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Juniper JN0-364 Exam Syllabus Topics:

SectionWeightObjectives
Intermediate System to Intermediate System (IS-IS)10-15%- Metrics and wide metrics
- Configuration and monitoring
- PDUs and TLVs
- Adjacencies and levels
Multiprotocol Label Switching (MPLS)12-18%- LDP and RSVP
- Configuration and monitoring
- Terminology and forwarding
- Segment routing basics
- Labels and LIB
Layer 2 Bridging and VLANs8-12%- VLANs and trunking
- Bridging concepts
- Service provider switching features
IPv68-12%- Static and dynamic routing
- OSPFv3 and BGP for IPv6
- Address types and format
- Autoconfiguration
Spanning Tree Protocols8-12%- Port roles and states
- Configuration and convergence
- BPDU and protection features
- STP, RSTP, MSTP, VSTP
Protocol-Independent Routing10-15%- Filter-based forwarding
- Load balancing
- Static, aggregate, and generated routes
- Routing instances and RIB groups
- Martian addresses
Open Shortest Path First (OSPF)15-20%- Link-state database
- Configuration and troubleshooting
- LSA types and operation
- Areas and router types
Border Gateway Protocol (BGP)20-25%- Path selection and attributes
- IBGP and EBGP
- Configuration and troubleshooting
- Policy and route filtering
- Basic operation and message types
Tunnels5-8%- GRE and IP-IP tunnels
- Tunnel configuration and usage
High Availability5-8%- Nonstop active routing
- Graceful restart
- NSR and GRES concepts

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JN0-364 Service Provider Routing and Switching, Specialist (JNCIS-SP) Learning Material in 3 Different Formats

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Juniper Service Provider Routing and Switching, Specialist (JNCIS-SP) Sample Questions (Q152-Q157):

NEW QUESTION # 152
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: C

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 # 153
Which OSPF packet type is used to initiate and maintain neighbor relationships?

Answer: D

Explanation:
TheHello packetis the most basic, yet most vital, component of the OSPF protocol. It serves as the primary mechanism for neighbor discovery, parameter negotiation, and "keepalive" functionality. Per Juniper Networks' routing documentation, OSPF routers use the Hello protocol to dynamically discover other OSPF- enabled routers on their directly connected segments.
When OSPF is enabled on a Junos interface, the router begins multicasting Hello packets (typically to the
224.0.0.5"All OSPF Routers" address). This initiates the neighbor relationship. For two routers to move beyond theInitstate and become neighbors, they must agree on several critical parameters contained within the Hello packet:
* Area ID:Routers must be in the same OSPF area.
* Authentication:Passwords or keys must match.
* Timers:The Hello and Dead intervals must be identical.
* Options:Such as Stub area flags.
Beyond the initial "initiation," the Hello packet is used tomaintainthe relationship. By continuously sending these packets at a fixed interval (the Hello interval), a router signals to its peers that it is still functional. If a router stops receiving Hello packets from a neighbor for a duration exceeding theDead Interval, it declares the neighbor "down," flushes the associated LSAs from the database, and triggers a new SPF calculation.
Furthermore, on multi-access networks like Ethernet, the Hello packet is the vehicle for the election of the Designated Router (DR)andBackup Designated Router (BDR). By exchanging priority values and Router IDs within the Hello packets, the segment can elect a central point of contact to minimize the number of adjacencies required on the wire.


NEW QUESTION # 154
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: B,D

Explanation:
When transitioning to an IPv6 environment usingOSPFv3(the version of OSPF designed for IPv6), there are significant architectural differences compared to OSPFv2 (IPv4). According to Juniper Networks technical documentation, OSPFv3 was redesigned to be more protocol-agnostic.
Router ID (Option C):
Despite OSPFv3 routing IPv6 (which uses 128-bit addresses), the OSPFRouter IDremains a32-bit value formatted like an IPv4 address (e.g., 1.1.1.1). This is a common point of confusion. In a pure IPv6 environment where no IPv4 addresses are configured on any interfaces, a Juniper router cannot automatically derive a Router ID. Therefore, the administrator must manually configure a 32-bit Router ID under [edit routing-options] for the OSPFv3 process to initialize.
Interface Configuration (Option D):
OSPFv3 runs directly over the IPv6 link-local scope. Unlike OSPFv2, it does not require an IPv4 address to function. Therefore, interfaces areonly required to be configured with family inet6(Option D). You do not need "dual-stack" (both IPv4 and IPv6) functionality just to run OSPFv3. The protocol uses the link-local address (fe80::/10) of the interface for neighbor adjacencies and as the next hop for routing updates. This separation allows OSPFv3 to carry multiple "address families" (both IPv4 and IPv6 unicast) if needed, but the base requirement for an IPv6-only network is simply the family inet6 configuration.


NEW QUESTION # 155
Referring to the exhibit, internal BGP between R1 and R2 is not establishing.
What is the problem In this scenario?

Answer: D

Explanation:
The exhibit shows that the BGP session state is "Active," which generally indicates that the router is trying to establish a BGP session but has not received a response. One common cause for this issue is that there is no route to the BGP neighbor's address. Since the routers are using internal BGP (iBGP) and they are in the same AS, the AS number does not need to be unique, and a next-hop self policy is not strictly required for iBGP. The router-id is usually automatically determined and does not need to be explicitly set.


NEW QUESTION # 156
You are using RSVP in your network to signal MPLS LSPs. You are asked to ensure that the egress MPLS router receives the full label stack, containing both the hop-by-hop and VPN label.
Which configuration will satisfy this requirement?

Answer: C


NEW QUESTION # 157
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