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Cisco-300-410

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Cisco
300-410
Implementing Cisco
Enterprise Advanced
Routing and Services
(300-410 ENARSI)
Version: Demo
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[ Total Questions: 10]
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Certification Exam
Cisco - 300-410
Exam Topic Breakdown
Exam Topic
Number of Questions
Topic 3 : Exam Pool C
4
Topic 2 : Exam Pool B
4
Topic 1 : Exam Pool A
2
TOTAL
10
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Topic 3, Exam Pool C
Question #:1 - (Exam Topic 3)
An engineer configured VRF-Lite on a router for VRF blue and VRF red. OSPF must be enabled on each VRF
to peer to a directly connected router in each VRF. Which configuration forms OSPF neighbors over the
network 10.10.10.0/28 for VRF blue and 192.168.0.0/30 for VRF red?
A. Option A
B. Option B
C. Option C
D. Option D
Answer: A
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Question #:2 - (Exam Topic 3)
Refer to the exhibit.
A network engineer finds that PC1 is accessing the hotel website to do the booking but fails to make payment.
Which action resolves the issue?
A. Allow stub network 10.10.202.168/30 on router R3 OSPF.
B. Decrease the AD to 5 OSPF route 192.168.94.0 on R1.
C. Increase the AD to 200 of static route 192.168.94.0 on R3.
D. Configure a reverse route on R1 for PC1 172.16.1.0/24.
Answer: A
Question #:3 - (Exam Topic 3)
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Refer to the exhibit. The services at branch B are down. An engineer notices mal rouler A and router B are not
exchanging any routes Which configuration resolves the issue on router B?
A)
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B)
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C)
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D)
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A. Option A
B. Option B
C. Option C
D. Option D
Answer: C
Question #:4 - (Exam Topic 3)
Refer to the exhibit.
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An engineer must configure EIGRP between R1 and R2 with no summary route. Which configuration resolves
the issue?
A)
B)
C)
D)
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A. Option A
B. Option B
C. Option C
D. Option D
Answer: B
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Topic 2, Exam Pool B
Question #:5 - (Exam Topic 2)
Refer to the exhibit.
Which interface configuration must be configured on the HUB router to enable MVPN with mGRE mode?
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A. Option A
B. Option B
C. Option C
D. Option D
Answer: C
Explanation
https://www.cisco.com/c/en/us/td/docs/ios-xml/ios/sec_conn_dmvpn/configuration/15-mt/sec-conn-dmvpn-15-mt-book
Question #:6 - (Exam Topic 2)
Drag and drop the actions from the left into the correct order on the right to configure a policy to avoid
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following packet forwarding based on the normal routing path.
Answer:
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Explanation
https://community.cisco.com/t5/networking-documents/how-to-configure-pbr/ta-p/3122774
Question #:7 - (Exam Topic 2)
How are MPLS Layer 3 VPN services deployed?
A. The RD and RT values must match under the VRR
B. The RD and RT values under a VRF must match on the remote PE router
C. The import and export RT values under a VRF must always be the same.
D. The label switch path must be available between the local and remote PE routers.
Answer: D
Explanation
https://www.cisco.com/c/en/us/td/docs/iosxr/ncs5500/vpn/65x/b-l3vpn-cg-ncs5500-65x/b-l3vpn-cg-ncs5500-65x_chapt
The ingress PE router must be able to reach the egress PE router for a packet to be relayed to its destination.
Question #:8 - (Exam Topic 2)
Refer to the exhibit.
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A network is under a cyberattack. A network engineer connected to R1 by SSH and enabled the terminal
monitor via SSH session to find the source and destination of the attack. The session was flooded with
messages, which made it impossible for the engineer to troubleshoot the issue. Which command resolves this
issue on R1?
A. no terminal monitor
B. (config)#terminal no monitor
C. #terminal no monitor
D. (config)#no terminal monitor
Answer: C
Explanation
To turn off terminal monitor, use “terminal no monitor” in the enable mode
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Topic 1, Exam Pool A
Question #:9 - (Exam Topic 1)
Refer to the exhibit.
An engineer is trying to redistribute OSPF to BGP, but not all of the routes are
redistributed. What is the reason for this issue?
A. By default, only internal routes and external type 1 routes are redistributed into BGP
B. Only classful networks are redistributed from OSPF to BGP
C. BGP convergence is slow, so the route will eventually be present in the BGP table
D. By default, only internal OSPF routes are redistributed into BGP
Answer: D
Explanation
If you configure the redistribution of OSPF into BGP without keywords, only OSPF intra-area and inter-area
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routes are redistributed into BGP, by default.
You can redistribute both internal and external (type-1 & type-2) OSPF routes via this command:
Router(config-router)#redistribute ospf 1 match internal external 1 external 2
Reference:
https://www.cisco.com/c/en/us/support/docs/ip/border-gateway-protocol-bgp/5242-bgp-ospf-redis.html
Question #:10 - (Exam Topic 1)
Drag and drop the packet types from the left onto the correct descriptions on the right.
Answer:
Explanation
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Unlike legacy network technologies such as ISDN, Frame Relay, and ATM that defined separate data and
control channels, IP carries all packets within a single pipe. Thus, IP network devices such as routers and
switches must be able to distinguish between data plane, control plane, and management plane packets to treat
each packet appropriately.From an IP traffic plane perspective, packets may be divided into four distinct,
logical groups:1. Data plane packets – End-station, user-generated packets that are always forwarded by
network devices to other end-station devices. From the perspective of the network device, data plane packets
always have a transit destination IP address and can be handled by normal, destination IP address-based
forwarding processes.2. Control plane packets – Network device generated or received packets that are used
for the creation and operation of the network itself. From the perspective of the network device, control plane
packets always have a receive destination IP address and are handled by the CPU in the network device route
processor. Examples include protocols such as ARP, BGP, OSPF, and other protocols that glue the network
together.3. Management plane packets – Network device generated or received packets, or management
station generated or received packets that are used to manage the network. From the perspective of the
network device, management plane packets always have a receive destination IP address and are handled by
the CPU in the network device route processor. Examples include protocols such as Telnet, Secure Shell
(SSH), TFTP, SNMP, FTP, NTP, and other protocols used to manage the device and/or network.4. Services
plane packets – A special case of data plane packets, services plane packets are also user-generated
packets that are also forwarded by network devices to other end-station devices, but that require high-touch
handling by the network device (above and beyond normal, destination IP address-based forwarding) to
forward the packet. Examples of high-touch handling include such functions as GRE encapsulation, QoS,
MPLS VPNs, and SSL/IPsec encryption/decryption, etc. From the perspective of the network device, services
plane packets may have a transit destination IP address, or may have a receive destination IP address (for
example, in the case of a VPN tunnel endpoint).
Reference: https://tools.cisco.com/security/center/resources/copp_best_practices
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