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Juniper JN0-481 Exam Syllabus Topics:

SectionWeightObjectives
Topic 1: Data Center Architectures20%- IP Fabrics
  • 1. Underlay and overlay networks
  • 2. Spine-leaf topology concepts
  • 3. ECMP and load balancing
- EVPN-VXLAN
  • 1. Network segmentation and multi-tenancy
  • 2. EVPN control plane and routing
  • 3. VXLAN encapsulation and operation
Topic 2: Apstra Build and Deploy Phases15%- Fabric deployment
  • 1. Cable mapping and topology discovery
  • 2. Deployment modes and state management
  • 3. Device onboarding and agent installation
- Configuration management
  • 1. Configuration types and versioning
  • 2. Blueprint generation and activation
Topic 3: Juniper Apstra Architecture15%- Intent-based networking principles
  • 1. Continuous compliance monitoring
  • 2. Intent definition and validation
- Core components
  • 1. User interface and APIs
  • 2. RBAC and system management
  • 3. Apstra server and agents
Topic 4: Blueprint Operations15%- Day-to-day management
  • 1. Time voyager and configuration history
  • 2. Dashboard and monitoring views
  • 3. Change management and rollback
- Troubleshooting
  • 1. Anomaly detection and analysis
  • 2. Query tools and topology inspection
Topic 5: 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
Topic 6: Apstra Design Phase15%- Design elements
  • 1. Device profiles and logical models
  • 2. Rack layout and capacity planning
  • 3. Reference designs and templates
- Configuration and validation
  • 1. Pre-deployment validation
  • 2. Design rules and constraints
Topic 7: Intent-Based Analytics10%- Analytics features
  • 1. Graph explorer and telemetry
  • 2. Probes and anomaly detection
- Operational insights
  • 1. Performance monitoring
  • 2. Capacity planning

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Juniper Data Center, Specialist (JNCIS-DC) Sample Questions (Q61-Q66):

NEW QUESTION # 61
Which two statements are correct regarding a pristine configuration in Juniper Apstra? (Choose two.)

Answer: A,D

Explanation:
A pristine configuration in Juniper Apstra is the configuration file that is used to onboard a device into the Apstra software application. A pristine configuration contains the minimum settings that are required for the device to communicate with the Apstra server, such as the hostname, management IP address, username, password, and SSH key. A pristine configuration has the following characteristics:
It is the configuration file placed on the device when decommissioning the device. This is because when a device is decommissioned from the Apstra software application, it is reverted back to its pristine configuration, which removes all the network configuration and services that were applied by the Apstra software application. This allows the device to be reused or repurposed for another network.
It is the configuration file on a device before acknowledgment in Apstra. This is because when a device is onboarded into the Apstra software application, it is initially in the discovery state, which means that the device is discovered by the Apstra server, but not yet acknowledged by the user.
In the discovery state, the device has the pristine configuration, which can be viewed and edited by the user. Once the user acknowledges the device, the device moves to the deployed state, which means that the device is ready to receive the network configuration and services from the Apstra software application.


NEW QUESTION # 62
Which statement correctly describes the purpose of the Apstra "Time Voyager" feature?

Answer: B

Explanation:
Time Voyager in Juniper Apstra allows administrators to view the historical states of a blueprint over time, compare differences between snapshots, and roll back the network to a previously committed configuration state if needed. This provides a powerful tool for troubleshooting and recovering from unintended changes.


NEW QUESTION # 63
Which two statements are correct about repairing a Juniper Apstra cabling map before deploying your blueprint? (Choose two.)

Answer: A,D

Explanation:
The cabling map is a graphical representation of the physical connections between the devices in the data center fabric. It shows the status of the cables, interfaces, and BGP sessions for each device. You can use the cabling map to verify and repair the cabling before deploying your blueprint. Based on the web search results, we can infer the following statements:
Apstra can use LLDP data from the spine-to-leaf fabric devices to update the connections in the cabling map. This is true because Apstra can collect LLDP data from the devices using the Generic Graph Collector processor and use it to update the cabling map automatically.
LLDP is a protocol that allows devices to exchange information about their identity, capabilities, and neighbors. Apstra can use LLDP data from the leaf devices to update the leaf-to-generic connections in the cabling map. This is true because Apstra can also collect LLDP data from the leaf devices and use it to update the connections to the generic devices, such as routers, firewalls, or servers. Generic devices are devices that are not managed by Apstra but are part of the data center fabric.
You must manually change the cabling map to update spine-to-leaf fabric links. This is false because Apstra can use LLDP data to update the spine-to-leaf fabric links automatically, as explained above. However, you can also manually change the cabling map to override the Apstra-generated cabling, if needed.
You must manually change the cabling map to update leaf-to-generic links. This is false because Apstra can use LLDP data to update the leaf-to-generic links automatically, as explained above.
However, you can also manually change the cabling map to override the Apstra-generated cabling, if needed.


NEW QUESTION # 64
In the Juniper Apstra design phase, which object dictates port count, port speed, and how the ports would be used?

Answer: C

Explanation:
Interface maps are objects that map interfaces between logical devices and physical hardware devices in the Juniper Apstra design phase. They dictate port count, port speed, and how the ports would be used for achieving the intended network configuration rendering. Interface maps also allow you to select device ports, transformations, and interfaces, provision breakout ports, and disable unused ports.


NEW QUESTION # 65
Using Juniper Apstra. which component is defined in a template?

Answer: B

Explanation:
A template is a configuration template that defines a network's policy intent and structure. A template can be either rack-based or pod-based, depending on the type and number of racks and pods in the network design. A template includes the following details:
Policies: These are the parameters that apply to the entire network, such as the overlay control protocol, the ASN allocation scheme, and the underlay type.
Structure: This is the physical layout of the network, such as the type and number of racks, pods, spines, and leaves. The structure also defines the leaf-to-spine interconnection, which is the number and type of links between the leaf and spine devices. The leaf-to-spine interconnection can be either single or dual, depending on the redundancy and bandwidth requirements.
Therefore, the correct answer is A. the leaf-to-spine interconnection. This is a component that is defined in a template, as it determines the physical connectivity of the network. The speed of the links, the number of spine devices, and the definition of IP pools are not components that are defined in a template, as they are either derived from the device profiles, the resource pools, or the blueprint settings.


NEW QUESTION # 66
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