A.Create an IPv4 tunnel and assign the tunnel IPv6 addresses
B.Create IPv4 interfaces on both ends of the network, and use either static routes or a routingprocess to direct IPv6 packets through those interfaces
C.IPv6 packets cannot be encapsulated with IPv4 headers because the addresses are notcompatible
D.Create IFV6 interfaces on both ends of the network, and use static routes to point the IPv4address to those interfaces
E.Use an IPv6 routing protocol like OSPFv3 and assign IPv4 packets to that process
F.Create an IPv4 tunnel and use the tunnel mode ipv6ip command
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A.show ip route ∣ to tftp://192.168.1.1/route.txt
B.show ip route ∣ tee tftp://192.168.1.1/route.txt
C.show ip route ∣ include tftp://192.168.1.1/route.txt
D.show ip route ft include tJtp://19Z168.1.1/route.txt
E.show ip route ∣ redirect tftp://192.168.1.1/route.txt
A.Link-local address used for next-hop addresses
B.Interface can be added to RIP routing process in either interface configuration mode or in routerconfiguration mode
C.Uses a multicast to send routing updates
D.Use hop count as a metric
E.Distance-vector routing protocol
F.Maximum hop count is 15 with 16 being "unreachable"
A.The default-metric command configured under the appropriate interface
B.The metric parameter in the network command of a routing process
C.The metric parameter in the redistribute command
D.The default-metric command
E.A route-map containing a seed command
F.A route map containing a metric command
A.Designated port
B.Nonswitch port
C.Switch port
D.Nonroot port
E.Nondesignated port
F.Root port
A.show ip eigrp topology
B.show ip eigrp adjacency
C.show ip eigrp routes
D.show ip eigrp database
E.show ip route eigrp
F.show ip eigrp forwarding
A.255.255.255.255
B.224.0.0.6
C.FFFF:FFFF:FFFF:FFFF:FFFF:FFFF:FFF:FFF
D.FF02::10
E.224.0.0.10
F.FF02::5
A.Rl(config-if)#ipv6 default-information originate
B.Rl(config-router)#ipv6 rip 〈process-name〉 default-information only
C.Rl(config)#ipv6 route ::/0 null 0
D.Rl(config-if)#ipv6 rip 〈process-name〉 default-information only
E.Rl(config-router)#ipv6 rip route ;:/0 originate
F.Rl(config-router)#aggregate-address ::/0 summarize-routes
A.Ping 10.1.1.1 Data Pattern M
B.Ping 10.1.1.1 timeout 0
C.Ping 10.1.1.1 size 1500 df-bit
D.Ping 10.1.1.1 source loopback 0
E.Ping 10.1.1.1 size 1500
F.Ping 10.1.1.1 size 1500 Strict
A.RIP route 10.1.2.0/24
B.EIGRP route 10.1.2.0/24
C.RIP route 10.1.0.0/16
D.OSPF route 10.1.0.0/16
E.RIP route 10.0.0.0/16
F.OSPF route 10.1.2.0/24
A.OSPF topology table
B.OSPF interface table
C.OSPF routing information base
D.OSPF link-state database
E.OSPF adjacency table
F.OSPF neighbor table
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Drag and drop each function on the above to the hybrid fiber-coaxial architecture component that itdescribes on the below.
This item contains several questions that you must answer. You can view these questions byclicking on the Questions button to the left. Changing questions can be accomplished by clicking the numbers to the left of each question. In order to complete the questions, you will need to referto the SDM and the topology, neither of which is currently visible.To gain access to either the topology or the SDK click on the button to left side of the screen thatcorresponds to the section you wish to access. When you have finished viewing the topology theSDK you can return to your questions by clicking on the Questions button to the left.Which defined peer IP address an local subnet belong to Crete?()
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cisco ios command to interface dialer 0
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Drag each element of the Cisco IOS Firewall Feature Set from the above and drop onto itsdescription on the below.