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Juniper Service Provider Routing and Switching, Specialist (JNCIS-SP) Sample Questions (Q179-Q184):

NEW QUESTION # 179
You are asked to configure a new network environment that will be based on IPv6 and use OSPF.
In this scenario, which two statements correctly identify configuration task considerations?
(Choose two.)

Answer: A,B

Explanation:
OSPF uses a router ID that is a 32-bit value, even when operating in an IPv6 environment with OSPFv3. The router ID remains an IPv4-style identifier used for protocol operations and LSAs.
When running OSPFv3 in an IPv6-based environment, participating interfaces only need to be configured with the IPv6 protocol family and an IPv6 address. IPv4 addressing is not required for OSPFv3 operation.


NEW QUESTION # 180
Exhibit:

on a Juniper switch. It shows interfacexe-0/0/4withunit 0andfamily ethernet-switching. Under vlan, it lists members 10;`] Referring to the exhibit, which two statements are true? (Choose two.)

Answer: B,C

Explanation:
In Junos OS for switching platforms, an interface is configured for Layer 2 bridging under thefamily ethernet- switchinghierarchy. The way an interface handles VLAN traffic depends on its port mode:accessortrunk.
According to Juniper Networks technical documentation, when an interface is configured simply with members <vlan-name/id>, it defaults to anaccess port. In an access port configuration:
* The port is a member of only a single VLAN.
* The portreceives and sends untagged traffic (Option C). Any untagged frame arriving at this interface is implicitly associated with the configured VLAN member.
* The interface does not expect or process 802.1Q tags in incoming frames.
In the exhibit, interface xe-0/0/4 has members 10;. In Junos, the members statement can reference either a VLAN nameor aVLAN ID. However, when the configuration is shown as members 10; without further context of the specific ID mapping, the most precise interpretation of the CLI output provided is thatthe interface is a member of the VLAN named 10 (Option D). While "10" could be the numerical ID, Junos primarily maps members by their defined administrative name.
Why other options are incorrect:
* Option A:Access ports do not receive tagged traffic; only trunk ports (which require the port-mode trunk and vlan members [ ... ] statements) are designed to process tagged frames.
* Option B:While the VLAN named 10likelyhas a VLAN ID of 10, the exhibit does not explicitly confirm the ID mapping. In Junos, a VLAN named "10" could technically have a different tag ID (e.g., VLAN "Office" with ID 10). Option D is the more accurate direct reading of the displayed member configuration.


NEW QUESTION # 181
Referring to the exhibit, what does the configuration achieve on the ge-0/0/3 interface?

Answer: B


NEW QUESTION # 182
You are designing a high availability solution for a Juniper router with dual Routing Engines (RE). You want to ensure that the routing protocol state is preserved during an RE switchover. You have already enabled graceful Routing Engine switchover (GRES) and you want to avoid relying on helper routers to maintain the routing protocol state. In this scenario, which feature would accomplish this behavior?

Answer: B

Explanation:
When designing High Availability (HA) for Juniper Service Provider routers, understanding the interaction between the control plane and data plane is vital. The user has already enabledGraceful Routing Engine Switchover (GRES), which synchronizes the interface and kernel state between the primary and backup Routing Engines (REs). However, GRES by itself does not preserve the routing protocol state (like OSPF adjacencies or BGP sessions).
To achieve the preservation of the routing protocol state without relying on external "helper" routers, you must implementNon-Stop Active Routing (NSR). According to Juniper Networks documentation, NSR uses the infrastructure provided by GRES to also synchronize the routing protocol process (rpd) information.
Under NSR, the backup RE maintains a "hot" standby state of all routing protocols. If the primary RE fails, the backup RE takes over immediately. Because it already possesses the full routing table and peer session states, the peering neighbors are unaware that a switchover occurred. No protocol adjacency resets occur, and traffic continues to flow uninterrupted.
It is crucial to differentiate NSR fromGraceful Restart (Option C). While Graceful Restart also aims to maintain traffic flow during a switchover, itdoesrequire help from neighboring routers (known as "helper mode"). If the neighbors do not support or are not configured for Graceful Restart, the sessions will drop.
Since the user explicitly stated they want to "avoid relying on helper routers," Graceful Restart is not the correct solution.
Non-stop Active Bridging (Option A)provides a similar "hitless" failover but specifically for Layer 2 environments (STP/VLANs) rather than Layer 3 routing protocols.BFD (Option B)is a failure detection protocol used to speed up convergence but does not preserve state during an RE failover; in fact, without NSR, BFD would likely trigger a faster teardown of the session during a switchover. Therefore,NSRis the only feature that meets the requirement for independent control-plane preservation.


NEW QUESTION # 183
Which two statements are correct when using LDP? (Choose two.)

Answer: A,B

Explanation:
With Label Distribution Protocol (LDP), a full mesh of label-switched paths (LSPs) is automatically created between all LDP-enabled routers, and these paths are reflected in the inet.3 table. LDP LSPs are set up when LDP is enabled on interfaces connecting routers in an MPLS network.


NEW QUESTION # 184
......

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