Juniper JN0-650 Training For Exam & JN0-650 Exam Details

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Juniper JN0-650 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Ethernet Switching and Spanning Tree: This section covers advanced Layer 2 switching including filter-based VLANs, private VLANs, MVRP, Layer 2 tunneling via Q-in-Q and L2PT, plus MSTP and VSTP protocols.
Topic 2
  • Class of Service (CoS): This domain covers QoS mechanisms in Junos including CoS processing, header fields, forwarding classes, classification, policers, schedulers, drop profiles, shaping, and rewrite rules.
Topic 3
  • Layer 2 Authentication and Access Control: This domain examines network access control mechanisms including 802.1x, MAC RADIUS, captive portal, server fail fallback, guest VLANs, and multi-method authentication considerations.
Topic 4
  • BGP: This section focuses on Border Gateway Protocol operations including route selection, next hop resolution, BGP attributes, communities, load balancing, IPv4
  • IPv6 address families, advanced options, and routing policy implementation.
Topic 5
  • IP Telephony Features: This section focuses on features supporting VoIP deployments including Power over Ethernet, LLDP
  • LLDP-MED protocols, and voice VLAN implementation.
Topic 6
  • IP Multicast: This domain addresses one-to-many communication using multicast routing, covering addressing, ASM vs SSM models, RPF, IGMP
  • snooping, PIM sparse-mode, rendezvous points, Anycast RP, MSDP, and routing policies.

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Juniper Enterprise Routing and Switching, Professional (JNCIP-ENT) Sample Questions (Q50-Q55):

NEW QUESTION # 50
The connection between DC1 and DC2 is routed as shown in the exhibit.

In this scenario, which statement is correct?

Answer: D


NEW QUESTION # 51
Referring to the exhibit, you are receiving multiple routes from ISP3 through two EBGP neighbors. You must ensure that all traffic leaving R1 destined to the networks advertised by ISP3 go Through ISP2.

What should you do on R1 to accomplish this task?

Answer: B


NEW QUESTION # 52
Exhibit.

Referring to the exhibit, you see that the 0.0.0.0/0 route is coming from AS 64512.
What is the command to achieve this task?

Answer: D

Explanation:
The exhibit shows a BGP routing process where an Import Policy is being applied to routes received in the RIB-IN. Specifically, Policy 1 states: " Reject 0.0.0.0/0 from AS 64512. " In Junos OS, when a routing policy rejects a route, that route is not placed in the main routing table (inet.0) for active use. Instead, it becomes a hidden route. To verify that a specific peer is actually sending a route that is subsequently being rejected by your policy, you must use specific diagnostic commands:
Understanding " Hidden " Routes: When a BGP route is received but fails to meet policy requirements (or has an unreachable next-hop), Junos keeps it in the BGP RIB-IN but marks it as " hidden. " It will not appear in a standard show route command.
Command Logic (Option D): The command show route receive-protocol bgp < peer ip > hidden allows an administrator to view all routes received from a specific neighbor, including those that were rejected by import policies.
show route receive-protocol bgp < peer ip > : Shows only the routes that passed the import policy and were accepted into the table. Since the 0.0.0.0/0 route from AS 64512 is explicitly rejected in the exhibit, it would not show up here.
Adding the hidden keyword is the essential step to see the rejected default route and verify that AS 64512 is indeed sending it before the policy drops it.
Other Options:
Option A is incorrect because it only shows accepted routes.
Option B and C are used to filter the existing active routing table based on gateway or next-hop attributes, but they cannot show routes that have been rejected and excluded from that table.


NEW QUESTION # 53
How can BGP implement load balancing?

Answer: A


NEW QUESTION # 54
Exhibit

Referring to the exhibit, which two statements are correct? (Choose two.)

Answer: C,D

Explanation:
The exhibit shows the Class of Service (CoS) transmit queue information for interface ge-0/0/11. To determine the correct behavior, we must analyze the bandwidth allocations and the queue limit settings:
* Bandwidth Calculation (Option A):In Junos OS, when multiple queues are assigned specific percentages of bandwidth, the "remainder" (represented by'r') is the total interface bandwidth minus the sum of the explicitly configured percentages.
* Bandwidth assigned to Queue 1 (EF) = 10%.
* Bandwidth assigned to Queue 2 (AF) = 10%.
* Bandwidth assigned to Queue 3 (NC) = 4%.
* Total explicitly assigned = $10% + 10% + 4% = 24%$.
* Remainder for Queue 0 (Best Effort)= $100% - 24% = 76%$.
* "Limit: exact" Behavior (Option B):The exhibit shows that Queue 2 (assured-forwarding) has aLimit set toexact.
* By default, a queue in Junos can consume more than its allocated bandwidth if other queues are idle.
* However, when the exact keyword is applied to the transmit-rate (transmission rate), the queue is strictly rate-limited to its configured percentage.
* This means that traffic in Queue 2 will be capped at 10% of the interface bandwidthregardless of whether the network is congested or not. If the traffic exceeds 10%, the excess will be dropped or buffered to match the exact rate.
* Option Cis incorrect because 100% of the bandwidth is not reserved for a single queue; it is distributed across four queues.
* Option Dis less accurate than B because it implies the drop behavior only occurs during congestion.
The exact parameter enforces the limit even when the rest of the interface is completely idle.


NEW QUESTION # 55
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