ACME Rocket Sleds is growing, and so is their network. They have determined that they can nolonger continue using static routes and must implement a dynamic routing protocol. They want to have data use multiple paths to the destinations, even if the paths are not equal cost.
Which routing protocol has the ability to do this?()
A. EIGRP
B. OSPF
C. RIPv1
D. RIPv2
E. BGP
F. IS - IS
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Refer to the exhibit. In a redundant hub - and - spoke deployment using EIGRP, what feature can be used to ensure that routers C through F are not used as transit routers for data traveling from router B to network 10.1.1.0? Select the best response.()
A. Use address summarization at routers C, D, E, and F
B. Use the EIGRP Stub featu re on routers C, D, E, and F
C. Use passive - interface on the spoke links in routers A and B
D. Change the administrative distance in routers A and B for routes learned from routers C, D, E,and F
You want the redistributed EIGRP AS 10 routes to have an administrative distance of 121 when they appear as RIP routes in the routing table of A1.Which command should you use on a router to accomplish this goal?()
A. redistribute eigrp 10 metric 121
B. redistribute rip metric 121
C. default - metric 121
D. distance 121 10.1.1.6 0.0.0.0
Refer to the exhibit. A new TAC engineer comes to you for advice. The engineer wants to configure RIPv2 - OSPF two - way redistribution while avoiding routing loops. Which two additio ns to the router B1 configuration should the engineer make?()
A. access - list 40 deny 172.16.1.0 0.0.0.255 access - list 40 permit any router rip redistribute ospf 100 metric 5 distribute- list 40 out ospf 100
B. ip prefix - list rip_routes permit 172. 16.1.16/25 ge 26 le 28 route - map redis - ospf deny 10 match ip address prefix- list rip_routes router rip redistribute ospf 10 route - map redis - ospf subnets
C. ip prefix - list rip - to - ospf permit 10.1.1.8/25 ge 26 le 28 route - map redis - rip deny 20 match i p address prefix - list rip - to - ospf router ospf 100 redistribute rip route - map redis - rip subnets
D. access - list 15 deny 10.1.1.0 0.0.0.63 access - list 15 permit any route - map redis - rip deny 10 match ip address 15 route - map redis - rip permit 20 router os pf 100 redistribute rip route - map redis - rip subnets
A. retransmit - interval
B. de ad - interval
C. stub area
D. virtual link
E. NSSA area
A. Routes learned using any IP routing protocol can only be redistributed into non IP routing protocols.
B. OSPF can import routes learned using EIGRP, RIP, and IS - IS.
C. OSPF routes cannot be exported into EIGRP, RIP, an d IS - IS.
D. At the interdomain level, OSPF cannot import routes learned using BGP.
E. OSPF routes can be exported into BGP.
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