[Mar 14, 2022] Get to the Top with 300-410 Practice Exam Questions [Q63-Q88]

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[Mar 14, 2022] Get to the Top with 300-410 Practice Exam Questions

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Cisco CCNP Enterprise 300-410 Practice Test Questions, Cisco CCNP Enterprise 300-410 Exam Practice Test Questions

The Cisco 300-410 ENARSI exam is part of the requirements for two certifications, namely CCNP Enterprise and Cisco Certified Specialist – Enterprise Advanced Infrastructure Implementation. This test equips the professionals with the skill set required to carry out various duties, such as installation, configuration, operation, and troubleshooting of an enterprise network.


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NEW QUESTION 63
Refer to the exhibit. R1 and R2 cannot establish an EIGRP adjacency. Which action establishes EIGRP adjacency?

  • A. Add the no auto-summary command to the R2 configuration so that it matches the R1 configuration.
  • B. Remove the passive-interface command from the R2 configuration so that it matches the R1 configuration.
  • C. Add the passive-interface command to the R1 configuration so that it matches the R2 configuration.
  • D. Remove the current autonomous system number on one of the routers and change to a different value.

Answer: A

 

NEW QUESTION 64
Refer to the exhibit.

The output of the trace route from R5 shows a loop in the network. Which configuration prevents this loop?
A)

B)

C)

D)

  • A. Option D
  • B. Option C
  • C. Option B
  • D. Option A

Answer: D

 

NEW QUESTION 65
What is a function of IPv6 Source Guard?

  • A. It notifies the ND protocol to inform hosts if the traffic is denied by it.
  • B. It inspects ND and DHCP packets to build an address binding table.
  • C. It works with address glean or ND to find existing addresses.
  • D. It denies traffic from known sources and allocated addresses.

Answer: C

 

NEW QUESTION 66
Refer to the exhibit.
A network administrator configured an IPv6 access list to allow TCP return frame only, but it is not working as expected. Which changes resolve this issue?

  • A. Option C
  • B. Option D
  • C. Option B
  • D. Option A

Answer: A

Explanation:
Explanation
https://www.cisco.com/c/en/us/td/docs/switches/lan/catalyst3750/software/release/122_55_se/configuration/

 

NEW QUESTION 67
Refer to the exhibit.

After redistribution is enabled between the routing protocols; PC2, PC3, and PC4 cannot reach PC1. Which action can the engineer take to solve the issue so that all the PCs are reachable?

  • A. Set the administrative distance 100 under the RIP process on R2.
  • B. Redistribute the directly connected interfaces on R2.
  • C. Filter the prefix 10.1.1.0/24 when redistributed from OSPF to EIGRP.
  • D. Filter the prefix 10.1.1.0/24 when redistributed from RIP to EIGRP.

Answer: C

 

NEW QUESTION 68
Refer to the exhibit.

What does the imp-null tag represent in the MPLS VPN cloud?

  • A. Impose the label
  • B. Pop the label
  • C. Exclude the EXP bit
  • D. Include the EXP bit

Answer: B

Explanation:
Explanation
The imp-null (implicit null) tag instructs the upstream router to pop the tag entry off the tag stack before forwarding the packet.
Note: pop means remove the top MPLS label

 

NEW QUESTION 69
Which method changes the forwarding decision that a router makes first changing the routing table or influencing the IP data plane?

  • A. Nonbroadcast multi-access
  • B. Policy-based routing
  • C. Forwarding information base
  • D. Packet switching

Answer: C

 

NEW QUESTION 70
Drag and drop the packet types from the left onto the correct descriptions on the right.

Answer:

Explanation:

Explanation

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).

 

NEW QUESTION 71
Refer to the exhibit. The network administrator has configured the Customer Edge router (AS 64511) to send only summarized routes toward ISP-1 (AS 100) and ISP-2 (AS 200).
router bgp 64511
network 172.16.20.0 mask 255.255.255.0
network 172.16.21.0 mask 255.255.255.0
network 172.16.22.0 mask 255.255.255.0
network 172.16.23.0 mask 255.255.255.0
aggregate-address 172.16.20.0 255.255.252.0
After this configuration. ISP-1 and ISP-2 continue to receive the specific routes and the summary route. Which configuration resolves the issue?

  • A. router bgp 64511
    neighbor 192.168.100.1 summary-only
    neighbor 192.168.200.2 summary-only
  • B. interface E 0/0
    ip bgp suppress-map BLOCK_SPECIFIC
    !
    interface E 0/1
    ip bgp suppress-map BLOCK_SPECIFIC
    !
    ip prefix-list PL_BLOCK_SPECIFIC permit 172.16.20.0/22 ge 24
    !
    route-map BLOCK_SPECIFIC permit 10
    match ip address prefix-list PL_BLOCK_SPECIFIC
  • C. ip prefix-list PL_BLOCK_SPECIFIC deny 172.16.20.0/22 ge 22
    ip prefix-list PL BLOCK SPECIFIC permit 172.16.20.0/22
    !
    route-map BLOCK_SPECIFIC permit 10
    match ip address prefix-list PL_BLOCK_SPECIFIC
    !
    router bgp 64511
    aggregate-address 172.16.20.0 255 255.252.0 suppress-map BLOCKSPECIFIC
  • D. router bgp 64511
    aggregate-address 172.16.20.0 255.255.252.0 summary-only

Answer: D

Explanation:
When the aggregate-address command is used within BGP routing, the aggregated address is advertised, along with the more specific routes. The exception to this rule is through the use of the summary-only command. The "summary-only" keyword suppresses the more specific routes and announces only the summarized route.

 

NEW QUESTION 72

Refer to the exhibit. During troubleshooting it was discovered that the device is not reachable using a secure web browser.
What is needed to fix the problem?

  • A. permit tcp port 443
  • B. permit tcp port 465
  • C. permit tcp port 22
  • D. permit udp port 465

Answer: A

Explanation:
Section: Infrastructure Security

 

NEW QUESTION 73
Exhibit:

Bangkok is using ECMP to reach to the 192.168.5.0/24 network. The administrator must configure Bangkok in such a way that Telnet traffic from 192.168.3.0/24 and192.168.4.0/24 networks uses the HongKong router as the preferred router. Which set of configurations accomplishes this task?

  • A. access-list 101 permit tcp 192.168.3.0 0.0.0.255 192.168.5.0 0.0.0.255 eq 23 access-list 101 permit tcp 192.168.4.0 0.0.0.255 192.168.5.0 0.0.0.255 eq 23
    !
    route-map PBR1 permit 10
    match ip address 101
    set ip next-hop 172.18.1.2
    !
    interface Ethernet0/3
    ip policy route-map PBR1
  • B. access-list 101 permit tcp 192.168.3.0 0.0.0.255 192.168.5.0 0.0.0.255 eq 23 access-list 101 permit tcp 192.168.4.0 0.0.0.255 192.168.5.0 0.0.0.255 eq 23
    !
    route-map PBR1 permit 10
    match ip address 101
    set ip next-hop 172.18.1.2
    interface Ethernet0/1
    ip policy route-map PBR1
  • C. access-list 101 permit tcp 192.168.3.0 0.0.0.255 192.168.5.0 0.0.0.255 access-list 101 permit tcp 192.168.4.0 0.0.0.255 192.168.5.0 0.0.0.255
    !
    route-map PBR1 permit 10
    match ip address 101
    set ip next-hop 172.18.1.2
    !
    interface Ethernet0/1
    ip policy route-map PBR1
  • D. access-list 101 permit tcp 192.168.3.0 0.0.0.255 192.168.5.0 0.0.0.255 access-list 101 permit tcp 192.168.4.0 0.0.0.255 192.168.5.0 0.0.0.255
    !
    route-map PBR1 permit 10
    match ip address 101
    set ip next-hop 172.18.1.2
    interface Ethernet0/3
    ip policy route-map PBR1

Answer: A

Explanation:
Explanation
We need to use Policy Based Routing (PBR) here on Bangkok router to match the traffic from 192.168.3.0/24
& 192.168.4.0/24 and "set ip next-hop" to HongKong router(172.18.1.2 in this case).
Note: Please notice that we have to apply the PBR on incoming interface e0/3 to receive traffic from
192.168.3.0/24 and 192.168.4.0/24.

 

NEW QUESTION 74
Refer to the exhibit.

After redistribution is enabled between the routing protocols; PC2, PC3, and PC4 cannot reach PC1. Which action can the engineer take to solve the issue so that all the PCs are reachable?

  • A. Set the administrative distance 100 under the RIP process on R2.
  • B. Redistribute the directly connected interfaces on R2.
  • C. Filter the prefix 10.1.1.0/24 when redistributed from OSPF to EIGRP.
  • D. Filter the prefix 10.1.1.0/24 when redistributed from RIP to EIGRP.

Answer: C

 

NEW QUESTION 75
A network engineer is investigating a flapping (up/down) interface issue on a core switch that is synchronized to an NTP server. Log output currently does not show the time of the flap. Which command allows the logging on the switch to show the time of the flap according to the clock on the device?

  • A. clock calendar-valid
  • B. clock summer-time mst recurring 2 Sunday mar 2:00 1 Sunday nov 2:00
  • C. service timestamps log uptime
  • D. service timestamps log datetime localtime show-timezone

Answer: D

Explanation:
Explanation
By default, Catalyst switches add a simple uptime timestamp to logging messages. This is a cumulative counter that shows the hours, minutes, and seconds since the switch has been booted up

 

NEW QUESTION 76
Drag and drop the addresses from the left onto the correct IPv6 filter purposes on the right.

Answer:

Explanation:

Explanation
Same Answer is already updated below:

HTTP and HTTPs run on TCP port 80 and 443, respectively and we have to remember them.
Syslog runs on UDP port 514 while NTP runs on UDP port 123 so if we remember them we can find out the matching answers easily. But maybe there is some typos in this question as 2001:d88:800:200c::c/126 only ranges from 2001:d88:800:200c:0:0:0:c to 2001:d88:800:200c:0:0:0:f (4 hosts in total). It does not cover host 2001:0D88:0800:200c::1f. Same for 2001:D88:800:200c::e/126, which also ranges from
2001:d88:800:200c:0:0:0:c to 2001:d88:800:200c:0:0:0:f and does not cover host 2001:0D88:0800:200c::1c
.

 

NEW QUESTION 77
Drag and drop the address from the left onto the correct IPv6 filter purposes on the right.

Answer:

Explanation:

 

NEW QUESTION 78
Refer to the exhibit.

An engineer is monitoring reachability of the configured default routes to ISP1 and ISP2. The default route from ISP1 is preferred if available. How is this issue resolved?

  • A. Use the same AD for both default routes
  • B. Start IP SLA by defining frequency and scheduling it
  • C. Use the icmp-echo command to track both default routes
  • D. Start IP SLA by matching numbers for track and ip sla commands

Answer: B

Explanation:
Reference:
https://www.cisco.com/c/en/us/support/docs/ip/ip-routing/200785-ISP-Failover-with-default-routes-using-I.html

 

NEW QUESTION 79
An engineer configured access list NON-CISCO in a policy to influence routes

What are the two effects of this route map configuration? (Choose two.)

  • A. Packets are forwarded using normal route lookup.
  • B. Packets are not evaluated by sequence 10.
  • C. Packets are evaluated by sequence 10.
  • D. Packets are dropped by the access list.
  • E. Packets are forwarded to the default gateway.

Answer: C,E

Explanation:
https://www.cisco.com/c/en/us/support/docs/ip/ip-routed-protocols/47121-pbr-cmds-ce.html

 

NEW QUESTION 80
Refer to the exhibit.

Which statement about R1 is true?

  • A. OSPF redistributes RIP routes only if they have a tag of one.
  • B. R1 adds one to the metric for RIP learned routes before redistributing to OSPF.
  • C. RIP routes are redistributed to OSPF without any changes.
  • D. RIP learned routes are distributed to OSPF with a tag value of one.

Answer: D

 

NEW QUESTION 81
Refer to the exhibit.

Users report that IP addresses cannot be acquired from the DHCP server. The DHCP server is configured as shown.
About 300 total nonconcurrent users are using this DHCP server, but none of them are active for more than two hours per day.
Which action fixes the issue within the current resources?

  • A. Configure the DHCP lease time to a smaller value
  • B. Configure the DHCP lease time to a bigger value
  • C. Modify the subnet mask to the network 192.168.1.0 255.255.254.0 command in the DHCP pool
  • D. Add the network 192.168.2.0 255.255.255.0 command to the DHCP pool

Answer: A

 

NEW QUESTION 82
While troubleshooting connectivity issues to a router, these details are noticed:
* Standard pings to all router interfaces, including loopbacks, are successful.
* Data traffic is unaffected.
* SNMP connectivity is intermittent.
* SSH is either or disconnects frequently.
Which command must be configured first to troubleshoot this issue?

  • A. Show policy-map
  • B. Show policy-map control-plane
  • C. Show ip route
  • D. Show interface inc drop

Answer: B

 

NEW QUESTION 83
Refer to the exhibit.

Which statement about R1 is true?

  • A. RIP learned routes are distributed to OSPF with a tag value of one
  • B. RIP routes are redistributed to OSPF without any changes
  • C. R1 adds one to the metric for RIP learned routes before redistributing to OSPF
  • D. OSPF redistributes RIP routes only if they have a tag of one

Answer: B

 

NEW QUESTION 84
Drag and Drop the IPv6 First-Hop Security features from the left onto the definitions on the right.

Answer:

Explanation:

 

NEW QUESTION 85
Refer to the exhibit.

Which statement about R1 is true?

  • A. OSPF redistributes RIP routes only if they have a tag of one.
  • B. R1 adds one to the metric for RIP learned routes before redistributing to OSPF.
  • C. RIP routes are redistributed to OSPF without any changes.
  • D. RIP learned routes are distributed to OSPF with a tag value of one.

Answer: D

 

NEW QUESTION 86
Refer to the exhibit. A network administrator configured an IPv6 access list to allow TCP return traffic only, but it is not working as expected. Which changes resolve this issue?

  • A. ipv6 access-list inbound
    permit tcp any any syn
    deny ipv6 any any log
    !
    interface gi0/0
    ipv6 traffic-filter inbound in
  • B. ipv6 access-list inbound
    permit tcp any any established
    deny ipv6 any any log
    !
    interface gi0/0
    ipv6 traffic-filter inbound out
  • C. ipv6 access-list inbound
    permit tcp any any established
    deny ipv6 any any log
    !
    interface gi0/0
    ipv6 traffic-filter inbound in
  • D. ipv6 access-list inbound
    permit tcp any any syn
    deny ipv6 any any log
    !
    interface gi0/0
    ipv6 traffic-filter inbound out

Answer: C

 

NEW QUESTION 87
Refer to the exhibit.


All the serial between R1, R2, and R3 have the Same bandwidth. User on the 192.168.1.0/24 network report slow response times while they access resource on network 192.168.3.0/24. When a traceroute is run on the path. It shows that the packet is getting forwarded via R2 to R3 although the link between R1 and R3 is still up. What must the network administrator to fix the slowness?

  • A. Change the Administrative Distance of EIGRP to 5.
  • B. Add a static route on R1 using the next hop of R3.
  • C. Redistribute theR1 route to EIGRP
  • D. Remove the static route on R1.

Answer: D

 

NEW QUESTION 88
......


To get more information visit:

Implementing Cisco Enterprise Advanced Routing and Services (ENARSI) v1.0

 

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