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Refer to the exhibit.

A company has been running OSPF and EIGRP on two separate portions of the network To allow communication flow between these previously isolated parts of the business the networking team just configured R2 to mutually redistribute routes between EIGRP and OSPF R3 has the OSPF routes in its routing table but R1 is failing to receive EIGRP routes for the link between R2 and R3 Which action must the team take to resolve the issue?

A.

Configure EIGRP on R1

B.

Configure the redistribution statement with the subnets keyword under the R2 OSPF configuration

C.

Configure a virtual link between R1 and R2 to handle traffic without an assigned area

D.

Configure R1 with a static route with the next hop set to R3 with the vrf keyword to avo»d the global routing table

Refer to the exhibit.

A network operator is getting the route for 10.11.11 0/24 from two upstream providers on

#XR3. The network operator must configure #XR3 to force the 10.11.11.0/24 prefix to route via next hop of 10.0.0.9 as primary when available. Which of these can the operator use the routing policy language for, to enforce this traffic forwarding path?

A.

weight of 0 on the prefix coming from 192.168.0.2

B.

lower local preference on the prefix coming from 192.168.0.2

C.

higher local preference on the prefix coming from 192.168.0.1

D.

weight of 100 on the prefix coming from 192.168.0.1

Refer to the exhibit.

The green policy is designed with low delay, and the pink policy is designed with low cost. What is the next hop for node A on its way to node D, with the objective of achieving a low delay?

A.

192.168.3.2

B.

192.168.1.6

C.

192.168.3.6

D.

192. 168.1.2

Refer to the exhibit. After a recent network implementation project, customer A is performing stress testing to verify network redundancy at the branch office connected to R4. When the link from R2 is shut öown as shown, the SLA tracking object fails and the cost of the link between R2 and R4 increases to 100. However, a traceroute operation from a PC in the Branch office shows that traffic to HQ is still routed via R2. Which solution corrects the problem and optimizes traffic flow via R3 without creating operational overhead?

A.

Configure two OSPF processes on R2 and R3 and redistribute traffic between them.

B.

Redistribute routes from BGP to OSPF as type El.

C.

Use multiarea adjacency to extend Area 10 to the link between R2 and R3.

D.

Create a virtual channel from R3 to R4.

Refer to the exhibit.

What is the effect of this configuration?

A.

It sets the keepalive timer to 30 milliseconds and the hold timer to 240 milliseconds.

B.

It sets the keepalive timer to 30 seconds and the hold timer to 240 seconds.

C.

It sets the hold timer to 30 milliseconds and the keepalive timer to 240 milliseconds.

D.

It sets the hold timer to 30 seconds and the keepalive timer to 240 seconds.

Refer to the exhibit.

Which effect of this configuration is true?

A.

It sets the keepalive timer to 30 seconds and the hold timer to 240 seconds.

B.

It sets the keepalive timer to 30 milliseconds and the hold timer to 240 milliseconds

C.

It sets the hold timer to 30 milliseconds and the keepalive timer to 240 milliseconds

D.

It sets the hold timer to 30 seconds and the keepalive timer to 240 seconds

Refer to the exhibit.

All routers in the network are in area 12. with IS-IS running in the default configuration as the IGP To avoid congestion on the link from R1 to R2 the network architect planned for traffic from R1 to R3 to pass through R4 To meet the requirement a network engineer set the metric from R1 to R4 to a cost of 15 but the traffic is still travelling through R2 Which action must the engineer take to resolve the issue?

A.

Change the default metric to 20 on all links and disable wide area metrics

B.

Change the cost on the link from R1 to R2 to 11 and enable narrow metrics

C.

Change the cost on the link from R1 to R4 to 5

D.

Change the IS-IS administrative distance to 10

Refer to the exhibit.

An engineer is troubleshooting connectivity issues on the MPLS core network. A customer connected through R4 cannot reach the OSPF domain on R5. While checking the routing table of R1, the engineer cannot see all the routes from R3 and R5. Which task must the engineer perform so that R4 is able to reach R5?

A.

Enable OSPF peering and configure route redistribution between routers R4 and R1.

B.

Enable route filtering between routers R1 and R3.

C.

Enable MP-BGP peering on routers R1. R3, R4, and R5.

D.

Enable OSPF on the Area-0 routers and configure MP-BGP between routers R1 and R3.

Refer to the exhibit. Unified MPLS is implemented on this network to provide end-to-end services A network engineer noticed that R3 is failing to receive labels from R1 However, R2 is receiving labels from R1 R3 can ping R1 normally Which action resolves the issue?

A.

Add the cdp run command to the link configuration between R1 and R3.

B.

Add the send-label keyword in the R1 neighbor statement for R3.

C.

Configure R1 to run Unified MPLS on both interfaces.

D.

Disable mpls Ip on the link between R1 and R3

Which two statements about mapping multicast IP addresses to MAC addresses are true? (Choose two.)

A.

All mapped multicast MAC addresses begin with 0x0100.5E

B.

The router performs the mapping before it hands the packet off to a switch

C.

All multicast MAC addresses end with 0x0100.5E

D.

The mapping process may generate overlapping addresses, which can cause receivers to receive

unwanted packets

E.

All destination MAC addresses begin with an octet of binary 1s