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The JN0-460 certification verifies that you are a skilled professional. ExamPrepAway product is designed by keeping all the rules and regulations in focus that Juniper publishes. Our main goal is that you can memorize the actual Juniper JN0-460 Exam Question to complete the Mist AI Wired, Specialist (JNCIS-MistAI-Wired) (JN0-460) test in time with extraordinary grades.

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By attempting these Mist AI Wired, Specialist (JNCIS-MistAI-Wired) (JN0-460) mock exams, you can enhance your confidence and overcome weaknesses. The JN0-460 desktop software of ExamPrepAway works offline on Windows computers. The web-based Juniper JN0-460 Practice Exam is compatible with all operating systems and browsers.

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 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 3
  • 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 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.

Juniper Mist AI Wired, Specialist (JNCIS-MistAI-Wired) Sample Questions (Q39-Q44):

NEW QUESTION # 39
What is the primary goal of Wired Assurance Management in a network environment?

Answer: B


NEW QUESTION # 40
CRB (Centralized Routing Bridging) versus ERB (Edge Routing Bridging) is a consideration in:

Answer: D


NEW QUESTION # 41
You must ensure that routes within a multitenant domain remain unique when advertised in a service provider network. Which EVPN functionality will accomplish this task?

Answer: A

Explanation:
According to Juniper documentation, a route distinguisher (RD) is a critical address qualifier used to ensure that network layer reachability information (NLRI) remains unique within a Multiprotocol BGP (MP-BGP) control plane, especially in multitenant environments. In a service provider network, different tenants may use identical, overlapping private IP address spaces (such as 192.168.1.0/24). If these routes were advertised without a qualifier, BGP-which typically only considers the IP prefix-would treat them as the same route and potentially overwrite one with the other based on standard BGP best-path selection.
The route distinguisher solves this by prepending an 8-byte field to the tenant's IP address, effectively transforming a 32-bit IPv4 prefix into a unique 96-bit VPN-IPv4 address. This 8-byte value is typically configured in formats such as as-number:number or ip-address:number. Because the resulting VPN-IPv4 prefix is unique to that specific routing instance, the service provider's BGP infrastructure can carry and distinguish between overlapping routes from multiple customers simultaneously.
It is important to differentiate the RD from a route target (RT). While the RD's sole purpose is to provide uniqueness so that routes are not discarded or overwritten, the route target is an extended community attribute used to control the import and export of these routes into the correct virtual routing and forwarding (VRF) tables on remote PE routers. In Juniper's Junos OS, each routing instance of type vrf or evpn must have a unique RD associated with it; failing to configure a unique RD or attempting to use the same RD across different instances will result in a configuration commit failure. This fundamental separation of "making routes unique" (RD) and "directing routes to the right place" (RT) allows for the scalable, isolated multitenancy required in modern EVPN-VXLAN campus and data center fabrics.


NEW QUESTION # 42
VTEP functions include: (Select two)

Answer: A,B


NEW QUESTION # 43
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?

Answer: A

Explanation:
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


NEW QUESTION # 44
......

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