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Juniper JN0-364 Exam Syllabus Topics:

SectionObjectives
Topic 1: Border Gateway Protocol (BGP)- Demonstrate knowledge of how to configure, monitor, or troubleshoot BGP
  • 1. Routing policy application
  • 2. Troubleshooting tools
  • 3. Peers and peer groups
- Identify the concepts, operation, or functionality of BGP
  • 1. IBGP and EBGP functionality and interaction
  • 2. BGP route reflection and confederations
  • 3. Attributes
  • 4. BGP message types
  • 5. BGP basic operation
  • 6. Route selection process
Topic 2: Multiprotocol Label Switching (MPLS)- Identify the concepts, operation, or functionality of MPLS CoS processing on Junos devices
  • 1. Labels and the label information base
  • 2. LDP
  • 3. End-to-end packet flow and forwarding
  • 4. MPLS terminology
  • 5. RSVP
  • 6. MPLS and routing tables
  • 7. Segment routing with MPLS
  • 8. MPLS packet header
- Demonstrate knowledge of how to configure, monitor, or troubleshoot MPLS
  • 1. MPLS forwarding
  • 2. LDP-signaled Label-Switched Paths (LSPs)
  • 3. RSVP-signaled Label-Switched Paths (LSPs)
  • 4. Shortest path segment-routing LSPs
Topic 3: Intermediate System to Intermediate System (IS-IS)- Demonstrate knowledge of how to configure, monitor, or troubleshoot IS-IS
  • 1. Routing policy application
  • 2. Interfaces and adjacencies
  • 3. Troubleshooting tools
- Identify the concepts, operation, or functionality of IS-IS
  • 1. IS-IS protocol data units (PDUs)
  • 2. Levels and areas
  • 3. Designated intermediate system (DIS)
  • 4. Type, length, values (TLVs)
  • 5. Link-state database
  • 6. Adjacencies and neighbors
  • 7. Metrics
Topic 4: Open Shortest Path First (OSPF)- Identify the concepts, operation, or functionality of OSPF
  • 1. Link-state advertisement (LSA) packet type
  • 2. Designated router and backup designated router
  • 3. OSPF area and router types
  • 4. OSPF packet types
  • 5. Router ID
  • 6. Link-state database
  • 7. Adjacencies and neighbors
- Demonstrate knowledge of how to configure, monitor, or troubleshoot OSPF
  • 1. Routing policy application
  • 2. Interfaces and neighbor
  • 3. Troubleshooting tools
Topic 5: IPv6- Demonstrate knowledge of how to configure, monitor, or troubleshoot IPv6
- Identify the concepts, operation, or functionality of IPv6
  • 1. Dynamic routing - OSPFv3, IS-IS, BGP
  • 2. IPv6 over IPv4 tunneling
  • 3. Static routes
Topic 6: Spanning Tree Protocols- Demonstrate knowledge of how to configure, monitor, or troubleshoot Spanning Tree Protocols
  • 1. RSTP
  • 2. MSTP
  • 3. STP
  • 4. VSTP
- Identify the concepts, operation, or functionality of STP
  • 1. RSTP
  • 2. MSTP
  • 3. STP
  • 4. VSTP
Topic 7: Layer 2 Bridging or VLANs- Identify the concepts, operation, or functionality of Layer 2 bridging for the Junos OS
  • 1. Frame processing
  • 2. Bridging elements and terminology
  • 3. Virtual Switches
  • 4. Service provider switching platforms
  • 5. Provider bridging (Q-in-Q tunneling)
- Identify the concepts, benefits, or functionality of VLANs
  • 1. Integrated Routing and Bridging (IRB)
  • 2. Tagging
  • 3. Port modes
- Demonstrate knowledge of how to configure, monitor, or troubleshoot Layer 2 bridging or VLANs
  • 1. Provider bridging
  • 2. Interfaces and ports
  • 3. VLANs
  • 4. IRB
Topic 8: Protocol-Independent Routing- Identify the concepts, operation, or functionality of various protocol-independent routing components
  • 1. Static, aggregate, and generated routes
  • 2. Load balancing
  • 3. Filter-based forwarding
  • 4. Martian addresses
  • 5. Routing instances, including routing information base (RIB) (also known as routing table) group
- Demonstrate knowledge of how to configure, monitor, or troubleshoot various protocol-independent routing components
  • 1. Static, aggregate, and generated routes
  • 2. Load balancing
  • 3. Filter-based forwarding

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Juniper Service Provider Routing and Switching, Specialist (JNCIS-SP) Sample Questions (Q162-Q167):

NEW QUESTION # 162
Which two protocols are capable of distributing labels for segment routing? (Choose two.)

Answer: B,C

Explanation:
Segment routing labels can be distributed by link-state routing protocols such as IS-IS and OSPF, which have been extended to support segment routing capabilities.


NEW QUESTION # 163
Which LSA type does an OSPF ABR use to advertise external routes generated by an NSSAASBR into the backbone?

Answer: A

Explanation:
In OSPF, an Area Border Router (ABR) that connects to a Not-So-Stubby Area (NSSA) will convert the Type 7 LSAs generated by an NSSA Autonomous System Boundary Router (ASBR) into Type 5 LSAs to advertise them into the OSPF backbone area (Area 0). Type 7 LSAs are specific to NSSAs and are used to advertise external routes within the NSSA.


NEW QUESTION # 164
What happens if an IS-IS router receives a link-state PDU with a higher sequence number than the one in its database?

Answer: B

Explanation:
IS-IS is a link-state protocol that relies on the rapid and consistent flooding ofLink-State PDUs (LSPs)to ensure that every router in an area has an identical view of the topology. To manage the "freshness" of information, IS-IS uses aSequence Number-a 32-bit unsigned integer that increments every time the originating router makes a change to its LSP.
According to Juniper Networks technical documentation, when a router receives an LSP, it performs a comparison between the received LSP and the version it currently holds in itsLink-State Database (LSDB).
If the received LSP has ahigher sequence number, the router concludes that this is "newer" and more accurate information. The router will then perform two immediate actions:
* Update:It replaces the older LSP in its LSDB with the newly received version.
* Flood:It propagates the new LSP to all other neighbors (except the one that sent it) to ensure the entire area converges on the new data.
If the sequence numbers were equal, the router would ignore the incoming PDU as it already has the information. If the received sequence number werelower, the router would conclude its own database is more recent and would actually send its own "newer" version back to the neighbor to bring them up to date (a process called "poisoning" or refreshing the neighbor).Complete Sequence Number PDUs (CSNPs)(Option C) are used during initial database synchronization or periodic checks on broadcast links, but the primary response to a "newer" LSP is immediate database update and flooding.


NEW QUESTION # 165
You want to enable a routing platform with redundant REs to switch from a primary RE to a backup RE without alerting peer nodes. Which two technologies would you use to satisfy this requirement? (Choose two.)

Answer: B,D

Explanation:
Graceful Routing Engine Switchover (GRES) and Nonstop Active Routing (NSR) are two features used in Junos OS to provide high availability. GRES allows for the stateful failover of the Routing Engine, and NSR allows for the continuation of packet forwarding and protocol states during a Routing Engine switchover. These technologies ensure that peer nodes are not alerted during a switchover. VRRP and ISSU serve different purposes and do not apply to this specific requirement.


NEW QUESTION # 166
Referring to the exhibit. Which prefix in the output shown in the exhibit is an external prefix injected by an OSPF router?

Answer: B

Explanation:
In the OSPF routing table output, prefixes are marked with different route types. An external prefix injected into OSPF is marked as 'Ext' (External) followed by a number that indicates whether it's an E1 or E2 route. The prefix 172.18.1.0/24 is marked as Ext2, which indicates that it is an external route that has been redistributed into OSPF from another routing protocol or static configuration.


NEW QUESTION # 167
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