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CCNA Routing And Switching 200-125 Written Dumps

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Exam Code: 200-125

Certification Provider: Cisco

Certification Exam Name:CCNA Routing & Switching

Update Date: Apr 26,2024

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  • # x client host More than 30s has elapsed since the last reachability confirmation was received . Ipv6 unicast-routing Authentication (16 octets) Network 2.2.2.2 0.0.0.0 area 0 FastEthernet0/0 Ip route 10.1.1.0 255.255.255.0 10.1.254.1 Neighbor status tracking Redistribute rip metric 10 subnets distribute-list 1 out rip Version Access-list 1 permit 11.11.11.0 The ethernet , fast ethernet , and serial interfaces of the Cisco 1600 , 1700 , 2500 ,ccna free dumps pdf, and 2600 series routers use fast switching by default . Ipv6 rip 1 default-information only //In interface mode, only the default route is advertised, and other routing information is prohibited. Ipv6 unicast-routing RIP-1 only sends RIPv1 updates Other uses The router performs the next IPv6 forwarding by the router . Unassigned R2(config-router)# redistribute eigrp 100 subnets Ipv6 ospf 1 area 0 Tunnel mode ipv6ip ! Note that at this time, A can actively access B , which means that A can actively ping 2001:2::CA65:6402 this temporary address to achieve the purpose of accessing B. But if we go to clear ipv6 nat translation * on R2 , so 2001:2::CA65:6402 to !! Call ipv6 local pool and set the lifetime Image Access-list 2 permit 10.1.2.0 route-map cisco permit 10 Image Set interface Slot Slot unit 0 VC -1 In R1 the ip route 0.0.0.0 0.0.0.0 null 0 then re-released in a static routing process, but also to Port number 179 Ipv6 unicast-routing The configuration of R3 is as follows (basic configuration): Image 192.168.2.0/24 The verification of Layer 2 and Layer 4 is already robust enough, so IPv6 directly cancels the Layer 3 check of IP . Image Isis circuit-type level-1 interface Loopback0 Configuration command Ipv6 router ospf 1 router-id 4.4.4.4 ::FFFF: 4.4.4.4 Here are a few concepts to make clear: This is not much to say? For PBR , when creating a route-map , it is all permit . R1 goes to ping R4 and can ping . Metric 0, originator 0.0.0.0, path 300, community , extended community Net 49.0002.0000.0000.0004.00 !! NET entity address ! N GRE tunnels also need to manually specify the destination of the tunnel at both ends of the tunnel. Image Configuration example 5 (in the single routing protocol environment - OSPF out direction distribution list) After these packets arrive at R1 , the R1 router supports IPv4 and IPv6, which is a dual-stack router. R1 and R2 establish a tunnel to connect two IPv6 islands that are respectively hanged at R1 and R2 . The original IPv6 packet sent by the PC is added with an IPv4 tunnel header by R1 , forming a message that looks like an IPv4 packet. Thereafter, this message is routed in the IPv4 network and eventually reaches R2 . After receiving the "tunnel packet", R2 removes the IPv4 header of the packet and then restores the original IPv6 packet to the IPv6 network.

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