Reliable JN0-481 Test Dumps & Passing JN0-481 Score

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Juniper JN0-481 Exam Syllabus Topics:

TopicDetails
Topic 1
  • 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 2
  • Juniper Apstra Architecture: Introduces core Apstra components including the server, device agents, and UI, along with administrative features such as RBAC, event logging, and syslog.
Topic 3
  • Data Center Architectures (IP Fabrics, EVPN-VXLAN): Covers spine-leaf topology design, ECMP load balancing, and underlay
  • overlay routing, along with EVPN and VXLAN concepts including route types, bridge domains, VNI-to-VLAN mapping, and VTEP functions.
Topic 4
  • 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 5
  • 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.

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Juniper Data Center, Specialist (JNCIS-DC) Sample Questions (Q51-Q56):

NEW QUESTION # 51
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: A

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 technology.
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 networks.
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.


NEW QUESTION # 52
You have created a blueprint and are in the process of assigning systems. You require the leaf3- sonic device in the blueprint but do not want it to actively participate in the routing of the IP fabric.
In the Juniper Apstra UI, which two modes satisfy this requirement? (Choose two.)

Answer: B,C

Explanation:
Drain mode keeps the device assigned to the blueprint but prevents it from forwarding or participating in routing, which satisfies the requirement.
Ready mode means the device is assigned and recognized in the blueprint but not yet deployed, so it does not actively participate in fabric routing.


NEW QUESTION # 53
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: D

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 # 54
You are trying to deploy a five-stage template to a blueprint as shown in the exhibit. You cannot see your template name in the list of available templates.

In this scenario, which statement is correct?

Answer: B

Explanation:
In Apstra 5.1, templates are organized by template type, and the Create Blueprint screen can filter the template list by those types. A five-stage Clos design in Apstra is represented as a pod-based template (multi-pod fabric with an additional tier such as super-spines to interconnect pods). Because of that, a five-stage template will only appear in the template selector when the Pod Based filter is chosen. If the filter is set to Rack Based or Collapsed, Apstra hides pod-based templates because those types correspond to different topology classes: rack-based aligns with a three-stage leaf-spine pod, while collapsed aligns with a spine-less topology pattern.
This behavior is by design to prevent selecting an incompatible template for the intended topology. The template name itself does not need to contain "five-stage"; Apstra determines its type from how the template was created and stored in the catalog. Also, five-stage templates are not limited to Freeform blueprints-five-stage is a data center fabric topology choice, and it is supported within the data center reference design workflows when the appropriate template type is selected.
So, to make the five-stage template visible and selectable, choose Pod Based in the template filter.


NEW QUESTION # 55
You are using Juniper Apstra to manage your three-stage IP fabric. You have not enabled any IBA probes other than those that are enabled by default. You notice that both the Analytics tab and its child, Anomalies tab, have red indicators associated with them.
In this scenario, which condition is occurring in your network?

Answer: A

Explanation:
In Juniper Apstra, even without custom IBA probes, the system enables default probes that monitor critical control-plane elements such as BGP sessions. A red indicator on the Analytics → Anomalies tabs signals a failure in one of these probes. In this case, the condition is that an expected BGP session between a spine and leaf node has failed to establish.


NEW QUESTION # 56
......

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