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Question # 1



Refer to the exhibit. A network engineer observed congestion between routers R1 and R4, which are connected on a point-to-point link. Two servers that reside on networks on R1 and R4 generate heavy traffic between them with most traffic going from R4 to R1. To improve overall performance, the engineer wants to drop inbound packets that exceed a configured threshold, without disrupting traffic that passes from R4 to R3. Which action must the engineer take to resolve the issue?
A. Implement traffic policing to drop packets that exceed the given threshold
B. Implement FIFO to queue excess traffic for transmission when bandwidth is available
C. Implement traffic shaping to drop excess packets
D. Implement a service policy in the outbound direction on each interface on the link to tag traffic exiting each router.



A.
  Implement traffic policing to drop packets that exceed the given threshold





Question # 2



router(config)# route-map blackhole-trigger
router(config-route-map)# match tag 777
router(config-route-map)# set ip next-hop 10.0.1.1
router(config-route-map)# set origin igp
router{config-route-map)# set community no-export

Refer to the exhibit. EIGRP is running across the core to exchange internal routes, and each router maintains iBGP adjacency with the other routers on the network. An operator has configured static routes on the edge routers R1 and R2 for IP address 10.0.1.1, which is used as a black hole route as shown. Which configuration should the operator implement to the management router to create a route map that will redistribute tagged static routes into BGP and create a static route to blackhole traffic with tag 777 that is destined to the server at 192.168.10.100?

A. router(config)# router bgp 55100
router(config-router)# redistribute static route-map blackhole-trigger
router(config)# ip route 10.0.1.1 255.255.255.255 Null0 tag 777
B. router(config)# router bgp 55100
router(config-router)# redistribute static route-map blackhole-trigger
router(config)# ip route 192.168.10.100 255.255.255.255 Null0 tag 777
C. router(config)# router bgp 55100
router(config-router)# redistribute connected
router(config)# ip route 192.168.10.100 255.255.255.255 tag 777
D. router(config)# router bgp 55100
router(config-router)# redistribute connected route-map blackhole-trigger
router(config)# ip route 192.168.10.100 255.255.255.255 Null0 tag 777



B.
  router(config)# router bgp 55100
router(config-router)# redistribute static route-map blackhole-trigger
router(config)# ip route 192.168.10.100 255.255.255.255 Null0 tag 777





Question # 3



Refer to the exhibit.

A network engineer must configure an LDP neighborship between two newly installed routers that are located in two different offices. Router 1 is the core router in the network and it has already established OSPF adjacency with router 2. On router 1 and router 2. interface fa0/0 is configured for BFD. Which additional configuration must the engineer apply to the two devices to meet the requirement?
A. Router1(config)#int fa0/0 -
Router1(config-if)#mpls ldp autoconfig
Router2(config)#router ospf 1 -
Router2(config-router)#mpls ip
B. Router1(config)#int fa0/0 -
Router1(config-if)#mpls ip -
Router1(config-if)#mpls ldp discovery transport-address interface
Router2(config)#int fa0/0 -
Router2(config-if)#mpls ip -
Router2(config-if)#mpls ldp discovery transport-address interface
C. Route1(config)#int fa0/0 -
Router1(config-if)#mpls ldp autoconfig
Router1(config-if)#mpls ldp discovery interface
Router2(config)#router ospf 1 -
Router2(config-router)#mpls ldp autoconfig
Router2(config-if)#mpls ldp discovery interface
D. Router1(config)#int fa0/0 -
Router1(config-if)#mpls ip -
Router2(config)#router ospf 1 -
Router2(config-router)#mpls ldp autoconfig



D.
  Router1(config)#int fa0/0 -
Router1(config-if)#mpls ip -
Router2(config)#router ospf 1 -
Router2(config-router)#mpls ldp autoconfig





Question # 4



What is the function of Cisco NFV infrastructure platform?
A. It does not have a security audit feature.
B. It does not offer high availability.
C. It offers consistent performance.
D. It offers decentralized logging.



C.
  It offers consistent performance.





Question # 5



Refer to the exhibit.

A network engineer must implement SNMPv3 on a Cisco IOS XR router running BGP. The engineer configures SNMPv3 to use SHA for authentication and AES for privacy on the routers, which are in a different data center in the same exchange as other routers. The engineer must also verify the associated MIB view family name, storage type, and status. Which set of actions meets these requirements?
A. Add configuration snmp-server user UserJustMe GrpMonitoring v3 auth sha AuthPass1 priv 3des 128 PrivPass2 and use show snmp interface to verify the configuration.
B. Add configuration snmp-server user AuthUser group2 remote 10.1.1.1 v3 auth sha and use show snmp mib to verify the configuration.
C. Add configuration snmp-server user AuthUser group2 remote 10.1.1.1 v3 auth sha and use show snmp engineid to verify the configuration.
D. Add configuration snmp-server user UserJustMe GrpMonitoring v3 auth sha AuthPass1 priv aes 128 PrivPass2 and use show snmp view to verify the configuration.



D.
  Add configuration snmp-server user UserJustMe GrpMonitoring v3 auth sha AuthPass1 priv aes 128 PrivPass2 and use show snmp view to verify the configuration.





Question # 6



An engineer must implement QoS to prioritize traffic that requires better service throughout the network. The engineer started by configuring a class map to identify the high-priority traffic. Which additional tasks must the engineer perform to implement the new QoS policy?
A. Attach the class map to a policy map that sets the minimum bandwidth allocated to the classified traffic and designates the action to be taken on the traffic.
B. Attach the class map to a policy map that designates the action to be taken on the classified traffic and then attach the policy map to an interface using a service policy.
C. Attach the class map to a policy map within a VRF to segregate the high-priority traffic and then attach the policy map to an interface in another VRF.
D. Create a route map to manipulate the routes that are entered into the routing table and then attach the route map to an interface using a service policy.



B.
  Attach the class map to a policy map that designates the action to be taken on the classified traffic and then attach the policy map to an interface using a service policy.





Question # 7



How does an untrusted interface at the boundary of an administrative domain handle incoming packets?
A. It remarks all values to a CoS of 0.
B. It forwards only traffic with a DSCP value of 48.
C. It translates the IP precedence value to the corresponding DSCP value.
D. It drops all traffic ingressing the network.



A.
  It remarks all values to a CoS of 0.





Question # 8



A network engineer is testing an automation platform that interacts with Cisco networking devices via NETCONF over SSH. In accordance with internal security requirements: NETCONF sessions are permitted only from trusted sources in the 172.16.20.0/24 subnet. CLI SSH access is permitted from any source.
Which configuration must the engineer apply on R1?
A.

configure terminal
hostname R1
ip domain-name mydomain.com
crypto key generate rsa
ip ssh version 1
access-list 1 permit 172.16.20.0 0.0.0.255
netconf ssh acl 1
line vty 0 4
transport input ssh
end

B.

configure terminal
hostname R1
ip domain-name mydomain.com
crypto key generate rsa
ip ssh version 2
access-list 1 permit 172.16.20.0 0.0.0.255
access-list 1 permit any
netconf ssh
line vty 0 4
access-class 1 in
transport input ssh
end

C.

configure terminal
hostname R1
ip domain-name mydomain.com
crypto key generate rsa
ip ssh version 1
access-list 1 permit 172.16.20.0 0.0.0.255
access-list 2 permit any
netconf ssh
line vty 0 4
access-class 2 in
transport input ssh
end

D.

configure terminal
hostname R1
ip domain-name mydomain.com
crypto key generate rsa
ip ssh version 2
access-list 1 permit 172.16.20.0 0.0.0.255
netconf ssh acl 1
line vty 0 4
transport input ssh
end




D.
  

configure terminal
hostname R1
ip domain-name mydomain.com
crypto key generate rsa
ip ssh version 2
access-list 1 permit 172.16.20.0 0.0.0.255
netconf ssh acl 1
line vty 0 4
transport input ssh
end







Question # 9



Refer to the exhibit. The application server in the data center hosts voice, video, and data applications over the internet. The data applications run more slowly than the voice and video applications. To ensure that all applications run smoothly, the service provider decided to implement a QoS policy on router PER 2 to apply traffic shaping. Which two actions must an engineer take to implement the task? (Choose two.)
A. Configure the scheduling function to handle delayed packets.
B. Enable packet remarking for priority traffic.
C. Configure a queue to buffer excess traffic.
D. Set the token value for secondary traffic.
E. Set a threshold to discard excess traffic.



A.
  Configure the scheduling function to handle delayed packets.





Question # 10



The NOC team must update the BGP forwarding configuration on the network with these requirements:
BGP peers must establish a neighborship with NSF capability and restart the session for the capability to be exchanged after 120 seconds. BGP peers must delete routes after 360 seconds of inactivity.
Which action meets these requirements?
A. Set the BGP restart-time to 120 seconds and the BGP ha-mode sso to 360 seconds.
B. Set the stalepath-time to 120 seconds and the BGP restart-time to 360 seconds.
C. Set the BGP ha-mode sso to 120 seconds and the BGP restart-time to 360 seconds.
D. Set the BGP restart-time to 120 seconds and the stalepath-time to 360 seconds.



D.
  Set the BGP restart-time to 120 seconds and the stalepath-time to 360 seconds.




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Implementing and Operating Cisco Service Provider Network Core Technologies (350-501 SPCOR) Exam Dumps


Exam Code: 350-501
Exam Name: Implementing and Operating Cisco Service Provider Network Core Technologies (350-501 SPCOR)

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