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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 25,2024

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  • Initially, R3 can learn three loopback routes from R1 and 192.168.12.0/24 routes. Now we don't want R3 to learn the route to 192.168.3.0/24 , then we can configure it on R2 as follows: Note that for a link-state routing protocol such as OSPF , the message passed between routers is no longer routing information, but LSA , and the distribution list cannot filter LSAs . Therefore, to deploy the distribution list in the link state protocol, you need to be aware of: Route refresh: advertised and received (old & new) Address family IPv6 Unicast: advertised and received ipv6 MPLS Label capability: advertised and received The comparison principle of OE2 is first compared to the external metric of OE2 . If they are equal, further comparison of the internal metric is the metric to the ASBR . R1(config-if)# ipv6 address 2001:0001::/64 eui-64 The following are the addresses and ports that DHCPv6 might use: Mpls ldp router-id Loopback0 mpls label range 400 499 Metric: 0 696 Tunnel destination 10.1.23.3 IPv6 routing OSPFv3 ( RFC2740 ) Can I handle AS-external-lsa , usually ASBR? Metric: 0 Address After the command is configured, the neighbor R2 receives the prefix and displays the following: R2#sh ipv int f 0/0 Tunnel destination 10.1.23.3 ! Netflow switching Router(config-router)# default-information originate [route-map x] Mpls ip Here we use a access-list 1 match 202.101.100.0/24 network, while it with v4v6-pool this IPv6 address pool to do a bundle Route-map test permit 10 experiment analysis Route-map test permit 10 match interface Serial0/0 router ospf 1 Passive-interface configuration Image MTU is 1500 bytes Default router is FE80::CE00:1AFF:FEC4:10 on FastEthernet0/0 Protocol ID: 0x86DD Experimental needs Problems in the frame relay environment BVI Bridge-Group Virtual Interface Ipv6 local pool dhcppool 2001::/64 64 interface Serial0/0 10.1.12.2 Typical experiment Use a hold-down timer to prevent routing loops Distribute-list prefix-list test out serial 0/0 The BGP4+ configuration of R3 is as follows: Ip route 0.0.0.0 0.0.0.0 202.101.12.2 None uses the distribution list or the access control list deny 521 port. This is a simple method of data offloading and path redundancy using the longest matching principle. The configuration of R2 is as follows: R1 , the subsequent packets should not exceed 1400 bytes. The capture of this process is as follows: Interface Serial0/0 ipv6 enable Unassigned Ipv6 route ::/0 tunnel 0 Experiment 1 TCP The PC will start sending RS with the following message: I1 - ISIS L1, I2 - ISIS L2, IA - ISIS interarea, IS - ISIS summary The uniqueness of the MAC address guarantees the uniqueness of the interface ID . Ipv6 access-list ipv6only-network permit 2001:1::/64 any Ipv6 ospf 1 area 1 CISCO data forwarding method The configuration of A and B is extremely simple, so I won’t say it here. URL representation of the IPv6 address When the router performs a classless route lookup (by default, ip classless ),ccna voice dumps, it does not pay attention to the class of the destination address. It performs the longest match between the destination address and all known routes bit by bit . The next hop (the Next Hop) - if present , it identifies a better than advertised router address of the next hop address. In other words , the next hop address it noted , that in the same measure than - advertised subnet router closer to the destination. If this field is set to all 0s (0.0.0.0), the address of the advertising router is the optimal next hop address. Ipv6 nat v4v6 source 202.101.100.2 2001:2::2 ! Frame-relay map ipv6 2000:12::2 102 broadcast Route summary Se0/1 2001:1::1 Users in the IPv4 single protocol network know that they can access it in the way of 202.101.100.100 . Image Image RIP-2 RIPv2 uses multicast update OSPF and BGP L1 Se0/0 Interface serial0/0 !! Sends a distribution update action to a RIPng interface to perform a distribution list. The interface must be in the in/out direction. The interface is optional. If no interface is configured, the interface takes effect. 110 Overview of tunneling mechanism If ip next-hop and ip next-hop recursive are used in the same sequence of a route-map list , then ip next-hop is valid. If ip next-hop is hanged, ip next-hop recursive is enabled . If ip next-hop recursive and ip next-hop are both hanged, they are thrown to the routing table for processing . Note: A route-map sequence (such as route-map test permit 10 ) allows only one configuration. IPv4-Mapped NAT-PT Interface Serial0/0 ipv6 enable Tunnel source serial 0/0 tunnel destination 10.1.23.3 Ipv6 address 2001:12::2/64 ipv6 ospf 1 area 0 Load balancing mode Next, we R3 up of ping 2222 :: 2 , this action will cause the R3 transmits an ICMPv6 packet, source 2000: 123 :: 3 , the purpose of 2222 :: 2 , the packet will be sent to R1 , when R1 After receiving, he found that the packet will be forwarded from the interface that received the packet, and the next hop IP is on the same network segment as the interface, proving that the next hop is better than itself (distance from the destination) closer).

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