Pass Guaranteed Juniper - The Best JN0-364 - Advanced Service Provider Routing and Switching, Specialist (JNCIS-SP) Testing Engine

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

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Juniper Service Provider Routing and Switching, Specialist (JNCIS-SP) Sample Questions (Q139-Q144):

NEW QUESTION # 139
Which two statements regarding GRE and IP-IP tunnels are correct? (Choose two.)

Answer: C,D

Explanation:
In Juniper Networks Junos OS,Generic Routing Encapsulation (GRE)andIP-in-IP (IP-IP)are common tunneling mechanisms used to transport packets across a network by encapsulating them within another protocol. Understanding the header structure and the limitations of these protocols is essential for proper MTU (Maximum Transmission Unit) management and security design.
Overhead (Option A):
Both GRE and IP-IP tunnels operate by adding an additional IP header to the original packet. An IP-IP tunnel (Protocol 4) adds a20-byteIPv4 header. A GRE tunnel (Protocol 47) adds the same20-bytedelivery IP header plus a minimum4-byteGRE header (totaling 24 bytes, which can increase if keys or sequencing are used).
Because these headers are added to the payload, the total size of the packet increases. This "overhead" means that if the original packet was already at the MTU limit (e.g., 1500 bytes), the encapsulated packet will exceed it, potentially leading to fragmentation or the need to adjust theTCP MSS (Maximum Segment Size).
Encryption (Option D):
Crucially, according to Juniper Service Provider documentation, neither GRE nor IP-IP provides native encryptionor data confidentiality. They are encapsulation protocols, not security protocols. The payload remains in cleartext and is visible to any device along the path. If security and encryption are required for data traversing these tunnels, they must be combined withIPsec (IP Security). While GRE is often used as the
"carrier" for IPsec (to allow multicast or dynamic routing protocols which IPsec alone does not support), the GRE protocol itself remains an unencrypted delivery mechanism. Therefore, statements A and D accurately describe the architectural behavior of these tunnel types.


NEW QUESTION # 140
Referring to the exhibit, what is the minimum number of LSPs required to support all four networks?

Answer: B

Explanation:
Given the RSVP Signaled Service Provider MPLS Core network shown in the exhibit, only a single Label Switched Path (LSP) is required to support all four networks because MPLS can use label stacking to multiplex multiple LSPs over a single physical path. Therefore, one LSP can be established through the MPLS core, and all networks can use this LSP with different label stacks.


NEW QUESTION # 141
Referring to the exhibit, internal BGP between R1 and R2 is not establishing.
What is the problem In this scenario?

Answer: B

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 # 142
How are routing loops prevented in internal BGP networks?

Answer: D

Explanation:
In iBGP, routes learned from one internal BGP neighbor are not advertised to other internal BGP neighbors. This rule prevents routing loops within the autonomous system and is the reason a full mesh or route reflection is required for proper route propagation in iBGP networks.


NEW QUESTION # 143
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:
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 # 144
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