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New Cisco 300-101 Exam Dumps Collection (Question 7 - Question 16)

Q7. Which set of actions does a network engineer perform to set the IPv6 address of a DHCP relay server at the VLAN interface level?

A. Enter the VLAN interface configuration mode and define the IPv6 address of a DHCP relay server

B. Enter the global configuration mode and enable the IPv6 DHCP relay

C. Enter the global configuration mode, enable IPv6 DHCP relay from interface configuration mode and define the IPv6 address of a DHCP relay server

D. Enter the VLAN interface configuration mode, enable IPv6 DHCP relay, and define the IPv6 address of a DHCP relay server

Answer: D

Explanation: You can accept DHCP requests from clients on the associated context or VLAN interface and enable the DHCP relay agent by using the ipv6 dhcp relay enable command (for IPv6) or the ip dhcp relay enable command (for IPv4). The DHCP relay starts forwarding packets to the DHCP server address specified in the ipv6 dhcp relay server command or the ip dhcp relay server command for the associated context or VLAN interface.


Q8. Refer to the exhibit.

If R1 is configured for 6to4 tunneling, what will the prefix of its IPv6 network be?

A. 1723:1100:1::/48

B. FFFF:AC1F:6401::/16

C. AC1F:6401::/32

D. 2002:AC1F:6401::/48

E. 3FFE:AC1F:6401::/32

Answer: D


Q9. Which three steps are most helpful in verifying proper route redistribution? (Choose three.)

A. On the routers not performing the route redistribution, use the show ip route command to see if the redistributed routes show up.

B. On the ASBR router performing the route redistribution, use the show ip protocol command to verify the redistribution configurations.

C. On the ASBR router performing the route redistribution, use the show ip route command to verify that the proper routes from each routing protocol are there.

D. On the routers not performing the route redistribution, use the show ip protocols command to verify the routing information sources.

E. On the routers not performing the route redistribution, use the debug ip routing command to verify the routing updates from the ASBR.

Answer: A,B,C

Explanation:

In order to verify proper route redistribution, use the u201cshow ip routeu201d command on all routers within the network, as well as the ABSR, to verify that the routes are properly being advertised to all routers. In addition, issuing the u201cshow ip protocolu201d can be used on the router performing the redistribution to verify that routes are being redistributed into each other.


Q10. You have been asked to evaluate how EIGRP is functioning in a customer network.

What type of route filtering is occurring on R6

A. Distribute-list using an ACL

B. Distribute-list using a prefix-list

C. Distribute-list using a route-map

D. An ACL using a distance of 255

Answer: A


Q11. Which command should be added to RTB under router bgp 100 to allow only the external OSPF routes to be redistributed to RTC?

A. redistribute ospf 1

B. redistribute ospf 1 match external 1

C. redistribute ospf 1 match external 2

D. redistribute ospf 1 match external 1 external 2

Answer: D

Explanation:

Use the external keyword along with the redistribute command under router bgp to redistribute OSPF external routes into BGP. With the external keyword, you have three choices: 1. redistribute both external type-1 and type-2 (Default) 2. redistribute type-1 3. redistribute type-2 Enter the commands in the configuration mode as described here: RTB(config-router)# router bgp 100 RTB(config-router)# redistribute ospf 1 match external.


Q12. CORRECT TEXTYou are a network engineer with ROUTE.com, a small IT company. They have recently merged two organizations and now need to merge their networks as shown in the topology exhibit. One network is using OSPF as its IGP and the other is using EIGRP as its IGP. R4 has been added to the existing OSPF network to provide the interconnect between the OSPF and EIGRP networks. Two links have been added that will provide redundancy.

The network requirements state that you must be able to ping and telnet from loopback 101 on R1 to the OPSF domain test address of 172.16.1.100. All traffic must use the shortest path that provides the greatest bandwidth. The redundant paths from the OSPF network to the EIGRP network must be available in case of a link failure. No static or default routing is allowed in either network.

A previous network engineer has started the merger implementation and has successfully assigned and verified all IP addressing and basic IGP routing. You have been tasked with completing the implementation and ensuring that the network requirements are met. You may not remove or change any of the configuration commands currently on any of the routers. You may add new commands or change default values.

Answer:

First we need to find out 5 parameters (Bandwidth, Delay, Reliability, Load, MTU)

of the s0/0/0 interface (the interface of R2 connected to R4) for redistribution:

R2#show interface s0/0/0

Write down these 5 parameters, notice that we have to divide the Delay by 10 because the metric unit is in tens of microsecond. For example, we get Bandwidth=1544 Kbit, Delay=20000 us, Reliability=255, Load=1, MTU=1500 bytes then we would redistribute as follows:

R2#config terminal R2(config)# router ospf 1

R2(config-router)# redistribute eigrp 100 metric-type 1 subnets R2(config-router)#exit

R2(config-router)#router eigrp 100

R2(config-router)#redistribute ospf 1 metric 1544 2000 255 1 1500

Note: In fact, these parameters are just used for reference and we can use other parameters with no problem.

If the delay is 20000us then we need to divide it by 10, that is 20000 / 10 = 2000) For R3 we use the show interface fa0/0 to get 5 parameters too

R3#show interface fa0/0

For example we get Bandwidth=10000 Kbit, Delay=1000 us, Reliability=255, Load=1, MTU=1500 bytes

R3#config terminal R3(config)#router ospf 1

R3(config-router)#redistribute eigrp 100 metric-type 1 subnets R3(config)#exit

R3(config-router)#router eigrp 100

R3(config-router)#redistribute ospf 1 metric 10000 100 255 1 1500

Finally you should try to u201cshow ip routeu201d to see the 172.16.100.1 network (the network behind R4) in the routing table of R1 and make a ping from R1 to this network.

Note: If the link between R2 and R3 is FastEthernet link, we must put the command below under EIGRP process to make traffic from R1 to go through R3 (R1 -> R2 -> R3 -> R4), which is better than R1 -> R2 -> R4.

R2(config-router)# distance eigrp 90 105

This command sets the Administrative Distance of all EIGRP internal routes to 90 and all EIGRP external routes to 105, which is smaller than the Administrative Distance of OSPF

(110) -> the link between R2 & R3 will be preferred to the serial link between R2 & R4. Note: The actual OPSF and EIGRP process numbers may change in the actual exam so be sure to use the actual correct values, but the overall solution is the same.


Q13. Which routing protocol will continue to receive and process routing updates from neighbors after the passive interface router configuration command is entered?

A. EIGRP

B. RIP

C. OSPF

D. IS-IS

Answer: B


Q14. Study this exhibit below carefully.

What is the effect of the distribute-list command in the R1 configuration?

A. R1 will permit only the 10.0.0.0/24 route in the R2 RIP updates

B. R1 will not filter any routes because there is no exact prefix match

C. R1 will filter the 10.1.0.0/24 and the 172.24.1.0/24 routes from the R2 RIP updates

D. R1 will filter only the 172.24.1.0/24 route from the R2 RIP updates

Answer: C

Explanation:

The command u201cdistribute-list 10 in Serial0 will create an incoming distribute list for interface serial 0 and refers to access list 10. So it will permit routing updates from 10.0.x.x network while other entries (in this case the 10.1.0.0/24 and 172.24.1.0/24 networks) will be filtered out from the routing update received on interface S0.


Q15. Which traffic does the following configuration allow?

ipv6 access-list cisco

permit ipv6 host 2001:DB8:0:4::32 any eq ssh line vty 0 4

ipv6 access-class cisco in

A. all traffic to vty 0 4 from source 2001:DB8:0:4::32

B. only ssh traffic to vty 0 4 from source all

C. only ssh traffic to vty 0 4 from source 2001:DB8:0:4::32

D. all traffic to vty 0 4 from source all

Answer: C


Q16. Which two types of authentication does EIGRP offer? (Choose two)

A. TKIP

B. MD5

C. WPA

D. Plain text

Answer: B,D

Explanation: The router uses two types of authentication:

u2711 Simple password authentication (also called plain text authentication)u2014Supported by Integrated System-Integrated System (IS-IS), Open Shortest Path First (OSPF), and Routing Information Protocol Version 2 (RIPv2)

u2711 MD5 authenticationu2014Supported by OSPF, RIPv2, BGP, and EIGRP


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