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Juniper JN0-481 Exam Syllabus Topics:

SectionObjectives
Topic 1: Data Center Architectures- IP Fabrics
  • 1. Spine-leaf architectures
  • 2. EVPN-VXLAN fundamentals
  • 3. Underlay and overlay concepts
  • 4. Routing and switching concepts
Topic 2: Juniper Apstra Architecture- Apstra Components
  • 1. Agents and services
  • 2. Intent-based networking concepts
  • 3. Blueprint architecture
  • 4. Reference designs
Topic 3: Apstra Design Phase- Blueprint Design
  • 1. Rack types and connectivity
  • 2. Templates and resources
  • 3. Fabric design workflows
  • 4. Logical devices
Topic 4: Data Center Multitenancy- Tenant Services
  • 1. Tenant isolation
  • 2. VRFs and routing zones
  • 3. Connectivity templates
  • 4. Security policies
Topic 5: Apstra Build and Deploy Phases- Deployment Operations
  • 1. Cabling and staging
  • 2. Device onboarding
  • 3. Configuration deployment
  • 4. Fabric validation
Topic 6: Intent-Based Analytics- Analytics and Visibility
  • 1. Health scoring
  • 2. Intent-based analytics probes
  • 3. Graph explorer
  • 4. Graph queries
Topic 7: Blueprint Operations- Day-2 Operations
  • 1. Monitoring and troubleshooting
  • 2. System maintenance
  • 3. Rollback and audit operations
  • 4. Configuration anomalies

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Juniper Data Center, Specialist (JNCIS-DC) Sample Questions (Q58-Q63):

NEW QUESTION # 58
What are two formats that the cabling map can be exported as? (Choose two.)

Answer: A,D


NEW QUESTION # 59
You are working to build an ESI-LAG for a multihomed server. The ESI-LAG is not coming up as multihomed.
Referring to the exhibit, what are two solutions to this problem? (Choose two.)

Answer: B,C

Explanation:
An ESI-LAG is a link aggregation group (LAG) that spans two or more devices and is identified by an Ethernet segment identifier (ESI). An ESI-LAG provides redundancy and load balancing for a multihomed server in an EVPN-VXLAN network. To configure an ESI-LAG, you need to ensure that the following requirements are met:
The LACP system ID on both devices must be the same. This ensures that the LACP protocol can negotiate the LAG parameters and form a single logical interface for the server.
The ESI ID on both devices must be the same. This ensures that the EVPN control plane can advertise the ESI-LAG as a single Ethernet segment and synchronize the MAC and IP addresses of the server across the devices.
The VLAN ID and VNI on both devices must be the same. This ensures that the server can communicate with other hosts in the same virtual network and that the VXLAN encapsulation and decapsulation can work properly.
In the exhibit, the LACP system ID and the ESI ID on both devices are different, which prevents the ESI-LAG from coming up as multihomed. Therefore, the correct answer is B and D. The LACP system ID on both devices must be the same and the ESI ID on both devices must be the same.


NEW QUESTION # 60
IBA probes analyze telemetry data from specified devices within a blueprint. Which component Identities devices that supply data tor a specific probe?

Answer: A

Explanation:
A graph query is a component that identifies devices that supply data for a specific probe. A graph query is an expression that matches nodes in the Apstra graph database based on their attributes, such as device name, role, type, or tag. A graph query can be used to select the source devices for the input processors of a probe, as well as to filter the data by device attributes in the subsequent processors of a probe.


NEW QUESTION # 61
You are creating a template using Juniper Apstr
a. In this scenario, what is a rack-based design compared to a pod-based design?

Answer: C

Explanation:
In Apstra 5.1, templates are used to describe the intended structure of a data center fabric. A rack-based template is used to build the common 3-stage Clos model (spines connected to racks containing leaf/top-of-rack switches and endpoints). In this design, you define the spine logical devices, select one or more rack types, specify rack counts, and define the intended connectivity between spines and racks. This directly models a leaf-spine IP fabric typically used for EVPN-VXLAN in modern data centers.
A pod-based template, by contrast, is explicitly used to build 5-stage Clos networks. In Apstra's terminology, a pod-based template is essentially a "template of templates": it combines one or more rack-based templates (each representing a 3-stage pod) and adds an additional superspine layer to interconnect those pods into a larger, scalable fabric. This is the architectural distinction: rack-based describes the leaf-spine pod, while pod-based describes the multi-pod superspine architecture.
For Junos v24.4 EVPN-VXLAN deployments, the difference matters operationally because 5-stage fabrics introduce additional tiers and scaling considerations (for example, superspine connectivity and expanded ECMP domains). Apstra's template hierarchy ensures consistent intent modeling across both 3-stage and 5-stage topologies without requiring operators to manually redesign the fabric logic each time they scale out.
Verified Juniper sources (URLs):
https://www.juniper.net/documentation/us/en/software/apstra5.1/apstra-user-guide/topics/concept/templates.html
https://www.juniper.net/documentation/us/en/software/apstra5.1/apstra-user-guide/topics/task/template-create-pod-based.html
https://www.juniper.net/documentation/us/en/software/apstra5.1/apstra-user-guide/topics/topic-map/5-stage-clos.html


NEW QUESTION # 62
What are three port group roles that you are allowed to assign to a logical device? (Choose three.)

Answer: A,B,C

Explanation:
In Apstra, a logical device abstracts a physical switch's front-panel layout into one or more panels containing port groups. Each port group has a defined speed and one or more roles that describe how those ports are expected to be used in the fabric. These roles are essential because they constrain where ports may be consumed during rack type and template construction (for example, spine-facing vs server-facing vs generic connectivity).
Apstra-supported port group roles include fabric roles such as Spine and Leaf, and endpoint-facing roles such as Generic (commonly used for ports that connect to servers or external generic systems). Assigning Leaf and Spine roles ensures Apstra can correctly validate and render intent for uplinks and interconnects in a three-stage Clos or larger topologies. Assigning Generic indicates ports that can be used for non-fabric connections (such as server links, external routers modeled as generic systems, or other non-managed endpoints).
The options Empty and Root are not valid Apstra port group roles in the logical device model; Apstra uses other explicit role names (for example, Access, Peer, Unused, Generic, Leaf, Spine, Superspine depending on design type and version). In Junos v24.4 EVPN-VXLAN fabrics, getting these roles correct is foundational because Apstra relies on them to place underlay and overlay configuration onto the right interfaces with predictable results.
Verified Juniper sources (URLs):
https://www.juniper.net/documentation/us/en/software/apstra4.2/apstra-user-guide/topics/concept/logical-devices.html
https://www.juniper.net/documentation/us/en/software/jvd/jvd-collapsed-dc-fabric-juniper-apstra-access-switches/configuration_walkthrough.html


NEW QUESTION # 63
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