Valid Juniper JN0-481 Exam Objectives & JN0-481 Verified Answers
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>> Valid Juniper JN0-481 Exam Objectives <<
Free PDF Quiz 2026 Juniper Accurate JN0-481: Valid Data Center, Specialist (JNCIS-DC) Exam Objectives
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Juniper Data Center, Specialist (JNCIS-DC) Sample Questions (Q21-Q26):
NEW QUESTION # 21
What are two system-defined user roles that are available in Juniper Apstra? (Choose two.)
- A. viewer
- B. user
- C. authorized
- D. root
Answer: A,B
Explanation:
Juniper Apstra provides four system-defined user roles that are available in the Apstra GUI environment. They are: administrator, device_ztp, viewer, and user. Based on the web search results, we can infer the following statements:
viewer: This role includes permissions to only view various elements in the Apstra system, such as blueprints, devices, design, resources, external systems, platform, and others. Users with this role cannot create, edit, or delete any element.
user: This role includes permissions to view and edit various elements in the Apstra system, such as blueprints, devices, design, resources, external systems, platform, and others. Users with this role cannot create or delete any element.
authorized: This is not a system-defined user role in Juniper Apstra. It is a term used to describe users who have been authenticated by an external system, such as LDAP, Active Directory, TACACS+, or RADIUS.
root: This is not a system-defined user role in Juniper Apstra. It is a term used to describe the superuser account on a Linux system, which has full access to all commands and files. Creating a user in the Apstra GUI does not provide that user access to the Apstra platform via SSH. To access the Apstra platform via SSH, you must create a local Linux system user.
NEW QUESTION # 22
Which element of an intent-based analytics (IBA) probe is used to specify the database objects to which the probe will apply?
- A. Reference design schema
- B. Node-edge relationship
- C. Graph query
- D. Database nodes
Answer: C
Explanation:
In Apstra 5.1, Intent-Based Analytics (IBA) is built on Apstra's graph-based source of truth, where devices, interfaces, links, routing constructs, and services are represented as nodes with relationships. An IBA probe is effectively a processing pipeline (a directed acyclic graph of stages and processors) that ingests telemetry and then performs calculations, aggregations, and anomaly detection. To make any of that work, the probe must first determine which specific objects in the graph-for example, which leaf switches, which uplinks, which BGP sessions, or which interface counters-should be included in the analysis.
The probe element that selects those objects is the graph query. A graph query is evaluated against Apstra's graph database to return a set of matching nodes/relationships; those query results then become the scope for ingestion and subsequent processing. In other words, the graph query defines "apply this probe to these devices/interfaces/sessions," and it also provides the context used to bind telemetry identities (key-value pairs describing the metric source) to the correct logical objects in the blueprint. This is why Apstra documentation describes early probe processors producing outputs whose cardinality aligns with the number of results returned by the specified graph query(s). Without a graph query, the probe would not have a deterministic, intent-aligned target set for analytics, and the same probe definition could not be reliably reused across fabrics or blueprints.
NEW QUESTION # 23
You want to add a configuration that is not supported by Juniper Apstra reference architecture using a configlet.
Which two configurations would be applicable in this scenario? (Choose two.)
- A. syslog configuration
- B. policy configuration
- C. NTP configuration
- D. static route configuration
Answer: A,C
Explanation:
A configlet is a configuration template that augments Apstra's reference design with non-native device configuration. They consist of one or more generators. Each generator specifies a NOS type (config style), when to render the configuration, and CLI commands (and file name as applicable).
Some applications for configlets include the following:
- Syslog
- SNMP access policy
- TACACS / RADIUS
- Management ACLs
- Control plane policing
- NTP
- Username / password
NEW QUESTION # 24
Which two statements are correct about repairing a Juniper Apstra cabling map before deploying your blueprint? (Choose two.)
- A. You must manually change the cabling map to update leaf-to-generic links.
- B. Apstra can use LLDP data from the leaf devices to update the leaf-to-generic connections in the cabling map.
- C. Apstra can use LLDP data from the spine-to-lea! fabric devices to update the connections in the cabling map.
- D. You must manually change the cabling map to update spine-to-leaf fabric links.
Answer: B,C
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 # 25
What are three port group roles that you are allowed to assign to a logical device? (Choose three.)
- A. generic
- B. spine
- C. empty
- D. leaf
- E. root
Answer: A,B,D
Explanation:
When assigning port group roles to a logical device in Juniper Apstra, the valid roles you can assign include:
Leaf - for ports that connect to servers or access layer devices.
Spine - for ports that connect to spine or core switches.
Generic - for ports that connect to systems not playing a fabric role (e.g., firewalls, external routers, or appliances).
NEW QUESTION # 26
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