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| Certification Vendor: | Juniper |
|---|---|
| Exam Name: | Data Center, Specialist (JNCIS-DC) |
| Exam Number: | JN0-481 |
| Certificate Validity Period: | 3 years |
| Related Certifications: | JNCIS-DC JNCIA-DC |
| Exam Duration: | 90 minutes |
| Available Languages: | English |
| Exam Format: | Multiple Choice |
| Exam Price: | $300 USD |
| Real Exam Qty: | 65 |
| Sample Questions: | Juniper JN0-481 Sample Questions |
| Exam Way: | Pearson VUE online or test center delivery |
| Pre Condition: | JNCIA-DC certification is required before taking the JN0-481 exam. |
| Official Syllabus URL: | https://www.juniper.net/gb/en/training/certification/tracks/data-center/jncis-dc.html |
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NEW QUESTION # 25
You connect two single-homed servers using Juniper Apstra as shown in the exhibit. You are using the ERB design blueprint with two virtual networks in a common routing zone. In this scenario, which two types of VXLAN tunnels will be automatically created by the EVPN control plane? (Choose two.)
Answer: C,D
Explanation:
EVPN route Type-3 is used to advertise the IP address of the VTEP and the VNIs that it supports.
This allows the VTEPs to discover each other and form VXLAN tunnels for the VNIs that they have in common. EVPN route Type-2 is used to advertise the MAC and IP addresses of the hosts connected to the VTEPs. This allows the VTEPs to learn the MAC-to-IP bindings and the MAC-to- VTEP mappings for the hosts in the same VNI. Therefore, these two types of VXLAN tunnels will be automatically created by the EVPN control plane when using Juniper Apstra with the ERB design blueprint and two virtual networks in a common routing zone.
NEW QUESTION # 26
What is correct about the selected device shown in the exhibit?
Answer: C
Explanation:
The exhibit shows node100 (Generic System) selected, with links from that generic system to two fabric leaf switches (for example, a leaf participating in an ESI pair and another leaf node). In Apstra 5.1, a Generic System represents an endpoint that is not managed as a network device by Apstra (such as a server, appliance, or host), but it is still modeled so Apstra can apply interface intent (LAG vs single link), connectivity templates, and virtual network attachments.
Because the device is shown as a generic system connected on leaf-facing ports inside the fabric topology, this aligns with an internal generic system. Internal generic systems are used for servers or endpoints that reside "inside" the rack/fabric context and consume leaf switch ports as access-facing connections. This is the common representation for endpoints in EVPN-VXLAN data center designs, where the leaf switches provide the VLAN/VNI mapping and, if required, IRB gateway services within the tenant VRF (routing zone).
An external generic system is typically used for devices outside the fabric boundary-most commonly external routers, firewalls, or upstream networks attached at border leafs-where the intent is external connectivity rather than server access. The selected node is neither a peer switch nor an access switch (those are network infrastructure roles), and the UI explicitly labels it as a Generic System, confirming the correct classification as an internal generic system.
NEW QUESTION # 27
You are building a blueprint using Juniper Apstra and must change the cable map to match the physical environment. Where in the blueprint UI is this task accomplished?
Answer: C
Explanation:
In Apstra 5.1, the cabling map is part of the blueprint's intended physical topology. Cable-map edits are performed in the Staged workspace because Staged is where you modify intent (what the fabric should look like) before committing those changes and deploying them. The Staged → Physical → Links view provides both a tabular and topology-oriented representation of spine-to-leaf and other physical connections. When Apstra auto-assigns interfaces during initial build, the logical mapping may not match the real patching in the data center. The cabling map editor allows you to override interface names (and where applicable, link addressing metadata) so the blueprint accurately reflects the actual patch panel and switchport usage.
This accuracy is critical in a Junos v24.4 leaf-spine fabric because underlay correctness depends on the real physical adjacencies: link membership, LAG expectations (where used), and the resulting BGP neighbor relationships that carry EVPN signaling for VXLAN overlays. By updating the cabling map in Staged, you ensure Apstra can correctly validate neighbor discovery, verify intent, and produce consistent device configuration aligned to the real-world wiring. After making the cabling corrections, you commit the staged changes and then deploy/apply so that Apstra's intent and the running network converge. This work is not performed under Active (which reflects deployed state) and is not a function of Connectivity Templates (which are for endpoint/service attachment rather than fabric cabling).
Verified Juniper sources (URLs):
https://www.juniper.net/documentation/us/en/software/apstra5.0/apstra-user-guide/topics/topic-map/cabling-map-edit-datacenter.html
https://www.juniper.net/documentation/us/en/software/apstra6.0/apstra-user-guide/topics/topic-map/cabling-map-edit-datacenter.html
https://www.juniper.net/documentation/us/en/software/jvd/jvd-dcfabric-5-stage/configuration_walkthrough.html
NEW QUESTION # 28
Which statement is true when onboarding a Juniper Networks device using a Juniper Apstra ZTP server?
Answer: A
Explanation:
The ztp.Json file on the Apstra ZTP server contains the configuration parameters for each device that is onboarded using ZTP. One of the parameters is the State, which can be one of the following values: init, ready, in_progress, done, error, or disabled. The State indicates the current status of the device in the ZTP process. For example, if the State is ready, it means that the device is ready to be onboarded by the Apstra ZTP server. If the State is done, it means that the device has completed the ZTP process and is managed by the Apstra server. The State can be manually set or changed in the ztp.Json file to control the behavior of the device during ZTP.
NEW QUESTION # 29
What is the primary benefit of using ZTP (Zero Touch Provisioning) in conjunction with Juniper Apstra?
Answer: A
Explanation:
Zero Touch Provisioning (ZTP) allows a new device connected to the network to automatically download its boot image and initial configuration and register itself with the Apstra server without requiring manual console access or configuration. This significantly speeds up fabric deployment and reduces the potential for manual configuration errors.
NEW QUESTION # 30
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