traffic.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The port on the switch that connects to the router interface should be configured as a trunk port. Once it becomes a trunk port, it does not belong to any particular VLAN and will forward traffic from various VLANs.","_incorrect":{"final":"The port on the switch that connects to the router interface should be configured as a trunk port. Once it becomes a trunk port, it does not belong to any particular VLAN and will forward traffic from various VLANs.","notFinal":""},"_partlyCorrect":{"final":"The port on the switch that connects to the router interface should be configured as a trunk port. Once it becomes a trunk port, it does not belong to any particular VLAN and will forward traffic from various VLANs.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Successful inter-VLAN routing has been operating on a network with multiple VLANs across multiple switches for some time. When an inter-switch trunk link fails and Spanning Tree Protocol brings up a backup trunk link, it is reported that hosts on two VLANs can access some, but not all the network resources that could be accessed previously. Hosts on all other VLANS do not have this problem. What is the most likely cause of this problem?</span></p>","_id":"3315500811114b508a8817fe3c54d04d","_parentId":"f1e252e56c4945d59b6d27738ec07d03","_type":"component","_layout":"full","_ravennaSourceID":"215723","_smvWiseScoring":{"ident":"it_215723","outcomes":{"decvar":[{"_varname":"861543","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"861543","_view":"All","interpret":"1 point for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Dynamic Trunking Protocol on the link has failed.","_shouldBeSelected":false,"feedback":""},{"text":"Inter-VLAN routing also failed when the trunk link failed.","_shouldBeSelected":false,"feedback":""},{"text":"The allowed VLANs on the backup link were not configured correctly.","_shouldBeSelected":true,"feedback":""},{"text":"The protected edge port function on the backup trunk interfaces has been disabled.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"In this case the most likely cause of the reduced access to some resources by two VLANs is that the allowed VLANs on the backup link are not configured correctly. The failure of an inter-switch trunk would not also cause Inter-VLAN routing to fail, and all other VLANS can still access all resources. Dynamic Trunking Protocol does affect Spanning Tree Protocol operation and VLAN traffic across trunks. The protected edge port function applies to access ports, not to trunk ports.","_incorrect":{"final":"In this case the most likely cause of the reduced access to some resources by two VLANs is that the allowed VLANs on the backup link are not configured correctly. The failure of an inter-switch trunk would not also cause Inter-VLAN routing to fail, and all other VLANS can still access all resources. Dynamic Trunking Protocol does affect Spanning Tree Protocol operation and VLAN traffic across trunks. The protected edge port function applies to access ports, not to trunk ports.","notFinal":""},"_partlyCorrect":{"final":"In this case the most likely cause of the reduced access to some resources by two VLANs is that the allowed VLANs on the backup link are not configured correctly. The failure of an inter-switch trunk would not also cause Inter-VLAN routing to fail, and all other VLANS can still access all resources. Dynamic Trunking Protocol does affect Spanning Tree Protocol operation and VLAN traffic across trunks. The protected edge port function applies to access ports, not to trunk ports.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i215787v1n1_215787.png\" alt=\"The graphic contains the following text: R1(config)# ip dhcp excluded-address 192.168.10.2 192.168.10.9 R1(config)# ip dhcp excluded-address 192.168.10.254 R1(config)# ip dhcp pool LAN-POOL-1 R1(dhcp-config)# network 192.168.10.0 255.255.255.0 R1(dhcp-config)# default-router 192.168.10.1 R1(dhcp-config)# dns-server 192.168.11.5 R1(dhcp-config)# domain-name example.com R1(dhcp-config)# end\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. If the IP addresses of the default gateway router and the DNS server are correct, what is the configuration problem?</span></p>","_id":"0fbbd2103df74a1daa0e7f35de1bdc6a","_parentId":"5fd127822f3d4249acfa66f724f729dc","_type":"component","_layout":"full","_ravennaSourceID":"215787","_smvWiseScoring":{"ident":"it_215787","outcomes":{"decvar":[{"_varname":"494848","_maxvalue":1,"title":"correctness of response"},{"_varname":"499720","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"494848","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"499720","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The DNS server and the default gateway router should be in the same subnet.","_shouldBeSelected":false,"feedback":""},{"text":"The IP address of the default gateway router is not contained in the excluded address list.","_shouldBeSelected":true,"feedback":""},{"text":"The <b>default-router</b> and <b>dns-server</b> commands need to be configured with subnet masks.","_shouldBeSelected":false,"feedback":""},{"text":"The IP address of the DNS server is not contained in the excluded address list.​","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"In this configuration, the excluded address list should include the address that is assigned to the default gateway router. So the command should be <b>ip dhcp excluded-address 192.168.10.1 192.168.10.9</b>.","_incorrect":{"final":"In this configuration, the excluded address list should include the address that is assigned to the default gateway router. So the command should be <b>ip dhcp excluded-address 192.168.10.1 192.168.10.9</b>.","notFinal":""},"_partlyCorrect":{"final":"In this configuration, the excluded address list should include the address that is assigned to the default gateway router. So the command should be <b>ip dhcp excluded-address 192.168.10.1 192.168.10.9</b>.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i215789v1n3_Item-215789.png\" alt=\"The graphic shows router R1 with the Gi0/0 interface connected to a switch that is in turn connected to PC1. This LAN belongs to the 192.168.10.0/24 network. The other R1 interface, Gi0/1, is connected to another switch that is in turn connected to server DHCPv4 Server. DHCPv4 Server has the IP address 192.168.11.6. This LAN belongs to the 192.168.11.0/24 network. The exhibit contains the following commands: R1(config)# interface gigabitethernet 0/1  R1(config-if)# ip helper-address 192.168.11.6 R1(config-if)# end\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. R1 has been configured as shown. However, PC1 is not able to receive an IPv4 address. What is the problem?​</span></p>","_id":"5784780827344282b8fb2db65a189afb","_parentId":"2f301b03aeed4dfc926affc8c7f00487","_type":"component","_layout":"full","_ravennaSourceID":"215789","_smvWiseScoring":{"ident":"it_215789","outcomes":{"decvar":[{"_varname":"498767","_maxvalue":1,"title":"correctness of response"},{"_varname":"499785","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"498767","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"499785","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"A DHCP server must be installed on the same LAN as the host that is receiving the IP address.","_shouldBeSelected":false,"feedback":""},{"text":"R1 is not configured as a DHCPv4 server.​","_shouldBeSelected":false,"feedback":""},{"text":"The <b>ip address dhcp</b> command was not issued on the interface Gi0/1.","_shouldBeSelected":false,"feedback":""},{"text":"The <b>ip helper-address</b> command was applied on the wrong interface.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The <b>ip helper-address</b> command has to be applied on interface Gi0/0. This command must be present on the interface of the LAN that contains the DHCPv4 client PC1 and must be directed to the correct DHCPv4 server.","_incorrect":{"final":"The <b>ip helper-address</b> command has to be applied on interface Gi0/0. This command must be present on the interface of the LAN that contains the DHCPv4 client PC1 and must be directed to the correct DHCPv4 server.","notFinal":""},"_partlyCorrect":{"final":"The <b>ip helper-address</b> command has to be applied on interface Gi0/0. This command must be present on the interface of the LAN that contains the DHCPv4 client PC1 and must be directed to the correct DHCPv4 server.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i215831v1n1_215831.png\" alt=\"R1# show running-config &lt;output omitted&gt; ipv6 unicast-routing ! ipv6 dhcp pool LAN1  prefix-delegation 2001:DB8:8::/48 00030001000E84244E70  dns-server 2001:DB8:8::8  domain-name cisco.com ! interface FastEthernet0/0  no ip address  ipv6 address 2001:DB8:8::100/48  ipv6 nd other-config-flag  ipv6 dhcp server LAN1\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Which statement shown in the output allows router R1 to respond to stateless DHCPv6 requests?</span></p>","_id":"5bc975a078d44479ab8b9f944f2a00b7","_parentId":"e3dd785c5b754bd2bd7910a4da631c51","_type":"component","_layout":"full","_ravennaSourceID":"215831","_smvWiseScoring":{"ident":"it_215831","outcomes":{"decvar":[{"_varname":"518681","_maxvalue":1,"title":"correctness of response"},{"_varname":"522025","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"518681","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"522025","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"<b>ipv6 unicast-routing</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>dns-server 2001:DB8:8::8​</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ipv6 dhcp server LAN1​</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ipv6 nd other-config-flag​</b>","_shouldBeSelected":true,"feedback":""},{"text":"<b>prefix-delegation 2001:DB8:8::/48 00030001000E84244E70​</b>","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The interface command <b>ipv6 nd other-config-flag</b> allows RA messages to be sent on this interface, indicating that additional information is available from a stateless DHCPv6 server.","_incorrect":{"final":"The interface command <b>ipv6 nd other-config-flag</b> allows RA messages to be sent on this interface, indicating that additional information is available from a stateless DHCPv6 server.","notFinal":""},"_partlyCorrect":{"final":"The interface command <b>ipv6 nd other-config-flag</b> allows RA messages to be sent on this interface, indicating that additional information is available from a stateless DHCPv6 server.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which two types of spanning tree protocols can cause suboptimal traffic flows because they assume only one spanning-tree instance for the entire bridged network? (Choose two.)</span></p>","_id":"9487a606d64d4a938682903cab87bd7c","_parentId":"662720c00d214fccaa4760a43b81c18c","_type":"component","_layout":"full","_ravennaSourceID":"216362","_smvWiseScoring":{"ident":"it_216362","outcomes":{"decvar":[{"_varname":"499221","_maxvalue":1,"title":"correctness of response"},{"_varname":"504476","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"499221","_view":"All","interpret":"1 point for Option 1, Option 50 points for any other option"},{"_varname":"504476","_view":"All","interpret":"Option 1 and Option 5 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"STP","_shouldBeSelected":true,"feedback":""},{"text":"Rapid PVST+","_shouldBeSelected":false,"feedback":""},{"text":"PVST+","_shouldBeSelected":false,"feedback":""},{"text":"MSTP","_shouldBeSelected":false,"feedback":""},{"text":"RSTP","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"STP and RSTP assume only one IEEE 802.1D spanning-tree instance for the entire bridged network irrespective of the number of VLANs, This can result in suboptimal traffic flow issues. PVST+ provides a separate spanning-tree instance for each VLAN configured. Rapid PVST+ provides a separate instance of 802.1w per VLAN, and MSTP maps multiple VLANs that have the same traffic flow requirements into the same spanning-tree instance but allows for more than one instance for dissimilar traffic flows.","_incorrect":{"final":"STP and RSTP assume only one IEEE 802.1D spanning-tree instance for the entire bridged network irrespective of the number of VLANs, This can result in suboptimal traffic flow issues. PVST+ provides a separate spanning-tree instance for each VLAN configured. Rapid PVST+ provides a separate instance of 802.1w per VLAN, and MSTP maps multiple VLANs that have the same traffic flow requirements into the same spanning-tree instance but allows for more than one instance for dissimilar traffic flows.","notFinal":""},"_partlyCorrect":{"final":"STP and RSTP assume only one IEEE 802.1D spanning-tree instance for the entire bridged network irrespective of the number of VLANs, This can result in suboptimal traffic flow issues. PVST+ provides a separate spanning-tree instance for each VLAN configured. Rapid PVST+ provides a separate instance of 802.1w per VLAN, and MSTP maps multiple VLANs that have the same traffic flow requirements into the same spanning-tree instance but allows for more than one instance for dissimilar traffic flows.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i216366v1n4_216366.jpg\" alt=\"A workstation is connected to a Layer 2 switch which in turn is connected to two Layer 3 switches marked Forwarding router and Standby router respectively. Both of the Layer 3 switches are connected to a Virtual router, which is positioned  between the two of them,  and are also connected to the Core network. There is an arrow showing the current path of traffic, which moves from the workstation to the Forwarding router, then to the virtual router and back to the Forwarding router. From the Forwarding router traffic goes to the Core network.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Which destination MAC address is used when frames are sent from the workstation to the default gateway?</span></p>","_id":"b3a991e3042841598dae5c0f71a15eb2","_parentId":"3ef6e824ecc74bf79f40c4c848d2961b","_type":"component","_layout":"full","_ravennaSourceID":"216366","_smvWiseScoring":{"ident":"it_216366","outcomes":{"decvar":[{"_varname":"499540","_maxvalue":1,"title":"correctness of response"},{"_varname":"522078","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"499540","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"522078","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"MAC address of the forwarding router","_shouldBeSelected":false,"feedback":""},{"text":"MAC addresses of both the forwarding and standby routers","_shouldBeSelected":false,"feedback":""},{"text":"MAC address of the standby router","_shouldBeSelected":false,"feedback":""},{"text":"MAC address of the virtual router","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The IP address of the virtual router acts as the default gateway for all the workstations. Therefore, the MAC address that is returned by the Address Resolution Protocol to the workstation will be the MAC address of the virtual router.","_incorrect":{"final":"The IP address of the virtual router acts as the default gateway for all the workstations. Therefore, the MAC address that is returned by the Address Resolution Protocol to the workstation will be the MAC address of the virtual router.","notFinal":""},"_partlyCorrect":{"final":"The IP address of the virtual router acts as the default gateway for all the workstations. Therefore, the MAC address that is returned by the Address Resolution Protocol to the workstation will be the MAC address of the virtual router.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A network administrator is preparing the implementation of Rapid PVST+ on a production network. How are the Rapid PVST+ link types determined on the switch interfaces?</span></p>","_id":"b3e18199ea5744f0a6d138b727aa1d56","_parentId":"cc9a62525b584fc4951c1f3aa12759e7","_type":"component","_layout":"full","_ravennaSourceID":"216406","_smvWiseScoring":{"ident":"it_216406","outcomes":{"decvar":[{"_varname":"497513","_maxvalue":1,"title":"correctness of response"},{"_varname":"504470","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"497513","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"504470","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Link types are determined automatically.","_shouldBeSelected":true,"feedback":""},{"text":"Link types must be configured with specific port configuration commands.","_shouldBeSelected":false,"feedback":""},{"text":"Link types can only be determined if PortFast has been configured.","_shouldBeSelected":false,"feedback":""},{"text":"Link types can only be configured on access ports configured with a single VLAN.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"When Rapid PVST+ is being implemented, link types are automatically determined but can be specified manually. Link types can be either point-to-point, shared, or edge.","_incorrect":{"final":"When Rapid PVST+ is being implemented, link types are automatically determined but can be specified manually. Link types can be either point-to-point, shared, or edge.","notFinal":""},"_partlyCorrect":{"final":"When Rapid PVST+ is being implemented, link types are automatically determined but can be specified manually. Link types can be either point-to-point, shared, or edge.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">To obtain an overview of the spanning tree status of a switched network, a network engineer issues the <b>show spanning-tree</b> command on a switch.&#160;Which two items of information will this command display? (Choose two.)<br /></span></p>","_id":"ae36a7cb79c742f3bbd432f315e06046","_parentId":"3ad06a95f5e548a2bfc7e4e47bb985cd","_type":"component","_layout":"full","_ravennaSourceID":"216424","_smvWiseScoring":{"ident":"it_216424","outcomes":{"decvar":[{"_varname":"502970","_maxvalue":1,"title":"correctness of response"},{"_varname":"504486","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"502970","_view":"All","interpret":"1 point for Option 1, Option 20 points for any other option"},{"_varname":"504486","_view":"All","interpret":"Option 1 and Option 2 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The root bridge BID.","_shouldBeSelected":true,"feedback":""},{"text":"The role of the ports in all VLANs.","_shouldBeSelected":true,"feedback":""},{"text":"The status of native VLAN ports.","_shouldBeSelected":false,"feedback":""},{"text":"The number of broadcasts received on each root port.","_shouldBeSelected":false,"feedback":""},{"text":"The IP address of the management VLAN interface.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"The <b>show spanning-tree</b> command will display the status of STP for all VLANs that are defined on a switch and other information including the root bridge BID. It does not show the number of broadcast packets received on the ports. The IP address of the management VLAN interface is not related to STP and is displayed by the <b>show running-configuration</b> command.","_incorrect":{"final":"The <b>show spanning-tree</b> command will display the status of STP for all VLANs that are defined on a switch and other information including the root bridge BID. It does not show the number of broadcast packets received on the ports. The IP address of the management VLAN interface is not related to STP and is displayed by the <b>show running-configuration</b> command.","notFinal":""},"_partlyCorrect":{"final":"The <b>show spanning-tree</b> command will display the status of STP for all VLANs that are defined on a switch and other information including the root bridge BID. It does not show the number of broadcast packets received on the ports. The IP address of the management VLAN interface is not related to STP and is displayed by the <b>show running-configuration</b> command.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i217136v4n1_217136.gif\" alt=\"Graphic shows two routers, R1 and R2 connected by a common serial link. Each router has a single LAN attached on a gigabite Ethernet interface. Router R1 IPv6 addresses are as follows. Serial interface 0/0/1 2001:db8:11:20::1/64 and link-local fe80::1. Gigabit Ethernet interface 0/0 2001:db8:11:10::1/64 and link-local fe80::1. Router R2 IPv6 addresses are as follows. Serial interface 0/0/0 2001:db8:11:20::2/64 and link-local fe80::2. Gigabit Ethernet interface 0/0 2001:db8:12:10::1/64 and link-local fe80::1.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Which static route command can be entered on R1 to forward traffic to the LAN connected to R2?</span></p>","_id":"2d27d5a265f441a79c029a6db27e444b","_parentId":"429d9a34725e4ab5baea85359d4298b0","_type":"component","_layout":"full","_ravennaSourceID":"217136","_smvWiseScoring":{"ident":"it_217136","outcomes":{"decvar":[{"_varname":"863710","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"863710","_view":"All","interpret":"1 point for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"<b>ipv6 route 2001:db8:12:10::/64 S0/0/0</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ipv6 route 2001:db8:12:10::/64 S0/0/0 fe80::2</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ipv6 route 2001:db8:12:10::/64 S0/0/1 2001:db8:12:10::1</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ipv6 route 2001:db8:12:10::/64 S0/0/1 fe80::2</b>","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The IPv6 static route to reach the LAN on R2 from R1 will need to have the destination prefix and either the exit interface, next hop address, or both. In this example both the exit interface and next hop link-local are used in the static route of <b>ipv6 route 2001:db8:12:10::/64 S0/0/1 fe80::2</b>.","_incorrect":{"final":"The IPv6 static route to reach the LAN on R2 from R1 will need to have the destination prefix and either the exit interface, next hop address, or both. In this example both the exit interface and next hop link-local are used in the static route of <b>ipv6 route 2001:db8:12:10::/64 S0/0/1 fe80::2</b>.","notFinal":""},"_partlyCorrect":{"final":"The IPv6 static route to reach the LAN on R2 from R1 will need to have the destination prefix and either the exit interface, next hop address, or both. In this example both the exit interface and next hop link-local are used in the static route of <b>ipv6 route 2001:db8:12:10::/64 S0/0/1 fe80::2</b>.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i217651v1n1_5.png\" alt=\"The exhibit displays 3 switches called SW1,SW2, and SW3. SW2 has a MAC address of  00ff.0ba0.0002 and has its fa0/9 port connected to the fa0/10 port of SW1. SW2 has its port fa0/20 connected to port fa0/21 of SW3. SW3 has a MAC address of 00f0.0ba0.0ff2 and has its port fa0/13 connected to port fa0/11 of SW1 whose MAC address is  00fe.0ba0.00b2.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. All the displayed&#160;switches are Cisco 2960 switches with the same default priority and operating at the same bandwidth. Which three ports will be STP designated ports? (Choose three.)</span></p>","_id":"6753bfa8722442c7a1de102fffd249db","_parentId":"ccdb0c2965b34077973661cb0ba65aef","_type":"component","_layout":"full","_ravennaSourceID":"217651","_smvWiseScoring":{"ident":"it_217651","outcomes":{"decvar":[{"_varname":"500711","_maxvalue":1,"title":"correctness of response"},{"_varname":"522837","_maxvalue":3,"title":"correctness of response"}],"interpretvar":[{"_varname":"500711","_view":"All","interpret":"1 point for Option 2, Option 4, Option 60 points for any other option"},{"_varname":"522837","_view":"All","interpret":"Option 2, Option 4, and Option 6 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"fa0/9","_shouldBeSelected":false,"feedback":""},{"text":"fa0/10","_shouldBeSelected":true,"feedback":""},{"text":"fa0/11","_shouldBeSelected":false,"feedback":""},{"text":"fa0/13","_shouldBeSelected":true,"feedback":""},{"text":"fa0/20","_shouldBeSelected":false,"feedback":""},{"text":"fa0/21","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":3,"_feedback":{"title":"","correct":"Given that all the switches have the same default priority and are operating at the same bandwidth, the switch with the lowest MAC address will become the root bridge. This would be SW3 and all its ports would be designated ports. SW1 has a lower MAC address than SW2 has and therefore port fa0/10 will become the designated port on that link.","_incorrect":{"final":"Given that all the switches have the same default priority and are operating at the same bandwidth, the switch with the lowest MAC address will become the root bridge. This would be SW3 and all its ports would be designated ports. SW1 has a lower MAC address than SW2 has and therefore port fa0/10 will become the designated port on that link.","notFinal":""},"_partlyCorrect":{"final":"Given that all the switches have the same default priority and are operating at the same bandwidth, the switch with the lowest MAC address will become the root bridge. This would be SW3 and all its ports would be designated ports. SW1 has a lower MAC address than SW2 has and therefore port fa0/10 will become the designated port on that link.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i217665v1n1_PAGp.png\" alt=\"The exhibit displays the following switch command output:  S1# show run | begin interface &lt;output omitted&gt; ! interface FastEthernet0/8  channel-group 1 mode auto  switchport mode trunk ! interface FastEthernet0/9  channel-group 1 mode auto  switchport mode trunk ! interface Port-channel 1  switchport trunk allowed vlan 1,10,20,30  switchport trunk encapsulation dot1q  switchport mode trunk !\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. A network administrator is reviewing the configuration of switch S1. Which protocol has been implemented to group multiple physical ports into one logical link?</span></p>","_id":"ebd231135a6c413e8e22be3a9e75b349","_parentId":"e1a953cc0fc34b63ac4eddaa5ad3e5b0","_type":"component","_layout":"full","_ravennaSourceID":"217665","_smvWiseScoring":{"ident":"it_217665","outcomes":{"decvar":[{"_varname":"500713","_maxvalue":1,"title":"correctness of response"},{"_varname":"522841","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"500713","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"522841","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"PAgP","_shouldBeSelected":true,"feedback":""},{"text":"DTP","_shouldBeSelected":false,"feedback":""},{"text":"LACP","_shouldBeSelected":false,"feedback":""},{"text":"STP","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The EtherChannel protocol PAgP provides the grouping of physical interfaces and utilizes the modes of auto and desirable. The EtherChannel protocol LACP provides the grouping of physical interfaces and utilizes the modes of passive and active. DTP and STP are not utilized to group multiple physical interfaces into a single logical link.","_incorrect":{"final":"The EtherChannel protocol PAgP provides the grouping of physical interfaces and utilizes the modes of auto and desirable. The EtherChannel protocol LACP provides the grouping of physical interfaces and utilizes the modes of passive and active. DTP and STP are not utilized to group multiple physical interfaces into a single logical link.","notFinal":""},"_partlyCorrect":{"final":"The EtherChannel protocol PAgP provides the grouping of physical interfaces and utilizes the modes of auto and desirable. The EtherChannel protocol LACP provides the grouping of physical interfaces and utilizes the modes of passive and active. DTP and STP are not utilized to group multiple physical interfaces into a single logical link.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which three Wi-Fi standards operate in the 2.4GHz range of frequencies? (Choose three.)</span></p>","_id":"4d0863d68b1f4d9d87e96938b37c2688","_parentId":"16500b4734dd4d95b77a94aea2869d1b","_type":"component","_layout":"full","_ravennaSourceID":"217922","_smvWiseScoring":{"ident":"it_217922","outcomes":{"decvar":[{"_varname":"495262","_maxvalue":1,"title":"correctness of response"},{"_varname":"511485","_maxvalue":3,"title":"correctness of response"}],"interpretvar":[{"_varname":"495262","_view":"All","interpret":"1 point for Option 2, Option 3, Option 40 points for any other option"},{"_varname":"511485","_view":"All","interpret":"Option 2, Option 3, and Option 4 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"802.11a","_shouldBeSelected":false,"feedback":""},{"text":"802.11b","_shouldBeSelected":true,"feedback":""},{"text":"802.11g","_shouldBeSelected":true,"feedback":""},{"text":"802.11n","_shouldBeSelected":true,"feedback":""},{"text":"802.11ac","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":3,"_feedback":{"title":"","correct":"802.11b and 802.11g operate in the 2.4GHz range, and 802.11n can operate in either the 2.4GHz or the 5GHz range. 802.11a and 802.11ac operate only in the 5GHz range of frequencies.","_incorrect":{"final":"802.11b and 802.11g operate in the 2.4GHz range, and 802.11n can operate in either the 2.4GHz or the 5GHz range. 802.11a and 802.11ac operate only in the 5GHz range of frequencies.","notFinal":""},"_partlyCorrect":{"final":"802.11b and 802.11g operate in the 2.4GHz range, and 802.11n can operate in either the 2.4GHz or the 5GHz range. 802.11a and 802.11ac operate only in the 5GHz range of frequencies.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What method of wireless authentication is dependent on a RADIUS authentication server?</span></p>","_id":"8f1d18d1d4604ddda34c21740add002e","_parentId":"2f2b0f20ac1d4175aa88911537fa1896","_type":"component","_layout":"full","_ravennaSourceID":"217924","_smvWiseScoring":{"ident":"it_217924","outcomes":{"decvar":[{"_varname":"500260","_maxvalue":1,"title":"correctness of response"},{"_varname":"522034","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"500260","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"522034","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"WEP","_shouldBeSelected":false,"feedback":""},{"text":"WPA Personal","_shouldBeSelected":false,"feedback":""},{"text":"WPA2 Personal","_shouldBeSelected":false,"feedback":""},{"text":"WPA2 Enterprise","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"WPA2 Enterprise relies on an external RADIUS server to authenticate clients when they attempt to connect. WEP and WPA/WPA2 Personal both use a pre-shared key that the clients must know in order to authenticate.","_incorrect":{"final":"WPA2 Enterprise relies on an external RADIUS server to authenticate clients when they attempt to connect. WEP and WPA/WPA2 Personal both use a pre-shared key that the clients must know in order to authenticate.","notFinal":""},"_partlyCorrect":{"final":"WPA2 Enterprise relies on an external RADIUS server to authenticate clients when they attempt to connect. WEP and WPA/WPA2 Personal both use a pre-shared key that the clients must know in order to authenticate.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which wireless encryption method is the most secure?</span></p>","_id":"cc168bd4db6149c792eaab25353d4655","_parentId":"7e7b446c48764886bd9d95782b75a22f","_type":"component","_layout":"full","_ravennaSourceID":"221220","_smvWiseScoring":{"ident":"it_221220","outcomes":{"decvar":[{"_varname":"512413","_maxvalue":1,"title":"correctness of response"},{"_varname":"520361","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"512413","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"520361","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"WPA","_shouldBeSelected":false,"feedback":""},{"text":"WEP","_shouldBeSelected":false,"feedback":""},{"text":"WPA2 with TKIP","_shouldBeSelected":false,"feedback":""},{"text":"WPA2 with AES","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"IEEE 802.11i and WPA2 both use the Advanced Encryption Standard (AES) for encryption. AES is currently considered the strongest encryption protocol. WPA2 does not use TKIP (Temporal Key Integrity Protocol). It is WPA that uses TKIP. Although WPA provides stronger encryption than WEP, it is is not as strong as WPA2 (AES).","_incorrect":{"final":"IEEE 802.11i and WPA2 both use the Advanced Encryption Standard (AES) for encryption. AES is currently considered the strongest encryption protocol. WPA2 does not use TKIP (Temporal Key Integrity Protocol). It is WPA that uses TKIP. Although WPA provides stronger encryption than WEP, it is is not as strong as WPA2 (AES).","notFinal":""},"_partlyCorrect":{"final":"IEEE 802.11i and WPA2 both use the Advanced Encryption Standard (AES) for encryption. AES is currently considered the strongest encryption protocol. WPA2 does not use TKIP (Temporal Key Integrity Protocol). It is WPA that uses TKIP. Although WPA provides stronger encryption than WEP, it is is not as strong as WPA2 (AES).","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A network engineer is troubleshooting a newly deployed wireless network that is using the latest 802.11 standards. When users access high bandwidth services such as streaming video, the wireless network performance is poor. To improve performance the network engineer decides to configure a 5 Ghz frequency band SSID and train users to use that SSID for streaming media services. Why might this solution improve the wireless network performance for that type of service?</span></p>","_id":"0ad29316420948638d0ece898a193b0b","_parentId":"9e898a6bade94139b97704d96bebcfdc","_type":"component","_layout":"full","_ravennaSourceID":"221234","_smvWiseScoring":{"ident":"it_221234","outcomes":{"decvar":[{"_varname":"513264","_maxvalue":1,"title":"correctness of response"},{"_varname":"520363","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"513264","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"520363","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The 5 GHz band has a greater range and is therefore likely to be interference-free.","_shouldBeSelected":false,"feedback":""},{"text":"Requiring the users to switch to the 5 GHz band for streaming media is inconvenient and will result in fewer users accessing these services.","_shouldBeSelected":false,"feedback":""},{"text":"The 5 GHz band has more channels and is less crowded than the 2.4 GHz band, which makes it more suited to streaming multimedia.","_shouldBeSelected":true,"feedback":""},{"text":"The only users that can switch to the 5 GHz band will be those with the latest wireless NICs, which will reduce usage.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Wireless range is determined by the access point antenna and output power, not the frequency band that is used. In this scenario it is stated that all users have wireless NICs that comply with the latest standard, and so all can access the 5 GHz band. Although some users may find it inconvenient to switch to the 5 Ghz band to access streaming services, it is the greater number of channels, not just fewer users, that will improve network performance.","_incorrect":{"final":"Wireless range is determined by the access point antenna and output power, not the frequency band that is used. In this scenario it is stated that all users have wireless NICs that comply with the latest standard, and so all can access the 5 GHz band. Although some users may find it inconvenient to switch to the 5 Ghz band to access streaming services, it is the greater number of channels, not just fewer users, that will improve network performance.","notFinal":""},"_partlyCorrect":{"final":"Wireless range is determined by the access point antenna and output power, not the frequency band that is used. In this scenario it is stated that all users have wireless NICs that comply with the latest standard, and so all can access the 5 GHz band. Although some users may find it inconvenient to switch to the 5 Ghz band to access streaming services, it is the greater number of channels, not just fewer users, that will improve network performance.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i221267v1n1_item2.jpg\" alt=\"The exhibit displays the following information from a switch command prompt: S1# show etherchannel summary Flags:  D - down        P - bundled in port-channel         I - stand-alone s - suspended         H - Hot-standby (LACP only)         R - Layer3      S - Layer2         U - in use      f - failed to allocate aggregator         M - not in use, minimum links not met         u - unsuitable for bundling         w - waiting to be aggregated         d - default port Number of channel-groups in use: 1 Number of aggregators:           1 Group  Port-channel  Protocol    Ports ------+-------------+-----------+------------------------------- 1      Po2(SD)          -        Fa0/1(D)    Fa0/2(D)\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Which two conclusions can be drawn from the output? (Choose two.)</span></p>","_id":"dc4aa74883714d6ba9d9350899d6b1a5","_parentId":"9a0189da263c4511a3eb95898c6a33c8","_type":"component","_layout":"full","_ravennaSourceID":"221267","_smvWiseScoring":{"ident":"it_221267","outcomes":{"decvar":[{"_varname":"519151","_maxvalue":1,"title":"correctness of response"},{"_varname":"522058","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"519151","_view":"All","interpret":"1 point for Option 1, Option 20 points for any other option"},{"_varname":"522058","_view":"All","interpret":"Option 1 and Option 2 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The EtherChannel is down.","_shouldBeSelected":true,"feedback":""},{"text":"The port channel ID is 2.","_shouldBeSelected":true,"feedback":""},{"text":"The port channel is a Layer 3 channel.","_shouldBeSelected":false,"feedback":""},{"text":"The bundle is fully operational.","_shouldBeSelected":false,"feedback":""},{"text":"The load-balancing method used is source port to destination port.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"The last line has two letter Ds, thus indicating that the port channel is down. The same line indicates that the port channel ID is 2 (Po2). The SD in the same line indicates that this is a Layer 2 bundle.","_incorrect":{"final":"The last line has two letter Ds, thus indicating that the port channel is down. The same line indicates that the port channel ID is 2 (Po2). The SD in the same line indicates that this is a Layer 2 bundle.","notFinal":""},"_partlyCorrect":{"final":"The last line has two letter Ds, thus indicating that the port channel is down. The same line indicates that the port channel ID is 2 (Po2). The SD in the same line indicates that this is a Layer 2 bundle.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which command will start the process to bundle two physical interfaces to create an EtherChannel group via&#160;LACP?</span></p>","_id":"05bf2e53b090475683b48bee15e7a3e0","_parentId":"c182dacf57b54fa599f707c2a855dd3f","_type":"component","_layout":"full","_ravennaSourceID":"222349","_smvWiseScoring":{"ident":"it_222349","outcomes":{"decvar":[{"_varname":"520095","_maxvalue":1,"title":"correctness of response"},{"_varname":"522105","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"520095","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"522105","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"<b>channel-group 2 mode auto</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>interface port-channel 2</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>channel-group 1 mode desirable</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>interface range GigabitEthernet 0/4 - 5</b>","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"To specify the interfaces in an EtherChannel group, use the <b>interface range</b> <i>interface</i> global configuration command for the range of interfaces used. The <b>interface range GigabitEthernet 0/4 - 5</b> command is the correct option because it specifies two interfaces for the EtherChannel group.","_incorrect":{"final":"To specify the interfaces in an EtherChannel group, use the <b>interface range</b> <i>interface</i> global configuration command for the range of interfaces used. The <b>interface range GigabitEthernet 0/4 - 5</b> command is the correct option because it specifies two interfaces for the EtherChannel group.","notFinal":""},"_partlyCorrect":{"final":"To specify the interfaces in an EtherChannel group, use the <b>interface range</b> <i>interface</i> global configuration command for the range of interfaces used. The <b>interface range GigabitEthernet 0/4 - 5</b> command is the correct option because it specifies two interfaces for the EtherChannel group.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i223430v1n1_Item-223430.png\" alt=\"The graphic shows the following information: Switch S1 (the root bridge) uses a port that is labeled B to connect to switch S3 on a port labeled D. S3 is connected to switch S2 on a port labeled A. S2 uses a port labeled C to connect to S1. S2 is connected also to three PC workstations labeled A, B, and C.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. What are the possible port roles for ports A, B, C, and D in this RSTP-enabled network?</span></p>","_id":"a84e87fb339447559a1e9426aa6d690d","_parentId":"19412d45856540ddb8cea579084bc99d","_type":"component","_layout":"full","_ravennaSourceID":"223430","_smvWiseScoring":{"ident":"it_223430","outcomes":{"decvar":[{"_varname":"530908","_maxvalue":1,"title":"correctness of response"},{"_varname":"530909","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"530908","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"530909","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"alternate, root, designated, root","_shouldBeSelected":false,"feedback":""},{"text":"designated, root, alternate, root","_shouldBeSelected":false,"feedback":""},{"text":"alternate, designated, root, root","_shouldBeSelected":true,"feedback":""},{"text":"designated, alternate, root, root","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Because S1 is the root bridge,  B is a designated port, and C and D root ports. RSTP supports a new port type, alternate port in discarding state, that can be port A in this scenario.","_incorrect":{"final":"Because S1 is the root bridge,  B is a designated port, and C and D root ports. RSTP supports a new port type, alternate port in discarding state, that can be port A in this scenario.","notFinal":""},"_partlyCorrect":{"final":"Because S1 is the root bridge,  B is a designated port, and C and D root ports. RSTP supports a new port type, alternate port in discarding state, that can be port A in this scenario.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What command will enable a router to begin sending messages that allow it to configure a link-local address without using an IPv6 DHCP server?</span></p>","_id":"c9c2b8e262e540d6b5e3c42c92d9c46b","_parentId":"f8555dbfec534f54b8934c9922d9a03c","_type":"component","_layout":"full","_ravennaSourceID":"223506","_smvWiseScoring":{"ident":"it_223506","outcomes":{"decvar":[{"_varname":"531295","_maxvalue":1,"title":"correctness of response"},{"_varname":"531296","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"531295","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"531296","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"the <b>ipv6 route ::/0</b> command","_shouldBeSelected":false,"feedback":""},{"text":"a static route","_shouldBeSelected":false,"feedback":""},{"text":"the <b>ip routing</b> command","_shouldBeSelected":false,"feedback":""},{"text":"the <b>ipv6 unicast-routing</b> command","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"To enable IPv6 on a router you must use the <b>ipv6 unicast-routing</b> global configuration command or use the <b>ipv6 enable</b> interface configuration command. This is equivalent to entering <b>ip routing</b> to enable IPv4 routing on a router when it has been turned off. Keep in mind that IPv4 is enabled on a router by default. IPv6 is not enabled by default.","_incorrect":{"final":"To enable IPv6 on a router you must use the <b>ipv6 unicast-routing</b> global configuration command or use the <b>ipv6 enable</b> interface configuration command. This is equivalent to entering <b>ip routing</b> to enable IPv4 routing on a router when it has been turned off. Keep in mind that IPv4 is enabled on a router by default. IPv6 is not enabled by default.","notFinal":""},"_partlyCorrect":{"final":"To enable IPv6 on a router you must use the <b>ipv6 unicast-routing</b> global configuration command or use the <b>ipv6 enable</b> interface configuration command. This is equivalent to entering <b>ip routing</b> to enable IPv4 routing on a router when it has been turned off. Keep in mind that IPv4 is enabled on a router by default. IPv6 is not enabled by default.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i223534v1n1_223534.png\" alt=\"Four switches labeled S1, S2, S3, and S4 are connected. S1 port Gi1/1 connects to S2 Gi1/1. S1 port Fa0/1 connects to S3 Fa0/1. S4 also connects to S2 and S3. S4 Fa0/1 connects to S2 Fa0/1. S4 Fa0/2 connects to S3 Fa0/2. The link between S1 and S2 is labeled as Trunk1. The link between S1 and S3 is labeled as Trunk2. The link between S2 and S4 is labeled as Trunk3. The link between S3 and S4 is labeled as Trunk4. There is a text box attached to each switch:  S1 text box shows: Bridge ID: Priority: 32769 MAC: 000A00032222  S2 text box shows: Bridge ID: Priority: 32769 MAC: 000A00032321  S3 text box shows: Bridge ID: Priority: 32769 MAC: 000A00033333  S4 text box shows: Bridge ID: Priority: 32769 MAC: 000A00031212\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Which trunk link will not forward any traffic after the root bridge election process is complete?</span></p>","_id":"8744996175a9424983090944e110f122","_parentId":"68e79b6e7dc545cab2df0228d8c60668","_type":"component","_layout":"full","_ravennaSourceID":"223534","_smvWiseScoring":{"ident":"it_223534","outcomes":{"decvar":[{"_varname":"563976","_maxvalue":1,"title":"correctness of response"},{"_varname":"563977","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"563976","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"563977","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Trunk1","_shouldBeSelected":false,"feedback":""},{"text":"Trunk2","_shouldBeSelected":true,"feedback":""},{"text":"Trunk3","_shouldBeSelected":false,"feedback":""},{"text":"Trunk4","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"S4 has the lowest bridge ID, thus S4 is the root bridge. Because the path cost S1-S2-S4 is lower than the path cost S1-S3-S4, path S1-S2-S4 is the preferred path for S1 to reach S4. Thus, STP will set the S1 port Fa0/1 to a blocking state, and the trunk link Trunk2 will not forward any traffic.","_incorrect":{"final":"S4 has the lowest bridge ID, thus S4 is the root bridge. Because the path cost S1-S2-S4 is lower than the path cost S1-S3-S4, path S1-S2-S4 is the preferred path for S1 to reach S4. Thus, STP will set the S1 port Fa0/1 to a blocking state, and the trunk link Trunk2 will not forward any traffic.","notFinal":""},"_partlyCorrect":{"final":"S4 has the lowest bridge ID, thus S4 is the root bridge. Because the path cost S1-S2-S4 is lower than the path cost S1-S3-S4, path S1-S2-S4 is the preferred path for S1 to reach S4. Thus, STP will set the S1 port Fa0/1 to a blocking state, and the trunk link Trunk2 will not forward any traffic.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i232273v1n1_232273.png\" alt=\"The exhibit is not required to answer the question. The exhibit shows a cartoon character with a magnet polling the wireless signals away from an access point.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">What two default wireless router settings can affect network security? (Choose two.)</span></p>","_id":"42852ebaf6284a14bc5f19b06332a057","_parentId":"7a26a82671624aaf843af4e2614d2b26","_type":"component","_layout":"full","_ravennaSourceID":"232273","_smvWiseScoring":{"ident":"it_232273","outcomes":{"decvar":[{"_varname":"554207","_maxvalue":1,"title":"correctness of response"},{"_varname":"554208","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"554207","_view":"All","interpret":"1 point for Option 1, Option 50 points for any other option"},{"_varname":"554208","_view":"All","interpret":"Option 1 and Option 5 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The SSID is broadcast.","_shouldBeSelected":true,"feedback":""},{"text":"MAC address filtering is enabled.","_shouldBeSelected":false,"feedback":""},{"text":"WEP encryption is enabled.","_shouldBeSelected":false,"feedback":""},{"text":"The wireless channel is automatically selected.","_shouldBeSelected":false,"feedback":""},{"text":"A well-known administrator password is set.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"Default settings on wireless routers often include broadcasting the SSID and using a well-known administrative password. Both of these pose a security risk to wireless networks. WEP encryption and MAC address filtering are not set by default. The automatic selection of the wireless channel poses no security risks.","_incorrect":{"final":"Default settings on wireless routers often include broadcasting the SSID and using a well-known administrative password. Both of these pose a security risk to wireless networks. WEP encryption and MAC address filtering are not set by default. The automatic selection of the wireless channel poses no security risks.","notFinal":""},"_partlyCorrect":{"final":"Default settings on wireless routers often include broadcasting the SSID and using a well-known administrative password. Both of these pose a security risk to wireless networks. WEP encryption and MAC address filtering are not set by default. The automatic selection of the wireless channel poses no security risks.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i235950v1n1_235950.png\" alt=\"The exhibit shows the following command output: SWC# show port-security interface fa0/2 Port Security              : Enabled Port Status                : Secure-up Violation Mode             : Shutdown Aging Time                 : 0 mins Aging Type                 : Absolute SecureStatic Address Aging : Disabled Maximum MAC Addresses      : 3 Total MAC Addresses        : 1 Configured MAC Addresses   : 1 Sticky MAC Addresses       : 0 Last Source Address:Vlan   : 00E0.F7B0.086E:99 Security Violation Count   : 0\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. The network administrator is configuring the port security feature on switch SWC. The administrator issued the command <b>show port-security interface fa 0/2</b> to verify the configuration. What can be concluded from the output that is shown? (Choose three.)</span></p>","_id":"edb03f3113214187974f656bec68039e","_parentId":"3ff400625ca747cebc8411bdedc7d7b9","_type":"component","_layout":"full","_ravennaSourceID":"235950","_smvWiseScoring":{"ident":"it_235950","outcomes":{"decvar":[{"_varname":"562348","_maxvalue":1,"title":"correctness of response"},{"_varname":"562349","_maxvalue":3,"title":"correctness of response"}],"interpretvar":[{"_varname":"562348","_view":"All","interpret":"1 point for Option 1, Option 5, Option 60 points for any other option"},{"_varname":"562349","_view":"All","interpret":"Option 1, Option 5, and Option 6 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"This port is currently up.","_shouldBeSelected":true,"feedback":""},{"text":"The port is configured as a trunk link.","_shouldBeSelected":false,"feedback":""},{"text":"There is no device currently connected to this port.","_shouldBeSelected":false,"feedback":""},{"text":"Three security violations have been detected on this interface.","_shouldBeSelected":false,"feedback":""},{"text":"The switch port mode for this interface is access mode.","_shouldBeSelected":true,"feedback":""},{"text":"Security violations will cause this port to shut down immediately.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":3,"_feedback":{"title":"","correct":"Because the security violation count is at 0, no violation has occurred. The system shows that 3 MAC addresses are allowed on port fa0/2, but only one has been configured and no sticky MAC addresses have been learned. The port is up because of the port status of secure-up. The violation mode is what happens when an unauthorized device is attached to the port. A port must be in access mode in order to activate and use port security.","_incorrect":{"final":"Because the security violation count is at 0, no violation has occurred. The system shows that 3 MAC addresses are allowed on port fa0/2, but only one has been configured and no sticky MAC addresses have been learned. The port is up because of the port status of secure-up. The violation mode is what happens when an unauthorized device is attached to the port. A port must be in access mode in order to activate and use port security.","notFinal":""},"_partlyCorrect":{"final":"Because the security violation count is at 0, no violation has occurred. The system shows that 3 MAC addresses are allowed on port fa0/2, but only one has been configured and no sticky MAC addresses have been learned. The port is up because of the port status of secure-up. The violation mode is what happens when an unauthorized device is attached to the port. A port must be in access mode in order to activate and use port security.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What would be the primary reason an attacker would launch a MAC address overflow attack?</span></p>","_id":"3830e3c096184284a235a537de249e2d","_parentId":"40ad7c9265134fd3b9790b0967bd080d","_type":"component","_layout":"full","_ravennaSourceID":"235957","_smvWiseScoring":{"ident":"it_235957","outcomes":{"decvar":[{"_varname":"563343","_maxvalue":1,"title":"correctness of response"},{"_varname":"563344","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"563343","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"563344","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"so that the switch stops forwarding traffic","_shouldBeSelected":false,"feedback":""},{"text":"so that legitimate hosts cannot obtain a MAC address","_shouldBeSelected":false,"feedback":""},{"text":"so that the attacker can see frames that are destined for other hosts","_shouldBeSelected":true,"feedback":""},{"text":"so that the attacker can execute arbitrary code on the switch","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"When the MAC address table on a switch is full, the switch will forward frames destined to unknown MAC addresses out every port in the VLAN. By filling up the MAC address table on a switch, an attacker can see frames that are destined for other devices.","_incorrect":{"final":"When the MAC address table on a switch is full, the switch will forward frames destined to unknown MAC addresses out every port in the VLAN. By filling up the MAC address table on a switch, an attacker can see frames that are destined for other devices.","notFinal":""},"_partlyCorrect":{"final":"When the MAC address table on a switch is full, the switch will forward frames destined to unknown MAC addresses out every port in the VLAN. By filling up the MAC address table on a switch, an attacker can see frames that are destined for other devices.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">During the AAA process, when will authorization be implemented?</span></p>","_id":"7f6729b4aaf54ea881d8237a6878eb7f","_parentId":"19005cd98e7a44c5ae0bb671b11b9c9c","_type":"component","_layout":"full","_ravennaSourceID":"237004","_smvWiseScoring":{"ident":"it_237004","outcomes":{"decvar":[{"_varname":"578319","_maxvalue":1,"title":"correctness of response"},{"_varname":"578320","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"578319","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"578320","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"immediately after successful authentication against an AAA data source","_shouldBeSelected":true,"feedback":""},{"text":"immediately after AAA accounting and auditing receives detailed reports","_shouldBeSelected":false,"feedback":""},{"text":"immediately after an AAA client sends authentication information to a centralized server","_shouldBeSelected":false,"feedback":""},{"text":"immediately after the determination of which resources a user can access","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"AAA authorization is implemented immediately after the user is authenticated against a specific AAA data source.","_incorrect":{"final":"AAA authorization is implemented immediately after the user is authenticated against a specific AAA data source.","notFinal":""},"_partlyCorrect":{"final":"AAA authorization is implemented immediately after the user is authenticated against a specific AAA data source.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What action does a DHCPv4 client take if it receives more than one DHCPOFFER from multiple DHCP servers?</span></p>","_id":"f08468b0284145db867b2686229a3144","_parentId":"0f402598682b4347aa1f24059c87fa12","_type":"component","_layout":"full","_ravennaSourceID":"245537","_smvWiseScoring":{"ident":"it_245537","outcomes":{"decvar":[{"_varname":"600878","_maxvalue":1,"title":"correctness of response"},{"_varname":"600879","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"600878","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"600879","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"It discards both offers and sends a new DHCPDISCOVER.","_shouldBeSelected":false,"feedback":""},{"text":"It sends a DHCPREQUEST that identifies which lease offer the client is accepting.","_shouldBeSelected":true,"feedback":""},{"text":"It sends a DHCPNAK and begins the DHCP process over again.","_shouldBeSelected":false,"feedback":""},{"text":"It accepts both DHCPOFFER messages and sends a DHCPACK.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"If there are multiple DHCP servers in a network, it is possible for a client to receive more than one DHCPOFFER. In this scenario, the client will only send one DHCPREQUEST, which includes the server from which the client is accepting the offer.","_incorrect":{"final":"If there are multiple DHCP servers in a network, it is possible for a client to receive more than one DHCPOFFER. In this scenario, the client will only send one DHCPREQUEST, which includes the server from which the client is accepting the offer.","notFinal":""},"_partlyCorrect":{"final":"If there are multiple DHCP servers in a network, it is possible for a client to receive more than one DHCPOFFER. In this scenario, the client will only send one DHCPREQUEST, which includes the server from which the client is accepting the offer.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which method of IPv6 prefix assignment relies on the prefix contained in RA messages?</span></p>","_id":"6a3cd932d1c54124b1e9a89066f07619","_parentId":"84a6563fa74a416c86f88dc24a059624","_type":"component","_layout":"full","_ravennaSourceID":"245544","_smvWiseScoring":{"ident":"it_245544","outcomes":{"decvar":[{"_varname":"593472","_maxvalue":1,"title":"correctness of response"},{"_varname":"593473","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"593472","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"593473","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"SLAAC","_shouldBeSelected":true,"feedback":""},{"text":"Stateful DHCPv6","_shouldBeSelected":false,"feedback":""},{"text":"EUI-64","_shouldBeSelected":false,"feedback":""},{"text":"Static","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Stateless Address Autoconfiguration (SLAAC) relies on information received in router advertisement (RA) messages in order to automatically create an IPv6 address. The RA messages contain information such as the network prefix and prefix length, which the host combines with an interface ID in order to make a unique IPv6 unicast address.","_incorrect":{"final":"Stateless Address Autoconfiguration (SLAAC) relies on information received in router advertisement (RA) messages in order to automatically create an IPv6 address. The RA messages contain information such as the network prefix and prefix length, which the host combines with an interface ID in order to make a unique IPv6 unicast address.","notFinal":""},"_partlyCorrect":{"final":"Stateless Address Autoconfiguration (SLAAC) relies on information received in router advertisement (RA) messages in order to automatically create an IPv6 address. The RA messages contain information such as the network prefix and prefix length, which the host combines with an interface ID in order to make a unique IPv6 unicast address.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i245718v1n1_1.png\" alt=\"The exhibit shows a network topology with switch SW1 connected to 4 hosts: DHCP Server (port Fa0/1), PC1 (port Fa0/2), PC2 (port Fa0/3), and PC3 (port Fa0/4).\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Consider that the main power has just been restored. PC3 issues a broadcast IPv4 DHCP request. To which port will&#160;SW1&#160;forward this request?​</span></p>","_id":"fcfeb5969691405bafa4535ed5f61338","_parentId":"73115812aebf46a694b9ecf88ba078f7","_type":"component","_layout":"full","_ravennaSourceID":"245718","_smvWiseScoring":{"ident":"it_245718","outcomes":{"decvar":[{"_varname":"594747","_maxvalue":1,"title":"correctness of response"},{"_varname":"594748","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"594747","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"594748","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"to Fa0/1 only​","_shouldBeSelected":false,"feedback":""},{"text":"to Fa0/1 and Fa0/2 only","_shouldBeSelected":false,"feedback":""},{"text":"to Fa0/1, Fa0/2, and Fa0/3 only","_shouldBeSelected":true,"feedback":""},{"text":"to Fa0/1, Fa0/2, Fa0/3, and Fa0/4","_shouldBeSelected":false,"feedback":""},{"text":"to Fa0/1, Fa0/2, and Fa0/4 only​","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Because this is a broadcast frame, SW1 will send it to all ports except to the ingress one (the port in which the request was received).","_incorrect":{"final":"Because this is a broadcast frame, SW1 will send it to all ports except to the ingress one (the port in which the request was received).","notFinal":""},"_partlyCorrect":{"final":"Because this is a broadcast frame, SW1 will send it to all ports except to the ingress one (the port in which the request was received).","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A network administrator has found a user sending a double-tagged 802.1Q frame to a switch. What is the best solution to prevent this type of attack?</span></p>","_id":"2a263408bc49462ca10ec3bb95cd9070","_parentId":"8eff4fc17ab148ae99aa7a9ae1b6265d","_type":"component","_layout":"full","_ravennaSourceID":"245722","_smvWiseScoring":{"ident":"it_245722","outcomes":{"decvar":[{"_varname":"860776","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"860776","_view":"All","interpret":"1 point for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The VLANs for user access ports should be different VLANs than any native VLANs used on trunk ports.","_shouldBeSelected":true,"feedback":""},{"text":"Trunk ports should use the default VLAN as the native VLAN number.","_shouldBeSelected":false,"feedback":""},{"text":"Trunk ports should be configured with port security.","_shouldBeSelected":false,"feedback":""},{"text":"The native VLAN number used on any trunk should be one of the active data VLANs.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"In order to protect a switched network from a VLAN double-tagging attack, the best method is to place the trunk ports on a native VLAN that is unused anywhere else on the switch. This will prevent a user from double-tagging traffic and moving traffic to a targeted VLAN.​","_incorrect":{"final":"In order to protect a switched network from a VLAN double-tagging attack, the best method is to place the trunk ports on a native VLAN that is unused anywhere else on the switch. This will prevent a user from double-tagging traffic and moving traffic to a targeted VLAN.​","notFinal":""},"_partlyCorrect":{"final":"In order to protect a switched network from a VLAN double-tagging attack, the best method is to place the trunk ports on a native VLAN that is unused anywhere else on the switch. This will prevent a user from double-tagging traffic and moving traffic to a targeted VLAN.​","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"matching","_classes":"","_isOptional":false,"_isAvailable":true,"_isHidden":false,"_isVisible":true,"_isResetOnRevisit":false,"_ariaLevel":0,"_disableAccessibilityState":false,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Match the forwarding characteristic to its type. </span></p>","_id":"7a53d90a46194f21b60557e998923c20","_parentId":"29d92d86815746e6bd1b7802aebd7269","_type":"component","_layout":"full","_ravennaSourceID":"245754","_onScreen":{"_isEnabled":false,"_classes":"animated fadeIn","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_menuTOC":{"_isEnabled":false},"_courseProgress":{"_isEnabled":true},"_search":{"_isEnabled":false,"keywords":""},"instruction":"","_attempts":1,"_shouldDisplayAttempts":false,"_shouldResetAllAnswers":true,"_questionWeight":1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_recordInteraction":true,"_isQuestionRandom":true,"_isAnswerRandom":false,"placeholder":"Please select an option","_smvWiseScoring":{"ident":"it_245754","outcomes":{"decvar":[{"_varname":"obs0","_maxvalue":2,"title":"Options matched to the correct selection."},{"_varname":"status","_maxvalue":0,"title":"status"}],"interpretvar":[{"_varname":"obs0","_view":"All","interpret":"Click on the question mark at the bottom of the item for the correct answer.There is no partial credit."},{"_varname":"status","_view":"All","interpret":"status"}]}},"_items":[{"text":"appropriate for high performance computing applications","_options":[{"text":"cut-through","_isCorrect":true},{"text":"store-and-forward","_isCorrect":false}]},{"text":"forwarding process can begin after receiving the destination address","_options":[{"text":"cut-through","_isCorrect":true},{"text":"store-and-forward","_isCorrect":false}]},{"text":"may forward invalid frames","_options":[{"text":"cut-through","_isCorrect":true},{"text":"store-and-forward","_isCorrect":false}]},{"text":"error checking before forwarding","_options":[{"text":"cut-through","_isCorrect":false},{"text":"store-and-forward","_isCorrect":true}]},{"text":"forwarding process only begins after receiving the entire frame","_options":[{"text":"cut-through","_isCorrect":false},{"text":"store-and-forward","_isCorrect":true}]},{"text":"only forwards valid frames","_options":[{"text":"cut-through","_isCorrect":false},{"text":"store-and-forward","_isCorrect":true}]}],"_feedback":{"title":"","correct":"<p>Options matched to the correct selection.</p><table class='table-feedback'> <tr> <th>cut-through</th><th>store-and-forward</th></tr><tr> <td>appropriate for high performance computing applications</td><td>forwarding process can begin after receiving the destination address</td><td>may forward invalid frames</td></tr><tr> <td>error checking before forwarding</td><td>forwarding process only begins after receiving the entire frame</td><td>only forwards valid frames</td></tr></table>","_incorrect":{"final":"<p>Options matched to the correct selection.</p><table class='table-feedback'> <tr> <th>cut-through</th><th>store-and-forward</th></tr><tr> <td>appropriate for high performance computing applications</td><td>forwarding process can begin after receiving the destination address</td><td>may forward invalid frames</td></tr><tr> <td>error checking before forwarding</td><td>forwarding process only begins after receiving the entire frame</td><td>only forwards valid frames</td></tr></table>","notFinal":""},"_partlyCorrect":{"final":"<p>Options matched to the correct selection.</p><table class='table-feedback'> <tr> <th>cut-through</th><th>store-and-forward</th></tr><tr> <td>appropriate for high performance computing applications</td><td>forwarding process can begin after receiving the destination address</td><td>may forward invalid frames</td></tr><tr> <td>error checking before forwarding</td><td>forwarding process only begins after receiving the entire frame</td><td>only forwards valid frames</td></tr></table>","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Compared with dynamic routes, what are two advantages of using static routes on a router? (Choose two.)</span></p>","_id":"32dfa34200a04790b635c78c260b042c","_parentId":"535d9057e2b04c70af27fe4ce2a8c651","_type":"component","_layout":"full","_ravennaSourceID":"245760","_smvWiseScoring":{"ident":"it_245760","outcomes":{"decvar":[{"_varname":"601446","_maxvalue":1,"title":"correctness of response"},{"_varname":"601447","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"601446","_view":"All","interpret":"1 point for Option 1, Option 20 points for any other option"},{"_varname":"601447","_view":"All","interpret":"Option 1 and Option 2 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"They improve netw​ork security.","_shouldBeSelected":true,"feedback":""},{"text":"They use fewer router resources.","_shouldBeSelected":true,"feedback":""},{"text":"They improve the efficiency of discovering neighboring networks.","_shouldBeSelected":false,"feedback":""},{"text":"They take less time to converge when the network topology changes.","_shouldBeSelected":false,"feedback":""},{"text":"They automatically switch the path to the destination network when the topology changes.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"Static routes are manually configured on a router. Static routes are not automatically updated and must be manually reconfigured if the network topology changes. Thus static routing improves network security because it does not make route updates among neighboring routers. Static routes also improve resource efficiency by using less bandwidth, and no CPU cycles are used to calculate and communicate routes.","_incorrect":{"final":"Static routes are manually configured on a router. Static routes are not automatically updated and must be manually reconfigured if the network topology changes. Thus static routing improves network security because it does not make route updates among neighboring routers. Static routes also improve resource efficiency by using less bandwidth, and no CPU cycles are used to calculate and communicate routes.","notFinal":""},"_partlyCorrect":{"final":"Static routes are manually configured on a router. Static routes are not automatically updated and must be manually reconfigured if the network topology changes. Thus static routing improves network security because it does not make route updates among neighboring routers. Static routes also improve resource efficiency by using less bandwidth, and no CPU cycles are used to calculate and communicate routes.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i246203v1n1_210745.png\" alt=\"The exhibit shows two PCs called PC A and PC B, two routes called R1 and R2, and two switches. PC A has the address 172.16.1.1/24 and is connected to a switch and into an interface on R1 that has the IP address 172.16.1.254. PC B has the address 172.16.2.1/24 and is connected to a switch that is connected to another interface on R1 with the IP address 172.16.2.254. The serial interface on R1 has the address 172.16.3.1 and is connected to the serial interface on R2 that has the address 172.16.3.2/24. R2 is connected to the internet cloud.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Which command will create a static route on R2 in order to reach PC B?</span></p>","_id":"bff5b29c0c754db090140677f90543b1","_parentId":"ab6b7dba0ae149f382f78a12ecd81333","_type":"component","_layout":"full","_ravennaSourceID":"246203","_smvWiseScoring":{"ident":"it_246203","outcomes":{"decvar":[{"_varname":"595885","_maxvalue":1,"title":"correctness of response"},{"_varname":"595886","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"595885","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"595886","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"R2(config)# <b>ip route 172.16.2.1 255.255.255.0 172.16.3.1</b>","_shouldBeSelected":false,"feedback":""},{"text":"R2(config)# <b>ip route 172.16.2.0 255.255.255.0 172.16.2.254</b>","_shouldBeSelected":false,"feedback":""},{"text":"R2(config)# <b>ip route 172.16.2.0 255.255.255.0 172.16.3.1</b>","_shouldBeSelected":true,"feedback":""},{"text":"R2(config)# <b>ip route 172.16.3.0 255.255.255.0 172.16.2.254</b>","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The correct syntax is:<br />router(config)# <b>ip route</b> <i>destination-network destination-mask </i>{<i>next-hop-ip-address | exit-interface</i>}<br />If the local exit interface instead of the next-hop IP address is used then the route will be displayed as a directly connected route instead of a static route in the routing table. Because the network to be reached is 172.16.2.0 and the next-hop IP address is 172.16.3.1, the command is R2(config<b>)</b># <b>ip route 172.16.2.0 255.255.255.0 172.16.3.1</b>","_incorrect":{"final":"The correct syntax is:<br />router(config)# <b>ip route</b> <i>destination-network destination-mask </i>{<i>next-hop-ip-address | exit-interface</i>}<br />If the local exit interface instead of the next-hop IP address is used then the route will be displayed as a directly connected route instead of a static route in the routing table. Because the network to be reached is 172.16.2.0 and the next-hop IP address is 172.16.3.1, the command is R2(config<b>)</b># <b>ip route 172.16.2.0 255.255.255.0 172.16.3.1</b>","notFinal":""},"_partlyCorrect":{"final":"The correct syntax is:<br />router(config)# <b>ip route</b> <i>destination-network destination-mask </i>{<i>next-hop-ip-address | exit-interface</i>}<br />If the local exit interface instead of the next-hop IP address is used then the route will be displayed as a directly connected route instead of a static route in the routing table. Because the network to be reached is 172.16.2.0 and the next-hop IP address is 172.16.3.1, the command is R2(config<b>)</b># <b>ip route 172.16.2.0 255.255.255.0 172.16.3.1</b>","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which statement is correct about how a Layer 2 switch determines how to forward frames?</span></p>","_id":"0d1795f2e9d14c9e9e3f9ba272f76429","_parentId":"d8572e8c8a814480b1b0ff7fa42d44dc","_type":"component","_layout":"full","_ravennaSourceID":"254798","_smvWiseScoring":{"ident":"it_254798","outcomes":{"decvar":[{"_varname":"705384","_maxvalue":1,"title":"correctness of response"},{"_varname":"705385","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"705384","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"705385","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Unicast frames are always forwarded regardless of the destination MAC address.","_shouldBeSelected":false,"feedback":""},{"text":"Only frames with a broadcast destination address are forwarded out all active switch ports.","_shouldBeSelected":false,"feedback":""},{"text":"Cut-through frame forwarding ensures that invalid frames are always dropped.","_shouldBeSelected":false,"feedback":""},{"text":"Frame forwarding decisions are based on MAC address and port mappings in the CAM table.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Cut-through frame forwarding reads up to only the first 22 bytes of a frame, which excludes the frame check sequence and thus invalid frames may be forwarded. In addition to broadcast frames, frames with a destination MAC address that is not in the CAM are also flooded out all active ports. Unicast frames are not always forwarded. Received frames with a destination MAC address that is associated with the switch port on which it is received are not forwarded because the destination exists on the network segment connected to that port.","_incorrect":{"final":"Cut-through frame forwarding reads up to only the first 22 bytes of a frame, which excludes the frame check sequence and thus invalid frames may be forwarded. In addition to broadcast frames, frames with a destination MAC address that is not in the CAM are also flooded out all active ports. Unicast frames are not always forwarded. Received frames with a destination MAC address that is associated with the switch port on which it is received are not forwarded because the destination exists on the network segment connected to that port.","notFinal":""},"_partlyCorrect":{"final":"Cut-through frame forwarding reads up to only the first 22 bytes of a frame, which excludes the frame check sequence and thus invalid frames may be forwarded. In addition to broadcast frames, frames with a destination MAC address that is not in the CAM are also flooded out all active ports. Unicast frames are not always forwarded. Received frames with a destination MAC address that is associated with the switch port on which it is received are not forwarded because the destination exists on the network segment connected to that port.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i255832v1n1_255832.gif\" alt=\"The graphic shows a network of three routers running EIGRP connected as follows: Each router has two neighbors. Routers Branch1 and Branch2 are connected together via Gigabit Ethernet. Router Branch2 is also connected to router R1 via a serial link. Router Branch1 is connected to router R1 via a serial link. There is a LAN off  Branch2 in the 10.10.0.0/16 network. The IP addresses and interfaces of the routers are as follows:  Router Branch2 has a LAN and is connected to Branch1 and R1. Ethernet LAN network:10.10.0.0/16 Ethernet to Branch1: 10.11.0.2/16 Serial to R1: 209.165.201.3/29  Router R1 is connected to Branch1 and Branch2. Serial to Branch2: 209.165.201.2/29 Serial to Branch1: 209.165.200.226/29  Router Branch1 is connected to Branch2 and R1. Ethernet to Branch2: 10.11.0.1/16 Serial to R1: 209.165.200.225/29\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Currently router R1 uses an EIGRP route learned from Branch2 to reach the 10.10.0.0/16 network. Which floating static route would create a backup route to the 10.10.0.0/16 network in the event that the link between R1 and Branch2 goes down?</span></p>","_id":"64179bd4408c4af78f96d97ba8882d59","_parentId":"318e587d84ce4c52b6fa662ec9f2bb3e","_type":"component","_layout":"full","_ravennaSourceID":"255832","_smvWiseScoring":{"ident":"it_255832","outcomes":{"decvar":[{"_varname":"641459","_maxvalue":1,"title":"correctness of response"},{"_varname":"641460","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"641459","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"641460","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"<b>ip route 10.10.0.0 255.255.0.0 Serial 0/0/0 100</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ip route 10.10.0.0 255.255.0.0 209.165.200.226 100</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ip route 10.10.0.0 255.255.0.0 209.165.200.225 100</b>","_shouldBeSelected":true,"feedback":""},{"text":"<b>ip route 10.10.0.0 255.255.0.0 209.165.200.225 50</b>","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"A floating static route needs to have an administrative distance that is greater than the administrative distance of the active route in the routing table. Router R1 is using an EIGRP route which has an administrative distance of 90 to reach the 10.10.0.0/16 network. To be a backup route the floating static route must have an administrative distance greater than 90 and have a next hop address corresponding to the serial interface IP address of Branch1.","_incorrect":{"final":"A floating static route needs to have an administrative distance that is greater than the administrative distance of the active route in the routing table. Router R1 is using an EIGRP route which has an administrative distance of 90 to reach the 10.10.0.0/16 network. To be a backup route the floating static route must have an administrative distance greater than 90 and have a next hop address corresponding to the serial interface IP address of Branch1.","notFinal":""},"_partlyCorrect":{"final":"A floating static route needs to have an administrative distance that is greater than the administrative distance of the active route in the routing table. Router R1 is using an EIGRP route which has an administrative distance of 90 to reach the 10.10.0.0/16 network. To be a backup route the floating static route must have an administrative distance greater than 90 and have a next hop address corresponding to the serial interface IP address of Branch1.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A company security policy requires that all MAC addressing be dynamically learned and added to both the MAC address table and the running configuration on each switch. Which port security configuration will accomplish this?</span></p>","_id":"73644b12da5c4ca7bcf0138456912a7a","_parentId":"1853f69ee8984559b73dc7c2a69ef609","_type":"component","_layout":"full","_ravennaSourceID":"257123","_smvWiseScoring":{"ident":"it_257123","outcomes":{"decvar":[{"_varname":"641854","_maxvalue":1,"title":"correctness of response"},{"_varname":"641855","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"641854","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"641855","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"auto secure MAC addresses","_shouldBeSelected":false,"feedback":""},{"text":"dynamic secure MAC addresses","_shouldBeSelected":false,"feedback":""},{"text":"static secure MAC addresses","_shouldBeSelected":false,"feedback":""},{"text":"sticky secure MAC addresses","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"With sticky secure MAC addressing, the MAC addresses can be either dynamically learned or manually configured and then stored in the address table and added to the running configuration file. In contrast, dynamic secure MAC addressing provides for dynamically learned MAC addressing that is stored only in the address table.","_incorrect":{"final":"With sticky secure MAC addressing, the MAC addresses can be either dynamically learned or manually configured and then stored in the address table and added to the running configuration file. In contrast, dynamic secure MAC addressing provides for dynamically learned MAC addressing that is stored only in the address table.","notFinal":""},"_partlyCorrect":{"final":"With sticky secure MAC addressing, the MAC addresses can be either dynamically learned or manually configured and then stored in the address table and added to the running configuration file. In contrast, dynamic secure MAC addressing provides for dynamically learned MAC addressing that is stored only in the address table.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i258153v1n1_258153.png\" alt=\"The following words are shown: S   10.17.2.0/24 [1/0] via 10.16.2.2   S    0.0.0.0/0 [1/0] via 10.16.2.2   C   10.16.2.0/24 is directly connected, Serial0/0/0   S   10.17.2.0/24 is directly connected, Serial 0/0/0\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Which route was configured as a static route to a specific network using the next-hop address?</span></p>","_id":"83066015106a482f84c30b8a0e5dcb27","_parentId":"f07ed39fb2ca47908080d97152fceed2","_type":"component","_layout":"full","_ravennaSourceID":"258153","_smvWiseScoring":{"ident":"it_258153","outcomes":{"decvar":[{"_varname":"653690","_maxvalue":1,"title":"correctness of response"},{"_varname":"653691","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"653690","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"653691","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"S   10.17.2.0/24 [1/0] via 10.16.2.2","_shouldBeSelected":true,"feedback":""},{"text":"S   0.0.0.0/0 [1/0] via 10.16.2.2","_shouldBeSelected":false,"feedback":""},{"text":"C   10.16.2.0/24 is directly connected, Serial0/0/0","_shouldBeSelected":false,"feedback":""},{"text":"S   10.17.2.0/24 is directly connected, Serial 0/0/0","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The C in a routing table indicates an interface that is up and has an IP address assigned. The S in a routing table signifies that a route was installed using the <b>ip  route</b> command. Two of the routing table entries shown are static routes to a specific destination (the 10.17.2.0 network). The entry that has the S denoting a static route and [1/0] was configured using the next-hop address. The other entry (S 10.17.2.0/24 is directly connected, Serial 0/0/0) is a static route configured using the exit interface. The entry with the 0.0.0.0 route is a default static route which is used to send packets to any destination network that is not specifically listed in the routing table.","_incorrect":{"final":"The C in a routing table indicates an interface that is up and has an IP address assigned. The S in a routing table signifies that a route was installed using the <b>ip  route</b> command. Two of the routing table entries shown are static routes to a specific destination (the 10.17.2.0 network). The entry that has the S denoting a static route and [1/0] was configured using the next-hop address. The other entry (S 10.17.2.0/24 is directly connected, Serial 0/0/0) is a static route configured using the exit interface. The entry with the 0.0.0.0 route is a default static route which is used to send packets to any destination network that is not specifically listed in the routing table.","notFinal":""},"_partlyCorrect":{"final":"The C in a routing table indicates an interface that is up and has an IP address assigned. The S in a routing table signifies that a route was installed using the <b>ip  route</b> command. Two of the routing table entries shown are static routes to a specific destination (the 10.17.2.0 network). The entry that has the S denoting a static route and [1/0] was configured using the next-hop address. The other entry (S 10.17.2.0/24 is directly connected, Serial 0/0/0) is a static route configured using the exit interface. The entry with the 0.0.0.0 route is a default static route which is used to send packets to any destination network that is not specifically listed in the routing table.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i261460v1n1_210867.gif\" alt=\"The graphic shows two routers, R1 and ISP, that are connected together on a WAN link,  and R1 is connected to a LAN segment. R1 is connected to the Ethernet segment on interface G0/0 with IP address 172.16.0.0/16. R1 is connected to the ISP router through interface S0/0/0 and IP address 209.165.200.224 and the ISP router uses interface S0/0/1 and IP address 209.165.200.224.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. R1 was configured with the static route command <b>ip route 209.165.200.224 255.255.255.224 S0/0/0</b> and consequently users on network 172.16.0.0/16 are unable to reach resources on the Internet. How should this static route be changed to allow user traffic from the LAN to reach the Internet?</span></p>","_id":"6c78f38b40f2416588ecce2a4ecc218d","_parentId":"8de17b18a103451aaa8adbd1d87806d7","_type":"component","_layout":"full","_ravennaSourceID":"261460","_smvWiseScoring":{"ident":"it_261460","outcomes":{"decvar":[{"_varname":"641230","_maxvalue":1,"title":"correctness of response"},{"_varname":"641231","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"641230","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"641231","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Add the next-hop neighbor address of 209.165.200.226.","_shouldBeSelected":false,"feedback":""},{"text":"Change the exit interface to S0/0/1.","_shouldBeSelected":false,"feedback":""},{"text":"Change the destination network and mask to 0.0.0.0 0.0.0.0.","_shouldBeSelected":true,"feedback":""},{"text":"Add an administrative distance of 254.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The static route on R1 has been incorrectly configured with the wrong destination network and mask. The correct destination network and mask is 0.0.0.0 0.0.0.0.","_incorrect":{"final":"The static route on R1 has been incorrectly configured with the wrong destination network and mask. The correct destination network and mask is 0.0.0.0 0.0.0.0.","notFinal":""},"_partlyCorrect":{"final":"The static route on R1 has been incorrectly configured with the wrong destination network and mask. The correct destination network and mask is 0.0.0.0 0.0.0.0.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i261492v1n1_210868.gif\" alt=\"The graphic shows two routers, R1 and ISP, that are connected together on two WAN links.  On the first WAN link, R1 connects to the ISP router through interface S0/0/0 and IP address 192.168.0.33/30, and the ISP router uses interface S0/0/0 and IP address 192.168.0.33/30. On the second WAN link R1 is connects to the ISP router through interface S0/0/1 and IP address 192.168.0.37/30,  and the ISP router uses interface S0/0/1 and IP address 192.168.0.38/30. OSPF is running as the routing protocol across the WAN link 192.168.0.32/30.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Router R1 has an OSPF neighbor relationship with the ISP router over the 192.168.0.32 network. The 192.168.0.36 network link should serve as a backup when the OSPF link goes down. The floating static route command <b>ip route 0.0.0.0 0.0.0.0 S0/0/1 100</b> was issued on R1 and now traffic is using the backup link even when the OSPF link is up and functioning. Which change should be made to the static route command so that traffic will only use the OSPF link when it is up?</span></p>","_id":"83d0d46f05e04ed0ab3ba3c1700fa75b","_parentId":"e18a6f95f8304dd886eda5e9dce6f4f1","_type":"component","_layout":"full","_ravennaSourceID":"261492","_smvWiseScoring":{"ident":"it_261492","outcomes":{"decvar":[{"_varname":"641534","_maxvalue":1,"title":"correctness of response"},{"_varname":"641535","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"641534","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"641535","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Add the next hop neighbor address of 192.168.0.36.","_shouldBeSelected":false,"feedback":""},{"text":"Change the administrative distance to 1.","_shouldBeSelected":false,"feedback":""},{"text":"Change the destination network to 192.168.0.34.","_shouldBeSelected":false,"feedback":""},{"text":"Change the administrative distance to 120.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The problem with the current floating static route is that the administrative distance is set too low. The administrative distance will need to be higher than that of OSPF, which is 110, so that the router will only use the OSPF link when it is up.","_incorrect":{"final":"The problem with the current floating static route is that the administrative distance is set too low. The administrative distance will need to be higher than that of OSPF, which is 110, so that the router will only use the OSPF link when it is up.","notFinal":""},"_partlyCorrect":{"final":"The problem with the current floating static route is that the administrative distance is set too low. The administrative distance will need to be higher than that of OSPF, which is 110, so that the router will only use the OSPF link when it is up.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What IPv6 prefix is designed for link-local communication?</span></p>","_id":"40117836323a42da96ada31c4cbcb121","_parentId":"1b68596dc6cf41e8a693b1ab7cc69d54","_type":"component","_layout":"full","_ravennaSourceID":"267622","_smvWiseScoring":{"ident":"it_267622","outcomes":{"decvar":[{"_varname":"863709","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"863709","_view":"All","interpret":"1 point for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"fe80::/10","_shouldBeSelected":true,"feedback":""},{"text":"fc::/07","_shouldBeSelected":false,"feedback":""},{"text":"2001::/3","_shouldBeSelected":false,"feedback":""},{"text":"ff00::/8","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The prefix fe80::/10 is the IPv6 prefix allocated for link-local addressing. Link-local addresses are not routable and used only for local link communication. The other prefixes listed are as follows:<ul><li>fc::/07 - unique local unicast</li><li>ff::/08 - multicast</li><li>2001::/3 - global unicast</li></ul>","_incorrect":{"final":"The prefix fe80::/10 is the IPv6 prefix allocated for link-local addressing. Link-local addresses are not routable and used only for local link communication. The other prefixes listed are as follows:<ul><li>fc::/07 - unique local unicast</li><li>ff::/08 - multicast</li><li>2001::/3 - global unicast</li></ul>","notFinal":""},"_partlyCorrect":{"final":"The prefix fe80::/10 is the IPv6 prefix allocated for link-local addressing. Link-local addresses are not routable and used only for local link communication. The other prefixes listed are as follows:<ul><li>fc::/07 - unique local unicast</li><li>ff::/08 - multicast</li><li>2001::/3 - global unicast</li></ul>","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A network administrator is configuring a new Cisco switch for remote management access. Which three items must be configured on the switch for the task? (Choose three.)</span></p>","_id":"177489f3abf142779cb5b4c800d1f893","_parentId":"2c792fcab39c408797f182a650fa37c3","_type":"component","_layout":"full","_ravennaSourceID":"268292","_smvWiseScoring":{"ident":"it_268292","outcomes":{"decvar":[{"_varname":"705547","_maxvalue":1,"title":"correctness of response"},{"_varname":"705548","_maxvalue":3,"title":"correctness of response"}],"interpretvar":[{"_varname":"705547","_view":"All","interpret":"1 point for Option 1, Option 3, Option 50 points for any other option"},{"_varname":"705548","_view":"All","interpret":"Option 1, Option 3, and Option 5 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"IP address","_shouldBeSelected":true,"feedback":""},{"text":"VTP domain","_shouldBeSelected":false,"feedback":""},{"text":"Vty lines","_shouldBeSelected":true,"feedback":""},{"text":"Default VLAN","_shouldBeSelected":false,"feedback":""},{"text":"Default gateway","_shouldBeSelected":true,"feedback":""},{"text":"Loopback address","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":3,"_feedback":{"title":"","correct":"To enable the remote management access, the Cisco switch must be configured with an IP address and a default gateway. In addition, vty lines must configured to enable either Telnet or SSH connections. A loopback address, default VLAN, and VTP domain configurations are not necessary for the purpose of  remote switch management.","_incorrect":{"final":"To enable the remote management access, the Cisco switch must be configured with an IP address and a default gateway. In addition, vty lines must configured to enable either Telnet or SSH connections. A loopback address, default VLAN, and VTP domain configurations are not necessary for the purpose of  remote switch management.","notFinal":""},"_partlyCorrect":{"final":"To enable the remote management access, the Cisco switch must be configured with an IP address and a default gateway. In addition, vty lines must configured to enable either Telnet or SSH connections. A loopback address, default VLAN, and VTP domain configurations are not necessary for the purpose of  remote switch management.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">After a host has generated an IPv6 address by using the DHCPv6 or SLAAC process, how does the host verify that the address is unique and therefore usable?</span></p>","_id":"3e79d49b9e884b69a15c096ff5cf8da3","_parentId":"756caf9822c0454d973133772a53e61c","_type":"component","_layout":"full","_ravennaSourceID":"268879","_smvWiseScoring":{"ident":"it_268879","outcomes":{"decvar":[{"_varname":"705694","_maxvalue":1,"title":"correctness of response"},{"_varname":"705695","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"705694","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"705695","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The host sends an ICMPv6 echo request message to the DHCPv6 or SLAAC-learned address and if no reply is returned, the address is considered unique.","_shouldBeSelected":false,"feedback":""},{"text":"The host sends an ICMPv6 neighbor solicitation message to the DHCP or SLAAC-learned address and if no neighbor advertisement is returned, the address is considered unique.","_shouldBeSelected":true,"feedback":""},{"text":"The host checks the local neighbor cache for the learned address and if the address is not cached, it it considered unique.","_shouldBeSelected":false,"feedback":""},{"text":"The host sends an ARP broadcast to the local link and if no hosts send a reply, the address is considered unique.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Before a host can actually configure and use an IPv6 address learned through SLAAC or DHCP, the host must verify that no other host is already using that address. To verify that the address is indeed unique, the host sends an ICMPv6 neighbor solicitation to the address. If no neighbor advertisement is returned, the host considers the address to be unique and configures it on the interface.","_incorrect":{"final":"Before a host can actually configure and use an IPv6 address learned through SLAAC or DHCP, the host must verify that no other host is already using that address. To verify that the address is indeed unique, the host sends an ICMPv6 neighbor solicitation to the address. If no neighbor advertisement is returned, the host considers the address to be unique and configures it on the interface.","notFinal":""},"_partlyCorrect":{"final":"Before a host can actually configure and use an IPv6 address learned through SLAAC or DHCP, the host must verify that no other host is already using that address. To verify that the address is indeed unique, the host sends an ICMPv6 neighbor solicitation to the address. If no neighbor advertisement is returned, the host considers the address to be unique and configures it on the interface.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which statement describes a result after multiple Cisco LAN switches are interconnected?</span></p>","_id":"b35aa1855bdc408a8785ea47bb8318f5","_parentId":"cedb704cdbee480c893a7b64fe2bc1cd","_type":"component","_layout":"full","_ravennaSourceID":"271205","_smvWiseScoring":{"ident":"it_271205","outcomes":{"decvar":[{"_varname":"705358","_maxvalue":1,"title":"correctness of response"},{"_varname":"705359","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"705358","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"705359","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The broadcast domain expands to all switches.","_shouldBeSelected":true,"feedback":""},{"text":"One collision domain exists per switch.","_shouldBeSelected":false,"feedback":""},{"text":"Frame collisions increase on the segments connecting the switches.","_shouldBeSelected":false,"feedback":""},{"text":"There is one broadcast domain and one collision domain per switch.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"In Cisco LAN switches, the microsegmentation makes it possible for each port to represent a separate segment and thus each switch port represents a separate collision domain. This fact will not change when multiple switches are interconnected. However, LAN switches do not filter broadcast frames. A broadcast frame is flooded to all ports. Interconnected switches form one big broadcast domain.","_incorrect":{"final":"In Cisco LAN switches, the microsegmentation makes it possible for each port to represent a separate segment and thus each switch port represents a separate collision domain. This fact will not change when multiple switches are interconnected. However, LAN switches do not filter broadcast frames. A broadcast frame is flooded to all ports. Interconnected switches form one big broadcast domain.","notFinal":""},"_partlyCorrect":{"final":"In Cisco LAN switches, the microsegmentation makes it possible for each port to represent a separate segment and thus each switch port represents a separate collision domain. This fact will not change when multiple switches are interconnected. However, LAN switches do not filter broadcast frames. A broadcast frame is flooded to all ports. Interconnected switches form one big broadcast domain.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A network administrator configures the port security feature on a switch. The security policy specifies that each access port should allow up to two MAC addresses. When the maximum number of MAC addresses is reached, a frame with the unknown source MAC address is dropped and a notification is sent to the syslog server. Which security violation mode should be configured for each access port?</span></p>","_id":"e38a218755594bf28075e3580dbdfd98","_parentId":"0a3d3d0468534403a5df7f34769bc4a8","_type":"component","_layout":"full","_ravennaSourceID":"271241","_smvWiseScoring":{"ident":"it_271241","outcomes":{"decvar":[{"_varname":"673046","_maxvalue":1,"title":"correctness of response"},{"_varname":"673047","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"673046","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"673047","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"restrict","_shouldBeSelected":true,"feedback":""},{"text":"protect","_shouldBeSelected":false,"feedback":""},{"text":"warning","_shouldBeSelected":false,"feedback":""},{"text":"shutdown","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"In port security implementation, an interface can be configured for one of three violation modes:<br /><ul><li>Protect - a port security violation causes the interface to drop packets with unknown source addresses and no notification is sent that a security violation has occurred.</li><li>Restrict - a port security violation causes the interface to drop packets with unknown source addresses and to send a notification that a security violation has occurred.</li><li>Shutdown - a port security violation causes the interface to immediately become error-disabled and turns off the port LED. No notification is sent that a security violation has occurred.</li></ul>","_incorrect":{"final":"In port security implementation, an interface can be configured for one of three violation modes:<br /><ul><li>Protect - a port security violation causes the interface to drop packets with unknown source addresses and no notification is sent that a security violation has occurred.</li><li>Restrict - a port security violation causes the interface to drop packets with unknown source addresses and to send a notification that a security violation has occurred.</li><li>Shutdown - a port security violation causes the interface to immediately become error-disabled and turns off the port LED. No notification is sent that a security violation has occurred.</li></ul>","notFinal":""},"_partlyCorrect":{"final":"In port security implementation, an interface can be configured for one of three violation modes:<br /><ul><li>Protect - a port security violation causes the interface to drop packets with unknown source addresses and no notification is sent that a security violation has occurred.</li><li>Restrict - a port security violation causes the interface to drop packets with unknown source addresses and to send a notification that a security violation has occurred.</li><li>Shutdown - a port security violation causes the interface to immediately become error-disabled and turns off the port LED. No notification is sent that a security violation has occurred.</li></ul>","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">On what switch ports should BPDU guard be enabled to enhance STP stability?</span></p>","_id":"57335a4e4a014c468b40257b089f8b42","_parentId":"25892b6c82f348fd8cd72987c3623730","_type":"component","_layout":"full","_ravennaSourceID":"272076","_smvWiseScoring":{"ident":"it_272076","outcomes":{"decvar":[{"_varname":"674704","_maxvalue":1,"title":"correctness of response"},{"_varname":"674705","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"674704","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"674705","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"all PortFast-enabled ports","_shouldBeSelected":true,"feedback":""},{"text":"only ports that attach to a neighboring switch","_shouldBeSelected":false,"feedback":""},{"text":"all trunk ports that are not root ports","_shouldBeSelected":false,"feedback":""},{"text":"only ports that are elected as designated ports","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"End-user ports should connect only to end-user devices and not to other switches. To prevent a switch from being added to the network on an end-user port, BPDU guard will immediately put the port into the error disabled state if a BPDU is received on that port. However, if PortFast is not configured on an end-user port, BPDU guard is not activated on that port.","_incorrect":{"final":"End-user ports should connect only to end-user devices and not to other switches. To prevent a switch from being added to the network on an end-user port, BPDU guard will immediately put the port into the error disabled state if a BPDU is received on that port. However, if PortFast is not configured on an end-user port, BPDU guard is not activated on that port.","notFinal":""},"_partlyCorrect":{"final":"End-user ports should connect only to end-user devices and not to other switches. To prevent a switch from being added to the network on an end-user port, BPDU guard will immediately put the port into the error disabled state if a BPDU is received on that port. However, if PortFast is not configured on an end-user port, BPDU guard is not activated on that port.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What network attack seeks to create a DoS for clients by preventing them from being able to obtain a DHCP lease?</span></p>","_id":"aa8162e2254e4c4d86c52b375e5d02d5","_parentId":"153598eb7f594451b4b05a469a88373c","_type":"component","_layout":"full","_ravennaSourceID":"272132","_smvWiseScoring":{"ident":"it_272132","outcomes":{"decvar":[{"_varname":"674692","_maxvalue":1,"title":"correctness of response"},{"_varname":"674693","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"674692","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"674693","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"DHCP starvation","_shouldBeSelected":true,"feedback":""},{"text":"DHCP spoofing","_shouldBeSelected":false,"feedback":""},{"text":"IP address spoofing","_shouldBeSelected":false,"feedback":""},{"text":"CAM table attack","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"DCHP starvation attacks are launched by an attacker with the intent to create a DoS for DHCP clients. To accomplish this goal, the attacker uses a tool that sends many DHCPDISCOVER messages in order to lease the entire pool of available IP addresses, thus denying them to legitimate hosts.","_incorrect":{"final":"DCHP starvation attacks are launched by an attacker with the intent to create a DoS for DHCP clients. To accomplish this goal, the attacker uses a tool that sends many DHCPDISCOVER messages in order to lease the entire pool of available IP addresses, thus denying them to legitimate hosts.","notFinal":""},"_partlyCorrect":{"final":"DCHP starvation attacks are launched by an attacker with the intent to create a DoS for DHCP clients. To accomplish this goal, the attacker uses a tool that sends many DHCPDISCOVER messages in order to lease the entire pool of available IP addresses, thus denying them to legitimate hosts.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What is a secure configuration option for remote access to a network device?</span></p>","_id":"e052cf6fc586408ea898329366c4d573","_parentId":"911aaa757ae747908313234d7045d919","_type":"component","_layout":"full","_ravennaSourceID":"272432","_smvWiseScoring":{"ident":"it_272432","outcomes":{"decvar":[{"_varname":"680532","_maxvalue":1,"title":"correctness of response"},{"_varname":"680533","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"680532","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"680533","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Configure SSH.","_shouldBeSelected":true,"feedback":""},{"text":"Configure Telnet.","_shouldBeSelected":false,"feedback":""},{"text":"Configure 802.1x.","_shouldBeSelected":false,"feedback":""},{"text":"Configure an ACL and apply it to the VTY lines.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"SSH is a more secure form of remote access. It requires both a username and password, both of which are encrypted during transmission. 802.1x is a port-based authentication and is not used in securing remote login procedures.Telnet is a protocol used in remote login, but transmits username and password information in plaintext. An ACL configured on the VTY lines can restrict who can remotely log in, but doesn&#39;t secure the remote login transmissions.","_incorrect":{"final":"SSH is a more secure form of remote access. It requires both a username and password, both of which are encrypted during transmission. 802.1x is a port-based authentication and is not used in securing remote login procedures.Telnet is a protocol used in remote login, but transmits username and password information in plaintext. An ACL configured on the VTY lines can restrict who can remotely log in, but doesn&#39;t secure the remote login transmissions.","notFinal":""},"_partlyCorrect":{"final":"SSH is a more secure form of remote access. It requires both a username and password, both of which are encrypted during transmission. 802.1x is a port-based authentication and is not used in securing remote login procedures.Telnet is a protocol used in remote login, but transmits username and password information in plaintext. An ACL configured on the VTY lines can restrict who can remotely log in, but doesn&#39;t secure the remote login transmissions.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which network attack is mitigated by enabling BPDU&#160;guard?</span></p>","_id":"98297c550d6f4f8db3e7ac52880726bb","_parentId":"72475250e56e44918abb3e5e1d04b015","_type":"component","_layout":"full","_ravennaSourceID":"273082","_smvWiseScoring":{"ident":"it_273082","outcomes":{"decvar":[{"_varname":"682528","_maxvalue":1,"title":"correctness of response"},{"_varname":"682529","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"682528","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"682529","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Rogue switches on a network","_shouldBeSelected":true,"feedback":""},{"text":"CAM table overflow attacks","_shouldBeSelected":false,"feedback":""},{"text":"Rogue DHCP servers on a network","_shouldBeSelected":false,"feedback":""},{"text":"MAC address spoofing","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"There are several recommended STP stability mechanisms to help mitigate STP manipulation attacks:<br /><ul><li>PortFast - used to immediately bring an interface configured as an access or trunk port to the forwarding state from a blocking state. Applied to all end-user ports.</li><li>BPDU guard - immediately error-disables a port that receives a BPDU. Applied to all end-user ports.The receipt of BPDUs may be part of an unauthorized attempt to add a switch to the network.</li><li>Root guard - prevents a switch from becoming the root switch. Applied to all ports where the root switch should not be located.</li><li>Loop guard - detects unidirectional links to prevent alternate or root ports from becoming designated ports. Applied to all ports that are or can become nondesignated.</li></ul>","_incorrect":{"final":"There are several recommended STP stability mechanisms to help mitigate STP manipulation attacks:<br /><ul><li>PortFast - used to immediately bring an interface configured as an access or trunk port to the forwarding state from a blocking state. Applied to all end-user ports.</li><li>BPDU guard - immediately error-disables a port that receives a BPDU. Applied to all end-user ports.The receipt of BPDUs may be part of an unauthorized attempt to add a switch to the network.</li><li>Root guard - prevents a switch from becoming the root switch. Applied to all ports where the root switch should not be located.</li><li>Loop guard - detects unidirectional links to prevent alternate or root ports from becoming designated ports. Applied to all ports that are or can become nondesignated.</li></ul>","notFinal":""},"_partlyCorrect":{"final":"There are several recommended STP stability mechanisms to help mitigate STP manipulation attacks:<br /><ul><li>PortFast - used to immediately bring an interface configured as an access or trunk port to the forwarding state from a blocking state. Applied to all end-user ports.</li><li>BPDU guard - immediately error-disables a port that receives a BPDU. Applied to all end-user ports.The receipt of BPDUs may be part of an unauthorized attempt to add a switch to the network.</li><li>Root guard - prevents a switch from becoming the root switch. Applied to all ports where the root switch should not be located.</li><li>Loop guard - detects unidirectional links to prevent alternate or root ports from becoming designated ports. Applied to all ports that are or can become nondesignated.</li></ul>","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What is a drawback of the local database method of securing device access that can be solved by using AAA with centralized servers?</span></p>","_id":"a6f4022b513c4aa18fe47d9c6371bfd7","_parentId":"cedb6c4108ea446db2271d180eda63d3","_type":"component","_layout":"full","_ravennaSourceID":"274525","_smvWiseScoring":{"ident":"it_274525","outcomes":{"decvar":[{"_varname":"682605","_maxvalue":1,"title":"correctness of response"},{"_varname":"682606","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"682605","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"682606","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"There is no ability to provide accountability.","_shouldBeSelected":false,"feedback":""},{"text":"It is very susceptible to brute-force attacks because there is no username.","_shouldBeSelected":false,"feedback":""},{"text":"The passwords can only be stored in plain text in the running configuration.","_shouldBeSelected":false,"feedback":""},{"text":"User accounts must be configured locally on each device, which is an unscalable authentication solution.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The local database method of securing device access utilizes usernames and passwords that are configured locally on the router. This allows administrators to keep track of who logged in to the device and when. The passwords can also be encrypted in the configuration. However, the account information must be configured on each device where that account should have access, making this solution very difficult to scale.","_incorrect":{"final":"The local database method of securing device access utilizes usernames and passwords that are configured locally on the router. This allows administrators to keep track of who logged in to the device and when. The passwords can also be encrypted in the configuration. However, the account information must be configured on each device where that account should have access, making this solution very difficult to scale.","notFinal":""},"_partlyCorrect":{"final":"The local database method of securing device access utilizes usernames and passwords that are configured locally on the router. This allows administrators to keep track of who logged in to the device and when. The passwords can also be encrypted in the configuration. However, the account information must be configured on each device where that account should have access, making this solution very difficult to scale.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">After attaching four PCs to the switch ports, configuring the SSID and setting authentication properties for a small office network, a technician successfully tests the connectivity of all PCs that are connected to the switch and WLAN. A firewall is then configured on the device prior to connecting it to the Internet. What type of network device includes all of the described features?</span></p>","_id":"156131edc74d49319399f226e9c3ae96","_parentId":"ba9848a3aee1451d9472e5a86aade2ea","_type":"component","_layout":"full","_ravennaSourceID":"275562","_smvWiseScoring":{"ident":"it_275562","outcomes":{"decvar":[{"_varname":"853832","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"853832","_view":"All","interpret":"1 point for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"switch","_shouldBeSelected":false,"feedback":""},{"text":"wireless router","_shouldBeSelected":true,"feedback":""},{"text":"firewall appliance","_shouldBeSelected":false,"feedback":""},{"text":"standalone wireless access point","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"A wireless router has a USB port, an Internet port, and four local area network ports. A wireless router can be configured so that connecting devices require password authentication to the SSID of the router. The wireless router can also be configured to permit or deny access to certain applications, and protocols.","_incorrect":{"final":"A wireless router has a USB port, an Internet port, and four local area network ports. A wireless router can be configured so that connecting devices require password authentication to the SSID of the router. The wireless router can also be configured to permit or deny access to certain applications, and protocols.","notFinal":""},"_partlyCorrect":{"final":"A wireless router has a USB port, an Internet port, and four local area network ports. A wireless router can be configured so that connecting devices require password authentication to the SSID of the router. The wireless router can also be configured to permit or deny access to certain applications, and protocols.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i278348v1n2_210868.gif\" alt=\"The graphic shows two routers, R1 and ISP, that are connected together on two WAN links.  On the first WAN link, R1 connects to the ISP router through interface S0/0/0 and IP address 192.168.0.33/30, and the ISP router uses interface S0/0/0 and IP address 192.168.0.33/30. On the second WAN link R1 is connects to the ISP router through interface S0/0/1 and IP address 192.168.0.37/30,  and the ISP router uses interface S0/0/1 and IP address 192.168.0.38/30. OSPF is running as the routing protocol across the WAN link 192.168.0.32/30.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Router R1 has an OSPF neighbor relationship with the ISP router over the 192.168.0.32 network. The 192.168.0.36 network link should serve as a backup when the OSPF link goes down. The floating static route command <b>ip route 0.0.0.0 0.0.0.0 S0/0/1 100</b> was issued on R1 and now traffic is using the backup link even when the OSPF link is up and functioning. Which change should be made to the static route command so that traffic will only use the OSPF link when it is up?</span></p>","_id":"98c8e6ebbbae48eaa895c97ac6ef2535","_parentId":"77a5f13039154030a1bba496a8b78ba0","_type":"component","_layout":"full","_ravennaSourceID":"278348","_smvWiseScoring":{"ident":"it_278348","outcomes":{"decvar":[{"_varname":"862682","_maxvalue":1,"title":"correctness of response"}],"interpretvar":[{"_varname":"862682","_view":"All","interpret":"1 point for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Add the next hop neighbor address of 192.168.0.36.","_shouldBeSelected":false,"feedback":""},{"text":"Change the administrative distance to 1.","_shouldBeSelected":false,"feedback":""},{"text":"Change the destination network to 192.168.0.34.","_shouldBeSelected":false,"feedback":""},{"text":"Change the administrative distance to 120.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The problem with the current floating static route is that the administrative distance is set too low. The administrative distance will need to be higher than that of OSPF, which is 110, so that the router will only use the OSPF link when it is up.","_incorrect":{"final":"The problem with the current floating static route is that the administrative distance is set too low. The administrative distance will need to be higher than that of OSPF, which is 110, so that the router will only use the OSPF link when it is up.","notFinal":""},"_partlyCorrect":{"final":"The problem with the current floating static route is that the administrative distance is set too low. The administrative distance will need to be higher than that of OSPF, which is 110, so that the router will only use the OSPF link when it is up.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which type of static route is configured with a greater administrative distance to provide a backup route to a route learned from a dynamic routing protocol?</span></p>","_id":"a606baa03ece4cd08f6e1c28d5347bc2","_parentId":"82d85e11216b4778a4d210c7849037d4","_type":"component","_layout":"full","_ravennaSourceID":"281296","_smvWiseScoring":{"ident":"it_281296","outcomes":{"decvar":[{"_varname":"707596","_maxvalue":1,"title":"correctness of response"},{"_varname":"707597","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"707596","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"707597","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"standard static route","_shouldBeSelected":false,"feedback":""},{"text":"floating static route","_shouldBeSelected":true,"feedback":""},{"text":"default static route","_shouldBeSelected":false,"feedback":""},{"text":"summary static route","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"There are four basic types of static routes. Floating static routes are backup routes that are placed into the routing table if a primary route is lost. A summary static route aggregates several routes into one, reducing the of the routing table. Standard static routes are manually entered routes into the routing table. Default static routes create a gateway of last resort.","_incorrect":{"final":"There are four basic types of static routes. Floating static routes are backup routes that are placed into the routing table if a primary route is lost. A summary static route aggregates several routes into one, reducing the of the routing table. Standard static routes are manually entered routes into the routing table. Default static routes create a gateway of last resort.","notFinal":""},"_partlyCorrect":{"final":"There are four basic types of static routes. Floating static routes are backup routes that are placed into the routing table if a primary route is lost. A summary static route aggregates several routes into one, reducing the of the routing table. Standard static routes are manually entered routes into the routing table. Default static routes create a gateway of last resort.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i281300v1n1_281300.gif\" alt=\"The graphic shows two routers connected by a WAN link. Each router also is connected to an internal LAN. Router R1 is connected to LAN 2001:db8:1:1000::/64. Router R2 is connected to LAN 2001:db8:1:2000::/64. The WAN link between the two routers is on network 2001:db8:a:1::/64 with R1 having the ::1 interface ID and R2 having the ::2 interface ID. There is also console output from router R1 as follows:  R1(config)# ipv6 route 2001:db8:1:2000::/64 s0/0/1 2001:db8:a:1::2\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. An administrator is attempting to install an IPv6 static route on router R1 to reach the network attached to router R2. After the static route command is entered, connectivity to the network is still failing. What error has been made in the static route configuration?</span></p>","_id":"af7c38e97ec64db2a8cb49037842086a","_parentId":"7967e46e72b34d01ae618a4be44abb51","_type":"component","_layout":"full","_ravennaSourceID":"281300","_smvWiseScoring":{"ident":"it_281300","outcomes":{"decvar":[{"_varname":"708349","_maxvalue":1,"title":"correctness of response"},{"_varname":"708350","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"708349","_view":"All","interpret":"1 point for Option 30 points for any other option"},{"_varname":"708350","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The network prefix is incorrect.","_shouldBeSelected":false,"feedback":""},{"text":"The destination network is incorrect.","_shouldBeSelected":false,"feedback":""},{"text":"The interface is incorrect.","_shouldBeSelected":true,"feedback":""},{"text":"The next hop address is incorrect.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"In this example the interface in the static route is incorrect. The interface should be the exit interface on R1, which is s0/0/0.","_incorrect":{"final":"In this example the interface in the static route is incorrect. The interface should be the exit interface on R1, which is s0/0/0.","notFinal":""},"_partlyCorrect":{"final":"In this example the interface in the static route is incorrect. The interface should be the exit interface on R1, which is s0/0/0.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i282167v1n1_286167.png\" alt=\"The graphic shows partial output of a show running-config command on R1:  R1# show running-config  &lt;output omitted&gt; interface GigabitEthernet0/0  ip address 172.16.1.5 255.255.255.0  ip helper-address 10.10.10.8  duplex auto  speed auto  R1#\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. What can be concluded about the configuration shown on R1?</span></p>","_id":"09895bf4d0ef4c28bb128b1d0101576a","_parentId":"49b9abfbd51047d5bfb7aa749771ad2f","_type":"component","_layout":"full","_ravennaSourceID":"282167","_smvWiseScoring":{"ident":"it_282167","outcomes":{"decvar":[{"_varname":"708335","_maxvalue":1,"title":"correctness of response"},{"_varname":"708336","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"708335","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"708336","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"R1 is operating as a DHCPv4 server.","_shouldBeSelected":false,"feedback":""},{"text":"R1 is configured as a DHCPv4 relay agent.","_shouldBeSelected":true,"feedback":""},{"text":"R1 will broadcast DHCPv4 requests on behalf of local DHCPv4 clients.","_shouldBeSelected":false,"feedback":""},{"text":"R1 will send a message to a local DHCPv4 client to contact a DHCPv4 server at 10.10.10.8.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"When DHCPv4 servers are not installed on the local network segment, the router with connection to the local segment can be configured to relay the DHCPv4 messages on behalf of DHCPv4 clients in order to obtain dynamic IP addresses. The configuration is through the <b>ip helper-address</b> command. When the relay agent is enabled, the router accepts broadcast requests for the DHCPv4 service and then forwards those requests as a unicast to the IPv4 address of the DHCPv4 server.","_incorrect":{"final":"When DHCPv4 servers are not installed on the local network segment, the router with connection to the local segment can be configured to relay the DHCPv4 messages on behalf of DHCPv4 clients in order to obtain dynamic IP addresses. The configuration is through the <b>ip helper-address</b> command. When the relay agent is enabled, the router accepts broadcast requests for the DHCPv4 service and then forwards those requests as a unicast to the IPv4 address of the DHCPv4 server.","notFinal":""},"_partlyCorrect":{"final":"When DHCPv4 servers are not installed on the local network segment, the router with connection to the local segment can be configured to relay the DHCPv4 messages on behalf of DHCPv4 clients in order to obtain dynamic IP addresses. The configuration is through the <b>ip helper-address</b> command. When the relay agent is enabled, the router accepts broadcast requests for the DHCPv4 service and then forwards those requests as a unicast to the IPv4 address of the DHCPv4 server.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i282171v1n1_282171.png\" alt=\"The graphic shows the following commands issued on router R1:  R1# configure terminal Enter configuration commands, one per line.  End with CNTL/Z. R1(config)# ipv6 unicast-routing R1(config)# ipv6 dhcp pool CORP_LAN  &lt;output omitted&gt;  R1(config)# interface gigabitEthernet 0/0 R1(config-if)# ipv6 address 2001:db8:aaaa:1::1/64 R1(config-if)# ipv6 dhcp server CORP_LAN R1(config-if)# ipv6 nd managed-config-flag R1(config-if)#\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. A network administrator is configuring the router R1 for IPv6 address assignment. Based on the partial configuration, which IPv6 global unicast address assignment scheme does the administrator intend to implement?</span></p>","_id":"7739d4cbd16149ac9f6937d0e7a11f53","_parentId":"82595615b0d340a081c61e75e46d747e","_type":"component","_layout":"full","_ravennaSourceID":"282171","_smvWiseScoring":{"ident":"it_282171","outcomes":{"decvar":[{"_varname":"709717","_maxvalue":1,"title":"correctness of response"},{"_varname":"709718","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"709717","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"709718","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"SLAAC","_shouldBeSelected":false,"feedback":""},{"text":"Stateful","_shouldBeSelected":true,"feedback":""},{"text":"Stateless","_shouldBeSelected":false,"feedback":""},{"text":"Manual configuration","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"IPv6 global unicast addresses can be configured manually or dynamically. To deploy stateful DHCPv6 global unicast address assignment, the command <b>ipv6 nd managed-config-flag</b> is used to inform IPv6 clients to use DHCPv6 servers to receive an IPv6 global unicast address and other configuration information, such as DNS server addresses.","_incorrect":{"final":"IPv6 global unicast addresses can be configured manually or dynamically. To deploy stateful DHCPv6 global unicast address assignment, the command <b>ipv6 nd managed-config-flag</b> is used to inform IPv6 clients to use DHCPv6 servers to receive an IPv6 global unicast address and other configuration information, such as DNS server addresses.","notFinal":""},"_partlyCorrect":{"final":"IPv6 global unicast addresses can be configured manually or dynamically. To deploy stateful DHCPv6 global unicast address assignment, the command <b>ipv6 nd managed-config-flag</b> is used to inform IPv6 clients to use DHCPv6 servers to receive an IPv6 global unicast address and other configuration information, such as DNS server addresses.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A network administrator has configured a router for stateless DHCPv6 operation. However, users report that workstations are not receiving DNS server information. Which two router configuration lines should be verified to ensure that stateless DHCPv6 service is properly configured? (Choose two.)</span></p>","_id":"bbf095fb4b4048f98295efabf086e44d","_parentId":"9bfa377667db4132ab65f373ad91b159","_type":"component","_layout":"full","_ravennaSourceID":"282187","_smvWiseScoring":{"ident":"it_282187","outcomes":{"decvar":[{"_varname":"709725","_maxvalue":1,"title":"correctness of response"},{"_varname":"709726","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"709725","_view":"All","interpret":"1 point for Option 1, Option 40 points for any other option"},{"_varname":"709726","_view":"All","interpret":"Option 1 and Option 4 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The dns-server line is included in the <b>ipv6 dhcp pool</b> section.","_shouldBeSelected":true,"feedback":""},{"text":"The address prefix line is included in the <b>ipv6 dhcp pool</b> section.","_shouldBeSelected":false,"feedback":""},{"text":"The domain-name line is included in the <b>ipv6 dhcp pool</b> section.","_shouldBeSelected":false,"feedback":""},{"text":"The <b>ipv6 nd other-config-flag</b> is entered for the interface that faces the LAN segment.","_shouldBeSelected":true,"feedback":""},{"text":"The <b>ipv6 nd managed-config-flag</b> is entered for the interface that faces the LAN segment.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"To use the stateless DHCPv6 method, the router must inform DHCPv6 clients to configure a SLAAC IPv6 address and contact the DHCPv6 server for additional configuration parameters, such as the DNS server address. This is done through the command <b>ipv6 nd other-config-flag</b> entered at the interface configuration mode. The DNS server address is indicated in the <b>ipv6 dhcp pool</b> configuration.","_incorrect":{"final":"To use the stateless DHCPv6 method, the router must inform DHCPv6 clients to configure a SLAAC IPv6 address and contact the DHCPv6 server for additional configuration parameters, such as the DNS server address. This is done through the command <b>ipv6 nd other-config-flag</b> entered at the interface configuration mode. The DNS server address is indicated in the <b>ipv6 dhcp pool</b> configuration.","notFinal":""},"_partlyCorrect":{"final":"To use the stateless DHCPv6 method, the router must inform DHCPv6 clients to configure a SLAAC IPv6 address and contact the DHCPv6 server for additional configuration parameters, such as the DNS server address. This is done through the command <b>ipv6 nd other-config-flag</b> entered at the interface configuration mode. The DNS server address is indicated in the <b>ipv6 dhcp pool</b> configuration.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i282895v1n1_282895.gif\" alt=\"The graphic shows a network with devices connected as follows: Router R1, interface G0/1 is connected to router R2, interface G0/1. G0/1 on R1 has IP address 10.0.01/30 and G0/1 on R2 has IP address 10.0.0.2/30. The DHCPv4 server is connected to R2 on interface G0/0. R2 interface G0/0 has IP address 10.2.0.254/16 and the DHCPv4 server has IPv4 address 10.2.0.250. The new subnet is connected to router R1 on interface G0/0, which has IP address 10.1.0.254/16.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. A network administrator has added a new subnet to the network and needs hosts on that subnet to receive IPv4 addresses from the DHCPv4 server.<br />What two commands will allow hosts on the new subnet to receive addresses from the DHCP4 server? (Choose two.)</span></p>","_id":"c65a23b0aa7644a2935736f4d86bc543","_parentId":"113075e15fc34c7f8d021128906a25cb","_type":"component","_layout":"full","_ravennaSourceID":"282895","_smvWiseScoring":{"ident":"it_282895","outcomes":{"decvar":[{"_varname":"735450","_maxvalue":1,"title":"correctness of response"},{"_varname":"735451","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"735450","_view":"All","interpret":"1 point for Option 1, Option 20 points for any other option"},{"_varname":"735451","_view":"All","interpret":"Option 1 and Option 2 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"R1(config)# <b>interface G0/0</b>","_shouldBeSelected":true,"feedback":""},{"text":"R1(config-if)# <b>ip helper-address 10.2.0.250</b>","_shouldBeSelected":true,"feedback":""},{"text":"R2(config)# <b>interface G0/0</b>","_shouldBeSelected":false,"feedback":""},{"text":"R2(config-if)# <b>ip helper-address 10.2.0.250</b>","_shouldBeSelected":false,"feedback":""},{"text":"R1(config-if)# <b>ip helper-address 10.1.0.254</b>","_shouldBeSelected":false,"feedback":""},{"text":"R1(config)# <b>interface G0/1</b>","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"The <b>ip helper-address</b> command is used to configure a router to be a DHCPv4 relay. The command should be placed on the interface facing the DHCPv4 clients. When the command is applied on the router interface, the interface will receive DHCPv4 broadcast messages and forward them as unicast to the IP address of the DHCPv4 server.","_incorrect":{"final":"The <b>ip helper-address</b> command is used to configure a router to be a DHCPv4 relay. The command should be placed on the interface facing the DHCPv4 clients. When the command is applied on the router interface, the interface will receive DHCPv4 broadcast messages and forward them as unicast to the IP address of the DHCPv4 server.","notFinal":""},"_partlyCorrect":{"final":"The <b>ip helper-address</b> command is used to configure a router to be a DHCPv4 relay. The command should be placed on the interface facing the DHCPv4 clients. When the command is applied on the router interface, the interface will receive DHCPv4 broadcast messages and forward them as unicast to the IP address of the DHCPv4 server.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i282902v1n1_Routing3.png\" alt=\"The exhibit shows partial output of this router command: R1(config)# do show ip route &lt;output omitted&gt;  Gateway of last resort is 0.0.0.0 to network 0.0.0.0  10.0.0.0/8 is variably subnetted, 2 subnets, 2 masks C 10.0.0.0/30 is directly connected, Serial0/0/0 L 10.0.0.1/32 is directly connected, Serial0/0/0 172.16.0.0/24 is subnetted, 1 subnets R 172.16.1.0/24 [120/1] via 10.0.0.2, 00:00:04, Serial0/0/0 192.168.10.0/24 is variably subnetted, 2 subnets, 2 masks C 192.168.10.0/24 is directly connected, GigabitEthernet0/1 L 192.168.10.1/32 is directly connected, GigabitEthernet0/1 192.168.11.0/24 is variably subnetted, 2 subnets, 2 masks C 192.168.11.0/24 is directly connected, GigabitEthernet0/0 L 192.168.11.1/32 is directly connected, GigabitEthernet0/0 S* 0.0.0.0/0 is directly connected, Serial0/0/0\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Which static route would an IT technician enter to create a backup route to the 172.16.1.0 network that is only used if the primary RIP learned route fails?</span></p>","_id":"5fe14745561348f6941c1b8070768ca5","_parentId":"121fb146ac7b4b9abaa7eccc997a398d","_type":"component","_layout":"full","_ravennaSourceID":"282902","_smvWiseScoring":{"ident":"it_282902","outcomes":{"decvar":[{"_varname":"711287","_maxvalue":1,"title":"correctness of response"},{"_varname":"711288","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"711287","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"711288","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"<b>ip route 172.16.1.0 255.255.255.0 s0/0/0 91</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ip route 172.16.1.0 255.255.255.0 s0/0/0</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ip route 172.16.1.0 255.255.255.0 s0/0/0 111</b>","_shouldBeSelected":false,"feedback":""},{"text":"<b>ip route 172.16.1.0 255.255.255.0 s0/0/0 121</b>","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"A backup static route is called a floating static route. A floating static route has an administrative distance greater than the administrative distance of another static route or dynamic route.","_incorrect":{"final":"A backup static route is called a floating static route. A floating static route has an administrative distance greater than the administrative distance of another static route or dynamic route.","notFinal":""},"_partlyCorrect":{"final":"A backup static route is called a floating static route. A floating static route has an administrative distance greater than the administrative distance of another static route or dynamic route.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i282904v1n1_Routing5.png\" alt=\"The exhibit shows the following router command and some partial output: R1# show ipv6 route  &lt;output omitted&gt;  S ::/0 [1/0] via Serial0/0/0, directly connected C 2001:DB8:CAFE:1::/64 [0/0] via GigabitEthernet0/1, directly connected L 2001:DB8:CAFE:1::1/128 [0/0] via GigabitEthernet0/1, receive C 2001:DB8:CAFE:2::/64 [0/0] via GigabitEthernet0/0, directly connected L 2001:DB8:CAFE:2::1/128 [0/0] via GigabitEthernet0/0, receive C 2001:DB8:CAFE:3::/64 [0/0] via Serial0/0/0, directly connected L 2001:DB8:CAFE:3::1/128 [0/0] via Serial0/0/0, receive S 2001:DB8:CAFE:4::1/128 [1/0] via Serial0/0/0, directly connected L FF00::/8 [0/0] via Null0, receive\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. What will router R1 do with a packet that has a destination IPv6 address of 2001:db8:cafe:5::1?</span></p>","_id":"2e55474563d94d4aa5bf7ebe8a035d7a","_parentId":"3e2b0035d4a9466bb9c5017684f6df1f","_type":"component","_layout":"full","_ravennaSourceID":"282904","_smvWiseScoring":{"ident":"it_282904","outcomes":{"decvar":[{"_varname":"711289","_maxvalue":1,"title":"correctness of response"},{"_varname":"711290","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"711289","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"711290","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"drop the packet","_shouldBeSelected":false,"feedback":""},{"text":"forward the packet out GigabitEthernet0/1","_shouldBeSelected":false,"feedback":""},{"text":"forward the packet out GigabitEthernet0/0","_shouldBeSelected":false,"feedback":""},{"text":"forward the packet out Serial0/0/0","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The route ::/0 is the compressed form of the 0000:0000:0000:0000:0000:0000:0000:0000/0 default route. The default route is used if a more specific route is not found in the routing table.","_incorrect":{"final":"The route ::/0 is the compressed form of the 0000:0000:0000:0000:0000:0000:0000:0000/0 default route. The default route is used if a more specific route is not found in the routing table.","notFinal":""},"_partlyCorrect":{"final":"The route ::/0 is the compressed form of the 0000:0000:0000:0000:0000:0000:0000:0000/0 default route. The default route is used if a more specific route is not found in the routing table.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_id":"3db782fab09645c8ac81182e5bdaf289","_parentId":"8fbd3ba56a8642bb804caba941e0545b","_type":"component","_component":"objectMatching","_classes":"","_layout":"full","title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Match the link state to the interface and protocol status. </span></p>","instruction":"","_attempts":1,"_isRandom":true,"_shouldDisplayAttempts":false,"_shouldResetAllAnswers":true,"_questionWeight":1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_recordInteraction":true,"_isQuestionRandom":true,"_isAnswerRandom":false,"_categoryTitle":"Categories:","_optionTitle":"Options:","_defaultAnswerBGColor":"#F2F2F2","placeholder":"Please select an option","_ravennaSourceID":"283355","_smvWiseScoring":{"ident":"it_283355","outcomes":{"decvar":[{"_varname":"obs0","_maxvalue":2,"title":"Options matched to the correct selection."},{"_varname":"status","_maxvalue":0,"title":"status"}],"interpretvar":[{"_varname":"obs0","_view":"All","interpret":"Click on the question mark at the bottom of the item for the correct answer.There is no partial credit."},{"_varname":"status","_view":"All","interpret":"status"}]}},"_items":[{"question":"Disabled","answer":"administratively down","questionBGColor":"#FDE2A6"},{"question":"Layer 1 problem","answer":"down/down","questionBGColor":"#FDE4F9"},{"question":"Layer 2 problem","answer":"up/down","questionBGColor":"#CAB5E6"},{"question":"Operational","answer":"up/up","questionBGColor":"#B0F7C9"}],"_feedback":{"title":"","correct":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Disabled</td><td>administratively down</td></tr><tr> <td>Layer 1 problem</td><td>down/down</td></tr><tr> <td>Layer 2 problem</td><td>up/down</td></tr><tr> <td>operational</td><td>up/up</td></tr></table>","_incorrect":{"final":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Disabled</td><td>administratively down</td></tr><tr> <td>Layer 1 problem</td><td>down/down</td></tr><tr> <td>Layer 2 problem</td><td>up/down</td></tr><tr> <td>operational</td><td>up/up</td></tr></table>","notFinal":""},"_partlyCorrect":{"final":"<p>Place the options in the following order:</p><table class='table-feedback'><tr> <td>Disabled</td><td>administratively down</td></tr><tr> <td>Layer 1 problem</td><td>down/down</td></tr><tr> <td>Layer 2 problem</td><td>up/down</td></tr><tr> <td>operational</td><td>up/up</td></tr></table>","notFinal":""}},"_comment":"","_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""},"_pageLevelProgress":{"_isEnabled":true},"_menuTOC":{"_isEnabled":false},"_courseProgress":{"_isEnabled":true}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i283559v1n1_283559.png\" alt=\"The exhibit has two switches connected through Fa0/4 ports on each switch. The left switch is labeled SW-A and has hosts A, B, and C connected. The right switch is labeled SW-B and has hosts D, E, F, and G connected. VLAN membership is as follows: VLAN 1 Hosts A, C, D, F VLAN 2 Hosts B, E, G\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Which three hosts will receive ARP requests from host A, assuming that port Fa0/4 on both switches is configured to carry traffic for multiple VLANs? (Choose three.)</span></p>","_id":"2664ea1637d04bd9ad556c53e99fa3b8","_parentId":"c83bb0f6c877434285a9e4178f510cbd","_type":"component","_layout":"full","_ravennaSourceID":"283559","_smvWiseScoring":{"ident":"it_283559","outcomes":{"decvar":[{"_varname":"715212","_maxvalue":1,"title":"correctness of response"},{"_varname":"715213","_maxvalue":3,"title":"correctness of response"}],"interpretvar":[{"_varname":"715212","_view":"All","interpret":"1 point for Option 2, Option 3, Option 50 points for any other option"},{"_varname":"715213","_view":"All","interpret":"Option 2, Option 3, and Option 5 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"host B","_shouldBeSelected":false,"feedback":""},{"text":"host C","_shouldBeSelected":true,"feedback":""},{"text":"host D","_shouldBeSelected":true,"feedback":""},{"text":"host E","_shouldBeSelected":false,"feedback":""},{"text":"host F","_shouldBeSelected":true,"feedback":""},{"text":"host G","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":3,"_feedback":{"title":"","correct":"ARP requests are sent out as broadcasts. That means the ARP request is sent only throughout a specific VLAN. VLAN 1 hosts will only hear ARP requests from hosts on VLAN 1. VLAN 2 hosts will only hear ARP requests from hosts on VLAN 2.","_incorrect":{"final":"ARP requests are sent out as broadcasts. That means the ARP request is sent only throughout a specific VLAN. VLAN 1 hosts will only hear ARP requests from hosts on VLAN 1. VLAN 2 hosts will only hear ARP requests from hosts on VLAN 2.","notFinal":""},"_partlyCorrect":{"final":"ARP requests are sent out as broadcasts. That means the ARP request is sent only throughout a specific VLAN. VLAN 1 hosts will only hear ARP requests from hosts on VLAN 1. VLAN 2 hosts will only hear ARP requests from hosts on VLAN 2.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i283563v1n1_283563.png\" alt=\"The exhibit has a host connected to switch Sw1 that connects to router RtrA. Output below the graphic is as follows:  Sw1(config)# interface vlan 99 Sw1(config-if)# ip address 192.168.99.3 255.255.255.0 Sw1(config-if)# no shutdown Sw1# show vlan  VLAN Name Status Ports 1 default active Fa0/1, Fa0/2, Fa0/3, Fa0/4, Fa0/5, Fa0/6, Fa0/7, Fa0/8, Fa0/9, Fa0/10, Fa0/11, Fa0/12, Gi0/1, Gi0/2   1002 fddi-default act/unsup 1003 token-ring-default act/unsup 1004 fddinet-default act/unsup 1005 trnet-default act/unsup  &lt;OUTPUT OMITTED&gt;\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. Based on the exhibited configuration and output, why is VLAN 99 missing?</span></p>","_id":"4e8b0a5095de4857914220c6fb1c47b8","_parentId":"df70bf0da77b4cf5abaa57b9450b028e","_type":"component","_layout":"full","_ravennaSourceID":"283563","_smvWiseScoring":{"ident":"it_283563","outcomes":{"decvar":[{"_varname":"717663","_maxvalue":1,"title":"correctness of response"},{"_varname":"717664","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"717663","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"717664","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"because there is a cabling problem on VLAN 99","_shouldBeSelected":false,"feedback":""},{"text":"because VLAN 99 is not a valid management VLAN","_shouldBeSelected":false,"feedback":""},{"text":"because VLAN 1 is up and there can only be one management VLAN on the switch","_shouldBeSelected":false,"feedback":""},{"text":"because VLAN 99 has not yet been created","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"VLAN 99 is the management VLAN and must be added to the VLAN database before it will appear in the <b>show vlan</b> output. To do so, enter the following commands:<br />Sw1(config)# <b>vlan 99</b><br />Sw1(config-vlan)# <b></b><b>name Management</b><br />SW1(config-vlan)# <b>exit</b>","_incorrect":{"final":"VLAN 99 is the management VLAN and must be added to the VLAN database before it will appear in the <b>show vlan</b> output. To do so, enter the following commands:<br />Sw1(config)# <b>vlan 99</b><br />Sw1(config-vlan)# <b></b><b>name Management</b><br />SW1(config-vlan)# <b>exit</b>","notFinal":""},"_partlyCorrect":{"final":"VLAN 99 is the management VLAN and must be added to the VLAN database before it will appear in the <b>show vlan</b> output. To do so, enter the following commands:<br />Sw1(config)# <b>vlan 99</b><br />Sw1(config-vlan)# <b></b><b>name Management</b><br />SW1(config-vlan)# <b>exit</b>","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i284069v1n1_284069.png\" alt=\"The exhibit shows two multilayer switches connected to each other via PortChannel 1 &amp; PortChannel 2.\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. A network administrator has connected two switches together using EtherChannel technology. If STP is running, what will be the end result?</span></p>","_id":"8f0addd0889b4a10866635d6e0d90244","_parentId":"4ca6372dfaf3408cb1a5122c2c750121","_type":"component","_layout":"full","_ravennaSourceID":"284069","_smvWiseScoring":{"ident":"it_284069","outcomes":{"decvar":[{"_varname":"723977","_maxvalue":1,"title":"correctness of response"},{"_varname":"723978","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"723977","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"723978","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"The switches will load balance and utilize both EtherChannels to forward packets.","_shouldBeSelected":false,"feedback":""},{"text":"STP will block one of the redundant links.","_shouldBeSelected":true,"feedback":""},{"text":"The resulting loop will create a broadcast storm.","_shouldBeSelected":false,"feedback":""},{"text":"Both port channels will shutdown.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Cisco switches support two protocols for negotiating a channel between two switches: LACP and PAgP. PAgP is Cisco-proprietary. In the topology shown, the switches are connected to each other using redundant links. By default, STP is enabled on switch devices. STP will block redundant links to prevent loops.","_incorrect":{"final":"Cisco switches support two protocols for negotiating a channel between two switches: LACP and PAgP. PAgP is Cisco-proprietary. In the topology shown, the switches are connected to each other using redundant links. By default, STP is enabled on switch devices. STP will block redundant links to prevent loops.","notFinal":""},"_partlyCorrect":{"final":"Cisco switches support two protocols for negotiating a channel between two switches: LACP and PAgP. PAgP is Cisco-proprietary. In the topology shown, the switches are connected to each other using redundant links. By default, STP is enabled on switch devices. STP will block redundant links to prevent loops.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i284500v1n2_284500.gif\" alt=\"A WAN cloud has connectivity to two routers labeled R1 and R2. Between the two routers the following words appear:Virtual IP: 10.1.1.254/24. On the next line is Virtual MAC: 00-00-0C-07-AC-01. R1 and R2 connect through an Ethernet connection to SW_A. SW-A also has connections to Host1 and Host2. Host1 has the IP address 10.1.1.3/24. Host2 has the IP address 10.1.1.4/24. Below the network drawing is the following command output:  Line 1: R1# show standby brief Line 2: Interface   Grp   Prio   P   State     Active     Standby     Virtual IP  Line 3: Fa0/0       1     110    P   Active    local      10.1.1.2    10.1.1.254  Line 1: R2# show standby brief Line 2: Interface   Grp   Prio   P   State     Active     Standby     Virtual IP Line 3: Fa0/0       1     100    P   Active    10.1.1.1   local       10.1.1.254  Line 1: C:\\&gt; arp &ndash;a Line 2: Interface:  10.1.1.3 ---- 0x4 Line 3: Internet Address          Physical Address          Type   Line 4: 10.1.1.2                  00-00-0c-ab-c0-d4         dynamic\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. A network administrator configured routers R1 and R2 as part of HSRP group 1. After the routers have been reloaded, a user on Host1 complained of lack of connectivity to the Internet The network administrator issued the <b>show standby brief</b> command on both routers to verify the HSRP operations. In addition, the administrator observed the ARP table on Host1. Which entry should be seen in the ARP table on Host1 in order to gain connectivity to the Internet?</span></p>","_id":"8bea32c3d85649349295710fbc381dfc","_parentId":"971d29318b8b46d38d996183fa176c12","_type":"component","_layout":"full","_ravennaSourceID":"284500","_smvWiseScoring":{"ident":"it_284500","outcomes":{"decvar":[{"_varname":"723997","_maxvalue":1,"title":"correctness of response"},{"_varname":"723998","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"723997","_view":"All","interpret":"1 point for Option 20 points for any other option"},{"_varname":"723998","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"the IP address and the MAC address of R1","_shouldBeSelected":false,"feedback":""},{"text":"the virtual IP address and the virtual MAC address for the HSRP group 1","_shouldBeSelected":true,"feedback":""},{"text":"the virtual IP address of the HSRP group 1 and the MAC address of R1","_shouldBeSelected":false,"feedback":""},{"text":"the virtual IP address of the HSRP group 1 and the MAC address of R2","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Hosts will send an ARP request to the default gateway, which is the virtual IP address. ARP replies from the HSRP routers contain the virtual MAC address. The host ARP tables will contain a mapping of the virtual IP to the virtual MAC.","_incorrect":{"final":"Hosts will send an ARP request to the default gateway, which is the virtual IP address. ARP replies from the HSRP routers contain the virtual MAC address. The host ARP tables will contain a mapping of the virtual IP to the virtual MAC.","notFinal":""},"_partlyCorrect":{"final":"Hosts will send an ARP request to the default gateway, which is the virtual IP address. ARP replies from the HSRP routers contain the virtual MAC address. The host ARP tables will contain a mapping of the virtual IP to the virtual MAC.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which two VTP modes allow for the creation, modification, and deletion of VLANs on the local switch? (Choose two.)</span></p>","_id":"289f7b78eefb4310b568347db5f3f55a","_parentId":"3485012f984444cf8cc96d6660511f06","_type":"component","_layout":"full","_ravennaSourceID":"285281","_smvWiseScoring":{"ident":"it_285281","outcomes":{"decvar":[{"_varname":"724311","_maxvalue":1,"title":"correctness of response"},{"_varname":"735334","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"724311","_view":"All","interpret":"1 point for Option 3, Option 40 points for any other option"},{"_varname":"735334","_view":"All","interpret":"Option 3 and Option 4 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"client","_shouldBeSelected":false,"feedback":""},{"text":"slave","_shouldBeSelected":false,"feedback":""},{"text":"server","_shouldBeSelected":true,"feedback":""},{"text":"transparent","_shouldBeSelected":true,"feedback":""},{"text":"master","_shouldBeSelected":false,"feedback":""},{"text":"distribution","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"The three VTP modes are server, client, and transparent. In server VTP mode, the switch can create, modify, and delete VLANs and send this information on to other switches that are in the same VTP domain. Switches in transparent VTP mode can do the same except that information is not transmitted to other switches.","_incorrect":{"final":"The three VTP modes are server, client, and transparent. In server VTP mode, the switch can create, modify, and delete VLANs and send this information on to other switches that are in the same VTP domain. Switches in transparent VTP mode can do the same except that information is not transmitted to other switches.","notFinal":""},"_partlyCorrect":{"final":"The three VTP modes are server, client, and transparent. In server VTP mode, the switch can create, modify, and delete VLANs and send this information on to other switches that are in the same VTP domain. Switches in transparent VTP mode can do the same except that information is not transmitted to other switches.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A new switch is to be added to an existing network in a remote office. The network administrator does not want the technicians in the remote office to be able to add new VLANs to the switch, but the switch should receive VLAN updates from the VTP domain. Which two steps must be performed to configure VTP on the new switch to meet these conditions? (Choose two.)</span></p>","_id":"55b320e6f41541149d29ce7330c5d72c","_parentId":"a14a768944984a77bddae29d839a875c","_type":"component","_layout":"full","_ravennaSourceID":"285287","_smvWiseScoring":{"ident":"it_285287","outcomes":{"decvar":[{"_varname":"724385","_maxvalue":1,"title":"correctness of response"},{"_varname":"724386","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"724385","_view":"All","interpret":"1 point for Option 2, Option 40 points for any other option"},{"_varname":"724386","_view":"All","interpret":"Option 2 and Option 4 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Configure an IP address on the new switch.","_shouldBeSelected":false,"feedback":""},{"text":"Configure the existing VTP domain name on the new switch.","_shouldBeSelected":true,"feedback":""},{"text":"Configure all ports of both switches to access mode.","_shouldBeSelected":false,"feedback":""},{"text":"Configure the new switch as a VTP client.","_shouldBeSelected":true,"feedback":""},{"text":"Enable VTP pruning.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"Before the switch is put in the correct VTP domain and in client mode, the switch must be connected to any other switch in the VTP domain through a trunk in order to receive/transmit VTP information.","_incorrect":{"final":"Before the switch is put in the correct VTP domain and in client mode, the switch must be connected to any other switch in the VTP domain through a trunk in order to receive/transmit VTP information.","notFinal":""},"_partlyCorrect":{"final":"Before the switch is put in the correct VTP domain and in client mode, the switch must be connected to any other switch in the VTP domain through a trunk in order to receive/transmit VTP information.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><img loading=\"eager\" src=\"en-US/assets/i285296v1n2_285296.png\" alt=\"Switches SW1 and SW2 connect via G0/1 ports as a trunk. SW1 has three hosts attached: Host A in VLAN 1, host C in VLAN 10, and host E in VLAN 30. SW2 has three hosts attached: Host B in VLAN 1, host D in VLAN 10, and host F in VLAN 30. The following output is provided: SW1# show running-config &lt;output omitted&gt; interface g0/1 switchport mode dynamic auto switchport trunk encapsulation dot1q switchport trunk native vlan 666 ___________________________________  SW2# show running-config &lt;output omitted&gt; interface g0/1 switchport mode dynamic auto switchport trunk encapsulation dot1q switchport trunk native vlan 666\" style=\"min-width: 50%;\"></p><p><span style=\"color:#000000\">Refer to the exhibit. The network administrator configures both switches as displayed. However, host C is unable to ping host D and host E is unable to ping host F. What action should the administrator take to enable this communication?</span></p>","_id":"a6fd51bf4e1342768578e49552b79866","_parentId":"c5d952dbd5964978a9c4ff65e1e0458c","_type":"component","_layout":"full","_ravennaSourceID":"285296","_smvWiseScoring":{"ident":"it_285296","outcomes":{"decvar":[{"_varname":"724798","_maxvalue":1,"title":"correctness of response"},{"_varname":"724799","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"724798","_view":"All","interpret":"1 point for Option 40 points for any other option"},{"_varname":"724799","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Include a router in the topology.","_shouldBeSelected":false,"feedback":""},{"text":"Associate hosts A and B with VLAN 10 instead of VLAN 1.","_shouldBeSelected":false,"feedback":""},{"text":"Remove the native VLAN from the trunk.","_shouldBeSelected":false,"feedback":""},{"text":"Configure either trunk port in the dynamic desirable mode.","_shouldBeSelected":true,"feedback":""},{"text":"Add the <b>switchport nonegotiate</b> command to the configuration of SW2.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"If one trunk port is in auto DTP negotiation mode, a trunk will be formed if the adjacent switch port is placed in trunk or dynamic desirable mode.","_incorrect":{"final":"If one trunk port is in auto DTP negotiation mode, a trunk will be formed if the adjacent switch port is placed in trunk or dynamic desirable mode.","notFinal":""},"_partlyCorrect":{"final":"If one trunk port is in auto DTP negotiation mode, a trunk will be formed if the adjacent switch port is placed in trunk or dynamic desirable mode.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which three steps should be taken before moving a Cisco switch to a new VTP management domain? (Choose three.)</span></p>","_id":"984e30fce010472fb18124b9f118749c","_parentId":"51e9c4bd35bc4184a86bfee767cc3f02","_type":"component","_layout":"full","_ravennaSourceID":"285297","_smvWiseScoring":{"ident":"it_285297","outcomes":{"decvar":[{"_varname":"724140","_maxvalue":1,"title":"correctness of response"},{"_varname":"724141","_maxvalue":3,"title":"correctness of response"}],"interpretvar":[{"_varname":"724140","_view":"All","interpret":"1 point for Option 1, Option 5, Option 60 points for any other option"},{"_varname":"724141","_view":"All","interpret":"Option 1, Option 5, and Option 6 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Reboot the switch.","_shouldBeSelected":true,"feedback":""},{"text":"Reset the VTP counters to allow the switch to synchronize with the other switches in the domain.","_shouldBeSelected":false,"feedback":""},{"text":"Download the VTP database from the VTP server in the new domain.","_shouldBeSelected":false,"feedback":""},{"text":"Configure the VTP server in the domain to recognize the BID of the new switch.","_shouldBeSelected":false,"feedback":""},{"text":"Select the correct VTP mode and version.","_shouldBeSelected":true,"feedback":""},{"text":"Configure the switch with the name of the new management domain.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":3,"_feedback":{"title":"","correct":"When adding a new switch to a VTP domain, it is critical to configure the switch with a new domain name, the correct VTP mode, VTP version number, and password. A switch with a higher revision number can propagate invalid VLANs and erase valid VLANs thus preventing connectivity for multiple devices on the valid VLANs.","_incorrect":{"final":"When adding a new switch to a VTP domain, it is critical to configure the switch with a new domain name, the correct VTP mode, VTP version number, and password. A switch with a higher revision number can propagate invalid VLANs and erase valid VLANs thus preventing connectivity for multiple devices on the valid VLANs.","notFinal":""},"_partlyCorrect":{"final":"When adding a new switch to a VTP domain, it is critical to configure the switch with a new domain name, the correct VTP mode, VTP version number, and password. A switch with a higher revision number can propagate invalid VLANs and erase valid VLANs thus preventing connectivity for multiple devices on the valid VLANs.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What are three techniques for mitigating VLAN attacks? (Choose three.)</span></p>","_id":"384369e9556241a9871f612c3490a424","_parentId":"b4409d32b09745f5b29951d71b72bad4","_type":"component","_layout":"full","_ravennaSourceID":"288023","_smvWiseScoring":{"ident":"it_288023","outcomes":{"decvar":[{"_varname":"731376","_maxvalue":1,"title":"correctness of response"},{"_varname":"731377","_maxvalue":3,"title":"correctness of response"}],"interpretvar":[{"_varname":"731376","_view":"All","interpret":"1 point for Option 1, Option 2, Option 30 points for any other option"},{"_varname":"731377","_view":"All","interpret":"Option 1, Option 2, and Option 3 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Disable DTP.","_shouldBeSelected":true,"feedback":""},{"text":"Enable trunking manually.","_shouldBeSelected":true,"feedback":""},{"text":"Set the native VLAN to an unused VLAN.","_shouldBeSelected":true,"feedback":""},{"text":"Enable BPDU guard.","_shouldBeSelected":false,"feedback":""},{"text":"Enable Source Guard.","_shouldBeSelected":false,"feedback":""},{"text":"Use private VLANs.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":3,"_feedback":{"title":"","correct":"Mitigating a VLAN attack can be done by disabling Dynamic Trunking Protocol (DTP), manually setting ports to trunking mode, and by setting the native VLAN of trunk links to VLANs not in use.","_incorrect":{"final":"Mitigating a VLAN attack can be done by disabling Dynamic Trunking Protocol (DTP), manually setting ports to trunking mode, and by setting the native VLAN of trunk links to VLANs not in use.","notFinal":""},"_partlyCorrect":{"final":"Mitigating a VLAN attack can be done by disabling Dynamic Trunking Protocol (DTP), manually setting ports to trunking mode, and by setting the native VLAN of trunk links to VLANs not in use.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What protocol should be disabled to help mitigate VLAN attacks?</span></p>","_id":"3317a28572e04f44bff7aaf46e44540e","_parentId":"07a26b8e420445a5b1bc15ccd464340a","_type":"component","_layout":"full","_ravennaSourceID":"288024","_smvWiseScoring":{"ident":"it_288024","outcomes":{"decvar":[{"_varname":"731378","_maxvalue":1,"title":"correctness of response"},{"_varname":"731379","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"731378","_view":"All","interpret":"1 point for Option 10 points for any other option"},{"_varname":"731379","_view":"All","interpret":"2 points for Option 10 points for any other 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links to a VLAN not in use.","notFinal":""},"_partlyCorrect":{"final":"Mitigating a VLAN hopping attack can be done by disabling Dynamic Trunking Protocol (DTP) and by setting the native VLAN of trunk links to a VLAN not in use.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which two protocols are used to provide server-based AAA authentication? 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Among these 11 channels, the combination of channels 1, 6, and 11 are the only non-overlapping channel combination.","_incorrect":{"final":"In the North America domain, 11 channels are allowed for 2.4GHz wireless networking. Among these 11 channels, the combination of channels 1, 6, and 11 are the only non-overlapping channel combination.","notFinal":""},"_partlyCorrect":{"final":"In the North America domain, 11 channels are allowed for 2.4GHz wireless networking. Among these 11 channels, the combination of channels 1, 6, and 11 are the only non-overlapping channel combination.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A cybersecurity analyst is using the macof tool to evaluate configurations of switches deployed in the backbone network of an organization. Which type of LAN attack is the analyst targeting during this evaluation?</span></p>","_id":"6991656862734d188c1098e97b003685","_parentId":"63f3832adae243e6a0ee2aeef3036afb","_type":"component","_layout":"full","_ravennaSourceID":"349017","_smvWiseScoring":{"ident":"it_349017","outcomes":{"decvar":[{"_varname":"860713","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"860713","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"VLAN hopping","_shouldBeSelected":false,"feedback":""},{"text":"DHCP spoofing","_shouldBeSelected":false,"feedback":""},{"text":"VLAN double-tagging","_shouldBeSelected":false,"feedback":""},{"text":"MAC address table overflow","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Macof is a network attack tool and is mainly used to flood LAN switches with MAC addresses.","_incorrect":{"final":"Macof is a network attack tool and is mainly used to flood LAN switches with MAC addresses.","notFinal":""},"_partlyCorrect":{"final":"Macof is a network attack tool and is mainly used to flood LAN switches with MAC addresses.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What is a method to launch a VLAN hopping attack?</span></p>","_id":"3f5e55e6b0924a98a80a9c7948d4dc01","_parentId":"35952c6523c6475d99f7575a6c22bb39","_type":"component","_layout":"full","_ravennaSourceID":"349019","_smvWiseScoring":{"ident":"it_349019","outcomes":{"decvar":[{"_varname":"860714","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"860714","_view":"All","interpret":"2 points for Option 30 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"flooding the switch with MAC addresses","_shouldBeSelected":false,"feedback":""},{"text":"sending spoofed native VLAN information","_shouldBeSelected":false,"feedback":""},{"text":"introducing a rogue switch and enabling trunking","_shouldBeSelected":true,"feedback":""},{"text":"sending spoofed IP addresses from the attacking host","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"An attacker takes advantage of the automatic trunking port feature enabled by default on most switch ports. One method to launch a VLAN hopping attack is introducing a rogue switch and enabling trunking.","_incorrect":{"final":"An attacker takes advantage of the automatic trunking port feature enabled by default on most switch ports. One method to launch a VLAN hopping attack is introducing a rogue switch and enabling trunking.","notFinal":""},"_partlyCorrect":{"final":"An attacker takes advantage of the automatic trunking port feature enabled by default on most switch ports. One method to launch a VLAN hopping attack is introducing a rogue switch and enabling trunking.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Why is DHCP snooping required when using the Dynamic ARP Inspection feature?</span></p>","_id":"9d533ad72f0545c1a0b7d31a4b222cbf","_parentId":"71ee0d8a4e4a4b5cb383af8a46b1f34f","_type":"component","_layout":"full","_ravennaSourceID":"349085","_smvWiseScoring":{"ident":"it_349085","outcomes":{"decvar":[{"_varname":"860919","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"860919","_view":"All","interpret":"2 points for Option 40 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"It redirects ARP requests to the DHCP server for verification.","_shouldBeSelected":false,"feedback":""},{"text":"It uses the MAC address table to verify the default gateway IP address.","_shouldBeSelected":false,"feedback":""},{"text":"It relies on the settings of trusted and untrusted ports set by DHCP snooping.","_shouldBeSelected":false,"feedback":""},{"text":"It uses the MAC-address-to-IP-address binding database to validate an ARP packet.","_shouldBeSelected":true,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Dynamic ARP Inspection (DAI) requires DHCP snooping. DAI determines the validity of an ARP packet based on a valid MAC-address-to-IP-address binding database that is built by DHCP snooping.","_incorrect":{"final":"Dynamic ARP Inspection (DAI) requires DHCP snooping. DAI determines the validity of an ARP packet based on a valid MAC-address-to-IP-address binding database that is built by DHCP snooping.","notFinal":""},"_partlyCorrect":{"final":"Dynamic ARP Inspection (DAI) requires DHCP snooping. DAI determines the validity of an ARP packet based on a valid MAC-address-to-IP-address binding database that is built by DHCP snooping.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A network administrator uses the <b>spanning-tree portfast bpduguard default</b> global configuration command to enable BPDU guard on a switch. However, BPDU guard is not activated on all access ports. What is the cause of the issue?</span></p>","_id":"841d446645ff4803a3f9c6422ee712cc","_parentId":"f1308e2e1fbd488b826968d542b19231","_type":"component","_layout":"full","_ravennaSourceID":"349109","_smvWiseScoring":{"ident":"it_349109","outcomes":{"decvar":[{"_varname":"861055","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"861055","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Access ports belong to different VLANs.","_shouldBeSelected":false,"feedback":""},{"text":"PortFast is not configured on all access ports.","_shouldBeSelected":true,"feedback":""},{"text":"BPDU guard needs to be activated in the interface configuration command mode.","_shouldBeSelected":false,"feedback":""},{"text":"Access ports configured with root guard cannot be configured with BPDU guard.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"BPDU guard can be enabled globally on all PortFast-enabled ports by using the <b>spanning-tree portfast bpduguard default</b> global configuration command. If PortFast is not configured, then BPDU guard is not activated.","_incorrect":{"final":"BPDU guard can be enabled globally on all PortFast-enabled ports by using the <b>spanning-tree portfast bpduguard default</b> global configuration command. If PortFast is not configured, then BPDU guard is not activated.","notFinal":""},"_partlyCorrect":{"final":"BPDU guard can be enabled globally on all PortFast-enabled ports by using the <b>spanning-tree portfast bpduguard default</b> global configuration command. If PortFast is not configured, then BPDU guard is not activated.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A technician is troubleshooting a slow WLAN and decides to use the split-the-traffic approach. Which two parameters would have to be configured to do this? (Choose two.)</span></p>","_id":"56535cb517894e64ac5e8665787c3767","_parentId":"34b98042b08e4a42a9a161f8f25d0f9a","_type":"component","_layout":"full","_ravennaSourceID":"349377","_smvWiseScoring":{"ident":"it_349377","outcomes":{"decvar":[{"_varname":"861876","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"861876","_view":"All","interpret":"Option 1 and Option 3 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Configure the 2.4 GHz band for basic internet traffic that is not time sensitive.","_shouldBeSelected":true,"feedback":""},{"text":"Configure a common SSID for both split networks.","_shouldBeSelected":false,"feedback":""},{"text":"Configure the 5 GHz band for streaming multimedia and time sensitive traffic.","_shouldBeSelected":true,"feedback":""},{"text":"Configure the security mode to WPA Personal TKIP/AES for both networks.","_shouldBeSelected":false,"feedback":""},{"text":"Configure the security mode to WPA Personal TKIP/AES for one network and WPA2 Personal AES for the other network.","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"A slow performing WLAN can be optimized by using a split-the -traffic approach. The reasons for this are as follows:<br />&bull; The 2.4 GHz band may be suitable for basic Internet traffic that is not time sensitive.<br />&bull; The bandwidth may still be shared with other nearby WLANs.<br />&bull; The 5 GHz band is much less crowded than the 2.4 GHz band making the 5 GHz band a better frequency for streaming multimedia.<br />&bull; The 5 GHz band has more channels; therefore, the channel chosen is likely interference-free.","_incorrect":{"final":"A slow performing WLAN can be optimized by using a split-the -traffic approach. The reasons for this are as follows:<br />&bull; The 2.4 GHz band may be suitable for basic Internet traffic that is not time sensitive.<br />&bull; The bandwidth may still be shared with other nearby WLANs.<br />&bull; The 5 GHz band is much less crowded than the 2.4 GHz band making the 5 GHz band a better frequency for streaming multimedia.<br />&bull; The 5 GHz band has more channels; therefore, the channel chosen is likely interference-free.","notFinal":""},"_partlyCorrect":{"final":"A slow performing WLAN can be optimized by using a split-the -traffic approach. The reasons for this are as follows:<br />&bull; The 2.4 GHz band may be suitable for basic Internet traffic that is not time sensitive.<br />&bull; The bandwidth may still be shared with other nearby WLANs.<br />&bull; The 5 GHz band is much less crowded than the 2.4 GHz band making the 5 GHz band a better frequency for streaming multimedia.<br />&bull; The 5 GHz band has more channels; therefore, the channel chosen is likely interference-free.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">Which two functions are performed by a WLC when using split media access control (MAC)? (Choose two.)</span></p>","_id":"42694379e1934a94808de8cf14a7bcc8","_parentId":"faed8ca8516e463f8d880c376c7ea4ad","_type":"component","_layout":"full","_ravennaSourceID":"349387","_smvWiseScoring":{"ident":"it_349387","outcomes":{"decvar":[{"_varname":"861681","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"861681","_view":"All","interpret":"Option 2 and Option 3 are correct.1 point for each correct option.0 points if more options are selected than required."}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"frame queuing and packet prioritization","_shouldBeSelected":false,"feedback":""},{"text":"association and re-association of roaming clients","_shouldBeSelected":true,"feedback":""},{"text":"frame translation to other protocols","_shouldBeSelected":true,"feedback":""},{"text":"beacons and probe responses","_shouldBeSelected":false,"feedback":""},{"text":"packet acknowledgments and retransmissions","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":2,"_feedback":{"title":"","correct":"A wireless LAN controller (WLC) performs these functions:<br /><ul><li>Authentication</li> <li>Association and re-association of roaming clients</li> <li>Frame translation to other protocols</li><li>Termination of 802.11 traffic on a wired interface</li> </ul>","_incorrect":{"final":"A wireless LAN controller (WLC) performs these functions:<br /><ul><li>Authentication</li> <li>Association and re-association of roaming clients</li> <li>Frame translation to other protocols</li><li>Termination of 802.11 traffic on a wired interface</li> </ul>","notFinal":""},"_partlyCorrect":{"final":"A wireless LAN controller (WLC) performs these functions:<br /><ul><li>Authentication</li> <li>Association and re-association of roaming clients</li> <li>Frame translation to other protocols</li><li>Termination of 802.11 traffic on a wired interface</li> </ul>","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A WLAN engineer deploys a WLC and five wireless APs using the CAPWAP protocol with the DTLS feature to secure the control plane of the network devices. While testing the wireless network, the WLAN engineer notices that data traffic is being exchanged between the WLC and the APs in plain-text and is not being encrypted. What is the most likely reason for this?</span></p>","_id":"e7eb5223bc464cc8b7f844f0ddee8084","_parentId":"9e140fa0a0b14eee8be5f0ae8ae9a6f6","_type":"component","_layout":"full","_ravennaSourceID":"349390","_smvWiseScoring":{"ident":"it_349390","outcomes":{"decvar":[{"_varname":"861682","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"861682","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"Although DTLS is enabled by default to secure the CAPWAP control channel, it is disabled by default for the data channel.","_shouldBeSelected":true,"feedback":""},{"text":"Data encryption requires a DTLS license to be installed on each access point (AP) prior to being enabled on the wireless LAN controller (WLC).","_shouldBeSelected":false,"feedback":""},{"text":"DTLS is a protocol that only provides security between the access point (AP) and the wireless client.","_shouldBeSelected":false,"feedback":""},{"text":"DTLS only provides data security through authentication and does not provide encryption for data moving between a wireless LAN controller (WLC) and an access point (AP).","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Datagram Transport Layer Security (DTLS) is enabled by default to secure the CAPWAP control channel in order to provide control plane privacy and prevent man-in-the-middle (MITM) attacks. Data encryption requires a DTLS license to be installed on the WLAN controller (WLC) prior to being enabled on an AP. When enabled, all WLAN client traffic is encrypted at the AP before being forwarded to the WLC and vice versa.","_incorrect":{"final":"Datagram Transport Layer Security (DTLS) is enabled by default to secure the CAPWAP control channel in order to provide control plane privacy and prevent man-in-the-middle (MITM) attacks. Data encryption requires a DTLS license to be installed on the WLAN controller (WLC) prior to being enabled on an AP. When enabled, all WLAN client traffic is encrypted at the AP before being forwarded to the WLC and vice versa.","notFinal":""},"_partlyCorrect":{"final":"Datagram Transport Layer Security (DTLS) is enabled by default to secure the CAPWAP control channel in order to provide control plane privacy and prevent man-in-the-middle (MITM) attacks. Data encryption requires a DTLS license to be installed on the WLAN controller (WLC) prior to being enabled on an AP. When enabled, all WLAN client traffic is encrypted at the AP before being forwarded to the WLC and vice versa.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">On a Cisco 3504 WLC <b>Summary</b> page (<b>Advanced &gt; Summary</b>), which tab allows a network administrator to configure a particular WLAN with a WPA2 policy?</span></p>","_id":"f005c47fd4c54eb794f531bace42d20f","_parentId":"bcf24fae04b94fb7ad3db26fe96bf33f","_type":"component","_layout":"full","_ravennaSourceID":"349475","_smvWiseScoring":{"ident":"it_349475","outcomes":{"decvar":[{"_varname":"861879","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"861879","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"WLANs","_shouldBeSelected":true,"feedback":""},{"text":"SECURITY","_shouldBeSelected":false,"feedback":""},{"text":"WIRELESS","_shouldBeSelected":false,"feedback":""},{"text":"MANAGEMENT","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"The <b>WLANs</b> tab in the Cisco 3504 WLC <b>Summary</b> page (<b>Advanced &gt; Summary</b>) allows a user to access the configuration of WLANs including the <b>Security, QoS</b>, and <b>Policy-Mapping</b> tabs.","_incorrect":{"final":"The <b>WLANs</b> tab in the Cisco 3504 WLC <b>Summary</b> page (<b>Advanced &gt; Summary</b>) allows a user to access the configuration of WLANs including the <b>Security, QoS</b>, and <b>Policy-Mapping</b> tabs.","notFinal":""},"_partlyCorrect":{"final":"The <b>WLANs</b> tab in the Cisco 3504 WLC <b>Summary</b> page (<b>Advanced &gt; Summary</b>) allows a user to access the configuration of WLANs including the <b>Security, QoS</b>, and <b>Policy-Mapping</b> tabs.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">A network administrator of a small advertising company is configuring WLAN security by using the WPA2 PSK method. Which credential do office users need in order to connect their laptops to the WLAN?</span></p>","_id":"1d409e69dffe415db6c7f48b3f694140","_parentId":"a29c6b6c4d51435e96aa41096abf07f8","_type":"component","_layout":"full","_ravennaSourceID":"349516","_smvWiseScoring":{"ident":"it_349516","outcomes":{"decvar":[{"_varname":"861882","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"861882","_view":"All","interpret":"2 points for Option 20 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"a user passphrase","_shouldBeSelected":false,"feedback":""},{"text":"a key that matches the key on the AP","_shouldBeSelected":true,"feedback":""},{"text":"a username and password configured on the AP","_shouldBeSelected":false,"feedback":""},{"text":"the company username and password through Active Directory service","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"When a WLAN is configured with WPA2 PSK, wireless users must know the pre-shared key to associate and authenticate with the AP.","_incorrect":{"final":"When a WLAN is configured with WPA2 PSK, wireless users must know the pre-shared key to associate and authenticate with the AP.","notFinal":""},"_partlyCorrect":{"final":"When a WLAN is configured with WPA2 PSK, wireless users must know the pre-shared key to associate and authenticate with the AP.","notFinal":""}},"_buttons":{"_submit":{"buttonText":"","ariaLabel":""},"_reset":{"buttonText":"","ariaLabel":""},"_showCorrectAnswer":{"buttonText":"","ariaLabel":""},"_hideCorrectAnswer":{"buttonText":"","ariaLabel":""},"_showFeedback":{"buttonText":"","ariaLabel":""},"remainingAttemptsText":"","remainingAttemptText":""}},{"_component":"mcq","_classes":"background-colour1","_isOptional":false,"_isAvailable":true,"title":"Question","displayTitle":"Question","body":"<p><span style=\"color:#000000\">What is the common term given to SNMP log messages that are generated by network devices and sent to the SNMP server?</span></p>","_id":"1b71bc080aca4de881f6cfd1cbb63b24","_parentId":"cbafa5583b4f457d89b60d4b5c2bd049","_type":"component","_layout":"full","_ravennaSourceID":"349519","_smvWiseScoring":{"ident":"it_349519","outcomes":{"decvar":[{"_varname":"861883","_maxvalue":2,"title":"correctness of response"}],"interpretvar":[{"_varname":"861883","_view":"All","interpret":"2 points for Option 10 points for any other option"}]}},"_onScreen":{"_isEnabled":false,"_classes":"","_percentInviewVertical":50},"_pageLevelProgress":{"_isEnabled":true,"_isCompletionIndicatorEnabled":false},"_courseProgress":{"_isEnabled":true},"instruction":"","_items":[{"text":"traps","_shouldBeSelected":true,"feedback":""},{"text":"auditing","_shouldBeSelected":false,"feedback":""},{"text":"warnings","_shouldBeSelected":false,"feedback":""},{"text":"acknowledgments","_shouldBeSelected":false,"feedback":""}],"_attempts":-1,"_canShowModelAnswer":false,"_canShowFeedback":false,"_canShowMarking":true,"_shouldDisplayAttempts":false,"_isRandom":true,"_recordInteraction":true,"_questionWeight":1,"_selectable":1,"_feedback":{"title":"","correct":"Network devices being monitored by the SNMP protocol can be configured to generate log messages that are sent to an SNMP server. 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