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Juniper JN0-481 Exam Overview:

Certification Vendor:Juniper
Exam Name:Data Center, Specialist (JNCIS-DC)
Exam Number:JN0-481
Certificate Validity Period:3 years
Exam Price:$300 USD
Exam Duration:90 minutes
Available Languages:English
Exam Format:Multiple Choice
Real Exam Qty:65
Related Certifications:JNCIA-DC
JNCIS-DC
Sample Questions:Juniper JN0-481 Sample Questions
Exam Way:Pearson VUE online or test center delivery
Pre Condition:JNCIA-DC certification is required before taking the JN0-481 exam.
Official Syllabus URL:https://www.juniper.net/gb/en/training/certification/tracks/data-center/jncis-dc.html

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Juniper JN0-481 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Apstra Build and Deploy Phases: Covers fabric deployment tasks including agent installation, cable mapping, device states, deploy modes, and Blueprint UI usage, along with related monitoring and troubleshooting.
Topic 2
  • Data Center Architectures (IP Fabrics, EVPN-VXLAN): Covers spine-leaf topology design, ECMP load balancing, and underlay
  • overlay routing, along with EVPN and VXLAN concepts including route types, bridge domains, VNI-to-VLAN mapping, and VTEP functions.
Topic 3
  • Data Center Multitenancy: Covers multi-tenant network management through routing zones, VRFs, virtual networks, connectivity templates, security policies, VMware integration, and Data Center Interconnect.
Topic 4
  • Juniper Apstra Architecture: Introduces core Apstra components including the server, device agents, and UI, along with administrative features such as RBAC, event logging, and syslog.
Topic 5
  • Blueprint Operations: Covers day-to-day blueprint management including making and reverting changes, querying, virtual networks, Time Voyager, anomaly detection, property sets, configlets, and configuration types.
Topic 6
  • Apstra Design Phase: Covers pre-deployment planning elements such as reference designs, logical devices, device profiles, rack types, interface maps, and templates, including their configuration and troubleshooting.

Juniper Data Center, Specialist (JNCIS-DC) Sample Questions (Q16-Q21):

NEW QUESTION # 16
The servers attached to your Juniper Apstra managed data center fabric are running VMware.
You want to get the details about which VMs are attached to which leaf interface.
Referring to the exhibit, which statement is correct?

Answer: B

Explanation:
In Juniper Apstra, to see details about which VMs are attached to which leaf interface, Apstra requires integration with the Virtual Infrastructure Manager (VIM), such as VMware vCenter for ESXi environments. Without defining and integrating a VIM, the VMs tab (as shown in the exhibit) will not display any data, even if servers are connected and running.


NEW QUESTION # 17
What does EVPN use lo identity which remote leaf device advertised the EVPN route?

Answer: B

Explanation:
EVPN uses a route distinguisher (RD) value to identify which remote leaf device advertised the EVPN route. An RD is a 64-bit value that is prepended to the EVPN NLRI to create a unique VPNv4 or VPNv6 prefix. The RD value is usually derived from the IP address of the PE that originates the EVPN route. By comparing the RD values of different EVPN routes, a PE can determine which remote PE advertised the route and which VRF the route belongs to.


NEW QUESTION # 18
You have created a blueprint and are in the process of assigning systems. You require the leaf3-sonic device in the blueprint but do not want it to actively participate in the routing of the IP fabric.

In the Juniper Apstra UI, which two modes satisfy this requirement? (Choose two.)

Answer: C,D

Explanation:
Apstra deploy modes control how far a device progresses in the configuration lifecycle and whether it becomes active in the fabric. If you must keep leaf3-sonic present in the blueprint (modeled, cabled, and available for future use) but you do not want it to participate in IP-fabric routing, you use modes that keep the device not active.
Ready mode assigns the device to the blueprint and applies only "Ready (Discovery 2)" level configuration-hostnames, interface descriptions, and port speed/breakout settings-while explicitly keeping the device out of fabric routing. In this mode, Apstra does not configure routing/BGP or L3 interface addressing for the IP fabric, so the switch is staged and visible for validation (for example, LLDP wiring checks) but does not forward as part of the Clos underlay.
Undeploy mode removes the complete Apstra service configuration from the device. Operationally, this also ensures the device is not active in the fabric. It is commonly used when a device must be retained in the blueprint inventory/topology but should not be participating (for example, temporarily withdrawn, decommission preparation, or held as a spare).
By contrast, Deploy makes the device active (full rendered fabric configuration, including BGP), and Drain is a maintenance state used to gracefully remove traffic from an already-active device rather than a state for keeping it non-participatory from the outset.
Verified Juniper sources (URLs):
https://www.juniper.net/documentation/us/en/software/apstra6.0/apstra-user-guide/topics/topic-map/device-config-lifecycle.html
https://www.juniper.net/documentation/us/en/software/apstra4.2/apstra-user-guide/topics/topic-map/device-config-lifecycle.html


NEW QUESTION # 19
You are creating a new security policy using Juniper Apstra.

Referring to the exhibit, which application point should you select to allow or deny traffic to or from a particular VRF?

Answer: C

Explanation:
In Apstra 5.1, multitenancy is modeled using routing zones, which map directly to the network operating system concept of a VRF. A VRF is an isolated Layer 3 routing instance with its own routing table and forwarding context, and Apstra's routing zone is the intent-based abstraction used to define and manage that isolation consistently across the fabric. Therefore, if your goal is to allow or deny traffic to or from a particular VRF, you must select Routing Zone as the security policy application point.
This choice enables you to express policy at the tenant boundary (VRF boundary) rather than at a single segment boundary. In EVPN-VXLAN data center fabrics, a tenant VRF commonly contains multiple virtual networks (VXLAN segments) and their associated IRB gateways on the leaf switches. Applying policy at the routing-zone level allows Apstra to compile intent and deploy enforcement consistently where traffic enters or exits that VRF context-typically as ACL constructs rendered as Junos firewall filters on the appropriate interfaces (for example, IRB interfaces for east-west controls or border interfaces for north-south controls).
By contrast, selecting Virtual Network targets a single segment (not the whole VRF), and Internal/External Endpoint targets specific endpoints or endpoint groups rather than the VRF-wide policy boundary. Hence, Routing Zone is the correct application point when policy scope is the VRF.


NEW QUESTION # 20
An operator is working on a capacity-panning exercise. The operator needs to examine the pre- built time series information regarding link utilization.
In the Juniper Apstra UI, which top-level tab would the operator have to access to find this information?

Answer: C

Explanation:
In the Juniper Apstra UI, the Analytics tab provides access to pre-built time series data such as link utilization, device metrics, and traffic statistics. This is the correct location for operators to review historical and real-time utilization trends needed for capacity planning.


NEW QUESTION # 21
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