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[General] Juniper JN0-481 Latest Cram Materials & Latest JN0-481 Exam Preparation

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【General】 Juniper JN0-481 Latest Cram Materials & Latest JN0-481 Exam Preparation

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Juniper Data Center, Specialist (JNCIS-DC) Sample Questions (Q25-Q30):NEW QUESTION # 25
What is the function of the Revert button in the Juniper Apstra Ul?
  • A. The Revert button deletes any uncommitted changes within Apstra.
  • B. The Revert button will undo the last change made to the configuration.
  • C. The Revert button performs a rollback 0 on Juniper devices in the fabric.
  • D. The Revert button will rollback to the previous configuration of a specified device.
Answer: A
Explanation:
The Revert button is located on the Uncommitted tab of the blueprint page. The Uncommitted tab shows the changes that have been staged but not yet committed to the network. The Revert button allows you to discard any uncommitted changes and revert to the last committed state of the blueprint. This is useful if you want to cancel the changes that you have made or if you want to start over with a fresh slate.

NEW QUESTION # 26
Which statement is correct about the Juniper Apstra Rendered configuration?
  • A. It is built at commit time and stored in a MySQL database.
  • B. It is rendered from the graph database and stored locally.
  • C. It is dynamically tendered at commit time.
  • D. It is stored in a NoSQL database and incrementally updated.
Answer: C
Explanation:
The Juniper Apstra Rendered configuration is the configuration that is generated from the staged blueprint and applied to the devices in the network. The Rendered configuration is dynamically rendered at commit time, which means that it is created on the fly based on the latest changes and validations in the blueprint. The Rendered configuration is not stored in any database, but it can be viewed in the Apstra UI or downloaded as a file. The Rendered configuration reflects the desired state of the network as defined by the intent of the blueprint.

NEW QUESTION # 27
Referring to the exhibit, which statement is correct?

  • A. The red-striped primitives indicate that further configuration is required.
  • B. The gray-solid primitives indicate that they ate incompatible with the connectivity template design.
  • C. The gray-solid primitives indicate further configuration is requited.
  • D. The red-striped primitives indicate that they are incompatible with the connectivity template design.
Answer: A
Explanation:
A connectivity template is a set of configuration parameters that can be applied to a device or a group of devices in a blueprint. A blueprint is a logical representation of the network design and intent. A primitive is a basic unit of configuration that can be added to a connectivity template. A primitive can be a link, a peering, a policy, or a service. In the exhibit, the red-striped primitives indicate that further configuration is required for them to be compatible with the connectivity template design. The red stripes mean that the primitive is incomplete or invalid, and it needs to be edited or deleted. For example, the IP Link primitive needs to have the interface name and IP address specified for each end of the link.

NEW QUESTION # 28
In Juniper Apstra, which statement is correct?
  • A. VMware anomaly detection requires a vCenter server configured under External Systems
  • B. VMware anomaly detection requires a VMware hypervisor with exports enabled.
  • C. VMware anomaly detection is on by default.
  • D. VMware anomaly detection requires an Apstra server running on VMware.
Answer: A
Explanation:
VMware anomaly detection is a feature of Apstra that provides visibility and validation of the virtual network settings and the physical network settings in a VMware vSphere environment. To enable this feature, Apstra requires a connection to a vCenter server that manages the ESX/ESXi hosts and the VMs connected to the Apstra-managed leaf switches. The vCenter server must be configured under External Systems in the Apstra web interface, and the vCenter integration must be staged and committed in the blueprint. This allows Apstra to collect information about VMs, ESX/ESXi hosts, port groups, and VDS, and to flag any inconsistencies or mismatches that might affect VM connectivity.

NEW QUESTION # 29
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?

  • A. 0
  • B. 1
  • C. 2
  • D. 3
Answer: D
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 # 30
......
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