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Juniper networks Certified internet associate.m(jncia-m) Sample Questions:
1. When configuring an IBGP peering session between loopback interfaces, why is the local- address option required?
A) for TCP reachability
B) for VLSM support
C) for loop prevention
D) for MD5 authentication
2. When a router receives a label of zero it will _____.
A) perform a label pop
B) perform a label push
C) send an error message toward the ingress router
D) perform a label swap
3. Assume that a comparable configuration is applied to your peer in AS 11 and that bi- directional TCP reachability has been achieved. Which EBGP configuration will allow the BGP session to become established?
A) routing-options { autonomous-system 64; } protocols {
B) routing-options { autonomous-system 64; } protocols { bgp { autonomous-system 64; } protocols { bgp { group external-peer101 { } protocols { bgp { group external-peer101 { peer-as 101; protocols { bgp { group external-peer101 { peer-as 101; neighbor 10.0.3.6; protocols { bgp { group external-peer101 { peer-as 101; neighbor 10.0.3.6; } bgp { group external-peer101 { peer-as 101; neighbor 10.0.3.6; } } group external-peer101 { peer-as
101; neighbor 10.0.3.6; } } peer-as 101; neighbor 10.0.3.6; } } neighbor 10.0.3.6; } } } }
}
C) routing-options { autonomous-system 64; }
D) routing-options { autonomous-system 11; } protocols { bgp { group external-peer1 { type external; peer-as 11;{ neighbor 10.0.3.6; } }
E) routing-options { autonomous-system 64; } protocols { bgp { group external-peer11 { type external; neighbor 10.0.3.6 { peer-as 11; } } }
F) routing-options { }
G) routing-options { autonomous-system 64; }
H) routing-options { autonomous-system 11; } protocols { bgp { group external-peer11 { type external; peer-as 64;{ neighbor 10.0.3.6; } group external-peer11 { type external; peer- as 64;{ neighbor 10.0.3.6; } } type external; peer-as 64;{ neighbor 10.0.3.6; } } peer-as 64;{ neighbor 10.0.3.6; } } neighbor 10.0.3.6; } }
4. What is the valid IS-IS interface configuration used to form an adjacency on interface fe-
0/0/0.0?
A) fe-0/0/0 { unit 0 { family inet { address 10.222.1.1/30
B) fe-0/0/0 { unit 0 { }
C) fe-0/0/0 { unit 0 { family inet {
D) fe-0/0/0 { unit 0 { family inet {
E) fe-0/0/0 { unit 0 { family inet { address 10.222.1.1/30 } unit 0 { family inet { address
10.222.1.1/30 } family inet { address 10.222.1.1/30 } address 10.222.1.1/30 } lo0 { } lo0 { unit 0 { } lo0 { unit 0 { family inet { lo0 { unit 0 { family inet { address 192.168.16.1/32; lo0 { unit 0 { family inet { address 192.168.16.1/32; } unit 0 { family inet { address
192.168.16.1/32; } } family inet { address 192.168.16.1/32; } } address 192.168.16.1/32;
} } } } }
F) fe-0/0/0 { }
G) fe-0/0/0 { unit 0 { family inet { address 10.222.1.1/30; } unit 0 { family inet { address
10.222.1.1/30; } family iso; unit 0 { family inet { address 10.222.1.1/30; } family iso; } family inet { address 10.222.1.1/30; } family iso; } address 10.222.1.1/30; } family iso; } } family iso; } family iso; } lo0 { } lo0 { unit 0 { } lo0 { unit 0 { family inet { lo0 { unit 0 { family inet { address 192.168.16.1/32; lo0 { unit 0 { family inet { address 192.168.16.1/32; } unit 0
{ family inet { address 192.168.16.1/32; } family iso family inet { address 192.168.16.1/32;
} family iso } address 192.168.16.1/32; } family iso } } } family iso } } family iso } } } } }
H) fe-0/0/0 { unit 0 { family inet { address 10.222.1.1/30; } } lo0 { unit 0 { family inet { address 192.168.16.1/32; } family iso { address 49.0002.0192.0168.0016.00; unit 0 { family inet { address 192.168.16.1/32; } family iso { address 49.0002.0192.0168.0016.00; } family inet { address 192.168.16.1/32; } } } } } family iso { address
49.0002.0192.0168.0016.00; } family iso { address 49.0002.0192.0168.0016.00; } } } } } family iso { address 49.0002.0192.0168.0016.00; } } address 49.0002.0192.0168.0016.00;
} } } } }
I) fe-0/0/0 { unit 0 { family inet { address 10.222.1.1/30;
J) fe-0/0/0 { unit 0 { family inet { address 10.222.1.1/30 }
K) fe-0/0/0 { unit 0 { family inet { address 10.222.1.1/30; } family iso; } lo0 { unit 0 { family inet { address 192.168.16.1/32; } family iso { address 49.0002.0192.0168.0016.00; } }
L) fe-0/0/0 { unit 0 {
M) fe-0/0/0 { }
5. Which command ensures that a configuration file on a backup Routing Engine is identical to the file on the primary Routing Engine?
A) commit check
B) commit and-quit
C) commit synchronize
D) commit confirmed
Solutions:
| Question # 1 Answer: A | Question # 2 Answer: A | Question # 3 Answer: E | Question # 4 Answer: K | Question # 5 Answer: C |






