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| Certification Vendor: | Juniper Networks |
|---|---|
| Exam Name: | Enterprise Routing and Switching, Professional (JNCIP-ENT) |
| Exam Number: | JN0-650 |
| Exam Price: | USD 400 |
| Available Languages: | English |
| Exam Duration: | 120 minutes |
| Related Certifications: | JNCIE-ENT JNCIS-ENT JNCIA-Junos JNCIP-ENT |
| Certificate Validity Period: | 3 years |
| Exam Format: | Multiple choice, Multiple response, Scenario-based questions, Drag and drop |
| Real Exam Qty: | 60-65 |
| Recommended Training: | Juniper Learning Portal - JNCIP-ENT Training Juniper Day One Books (Enterprise Routing) |
| Exam Registration: | Pearson VUE Juniper Exams Juniper Certification Portal |
| Sample Questions: | Juniper JN0-650 Sample Questions |
| Exam Way: | Computer-based testing (online proctored or test center depending on region) |
| Pre Condition: | Recommended prerequisite: JNCIS-ENT certification or equivalent networking experience with Junos OS and enterprise routing concepts |
| Official Syllabus URL: | https://www.juniper.net/us/en/training/certification/certification-tracks/enterprise-routing-switching/ |
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NEW QUESTION # 45
Which statement accurately describes the operation of OSPF within the Junos OS?
Answer: D
Explanation:
OSPF (Open Shortest Path First) is a standards-based Link-State Interior Gateway Protocol (IGP) implemented within Junos OS 24.4:
Intra-AS Routing: OSPF is designed to distribute routing information and perform neighbor discovery within a single Autonomous System (AS). It divides the AS into areas to localize Link-State Advertisements (LSAs) and reduce the size of the Link-State Database (LSDB) on each router. (Option B) Algorithm: OSPF uses the Shortest Path First (SPF) or Dijkstra algorithm, not a distance vector algorithm (which would be RIP or BGP). This makes Option A incorrect.
Directly Connected Routes: In Junos OS, you must explicitly configure an interface under the [edit protocols ospf] hierarchy to include it in the OSPF process. Once an interface is added, its prefix is automatically advertised to neighbors via Router (Type 1) LSAs. This makes Option C technically inaccurate in the context of interfaces participating in the protocol.
Scope: Protocols used between multiple autonomous systems are External Gateway Protocols (EGPs), such as BGP. This makes Option D incorrect.
NEW QUESTION # 46
How is MSDP used in conjunction with PIM-SM?
Answer: C
NEW QUESTION # 47
When configuring IS-IS, what is the purpose of the Level 1-2 router type?
Answer: B
NEW QUESTION # 48
Exhibit
You configured MVRP in your Layer 2 network using the configuration shown in the exhibit. You verified that the appropnate VLANs are configured and applied on the two access switches. You are using RSTP as your loop prevention mechanism. Unfortunately, the users are not able to communicate with their corresponding server attached to the Access-2 switch.
In this scenario, what should you do to solve this problem?
Answer: B
Explanation:
The exhibit shows a network topology where Multiple VLAN Registration Protocol (MVRP) is used to dynamically manage VLANs across switches Core-1, Access-1, and Access-2.
Identifying the Missing Configuration: According to the diagram, the trunk link between Core-1 and Access-2 uses interface ge-0/0/16.0 on the Core-1 side.
Output Analysis: However, the show protocols mvrp output for Core-1 only lists interfaces ge-0/0/14.0 and ge-
0/0/15.0.
MVRP Requirements: For MVRP to successfully propagate VLAN information between Access-2 and the rest of the network, the protocol must be enabled on every trunk interface in the path.
Solution: Because ge-0/0/16.0 is missing from the Core-1 MVRP configuration, VLAN registration messages from Access-2 are not being processed by Core-1. Configuring this interface under MVRP on Core-1 will solve the communication problem.
NEW QUESTION # 49
You are deploying a three-stage EVPN environment with VXLAN using EX and QFX Series switches. The leaf devices will perform the gateway services. Which two statements are correct in this scenario? (Choose two.)
Answer: B,C
Explanation:
In a three-stage EVPN-VXLAN fabric (Spine-Leaf architecture) where leaf devices perform the gateway services (Edge-Routed Bridging or ERB):
* VTEP Functionality (Option B): Leaf devices act as VXLAN Tunnel End Points (VTEPs). They are responsible for encapsulating Ethernet frames from locally connected hosts into VXLAN packets for transport across the IP fabric and de-encapsulating incoming VXLAN packets.
* Fabric Support (Option C): In a standard Juniper IP fabric design, both the leaf and spine devices are typically expected to support VXLAN and EVPN capabilities. While spines in an ERB design might only perform IP forwarding in the underlay, they often participate in the BGP control plane (as Route Reflectors) or provide the ability to transition to Centrally-Routed Bridging (CRB) where spines would act as gateways.
* Incorrect Options: Option A is incorrect because the entire fabric infrastructure must be "VXLAN aware" in terms of MTU settings and routing capability to support the overlay. Option D is incorrect because in an ERB design, the spine devices are high-speed transit nodes and do not terminate VXLAN tunnels; only the edge (leaf) devices act as VTEPs.
NEW QUESTION # 50
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