Free Cisco® 350-401 Exam Braindumps (page: 45)

Refer to the exhibit.
An engineer must establish eBGP peering between router R3 and router R4. Both routers should use their loopback interfaces as the BGP router ID.
Which configuration set accomplishes this task?

  1. R3(config)#router bgp 200 R3(config-router)#neighbor 10.4.4.4 remote-as 100 R3(config-router)# neighbor 10.4.4.4 update-source Loopback0 R4(config)#router bgp 100 R4(config-router)#neighbor 10.3.3.3 remote-as 200 R4(config-router)#network 10.3.3.3 update-source Loopback0
  2. R3(config)#router bgp 200 R3(config-router)#neighbor 10.24.24.4 remote-as 100 R3(config-router)#neighbor 10.24.24.4 update-source Loopback0 R4(config)#router bgp 100 R4(config-router)#neighbor 10.24.24.3 remote-as 200 R4(config-router)#neighbor 10.24.24.3 update-source Loopback0
  3. R3(config)#router bgp 200 R3(config-router)#neighbor 10.4.4.4 remote-as 100 R3(config-router)#bgp router-id 10.3.3.3 R4(config)#router bgp 100 R4(config-router)#neighbor 10.3.3.3 remote-as 200 R4(config-router)#bgp router-id 10.4.4.4
  4. R3(config)#router bgp 200 R3(config-router)#neighbor 10.24.24.4 remote-as 100 R3(config-router)#bgp router-id 10.3.3.3 R4(config)#router bgp 100 R4(config-router)#neighbor 10.24.24.3 remote-as 200 R4(config-router)#bgp router-id 10.4.4.4

Answer(s): D



An engineer is configuring GigabitEthernet1/0/0 for VRRP.
When the router has the highest priority in group 5, it must assume the master role.
Which command set should the engineer add to the configuration to accomplish this task? interface GigabitEthernet1/0/0 description To IDF A 38-70-774-10 ip address 172.16.13.2 255.255.255.0

  1. standby 5 ip 172.16.13.254 standby 5 priority 100 standby 5 track 1 decrement 10
  2. standby 5 ip 172.16.13.254 standby 5 priority 100 standby 5 preempt
  3. vrrp 5 ip 172.16.13.254 vrrp 5 priority 100
  4. vrrp 5 ip 172.16.13.254 255.255.255.0 vrrp 5 track 1 decrement 10 vrrp 5 preempt

Answer(s): C



Which two security features are available when implementing NTP? (Choose two.)

  1. encrypted authentication mechanism
  2. symmetric server passwords
  3. clock offset authentication
  4. broadcast association mode
  5. access list-based restriction scheme

Answer(s): A,E



How does the EIGRP metric differ from the OSPF metric?

  1. The EIGRP metric is calculated based on bandwidth only. The OSPF metric is calculated on delay only.
  2. The EIGRP metric is calculated based on delay only. The OSPF metric is calculated on bandwidth and delay.
  3. The EIGRP metric is calculated based on bandwidth and delay. The OSPF metric is calculated on bandwidth only.
  4. The EIGRP metric is calculated based on hop count and bandwidth. The OSPF metric is calculated on bandwidth and delay.

Answer(s): C

Explanation:

By default, EIGRP metric is calculated:
metric = bandwidth + delay
While OSPF is calculated by:
OSPF metric = Reference bandwidth / Interface bandwidth in bps



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