2. Which path does traffic take from R1 to R5? El - OSPF external type 1, E2 - OSPF external type 2, E - EGP i - IS-IS, L1 IS-IS level-1, L2 - IS-IS level-2, ia - IS-IS inter area * - candidate default, U - per-user static route, o - ODR P - periodic downloaded static route, H NHRP, 1 replicated route, % - next hop override LISP + - Gateway of last resort is not set 10.0.0.0/32 is subnetted, 5 subnets 10.1.1.1 is directly connected, Loopbacko 10.2.2.2 [90/2297856] via 192.168.12.2, 00:37:12, Serial1/3 10.3.3.3 [90/2297856] via 192.168.13.3, 00:37:12, Seriall/1 10.5.5.5 [90/2323456] via 192.168.12.2, 00:37:12, Serial1/3 10.5.5.55 [90/2323456] via 192.168.12.2, 00:37:12, Serial1/3 192.168.12.0/24 is variably subnetted, 2 subnets, 2 masks 192.168.12.0/24 is directly connected, Seriall/3 192.168.12.1/32 is directly connected, serial1/3 192.168.13.0/24 is variably subnetted, 2 subnets, 2 masks 192.168.13.0/24 is directly connected, Seriall/1 192.168.12.1/32 is directly connected, Seriall/1 192.168.16.0/24 is variably subnetted, 2 subnets, 2 masks 192.168.16.0/24 is directly connected, Etherneto 192.168.11.1/32 is directly connected, Etherneto 192.168.123.0/24 [90/2195456] via 192.168.12.2, 00:37:57, seriall/3 R1# A. The traffic goes through R2. -Show ip route command on command promote than check if it passes through R2 B. The traffic goes through R3. C. The traffic is equally load-balanced over R2 and R3. D. The traffic is unequally load-balanced over R2 and R3. U A AA A

Computer Networking: A Top-Down Approach (7th Edition)
7th Edition
ISBN:9780133594140
Author:James Kurose, Keith Ross
Publisher:James Kurose, Keith Ross
Chapter1: Computer Networks And The Internet
Section: Chapter Questions
Problem R1RQ: What is the difference between a host and an end system? List several different types of end...
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2. Which path does traffic take from R1 to R5?
OSPF external type 2, E
IS-IS level-2, ia
OSPF external type 1, E2
i - IS-IS, L1 - IS-IS level-1, L2
* - candidate default, U - per-user static route, o - ODR
P - periodic downloaded static route, H - NHRP, 1
+ - replicated route, * - next hop override
E1
EGP
IS-IS inter area
- LISP
Gateway of last resort is not set
10.0.0.0/32 is subnetted, 5 subnets
10.1.1.1 is directly connected, Loopback0
10.2.2.2 [90/2297856] via 192.168.12.2, 00:37:12, Serial1/3
10.3.3.3 [90/2297856] via 192.168.13.3, 00:37:12, Seriall/1
10.5.5.5 [90/2323456] via 192.168.12.2, 00:37:12, Serial1/3
10.5.5.55 [90/2323456] via 192.168.12.2, 00:37:12, Seriall/3
192.168.12.0/24 is variably subnetted, 2 subnets, 2 masks
192.168.12.0/24 is directly connected, Serial1/3
192.168.12.1/32 is directly connected, Serial1/3
192.168.13.0/24 is variably subnetted, 2 subnets, 2 masks
192.168.13.0/24 is directly connected, Serial1/1
192.168.12.1/32 is directly connected, Serial1/1
192.168.16.0/24 is variably subnetted, 2 subnets, 2 masks
192.168.16.0/24 is directly connected, Etherneto
192.168.11.1/32 is directly connected, Etherneto
192.168.123.0/24 [90/2195456] via 192.168.12.2, 00:37:57, Serial1/3
C
D
R1#
A. The traffic goes through R2.
-Show ip route command on command promote than check if it passes through
R2
B. The traffic goes through R3.
C. The traffic is equally load-balanced over R2 and R3.
D. The traffic is unequally load-balanced over R2 and R3.
U A A A A
Transcribed Image Text:2. Which path does traffic take from R1 to R5? OSPF external type 2, E IS-IS level-2, ia OSPF external type 1, E2 i - IS-IS, L1 - IS-IS level-1, L2 * - candidate default, U - per-user static route, o - ODR P - periodic downloaded static route, H - NHRP, 1 + - replicated route, * - next hop override E1 EGP IS-IS inter area - LISP Gateway of last resort is not set 10.0.0.0/32 is subnetted, 5 subnets 10.1.1.1 is directly connected, Loopback0 10.2.2.2 [90/2297856] via 192.168.12.2, 00:37:12, Serial1/3 10.3.3.3 [90/2297856] via 192.168.13.3, 00:37:12, Seriall/1 10.5.5.5 [90/2323456] via 192.168.12.2, 00:37:12, Serial1/3 10.5.5.55 [90/2323456] via 192.168.12.2, 00:37:12, Seriall/3 192.168.12.0/24 is variably subnetted, 2 subnets, 2 masks 192.168.12.0/24 is directly connected, Serial1/3 192.168.12.1/32 is directly connected, Serial1/3 192.168.13.0/24 is variably subnetted, 2 subnets, 2 masks 192.168.13.0/24 is directly connected, Serial1/1 192.168.12.1/32 is directly connected, Serial1/1 192.168.16.0/24 is variably subnetted, 2 subnets, 2 masks 192.168.16.0/24 is directly connected, Etherneto 192.168.11.1/32 is directly connected, Etherneto 192.168.123.0/24 [90/2195456] via 192.168.12.2, 00:37:57, Serial1/3 C D R1# A. The traffic goes through R2. -Show ip route command on command promote than check if it passes through R2 B. The traffic goes through R3. C. The traffic is equally load-balanced over R2 and R3. D. The traffic is unequally load-balanced over R2 and R3. U A A A A
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