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ExamBoosts Data Center, Specialist (JNCIS-DC) (JN0-481) practice test has real Data Center, Specialist (JNCIS-DC) (JN0-481) exam questions. You can change the difficulty of these questions, which will help you determine what areas appertain to more study before taking your Juniper JN0-481 Exam Dumps. Here we listed some of the most important benefits you can get from using our Juniper JN0-481 practice questions.
| Certification Vendor: | Juniper Networks |
|---|---|
| Exam Name: | Junos Data Center, Specialist (JNCIS-DC) |
| Exam Number: | JN0-481 |
| Exam Price: | $300 USD (may vary by region) |
| Exam Duration: | 90 minutes |
| Available Languages: | English |
| Certificate Validity Period: | 3 years |
| Real Exam Qty: | Approximately 65 |
| Exam Format: | Scenario-based questions, Multiple-response, Multiple-choice |
| Passing Score: | Approximately 60โ70% |
| Related Certifications: | JNCIA-DC JNCIP-DC JNCIE-DC |
| Recommended Training: | Juniper Data Center Training Courses EVPN-VXLAN Learning Resources |
| Exam Registration: | Pearson VUE Juniper Exams Juniper Certification Portal |
| Sample Questions: | Juniper JN0-481 Sample Questions |
| Exam Way: | Online proctored or Pearson VUE test center |
| Pre Condition: | JNCIA-DC is recommended but not strictly required |
| Official Syllabus URL: | https://www.juniper.net/us/en/training/certification/certification-tracks/data-center.html |
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NEW QUESTION # 36
What is the purpose of an EVPN Ethernet segment identifier (ESI)?
Answer: A
Explanation:
An EVPN Ethernet Segment Identifier (ESI) is used to uniquely identify a multi-homed Ethernet segment, such as when multiple links from a device connect to the same EVPN fabric. Its primary purpose is to prevent loops within a LAG connection by ensuring only one active forwarding path while still enabling redundancy and load balancing.
NEW QUESTION # 37
The same connectivity template is applied to the ge-0/0/6 interface on both borderleaf1 and borderleaf2 nodes. This connectivity template describes the intended configuration of the EBGP session between each of the borderleaf nodes and the external router. You want to ensure that the 172.23.x/24 routes are not installed in the borderleaf nodes' Finance routing table.
Referring to the exhibit, what would you change in Juniper Apstra to accomplish this task?
Answer: C
Explanation:
The exhibit shows that the border leaf is receiving multiple routes (including 172.23.x/24) from the external router via EBGP. To prevent these specific routes from being installed in the Finance routing table, you must modify the import policy applied to the EBGP session so that only the default route (0.0.0.0/0) is permitted. This ensures the border leaf nodes accept only the intended default route and deny the 172.23.x/24 prefixes.
NEW QUESTION # 38
What are three valid resource types supported within Juniper Apstra? (Choose three.)
Answer: B,D,E
Explanation:
Juniper Apstra supports various resource types for managing and assigning infrastructure values across blueprints. Three valid resource types are:
- Integer Pools - Used for assigning numeric values like VLAN IDs.
- VNI Pools - Used to assign unique VXLAN Network Identifiers to virtual networks.
- ASN Pools - Used to assign Autonomous System Numbers for BGP sessions.
Routing zone pools and interface pools are not valid resource types in Apstra. Routing zones and interfaces are configured differently within the blueprint structure.
NEW QUESTION # 39
You want to assign resources to your blueprint during the deployment phase. In this scenario, which statement is correct?
Answer: B
Explanation:
In Apstra 5.1, "resources" (such as ASNs, IP addressing, and VNIs) are allocated to blueprint elements using resource pools. The blueprint does not require you to manually craft every individual resource value; instead, Apstra's workflow is to have you indicate which pool(s) should be used for the blueprint, and then Apstra automatically pulls and assigns the required values. This automation is fundamental to Apstra's intent-based model: once the blueprint knows which pools to consume, it can deterministically allocate unique values across the fabric and generate consistent Junos configuration for the assigned devices.
Option D best matches this behavior because it reflects the documented mechanism: required resources are automatically pulled from the selected pool(s) and assigned in a fast, bulk transaction. This is what enables repeatable deployments-especially in EVPN-VXLAN data center fabrics-because resource collisions and manual tracking are avoided.
Option A is not the defining prerequisite for resource assignment; device profile and device assignment are important overall build steps, but the correctness of resource assignment is tied to pool selection and availability rather than being strictly gated by those tasks. Option B is incorrect because pools can be created and managed beyond only "global" contexts, and Apstra also supports creating additional pools from within the blueprint when needed. Option C is misleading because resources are governed by pools and allocation, not only by manual creation under a single tab.
Verified Juniper sources (URLs):
https://www.juniper.net/documentation/us/en/software/apstra5.1/apstra-user-guide/topics/concept/resources.html
https://www.juniper.net/documentation/us/en/software/apstra5.1/apstra-user-guide/topics/concept/freeform-resource-management.html
https://www.juniper.net/documentation/us/en/software/apstra5.1/apstra-user-guide/topics/ref/resource-pools-api.html
NEW QUESTION # 40
Exhibit.
Referring to the exhibit, how many broadcast domains will an Ethernet frame pass through when traversing the IP fabric from Server A to Server B?
Answer: C
Explanation:
Referring to the exhibit, the image shows a simplified diagram of an IP fabric network connecting two servers, labeled as Server A and Server B. The IP fabric is a network architecture that uses a Clos topology to provide high bandwidth, low latency, and scalability for data center networks. The IP fabric consists of spine and leaf devices that use BGP as the routing protocol and VXLAN as the overlay technology1.
A broadcast domain is a logical portion of a network where any device can directly transmit broadcast frames to other devices at the data link layer (OSI Layer 2). A broadcast frame is a frame that has a destination MAC address of all ones (FF:FF:FF:FF:FF:FF), which means that it is intended for all devices in the same broadcast domain. A broadcast domain is usually bounded by a router, which does not forward broadcast frames to other networks2.
In the exhibit, there are two broadcast domains that an Ethernet frame will pass through when traversing the IP fabric from Server A to Server B. The first broadcast domain is the one that contains Server A and the leaf device that it is connected to. The second broadcast domain is the one that contains Server B and the leaf device that it is connected to. The IP fabric itself is not a broadcast domain, because it uses IP routing and VXLAN encapsulation to transport the Ethernet frames over the Layer 3 network. Therefore, the statement C is correct in this scenario.
The following three statements are incorrect in this scenario:
A . 1. This is not true, because there are not one, but two broadcast domains that an Ethernet frame will pass through when traversing the IP fabric from Server A to Server B. The IP fabric itself is not a broadcast domain, because it uses IP routing and VXLAN encapsulation to transport the Ethernet frames over the Layer 3 network.
B . 4. This is not true, because there are not four, but two broadcast domains that an Ethernet frame will pass through when traversing the IP fabric from Server A to Server B. The spine devices and the leaf devices that are not connected to the servers are not part of the broadcast domains, because they use IP routing and VXLAN encapsulation to transport the Ethernet frames over the Layer 3 network.
D . 3. This is not true, because there are not three, but two broadcast domains that an Ethernet frame will pass through when traversing the IP fabric from Server A to Server B. The IP fabric itself is not a broadcast domain, because it uses IP routing and VXLAN encapsulation to transport the Ethernet frames over the Layer 3 network.
Reference:
IP Fabric Overview
Broadcast Domain - NetworkLessons.com
NEW QUESTION # 41
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