Juniper JN0-460 Exam Dumps Provider, New Exam JN0-460 Materials

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Juniper JN0-460 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Wired Assurance Fundamentals: This section of the exam measures the skills of Network Support Engineers and covers the foundational elements of Wired Assurance within the MistAI ecosystem. It introduces candidates to key concepts such as supported devices, solution architecture, and the main features and components that define Wired Assurance functionality. Additionally, it highlights how MistAI accounts, analytics, and subscriptions integrate to deliver intelligent insights for network performance and operations.
Topic 2
  • Campus Fabric Architecture: This section of the exam measures the skills of Network Design Engineers and focuses on understanding and deploying Campus Fabric Architectures. It introduces essential design concepts such as EVPN multihoming, IP Clos architecture, and micro-segmentation. The section also compares CRB and ERB models, explains scaling requirements, and highlights how the Campus Fabric Core-Distribution design supports high-performance, scalable, and secure enterprise networks.
Topic 3
  • Campus EVPN-VXLAN: This section of the exam measures the skills of Data Center Network Engineers and explores the key principles of VXLAN and EVPN technologies. Candidates learn about Layer 2 tunneling, data and control plane operations, and the functions of VTEPs and VXLAN gateways. Additionally, it covers advanced EVPN concepts such as multipath routing, route types, and identifiers. The section concludes with a focus on MAC learning and policy applications to ensure efficient, scalable, and resilient network fabrics.
Topic 4
  • Wired Assurance Management or Operations: This section of the exam measures the skills of Network Operations Engineers and focuses on the management and operational aspects of Wired Assurance. It covers switch management, port profiles, and dynamic port configuration to ensure optimal network performance. The section also explores service-level expectations, client insights, and the use of APIs for improved monitoring and automation. Candidates gain an understanding of how MistAI enables proactive management and predictive troubleshooting to maintain service quality.
Topic 5
  • Wired Assurance Provisioning or Deployment: This section of the exam measures the skills of Network Deployment Specialists and focuses on the provisioning and deployment processes of Wired Assurance. It includes the essential steps and options involved in setting up networks, from configuration templates to deployment methodologies. Candidates learn about provisioning procedures, supported architectures, and the use of site variables to streamline automation and consistency across wired infrastructures.

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Juniper Mist AI Wired, Specialist (JNCIS-MistAI-Wired) Sample Questions (Q81-Q86):

NEW QUESTION # 81
A company is planning to deploy aJuniper Mist campus fabricand wants to implementgroup-based policy (GBP)for microsegmentation.
Which statement is correct in this scenario?

Answer: B

Explanation:
Group-Based Policy (GBP)is a Juniper EVPN-VXLAN feature that enablesmicrosegmentationwithout requiring multiple VRFs or VLANs. It is implemented within Juniper Mist'sWired Assurance and Campus Fabricframeworks.
"GBP provides scalable, identity-based segmentation for campus fabrics and is supported on EX4100 and EX4400 Series switches operating in EVPN-VXLAN mode under Mist management." The feature requires hardware and software support forEVPN-VXLAN and GBP tagging, which is currently available on specific EX models managed by Mist Cloud.
Option A:Correct- GBP requires compatible access switches, specifically EX4100 and EX4400 models.
Option B:Incorrect - GBP is centrally managed through Mist Cloud, not configured per switch.
Option C:Incorrect - GBP is provisioned via Mist Cloud, not the CLI.
Option D:Incorrect - GBP is not supported onallEVPN-capable switches; only on defined platforms (EX4100
/EX4400).
References:
Juniper Mist AI for Wired - Group-Based Policy (GBP) Configuration Guide Juniper Validated Design - GBP in Campus Fabric EVPN-VXLAN Juniper EX Series Feature Support Matrix


NEW QUESTION # 82
InJuniper Mist cloud services, service level expectation (SLE) telemetry is collected from every device and stored for up to how long?

Answer: A

Explanation:
Juniper Mist AI collectstelemetry for Service Level Expectations (SLEs)across wired and wireless devices.
This telemetry includes metrics such as time-to-connect, throughput, coverage, and switch performance.
"Service Level Expectation (SLE) data is collected from every device and stored for up toone monthin the Mist Cloud. This allows administrators to analyze historical performance trends and troubleshoot issues based on real-time and historical data." Option B (2 months):Incorrect - data is not retained this long.
Option C (7 days):Incorrect - telemetry retention is longer.
Option D (24 hours):Incorrect - too short for Mist SLE analytics.
Option A (1 month):Correct - Mist Cloud retains SLE telemetry for30 days (1 month).
References:
Juniper Mist AI for Wired - Service Level Expectations Overview
Juniper Mist AI for Wired - Telemetry and Data Retention Guide


NEW QUESTION # 83
What information would bestreamed through webhooks? (Choose two.)

Answer: B,D

Explanation:
Mistwebhooksprovide real-time integration with external systems by streamingalertsandSLE (client) metrics.
They allow automation tools to react immediately to network health or performance changes.
References:
Mist AI for Wired - Webhooks Integration and API Guide
Mist Cloud Automation and Telemetry Reference


NEW QUESTION # 84
You are planning to deploy a fabric in your large campus with 10,000+ users. You will have both Layer 2 and Layer 3 devices that connect to your access switches. In this scenario, which campus architecture should you use?

Answer: C

Explanation:
According to Juniper's Validated Designs (JVD) for campus fabrics, the Campus Fabric IP Clos (often referred to as a 5-stage Clos) is the architecture specifically engineered for high-scale environments supporting 10,000+ users. This design is characterized by extending the EVPN control plane and VXLAN data plane all the way to the access layer. By terminating VXLAN tunnels at the access switch-functioning as a Virtual Tunnel Endpoint (VTEP)-the network can seamlessly support both Layer 2 and Layer 3 devices directly at the edge of the fabric.
The primary driver for choosing IP Clos in large-scale deployments is its superior scalability. In this model, the core switches are shielded from the massive table sizes required to learn thousands of individual endpoint MAC and IP addresses. Instead, core devices only need to maintain reachability to the loopback addresses of the access layer switches. This reduction in the "flood and learn" pressure on the core is critical as the number of endpoints grows, ensuring that the core can scale far into the future with predictable growth.
Additionally, the IP Clos architecture provides the most flexible environment for microsegmentation using Group-Based Policies (GBP) and macrosegmentation using Virtual Routing and Forwarding (VRF) instances. Since routing occurs at the access device, "east-west" traffic between local endpoints remains efficient and does not need to traverse the distribution or core tiers. While EVPN Multihoming and Core- Distribution (CRB/ERB) models are effective for smaller sites or brownfield environments where access switches are legacy Layer 2-only devices, only the IP Clos architecture provides the end-to-end VXLAN capability required for high-density, future-proof campus fabrics.


NEW QUESTION # 85
VTEP functions include: (Select two)

Answer: B,C


NEW QUESTION # 86
......

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