Exam JN0-650 Introduction | Latest JN0-650 Exam Objectives

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Juniper Enterprise Routing and Switching, Professional (JNCIP-ENT) Sample Questions (Q10-Q15):

NEW QUESTION # 10
You are asked to configure 802.1X on your access ports to allow only a single device to authenticate.
In this scenario, which configuration would you use?

Answer: D


NEW QUESTION # 11
Exhibit

You are receiving the same BGP Internet routes on R1 from both upstream ISPs. You are asked to load- balance traffic destined to the Internet across both ISPs.
Referring to the exhibit, which BGP solution should you use?

Answer: D

Explanation:
In standard BGP operations, a router typically selects only one " best path " for a given destination prefix and installs that single path into the forwarding table. To utilize multiple paths for traffic forwarding (load- balancing), specific multipath features must be enabled.
BGP Multipath: This feature allows a router to install multiple equal-cost paths into the routing and forwarding tables. However, by default, BGP multipath requires that all candidate paths have the same neighboring Autonomous System (AS).
Multipath Multiple-AS (Option B): In the exhibit, R1 is receiving routes from ISP A (AS 65501) and ISP B (AS 65502). Since these are two different neighboring ASs, the standard multipath feature is not sufficient.
You must use the multipath multiple-as statement under the BGP group or neighbor hierarchy. This tells Junos to consider paths as equal even if they originate from different neighboring ASs, provided all other BGP path selection attributes (Local Preference, AS Path length, Origin, MED, etc.) are identical.
Why other options are incorrect: * Option A (multihop) is used for peering with routers that are not directly connected.
Option C (prefix limit) is a security and stability feature to limit the number of prefixes received from a neighbor.
Option D (damping) is used to penalize unstable, " flapping " routes to prevent constant routing table churn.
Configuration Example for Junos OS 24.4: To implement this on R1, you would use the following configuration:
set protocols bgp group < group-name > multipath multiple-as


NEW QUESTION # 12
You are securing the network using 802.1x access control. You apply 802.1x authentication on the distribution switch, as shown in the exhibit. You configure the switch port in single supplicant mode.

What will the result be?

Answer: B


NEW QUESTION # 13
Which two statements are correct regarding the behavior shown in the exhibit? (Choose two.)

Answer: A,D


NEW QUESTION # 14
Exhibit
You want to provide better performance for the video traffic that traverses your network The video traffic enters your network without any class-of-service markings According to Juniper Networks, which two classification methods are performed by the routers shown in the exhibit? (Choose two.)

Answer: A,C

Explanation:
The exhibit illustrates a standard end-to-end Class of Service (CoS) path consisting of an edge router (R1) and core/intermediate routers (R2 and R3).
* Edge Classification (Option B):The scenario specifies that video traffic enters the networkwithout any class-of-service markings. Because there are no DSCP or 802.1p bits to inspect, the ingress router (R1) cannot use simple Behavior Aggregate (BA) classification. Instead, it must useMultifield (MF) classification. MF classification allows the router to look deeper into the packet (Source/Destination IP, Protocol, Port numbers) to identify the video stream and assign it to a specific forwarding class. *Core Classification (Option D):Once R1 has identified the traffic, it will typically apply arewrite ruleon its egress interface to mark the packets with a specific CoS value (like a DSCP code). Consequently, the downstream routers (R2 and R3) do not need to perform expensive deep-packet inspection again. They can useBehavior Aggregate (BA) classification, which simply looks at the markings in the packet header to determine the appropriate forwarding priority.
* Option A and C:These are incorrect because BA classification is impossible on unmarked ingress traffic, and performing MF classification in the core is inefficient and not a recommended Juniper design practice for high-speed transit.


NEW QUESTION # 15
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