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Juniper JN0-481 Exam Syllabus Topics:

TopicDetails
Topic 1
  • 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 2
  • Intent-Based Analytics: Covers Apstra's analytics tools including Graph Explorer, graph queries, and intent-based analytics probes for network monitoring, validation, and troubleshooting.
Topic 3
  • 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.
Topic 4
  • 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.

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Juniper Data Center, Specialist (JNCIS-DC) Sample Questions (Q35-Q40):

NEW QUESTION # 35
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: D

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 # 36
You are building an IP fabric and have decided to use Junos devices to create an EBGP underlay. You must ensure that traffic is load balanced throughout your fabric.
You must also ensure that regardless of the path used through the fabric that all traffic is handled consistently and load balanced predictably.
According to Juniper Networks, what are three best practices that you should employ to help you achieve the desired behavior? (Choose three.)

Answer: B,D,E


NEW QUESTION # 37
What are two agent processes that operate within the Juniper Apstra device agent? (Choose two.)

Answer: B,C

Explanation:
Within the Juniper Apstra device agent, two of the key processes are:
- Telemetry agent, which collects operational and state data from the device and reports it back to the Apstra server.
- Deployment agent, which applies configuration changes delivered by Apstra to the device.


NEW QUESTION # 38
What does VXLAN use to uniquely label and identify broadcast domains?

Answer: A

Explanation:
In a VXLAN overlay, each Layer 2 broadcast domain (the logical equivalent of a VLAN/bridge domain) is identified by a 24-bit VXLAN Network Identifier (VNI) carried in the VXLAN header. This VNI is what allows the overlay to scale far beyond traditional VLAN space (12-bit VLAN IDs), enabling up to ~16 million distinct segments. In an EVPN-VXLAN data center fabric, Junos v24.4 leaf switches operate as VTEPs and map local bridge domains (often associated with VLANs on server-facing ports) to a VNI. When traffic is sent across the routed underlay, the leaf encapsulates Ethernet frames into VXLAN packets and inserts the VNI so the receiving VTEP can place the frame into the correct broadcast domain on decapsulation.
Apstra 5.1 abstracts this mapping through virtual networks and resource allocation: when you define a VXLAN-based virtual network, Apstra allocates a VNI from the appropriate pool and consistently programs the necessary constructs on all participating leaves. The key point is that VNI is the unique identifier in the VXLAN data plane used to label the broadcast domain across the IP fabric; VLAN IDs may exist locally at the edge for tagging, but the globally significant overlay identifier is the VNI.
Verified Juniper sources (URLs):
https://www.juniper.net/documentation/us/en/software/junos/evpn/topics/topic-map/sdn-vxlan.html


NEW QUESTION # 39
You have an EVPN-VXLAN data center IP fabric, with all single-homed hosts/servers. Which two EVPN route types are present in this scenario? (Choose two.)

Answer: A,B

Explanation:
In an EVPN-VXLAN fabric where all hosts are single-homed (each endpoint is attached to only one leaf/VTEP), the EVPN control plane still needs to advertise endpoint reachability and enable BUM handling across the overlay. Two EVPN route types are fundamental in this case: Type 2 and Type 3.
EVPN Route Type 2 (MAC/IP Advertisement) is used to advertise learned MAC addresses and, optionally, associated IP addresses for endpoints connected to the local leaf. This enables remote VTEPs to learn where a given host resides (which VTEP to send unicast traffic to) without relying on data-plane flooding for MAC learning. In Junos v24.4 EVPN-VXLAN deployments, Type 2 routes are the core mechanism for distributing endpoint reachability (MAC and MAC+IP bindings) within the EVPN domain.
EVPN Route Type 3 (Inclusive Multicast Ethernet Tag / IMET) is used to establish the flooding scope for BUM traffic in EVPN-VXLAN. In VXLAN fabrics that use ingress replication (common in data centers), Type 3 routes help build the list of remote VTEPs that should receive replicated BUM traffic for a given segment.
By contrast, Type 4 (Ethernet Segment) routes are associated with EVPN multihoming (ESI-based) and DF election; with only single-homed hosts, Type 4 is not required. Type 7 is not part of the baseline single-homed EVPN-VXLAN host advertisement set in this context.
Verified Juniper sources (URLs):
https://www.juniper.net/documentation/us/en/software/junos/evpn/topics/concept/evpn-bgp-multihoming-overview.html
https://www.juniper.net/documentation/us/en/software/junos/evpn/topics/topic-map/assisted-replication-evpn.html


NEW QUESTION # 40
......

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