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Juniper JN0-481 Exam Syllabus Topics:

SectionWeightObjectives
Juniper Apstra Architecture15%- Intent-based networking principles
  • 1. Continuous compliance monitoring
  • 2. Intent definition and validation
- Core components
  • 1. Apstra server and agents
  • 2. RBAC and system management
  • 3. User interface and APIs
Apstra Build and Deploy Phases15%- Configuration management
  • 1. Configuration types and versioning
  • 2. Blueprint generation and activation
- Fabric deployment
  • 1. Device onboarding and agent installation
  • 2. Deployment modes and state management
  • 3. Cable mapping and topology discovery
Intent-Based Analytics10%- Analytics features
  • 1. Probes and anomaly detection
  • 2. Graph explorer and telemetry
- Operational insights
  • 1. Capacity planning
  • 2. Performance monitoring
Blueprint Operations15%- Day-to-day management
  • 1. Change management and rollback
  • 2. Dashboard and monitoring views
  • 3. Time voyager and configuration history
- Troubleshooting
  • 1. Anomaly detection and analysis
  • 2. Query tools and topology inspection
Data Center Multitenancy10%- Integration and extension
  • 1. VMware integration
  • 2. Data center interconnect (DCI)
- Multitenant design
  • 1. VRF and virtual networks
  • 2. Connectivity templates and policies
Data Center Architectures20%- IP Fabrics
  • 1. ECMP and load balancing
  • 2. Spine-leaf topology concepts
  • 3. Underlay and overlay networks
- EVPN-VXLAN
  • 1. VXLAN encapsulation and operation
  • 2. EVPN control plane and routing
  • 3. Network segmentation and multi-tenancy
Apstra Design Phase15%- Design elements
  • 1. Device profiles and logical models
  • 2. Reference designs and templates
  • 3. Rack layout and capacity planning
- Configuration and validation
  • 1. Pre-deployment validation
  • 2. Design rules and constraints

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Juniper Data Center, Specialist (JNCIS-DC) Sample Questions (Q24-Q29):

NEW QUESTION # 24
Which three statements are correct about property sets? (Choose three.)

Answer: A,C,D

Explanation:
Property sets can be automatically imported with a configlet to provide reusable configuration variables.
They use key/value pairs for variable substitution within configlets, enabling templated configuration.
A single configlet can reference multiple property sets, allowing flexible and modular configuration inputs.


NEW QUESTION # 25
What are two available Juniper Apstra template types? (Choose two.)

Answer: B,D

Explanation:
In Juniper Apstra 5.1, a template is a design abstraction used to create a blueprint. It captures the intended topology shape and design rules without tying the design to a specific vendor's CLI. Apstra supports multiple template types to match common data center fabric architectures.
A rack-based template is used for the standard three-stage Clos (leaf-spine) approach. In this model, you define the spine logical devices and one or more rack types (containing leaf devices and optional endpoint constructs). This is the dominant pattern for EVPN-VXLAN IP fabrics: leaf switches provide server attachment, VXLAN encapsulation (VTEP function), and optional IRB gateways, while spines provide high-capacity L3 transit with ECMP.
A collapsed template is used for a spine-less (spineless) topology. Instead of a separate spine tier, a collapsed design models a fabric where leaf nodes interconnect in a mesh-like arrangement (as supported by the template type) to provide underlay reachability and redundancy. This can be useful for smaller environments or edge data centers where a full spine tier is unnecessary.
"Compressed" and "device-based" are not Apstra template types. Junos v24.4 is relevant when the blueprint is instantiated and deployed, but the template type selection is an Apstra design-time decision that determines the fabric topology class.


NEW QUESTION # 26
What does clicking the indicated icon shown in the exhibit accomplish?

Answer: A

Explanation:
In Apstra 5.1, the Staged > Physical > Links workspace is where you build and validate the cabling (link) intent for the fabric before committing changes. During deployment and day-0/1 build, Apstra can leverage LLDP neighbor discovery from the connected devices to accelerate and validate the cabling map. The indicated toolbar icon in the Links view is used to fetch discovered LLDP data from the devices so Apstra can compare the discovered neighbor relationships with the intended topology and, depending on workflow, help populate or validate link endpoints.
This is particularly important in leaf-spine IP fabrics because correct physical connectivity underpins the entire underlay-interface states, point-to-point addressing, and BGP sessions. In an EVPN-VXLAN design running Junos v24.4, broken or mis-cabled links quickly manifest as missing underlay adjacencies and failed EVPN control-plane signaling. Pulling LLDP discovery into Apstra helps you identify mismatches early (wrong neighbor, wrong port, missing neighbor) and reduces manual cabling errors.
This action is not merely a UI refresh, it does not wipe the cable map, and it does not modify link speeds. Its operational purpose is to import discovered LLDP neighbor information into the blueprint's physical link view so Apstra can assist with accurate topology validation and deployment readiness.


NEW QUESTION # 27
You must enable ECMP load balance in your three-stage EBGP IP Clos fabric.
In this scenario, which two features are required? (Choose two.)

Answer: A,C

Explanation:
A load-balance policy applied to the forwarding table is required to instruct the device to perform ECMP (Equal-Cost Multi-Path) load balancing across multiple next hops in the forwarding plane.
multipath multiple-as applied to the BGP group is necessary when EBGP peers are in different ASNs, as in a typical IP Clos fabric, to allow multiple paths from different ASNs to be installed for ECMP.


NEW QUESTION # 28
You want to keep virtual networks isolated from each other within the Juniper Apstra system. In this scenario, what are three ways to accomplish this task? (Choose three.)

Answer: B,D,E

Explanation:
To keep virtual networks isolated from each other within the Juniper Apstra system, you can use one or more of the following methods:
Enable Security Policy for virtual networks in the same Routing Zone. This allows you to define rules that control the traffic flow between different virtual networks within the same routing zone.
You can specify the source and destination virtual networks, the protocol, the port, and the action (allow or deny) for each rule. The security policy is applied on the ingress interface of the leaf devices.
Use Connectivity Templates to block access within the same Routing Zone. This allows you to customize the connectivity between different racks within the same routing zone. You can create templates that define the link type, the routing protocol, and the access control list (ACL) for each rack pair. The ACL can be used to filter the traffic based on the source and destination IP addresses, the protocol, and the port.
Put each network in different Routing Zones. This allows you to create logical boundaries between different virtual networks based on the route target (RT) values. A routing zone is a collection of virtual networks that share the same RT for importing and exporting routes. Virtual networks in different routing zones do not exchange routes with each other, unless you configure remote EVPN gateways to connect them.


NEW QUESTION # 29
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