QUIZ JN0-363 - FANTASTIC VCE SERVICE PROVIDER ROUTING AND SWITCHING, SPECIALIST (JNCIS-SP) EXAM SIMULATOR

Quiz JN0-363 - Fantastic VCE Service Provider Routing and Switching, Specialist (JNCIS-SP) Exam Simulator

Quiz JN0-363 - Fantastic VCE Service Provider Routing and Switching, Specialist (JNCIS-SP) Exam Simulator

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With a vast knowledge in the field, ITPassLeader is always striving hard to provide actual, authentic Juniper Exam Questions so that the candidates can pass their Service Provider Routing and Switching, Specialist (JNCIS-SP) (JN0-363) exam in less time. ITPassLeader tries hard to provide the best Juniper JN0-363 dumps to reduce your chances of failure in the Service Provider Routing and Switching, Specialist (JNCIS-SP) (JN0-363) exam. ITPassLeader provides an exam scenario with its Juniper JN0-363 practice test (desktop and web-based) so the preparation of the Service Provider Routing and Switching, Specialist (JNCIS-SP) (JN0-363) exam questions becomes quite easier.

The JN0-363 exam is a challenging certification exam that requires a deep understanding of service provider routing and switching. JN0-363 exam covers a wide range of topics, including MPLS, BGP, OSPF, and more. Candidates must have a good understanding of these topics and be able to apply them in real-world scenarios. JN0-363 Exam is designed to test the candidate's knowledge, skills, and abilities in service provider routing and switching.

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The JN0-363 exam covers a wide range of topics related to service provider routing and switching, including OSPF, BGP, IS-IS, MPLS, Layer 2 VPNs, Layer 3 VPNs, and multicast protocols. JN0-363 Exam consists of 65 multiple-choice questions and has a time limit of 90 minutes. It is a proctored exam that can be taken at any Pearson VUE testing center worldwide.

Juniper Service Provider Routing and Switching, Specialist (JNCIS-SP) Sample Questions (Q82-Q87):

NEW QUESTION # 82
Click the Exhibit button.

The routers shown in the exhibit are configured for segment routing.
In this scenario, what is the adjacency SID that Router B advertises to Router A?

  • A. 10.1.1.1
  • B. 0
  • C. 1
  • D. 10.1.1.2

Answer: B

Explanation:
The diagram you provided shows two routers, Router A and Router B, with MPLS labels between them. In the context of segment routing with MPLS, each router advertises a set of SIDs (Segment Identifiers). These SIDs can be node SIDs, which are associatedwith the router itself, or adjacency SIDs, which are associated with the links between routers.
Given the information from the exhibit:
Router A has a Router ID of 10.1.1.1 and is associated with the MPLS label 11.
Router B has a Router ID of 10.1.1.2 and is associated with the MPLS label 12.
The adjacency SID in segment routing is used to identify a specific adjacency between two routers. In this case, the question is asking for the adjacency SID that Router B advertises to Router A. This would be the label that Router B tells Router A to use to send packets directly to Router B over their shared adjacency.
So, the adjacency SID that Router B advertises would be associated with the link that Router A would use to send traffic to Router B, which is labeled with the number 12 in the exhibit.
Therefore, the answer to the question is:
D). 12
This is the label that packets would carry when being sent from Router A to Router B to identify the specific adjacency between the two routers in the context of segment routing.


NEW QUESTION # 83
Which two statements describe advantages of using BGP for VPLS signaling instead of LDP signaling? (Choose two.)

  • A. There is no need for MPLS signaling protocol.
  • B. There is a well-defined scaling hierarchy.
  • C. There is a separation of signaling from other services.
  • D. There is auto discovery.

Answer: B,D


NEW QUESTION # 84
Which two steps are required to enable MPLS on a physical interface in Junos? (Choose two.)

  • A. Add the loopback interface under protocols mpls.
  • B. Add family mpls on the interface.
  • C. Add the interface under protocols mpls.
  • D. Add family mpls on the loopback interface.

Answer: B,C

Explanation:
To enable MPLS on a physical interface in Junos, the family mpls statement must be added to the interface configuration. Additionally, the interface itself must be specifiedunder the protocols mpls section of the configuration.References:
MPLS Configuration Guide, Juniper Networks Documentation
Configuring MPLS, Juniper Networks Documentation


NEW QUESTION # 85
You are deploying link aggregation groups.

  • A. By default, what are two considerations in this scenario? (Choose two.)
  • B. Member links can reside on different members within an MC-LAG.
  • C. Member links are required to be contiguous ports.
  • D. There should only be four member links per LAG.
  • E. All the ports must have the same speed.

Answer: B,E

Explanation:
When deploying Link Aggregation Groups (LAGs), it is necessary for all ports in the LAG to operate at the same speed to ensure consistent performance and avoid issues with load balancing. Multi-Chassis LAG (MC-LAG) allows for the use of member links that span multiple physical devices, offering redundancy and higher bandwidth by combining the links from two separate devices into a single logical LAG.
References
Juniper Networks Technical Documentation on Link Aggregation Groups
Juniper Networks Technical Documentation on MC-LAG


NEW QUESTION # 86
Exhibit

Referring to the exhibit, which statement is true about VRRP?

  • A. VRRP Is functioning normally in active/active mode.
  • B. Both routers are in the same state because they have the same VRRP priority.
  • C. The routers should use different virtual IP addresses for VRRP to function correctly.
  • D. VRRP communication between the two devices is not functioning correctly.

Answer: A

Explanation:
The exhibit shows the show vrrp summary output from two routers, with both routers listing the state of their VRRP group as master. VRRP allows for multiple routers to share a virtual IP address and a virtual MAC address, but usually, only one router is the master at any given time while others are in backup state. However, in some configurations, VRRP can operate in an active/active mode where multiple routers handle traffic simultaneously for load sharing. Since both routers show the state as master and there is no evidence of misconfiguration in the virtual IP addresses or priority, it indicates that VRRP is likely functioning in an active/active setup.
Reference:
Juniper documentation on VRRP: Junos OS VRRP Overview


NEW QUESTION # 87
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