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New Cisco 300-135 Exam Dumps Collection (Question 5 - Question 14)
Q1. You are troubleshooting an issue with a GRE tunnel between R1 and R2 and find that
routing is OK on all intermediary routers. The tunnel is up on R1, but down on R2. Which two possible issues can prevent the tunnel from coming up? (Choose Two)
A. The tunnel does not come up unless traffic is sent through it.
B. The tunnel source interface is down on R2.
C. No specific route interface is down on R2.
D. R2 does not know how to reach the tunnel destination.
E. The tunnel keep alive timer doesnu2021t match on R1 and R2.
Answer: B,D
Explanation:
Four Different Tunnel States
There are four possible states in which a GRE tunnel interface can be:
1. Up/up - This implies that the tunnel is fully functional and passes traffic. It is both adminstratively up and it's protocol is up as well.
2. Adminstratively down/down - This implies that the interface has been administratively shut down.
3. Up/down - This implies that, even though the tunnel is administratively up, something causes the line protocol on the interface to be down.
4. Reset/down - This is usually a transient state when the tunnel is reset by software. This usually happens when the tunnel is misconfigured with a Next Hop Server (NHS) that is it's own IP address.
When a tunnel interface is first created and no other configuration is applied to it, the interface is not shut by default:
Topic 2, Troubleshooting VTP
14.A customer network engineer has made configuration changes that have resulted in some loss of connectivity. You have been called in to evaluate a switch network and suggest resolutions to the problems.
Which of statement is true regarding STP issue identified with switches in the given topology?
A. Loopguard configured on the New_Switch places the ports in loop inconsistent state
B. Rootguard configured on SW1 places the ports in root inconsistent state
C. Bpduguard configured on the New_Switch places the access ports in error-disable
D. Rootguard configured on SW2 places the ports in root inconsistent state
Q2. Which two of the following options are categories of Network Maintenance tasks?
A. Firefighting
B. Interrupt-driven
C. Policy-based
D. Structured
E. Foundational
Answer: B,D
Explanation:
Proactive Versus Reactive Network Maintenance:
Network maintenance tasks can be categorized as one of the following: Structured tasks: Performed as a predefined plan.
Interrupt-driven tasks: Involve resolving issues as they are reported.
Reference: CCNP TSHOOT Official Certification Guide, Kevin Wallace, Chapter 1, p.7
Q3. Which of the following is a valid host IPv6 address? (Choose all that apply.)
A. ff02:a:b:c::l/64
B. 2001:aaaa: 1234:456c: 1/64
C. 2001:000a:lb2c::/64
D. 2fff:f:f:f::f/64
E. ff02:33ab:l:32::2/128
F. 2001:bad:2345:a:b::cef/128
Answer: B,F
Explanation: Option B is valid, assuming theres a faulty colon : in the IPv6 Address, just before the last 1, that is: 2001:aaaa:1234:456c::1/64Option F is valid, dispite its odd network mask (128 bits), sometimes used in tunnel links.
Incorrect:
Option A is invalid, since it is a Multicast addressOption C seems to be invalid because the 3rd group of characters includes an l (lb2c), but if it is a 1 instead of an l (faulty scan) and the required options are 3 instead of 2, then this address is still valid (2001:000a:1b2c::/64), because the 4th group of characters would be 0000 (remember that we can represent a continuous sequence of zeros by ::).Option D is definitely invalid since it is a reserved address. As states the IANA online :document about the IPv6 Unicast Global Addresses, the range below is reserved, not allocated to any RIR (Regional Internet Registry): 2E00:0000::/7 IANA 1999-07-01 RESERVED
Reference: http://www.iana.org/assignments/ipv6-unicast-address-assignments/ipv6-
unicast-address-assignments.txt
Q4. The implementations group has been using the test bed to do a u2021proof-of-conceptu2021 that requires both Client 1 and Client 2 to access the WEB Server at 209.65.200.241. After several changes to the network addressing, routing schemes, DHCP services, NTP services, layer 2 connectivity, FHRP services, and device security, a trouble ticket has been opened DSW1 will not become the active router for HSRP group 10.
Use the supported commands to isolated the cause of this fault and answer the following questions.
On which device is the fault condition located?
A. R1
B. R2
C. R3
D. R4
E. DSW1
F. DSW2
G. ASW1
H. ASW2
Answer: E
Explanation:
DSW references the wrong track ID number.
Q5. Which of the following options represents the correct sequence of DHCP messages after a client initially boots?
A. DHCPREQUEST, DHCPOFFER, DHCPDISCOVER, DHCPACK
B. DHCPDISCOVER, DHCPOFER, DHCPREQUEST, DHCPACK
C. DHCPOFFER, DHCPACK, DHCPREQUEST, DHCPDISCOVER
D. DHCPDISCOVER, DHCPREQUEST, DHCPOFFER, DHCPACK
E. DHCPREQUE5T, DHCPDISCOVER, DHCPOFFER, DHCPACK
F. DHCPDISCOVER, DHCPACK, DHCPREQUEST, DHCPOFFER
Answer: B
Q6. A customer network engineer has made configuration changes that have resulted in some loss of connectivity. You have been called in to evaluate a switch network and suggest resolutions to the problems.
PC2 in VLAN 200 is unable to ping the gateway address 172.16.200.1; identify the issue.
A. VTP domain name mismatch on SW4
B. VLAN 200 not configured on SW1
C. VLAN 200 not configured on SW2
D. VLAN 200 not configured on SW4
Answer: D
Explanation:
By looking at the configuration for SW2, we see that it is missing VLAN 200, and the u201cswitchport access vlan 200u201d command is missing under interface eth 0/0:
Topic 3, Troubleshooting EIGRP
18.You have been brought in to troubleshoot an EIGRP network. A network engineer has made configuration changes to the network rendering some locations unreachable. You are to locate the problem and suggest solution to resolve the issue.
R5 has become partially isolated from the remainder of the network. R5 can reach devices on directly connected networks but nothing else. What is causing the problem?
A. An outbound distribute list in R3
B. Inbound distribute lists in R5
C. An outbound distribute list in R6
D. Incorrect EIGRP routing process ID in R5
Q7. The implementations group has been using the test bed to do a u2021proof-of-conceptu2021 that requires both Client 1 and Client 2 to access the WEB Server at 209.65.200.241. After several changes to the network addressing, routing scheme, DHCP services, NTP services, layer 2 connectivity, FHRP services, and device security, a trouble
ticket has been opened indicating that Client 1 cannot ping the 209.65.200.241 address.
Use the supported commands to isolated the cause of this fault and answer the following questions.
The fault condition is related to which technology?
A. BGP
B. NTP
C. IP NAT
D. IPv4 OSPF Routing
E. IPv4 OSPF Redistribution
F. IPv6 OSPF Routing
G. IPv4 layer 3 security
Answer: C
Explanation:
On R1 we need to add the client IP address for reachability to server to the access list that is used to specify which hosts get NATed.
Q8. Which of the following commands will remove all dynamic entries for a router's NAT table?
A. clear nat translations
B. clear ip nat translations*
C. clear ip nat statistics
D. clear ip nat transactions *
E. clear ip nat translations
F. clear ip nat translations all
Answer: B
Q9. The implementations group has been using the test bed to do a u2021proof-of-conceptu2021 that requires both Client 1 and Client 2 to access the WEB Server at 209.65.200.241. After several changes to the network addressing, routing scheme, DHCP services, NTP services, layer 2 connectivity, FHRP services, and device security, a trouble ticket has been opened indicating that Client 1 cannot ping the 209.65.200.241 address.
Use the supported commands to isolated the cause of this fault and answer the following questions.
On which device is the fault condition located?
A. R1
B. R2
C. R3
D. R4
E. DSW1
F. DSW2
G. ASW1
H. ASW2
Answer: D
Explanation:
On R4, in the redistribution of EIGRP routing protocol, we need to change name of route- map to resolve the issue. It references route-map OSPF_to_EIGRP but the actual route map is called OSPF->EIGRP.
Q10. Refer to the Exhibit:
Which output is expected in the blank line for the OSPF adjacency process?
A. DOWN
B. EXSTART
C. EXCHANGE
D. LOADING
Answer: B
Explanation:
You can check the output of "debug ip ospf adj" here:
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