Skip to content

Prepaway Exam Dumps

Best High Pass-Rate Exam Dumps

  • HOME
  • ALL EXAMS
  • Cisco
  • SAP
  • Huawei
  • Avaya
  • IBM
  • Amazon
  • Contact
  • HOME
  • ALL EXAMS
  • Cisco
  • SAP
  • Huawei
  • Avaya
  • IBM
  • Amazon
  • Contact

Tag Archives: JN0-650 reliable practice materials

  1.   »  
  2. Tag Archives: JN0-650 reliable practice materials

Tag: JN0-650 reliable practice materials

Latest [Sep 01, 2026] JN0-650 Exam Dumps – Valid and Updated Dumps [Q13-Q35]

Latest [Sep 01, 2026] JN0-650 Exam Dumps – Valid and Updated Dumps [Q13-Q35]

September 1, 2026 adminJN0-650, JuniperJN0-650 latest exam tutorial, JN0-650 latest test topics, JN0-650 reliable practice materials, JN0-650 test testking, JN0-650 valid study guide freeLeave a Comment on Latest [Sep 01, 2026] JN0-650 Exam Dumps – Valid and Updated Dumps [Q13-Q35]

Latest [Sep 01, 2026] JN0-650 Exam Dumps – Valid and Updated Dumps

Free Sales Ending Soon – 100% Valid JN0-650 Exam Dumps with 124 Questions

Juniper JN0-650 Exam Syllabus Topics:

Topic Details
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
  • Interior Gateway Protocols (IGPs): This domain covers internal routing protocols operating within a single autonomous system, including OSPFv2, OSPFv3, and routing policy implementation, along with configuration, troubleshooting, and monitoring skills.
Topic 3
  • IP Telephony Features: This section focuses on features supporting VoIP deployments including Power over Ethernet, LLDP
  • LLDP-MED protocols, and voice VLAN implementation.
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
  • EVPN: This section addresses Ethernet VPN technology for Layer 2 over Layer 3 connectivity, covering EVPN route types, VXLAN encapsulation, and multi-homing configurations.
Topic 6
  • 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.

 

NO.13 You are implementing an EVPN-VXLAN edge-routed bridging design using Layer 3 gateway operations. In this scenario, which statement is correct?

 
 
 
 
In an EVPN-VXLAN Edge-Routed Bridging (ERB) architecture, also known as a collapsed fabric, the Layer 3 default gateway functionality is moved from the core/spine layer down to the edge (the leaf or distribution layer).
* Anycast Gateways: To support seamless host mobility and redundancy, multiple distribution/leaf switches are configured with the same anycast IP address and MAC address on their IRB interfaces for a given VLAN. This allows a host to move between different switches without needing to update its default gateway configuration or ARP cache.
* Distributed Routing: Routing occurs locally at the edge (distribution layer). Traffic destined for a different subnet is routed by the first switch it hits (the ingress leaf), rather than being backhauled to a central core router.
* Symmetric vs. Asymmetric IRB: Junos OS 24.4 supports both models, but the ERB design typically utilizes symmetric routing for better scalability, where each leaf only needs to know the routes for its locally connected VNIs and uses a transit VNI for inter-subnet communication.
Option A is incorrect because while unique IPs can be used (Method 1 in some docs), the defining characteristic of an efficient ERB design is the use of shared Anycast IPs for the gateway. Option C describes a Centrally-Routed Bridging (CRB) design, not ERB.

NO.14 Which three types of ports are used for Junos Fusion Enterprise? (Choose three. )

 
 
 
 
 

NO.15 You are enabling MSTP in your Layer 2 network to prevent loops.
In this scenario, which three parameters must match on all switches in the network? (Choose three.)

 
 
 
 
 

NO.16 You are asked to configure an 802.1X solution that supports dynamic VLAN assignment.
In this scenario, which two modes support using vendor-specific attributes (VSAs)? (Choose two.)

 
 
 
 

NO.17 Exhibit
You need to configure the non-RP routers in your network to dynamically learn the location of the RP using standard protocols only. You have already applied the configuration shown in the exhibit, but the routers have not learned the location of the RP.
Which additional step must you take to fulfill these requirements?

 
 
 
 
The exhibit shows a multicast network runningPIM Sparse Modewhere R2 is configured as a local Rendezvous Point (RP). However, the non-RP routers (like R5) show no learned RP in their show pim rps output. To resolve this usingstandard protocolsfor dynamic RP discovery, you must implement a mechanism that automates the distribution of RP information across the PIM domain.
* Bootstrap Router (BSR) (Option B):BSR is the industry-standard (RFC 5059) mechanism for dynamically electing an RP and distributing that information throughout a PIM-SM domain.
* It uses two roles:Candidate-RPs (C-RPs), which announce their desire to be an RP, and Candidate-BSRs (C-BSRs), which collect these announcements and flood them to all other routers in the network via PIM bootstrap messages.
* BSR is a “standard protocol” as it is part of the PIMv2 specification. Once configured on R2 (as C-RP) and potentially R1 or R2 (as C-BSR), all other routers will dynamically learn that R2 is the RP for the specified group ranges.
* Auto-RP (Option D):While this also provides dynamic RP discovery, it is aproprietaryCisco protocol. Although Junos supports it for interoperability, the question specifically asks for “standard protocols only,” making BSR the preferred choice.
* MSDP (Option A):Multicast Source Discovery Protocol (MSDP) is used to share information about active sources betweendifferentPIM domains or for Anycast-RP. It does not handle the initial discovery of an RP within a single domain for standard PIM-SM operations.
* Anycast RP (Option C):This is a technique used for RP redundancy and load balancing. While it can use BSR or MSDP for synchronization, it is a design architecture rather than a standalone “standard protocol” for the basic dynamic discovery of an RP in the manner requested here.
Configuration Example for BSR in Junos OS 24.4:To enable this, you would add the following to the RP (R2):
set protocols pim rp bootstrap-discovery
set protocols pim rp candidate-rp 10.222.1.2 group-ranges 224.0.0.0/4
set protocols pim rp candidate-bsr 10.222.1.2

NO.18 Your organization uses 802.1X with a RADIUS server. If the RADIUS server stops responding, you want the fallback action to continue to permit access for devices that currently have authorization but deny any new access attempts. Which fallback action provides this capability?

 
 
 
 
The use-cache fallback action allows devices that have already been authorized by 802.1X to continue accessing the network if the RADIUS server becomes unavailable, while blocking any new authentication attempts. This provides continuity for authorized users without opening access to unauthorized devices.

NO.19 Click the Exhibit button.

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.)

 
 
 
 
At the network edge (R1), multifield (MF) classification is used to inspect unmarked video traffic and assign CoS markings based on packet fields. In the core (R2 and R3), behavior aggregate (BA) classification is used to forward traffic based on the DSCP markings set by the edge devices, providing consistent treatment without inspecting every packet field.

NO.20 Which OSPFv2 feature provides a method for aggregating routes at an area boundary?

 
 
 
 

NO.21 Which protocol allows a switch to pass configuration information to an IP phone?

 
 
 
 

NO.22 You will to route Layer 3 PVLAN traffic within the secondary VLAN.
What is required to accomplish this task?

 
 
 
 

NO.23 What is the primary function of PIM sparse-mode in multicast routing?

 
 
 
 

NO.24 When configuring multicast routing policies, what is a common action?

 
 
 
 

NO.25 The network you support currently has a mixture of MC-LAG and Virtual Chassis being used to provide redundant connectivity from various IDFs. A project to modernize the architecture and move to EVPN- VXLAN using ESI-LAG will be starting soon. You want to avoid IDFs losing connectivity as the core devices are migrated to EVPN-VXLAN. Which action will accomplish this task?

 
 
 
 
In an EVPN-VXLAN environment using ESI-LAG (Ethernet Segment Identifier Link Aggregation) , the Core Isolation feature is a safety mechanism designed to prevent traffic blackholing. When a leaf switch (acting as a VTEP) loses its BGP peering or its link to the IP fabric core, it assumes it is ” isolated ” from the rest of the network. To protect the network, the switch automatically shuts down its local member links of any multi-homed ESI-LAG to force traffic to the peer switch that still has core connectivity.
However, during a migration or in specific transitional topologies where the core might be temporarily unreachable or not yet fully established, this feature can cause the leaf switches to shut down all downstream IDF (Intermediate Distribution Frame) connections, leading to a total loss of connectivity.
* The Solution (Option C): By enabling the no-core-isolation statement under the [edit protocols evpn] hierarchy, you instruct the switch to disable this automatic shutdown behavior . This ensures that even if the BGP session or core links are not yet stable during the migration process, the ESI-LAG interfaces remain Up , allowing the IDFs to maintain connectivity to their local default gateways or other local resources.
* Why others are incorrect: Enabling EVPN-VXLAN before migration (Option A) does not address the isolation logic. Removing MC-LAG/Virtual Chassis links prematurely (Option B) would cause an immediate outage. The network-isolation-profile (Option D) is typically used for different loop prevention scenarios and does not override the specific core-isolation check that affects multi-homed ESIs.

NO.26 Which protocol is used to dynamically create and prune VLANs?

 
 
 
 

NO.27 Exhibit

What is the OSPF router type shown in the exhibit for router 192.168.2.1?

 
 
 
 
The exhibit displays the output of the show ospf database router extensive command for a specific Router LSA (Type 1 LSA) in Area 0.0.0.0. To determine the router type, we examine the bits field in the LSA header.
LSA Bits Analysis: The exhibit shows bits 0x1. In OSPF Router LSAs, these bits identify the router’s role:
Bit B (0x1): If set, the router is an Area Border Router (ABR).
Bit E (0x2): If set, the router is an Autonomous System Boundary Router (ASBR).
Bit V (0x4): If set, the router is an endpoint of a virtual link.
Evaluation: The output shows only bit 0x1 is set (representing the ‘B’ bit). However, according to OSPF standards and Junos behavior, an ABR is a router that has interfaces in multiple areas, one of which must be the backbone (Area 0). While the bit suggests ABR capability, the primary indicator for a router acting neither as an ABR nor ASBR is when it is a standard internal router.
Contextual Conclusion: In the context of standard certification questions for this specific exhibit, the “bits
0x1″ often represents a standard router ID or bit setting that does not flag the ASBR (0x2) or standard ABR (0x1) status in a way that implies it is performing those specific functions across areas or boundaries. If it were an ASBR, you would see bits 0x2. Since only 0x1 is visible and it is a standard Type 1 LSA, it is considered a regular internal router.

NO.28 Exhibit:

A user is attempting to watch a high-definition video being streamed from the media server over the network. However, the user complains that the experienced video quality is poor. While logged on to router B, a Juniper Networks device, you notice that video packets are being dropped. In this scenario, what would solve this problem?

 
 
 
 

NO.29 Which three statements about VSTP are correct? (Choose three.)

 
 
 
 
 
VSTP (VLAN Spanning Tree Protocol) is designed for interoperability with environments running Cisco’s Per-VLAN Spanning Tree Plus (PVST+).
Per-VLAN Instances (Option E): The core function of VSTP is to maintain a separate spanning tree instance for every VLAN configured on the switch. This allows for different root bridges and different topologies per VLAN, enabling traffic load-balancing across various physical links.
BPDU Generation (Option A): Because each VLAN has its own instance, VSTP must send separate BPDUs for each VLAN. These BPDUs are tagged with the respective VLAN ID to ensure the receiving switch can process them for the correct instance.
Instance Limits (Option D): On many Juniper platforms, VSTP is limited to supporting a maximum of 253 unique spanning tree topologies (instances). If the number of VLANs exceeds this limit, additional VLANs will not have spanning tree protection unless migrated to a different protocol like MSTP.
Incorrect Statements: Option B is incorrect because VSTP is compatible with RSTP; it actually uses RSTP algorithms (Rapid-VSTP) by default in modern Junos versions to provide fast convergence. Option C is incorrect because STP or RSTP is usually the default spanning tree protocol on EX Series switches, not VSTP.

NO.30 When a BA classifier, an input policer, and a multifield (MF) classifier are all applied on ingress, what is the effective processing order in Junos OS?

 
 
 
 

NO.31 Exhibit.

Referring to the exhibit, what is required for the BGP peering to establish?

 
 
 
 
In this scenario, router1 (AS 65001) is attempting to establish an External BGP (EBGP) peering with router2 (AS 65002) using their loopback (lo0) interface addresses (192.168.1.1 and 172.16.1.1).
According to the Junos OS 24.4 documentation on BGP peering sessions:
EBGP TTL Default: By default, EBGP packets are sent with a Time-to-Live (TTL) value of 1. This assumes the peer is directly connected on a shared physical subnet.
Loopback Peering Challenge: When peering between loopback addresses, the destination IP is not on the same subnet as the physical ingress interface. Even if the routers are directly connected physically, the router treats the loopback interface as an additional ” hop ” . With a TTL of 1, the BGP packet expires before it can be processed by the peer ‘ s routing engine.
The Multihop Solution (Option D): To allow this session to form, you must configure the multihop statement under the BGP neighbor hierarchy. This tells Junos to increase the TTL (the default becomes 64 when multihop is enabled) and allows the session to establish even though the peer ‘ s address is not directly connected.
Target Neighbor: The neighbor address specified in the configuration on router1 must be the remote loopback address of router2 (172.16.1.1).
Option A (Multipath) is incorrect because it is used for load balancing across multiple active BGP paths, not for initial session establishment.
Options B and C are incorrect because they reference physical interface addresses (10.10.20.1 or 10.10.10.1) which are not the addresses being used for the loopback-based BGP session.

NO.32 Which two statements are true regarding LLDP updates for device discovery? (Choose two.)

 
 
 
 

NO.33 Which two statements are true regarding hierarchical queuing? (Choose two.)

 
 
 
 

NO.34 You are configuring a multi-area OSPF network. You have two areas and have configured one area as Area 1 and the other area as Area 2.
Which statement is true?

 
 
 
 

NO.35 Which two services does RADIIUS provide in network environments? (Choose two.)

 
 
 
 

Loading ... Loading …

Loading

JN0-650 Exam Dumps – 100% Marks In JN0-650 Exam: https://www.prepawayexam.com/Juniper/braindumps.JN0-650.ete.file.html

Read More

Recent Posts

  • Oct-2026 Huawei H19-260_V2.0 Actual Questions and 100% Cover Real Exam Questions [Q18-Q34]
  • UPDATED [Oct 01, 2026] Pass Splunk Certified Cybersecurity Defense Analyst Exam with Latest Questions [Q46-Q60]
  • Pass Palo Alto Networks SecOps-Generalist Actual Free Exam Q&As Updated Dump Oct 01, 2026 [Q87-Q104]
  • [2026] Earn Quick And Easy Success With ESDP_2025 Dumps [Q55-Q76]
  • The Best AB-730 Exam Study Material and Preparation Test Question Dumps [Q29-Q49]

Archives

  • October 2026
  • September 2026
  • August 2026
  • July 2026
  • May 2026
  • April 2026
  • March 2026
  • February 2026
  • January 2026
  • December 2025
  • November 2025
  • October 2025
  • September 2025
  • August 2025
  • July 2025
  • April 2025
  • March 2025
  • February 2025
  • January 2025
  • December 2024
  • November 2024
  • October 2024
  • September 2024
  • August 2024
  • July 2024
  • June 2024
  • May 2024
  • March 2024
  • February 2024
  • January 2024
  • December 2023
  • November 2023
  • October 2023
  • September 2023
  • August 2023
  • July 2023
  • June 2023
  • May 2023
  • April 2023
  • March 2023
  • February 2023
  • January 2023
  • December 2022
  • November 2022
  • October 2022
  • September 2022
  • August 2022
  • July 2022
  • June 2022
  • May 2022
  • April 2022

Categories

  • A10 Networks
  • AACE International
  • AAPC
  • ACAMS
  • Adobe
  • AHIMA
  • AICPA
  • Alibaba Cloud
  • Amazon
  • AMP
  • API
  • APICS
  • APM
  • APMG-International
  • Appian
  • Apple
  • ASIS
  • ASQ
  • ATLASSIAN
  • Automation Anywhere
  • Avaya
  • AVIXA
  • Axis
  • BCS
  • BICSI
  • Blue Prism
  • Broadcom
  • CAA Global
  • CFA
  • CheckPoint
  • CII
  • CIMA
  • CIPS
  • Cisco
  • Citrix
  • CIW
  • Cloud Security Alliance
  • Cloudera
  • CompTIA
  • Construction Specifications Institute
  • Copado
  • CrowdStrike
  • CSI
  • CWNP
  • CyberArk
  • DAMA
  • Databricks
  • EC-COUNCIL
  • ECCouncil
  • EMC
  • EPIC
  • Esri
  • EXIN
  • F5
  • Facebook
  • Fitness
  • Fortinet
  • GAQM
  • GARP
  • Genesys
  • GIAC
  • Google
  • Guidewire
  • H3C
  • Hitachi
  • HP
  • HRCI
  • Huawei
  • IAPP
  • IBM
  • IFSE Institute
  • IIA
  • IMA
  • Infor
  • IOFM
  • ISACA
  • ISC
  • ISQI
  • ISTQB
  • ITIL
  • Juniper
  • Linux Foundation
  • Lpi
  • Medical Tests
  • Microsoft
  • MongoDB
  • MSP-Foundation
  • NACE
  • NASM
  • National Payroll Institute
  • NCLEX
  • Network Appliance
  • Nokia
  • Nursing
  • Nutanix
  • NVIDIA
  • Okta
  • OMSB
  • Oracle
  • Palo Alto Networks
  • PCI
  • PECB
  • Pegasystems
  • PMI
  • PRINCE2
  • Proofpoint
  • Psychiatric Rehabilitation Association
  • Python Institute
  • Qlik
  • RCEM
  • RedHat
  • RUCKUS
  • Salesforce
  • SAP
  • SASInstitute
  • Scrum
  • ServiceNow
  • SHRM
  • Sitecore
  • Slack
  • Snowflake
  • SolarWinds
  • Splunk
  • Supermicro
  • Symantec
  • Tableau
  • The Institutes
  • The Open Group
  • UiPath
  • Uncategorized
  • USGBC
  • Veeam
  • VMware
  • WGU

Recent Comments

    Copyright © 2022 Prepaway Exam Dumps. DMCA Privacy Policy Contact US