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Title: JN0-460 examkiller g¨¹ltige Ausbildung Dumps & JN0-460 Pr¨¹fung Überpr¨¹fu [Print This Page]

Author: willall504    Time: yesterday 17:26
Title: JN0-460 examkiller g¨¹ltige Ausbildung Dumps & JN0-460 Pr¨¹fung Überpr¨¹fu
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Juniper JN0-460 Pr¨¹fungsplan:
ThemaEinzelheiten
Thema 1
  • 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.
Thema 2
  • 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.
Thema 3
  • 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.
Thema 4
  • 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.
Thema 5
  • 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.

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JN0-460 aktueller Test, Test VCE-Dumps f¨¹r Mist AI Wired, Specialist (JNCIS-MistAI-Wired)Sorgen Sie noch um die Pr¨¹fungsunterlagen der Juniper JN0-460? Jetzt brauchen Sie keine Sorgen! Weil uns zu finden bedeutet, dass Sie schon die Schl¨¹ssel zur Pr¨¹fungszertifizierung der Juniper JN0-460 gefunden haben. Wir Pr¨¹fungFrage beschäftigen uns seit Jahren mit der Entwicklung der Software der IT-Zertifizierungspr¨¹fung. Jetzt genießen wir einen guten Ruf weltweit. Wir bieten Ihnen die effektivsten Hilfe bei der Vorbereitung der Juniper JN0-460.
Juniper Mist AI Wired, Specialist (JNCIS-MistAI-Wired) JN0-460 Pr¨¹fungsfragen mit Lösungen (Q14-Q19):14. Frage
Which statement is correct about the VXLAN data plane?
Antwort: C
Begr¨¹ndung:
VXLAN (Virtual Extensible LAN) uses an overlay encapsulation method to carry Layer-2 frames over an IP underlay. This functionality is part of the data plane, which is responsible for packet forwarding and encapsulation/decapsulation.
"In an EVPN-VXLAN fabric, the control plane (via BGP EVPN) learns and advertises MAC and IP information, while the data plane encapsulates and forwards traffic using VXLAN tunnels between VTEPs." Option A is incorrect: IP learning happens in the control plane, not the data plane.
Option B is incorrect: MAC advertisement is done in the control plane through EVPN route types.
Option D is incorrect: MAC learning is handled by EVPN control plane, not the VXLAN data plane.
Option C is correct: the VXLAN data plane encapsulates the traffic in UDP tunnels between VTEPs.
References:
Juniper Mist AI for Wired - EVPN-VXLAN Overview
Juniper Validated Design - EVPN-VXLAN Control and Data Plane Separation Junos OS EVPN-VXLAN Deployment Guide

15. Frage
Which service level expectation (SLE) metric measures congestion on the uplink interface of a switch?
Antwort: D
Begr¨¹ndung:
According to Juniper Mist documentation, the Throughput Service Level Expectation (SLE) is the primary metric used to represent the ability of wired users to pass traffic across the network without impedance. This SLE provides a comprehensive oversight of network performance by identifying issues that degrade the user experience, such as storm control events, interface anomalies, and specifically uplink congestion.
Within the Throughput SLE, the Congestion classifier (also referred to as Congestion Uplink) is specifically designed to monitor for buffer saturation and packet drops (TxDrops). When traffic arriving at an interface exceeds its processing or forwarding capacity, packets are queued in a buffer; if this buffer becomes full, the switch begins dropping packets. Juniper Mist utilizes a specific formula considering the ratios of TxDrops to TxPackets, Transmitted bps to Link Speed, and Received Speed to Link Speed to determine if a "Bad User Minute" has occurred due to congestion.
A critical feature of Wired Assurance is the automatic identification of uplink interfaces. Mist identifies these high-capacity ports by analyzing switch telemetry for characteristics such as having a switch or router as an LLDP neighbor, being designated as a Spanning Tree Protocol (STP) root port, or exhibiting significantly higher packet counts compared to access ports. When congestion is detected on an interface identified as an uplink, the system recognizes that this bottleneck impacts every user on that switch. By correlating these drops with the Throughput SLE, network administrators can proactively identify when a site requires more bandwidth or a different fabric architecture to handle current traffic demands, rather than simply monitoring if the link is physically "up" or "down".

16. Frage
Which three steps should be part of the campus fabric deployment?(Choose three.)
Antwort: A,D,E
Begr¨¹ndung:
According to theJuniper Mist AI for Wired - Campus Fabric IP Clos Deployment Workflow, deploying a campus fabric involves a defined sequence of planning and configuration steps within the Mist Cloud interface. The key stages include:
"To deploy a campus fabric, you must first define the topology type, identify the physical connections between devices, and define the networks of interest that will be extended across the fabric." Breaking this down:
Choose the topology (D):Selecting the correct fabric type (3-Stage or 5-Stage IP Clos) determines how access, distribution, and core switches will interconnect.
Define the physical connections (A):This step involves specifying the uplink and downlink relationships between switches so that Mist can auto-generate EVPN-VXLAN and routing configurations.
Define the networks of interest (B):These are the VLANs and subnets that need to be extended across the fabric for user and device connectivity.
Steps such asconfiguring DNS serversordefining GBP tagsarenot part of the campus fabric deployment workflowin Mist Wired; they are optional or separate configurations outside the main deployment flow.
References:
Juniper Mist AI for Wired - Campus Fabric IP Clos Deployment Workflow
Juniper Mist AI for Wired - Configure Campus Fabric IP Clos
Juniper Validated Design - Campus Fabric Overview

17. Frage
WhichAPIis used within theJuniper Mist solution?
Antwort: C
Begr¨¹ndung:
Juniper Mist Cloud uses anopen RESTful API frameworkfor integration, automation, and programmability across all Mist services, includingWired Assurance,Marvis, andAI-driven automation.
"All Mist Cloud services are built on a 100% open REST API framework, allowing customers to automate configuration, monitoring, and troubleshooting through standard REST calls." The REST API exchanges data inJSONformat, but the API type itself isREST, not JSON.
Option A (REST):Correct- Mist services expose 100% REST-based APIs.
Option B (SOAP):Incorrect - SOAP is an older XML-based protocol not used in Mist.
Option C (JSON):Incorrect - JSON is thedata format, not the API type.
Option D (RPC):Incorrect - not used in the Mist Cloud architecture.
References:
Juniper Mist AI for Wired - API Overview
Juniper Mist API Developer Documentation
Juniper Mist AI Cloud - Automation and Integration Guide

18. Frage
You are asked to add a newVLANin your network. You need to reference the same VLAN in multiple places in the configuration of switches and APs in your site.
Which Mist configuration tool will enable you to accomplish this task?
Antwort: B
Begr¨¹ndung:
InMist Cloud,site variablesare used to store and reference common configuration values (such as VLAN IDs, subnet addresses, or gateway IPs) that are reused across multiple devices and templates within a site.
"Site variables allow administrators to define reusable configuration parameters that can be referenced in multiple templates or device configurations, ensuring consistency and reducing manual errors." Option A:Incorrect - applies configuration directly, not reusable references.
Option B:Correct- site variables enable you to reference the same VLAN or value in multiple configurations (switches, WLANs, etc.).
Option C:Incorrect - WLAN templates are for wireless SSID configuration.
Option D:Incorrect - switch templates define static configuration but don't store shared variables.
References:
Juniper Mist AI for Wired - Site Variables and Template Management Guide Juniper Mist AI for Wired - Multi-Device Configuration Reuse Best Practices Juniper Mist Cloud - Organization and Site Configuration Reference

19. Frage
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Die Kandidaten können die Schulungsunterlagen zur Juniper JN0-460 Zertifizierungspr¨¹fung von Pr¨¹fungFrage in einer Simulationsumgebung lernen. Sie können die Pr¨¹fungssorte und die Testzeit kontrollieren. In Pr¨¹fungFrage können Sie sich ohne Druck und Stress gut auf die Juniper JN0-460 Pr¨¹fung vorbereiten. Zugleich können Sie auch einige häufige Fehler vermeiden. So werden Sie mehr Selbstbewusstsein in der Juniper JN0-460 Pr¨¹fung haben. In der realen Pr¨¹fung können Sie Ihre Erfahrungen wiederholen, um Erfolg in der Pr¨¹fung zu erzielen.
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