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Nokia 4A0-116 exam, also known as Nokia SRA (Segment Routing Architecture) exam, is designed to test the knowledge and skills of IT professionals in implementing and managing Nokia's Segment Routing technology. 4A0-116 exam is intended for network engineers, architects, and administrators who are responsible for designing, deploying, and maintaining enterprise networks.

Nokia 4A0-116 exam covers a wide range of topics related to Nokia Segment Routing technology, including the basics of segment routing, the principles of segment routing architecture, and the implementation and configuration of segment routing networks. Professionals who pass the Nokia 4A0-116 exam will have a deep understanding of the key concepts and principles of Nokia Segment Routing, as well as the ability to apply this knowledge to real-world network scenarios.

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Nokia Segment Routing Exam Sample Questions (Q19-Q24):

NEW QUESTION # 19
Which of the following statements about path definitions is FALSE?

  • A. A loose hop is one that does not have to be directly adjacent to the previous hop in the path list
  • B. Once a path is associated with an LSP, it cannot be used by other LSPs.
  • C. In addition to the hops defined in the path list, the head-end and tail-end routers are implicitly added.
  • D. The path hops can be defined by either the system or physical interface IP address.

Answer: D


NEW QUESTION # 20
Which of the following list of SR-TE attributes has to be advertised among routers?

  • A. Administrative groups that each link belongs to, TE metric of links, bandwidth availability of each link, SRLG that each link belongs to, link status up/down.
  • B. Administrative groups that each link belongs to, TE metric of links, bandwidth availability of each link, SRLG that each link belongs to.
  • C. Administrative groups that each link belongs to, TE metric of links, SRLG that each link belongs to, link status up/down.
  • D. Administrative groups that each link belongs to, TE metric of links, SRLG that each link belongs to.

Answer: B

Explanation:
In SR-TE, routers need to advertise certain attributes of their links to other routers in the network in order to calculate traffic-engineered paths. These attributes include:
Administrative groups that each link belongs to: This information is used to restrict the use of certain links to specific traffic types or groups.
TE metric of links: This information is used to calculate the cost of using a particular link for a traffic-engineered path.
Bandwidth availability of each link: This information is used to control the amount of traffic that can be sent over a particular link.
SRLG that each link belongs to: This information is used to avoid routing over the same physical link. Link status up/down is not needed to be advertised as it is part of the IGP protocol and is used to check the reachability of a link.


NEW QUESTION # 21
Which of the following is NOT an advantage of using a PCE for the computation of TE-constrained LSP paths, as compared to using CSPF locally on the PE router?

  • A. The ability to create LSPs with primary and secondary paths
  • B. The ability to create cross-area TE-constrained LSP paths
  • C. The ability to create LSP paths with bandwidth reservation
  • D. The ability to ensure that some LSP paths are disjoint

Answer: C

Explanation:
PCE does not have the capability to reserve bandwidth, This is a function of a Resource Reservation Protocol (RSVP) or a Label Distribution Protocol (LDP) and is done locally on the PE.
PCE can have advantages such as:
The ability to create cross-area TE-constrained LSP paths
The ability to create LSPs with primary and secondary paths
The ability to ensure that some LSP paths are disjoint
it can be used to optimize the path computation by centralizing the path calculation and by taking into account a global view of the network.


NEW QUESTION # 22
A router participating in SR-TE is advertising a value of Ox11 for the admin-group membership of one of its interfaces. Which of the following statements is TRUE?

  • A. The interface belongs to admin group RED, configured with a value of 17.
  • B. The interface belongs to four different admin groups.
  • C. The interface belongs to three different admin groups.
  • D. The interface belongs to two different admin groups.

Answer: D

Explanation:
In SR-TE, the admin-group is represented by a 32-bit value, where each bit represents a different admin-group. The value Ox11 in binary is 000100010001, which has two bits set to 1, indicating that the interface belongs to two different admin groups. The exact admin-groups that the interface belongs to depends on how the admin-groups have been configured on the router.


NEW QUESTION # 23
In the context of a network that includes a Path Computation Element (PCE), what is a PCC-initiated LSP?

  • A. An LSP that needs to be explicitly configured on the head-end router.
  • B. An LSP whose existence and state are reported to the PCE.
  • C. An LSP for which the path repairs and re-optimizations must be triggered by the head-end router.
  • D. An LSP for which the initial path is calculated by the head-end router.

Answer: B

Explanation:
A PCC-initiated LSP is an LSP that is established and controlled by the PCC (Path Computation Client) which is typically a head-end router. The PCC sends LSP setup and teardown requests to the PCE and also reports the existence and state of the LSPs to the PCE. The PCE then uses this information to perform path computation and to monitor the state of the LSPs.


NEW QUESTION # 24
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