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Juniper JN0-481 PDF Questions-Turn Your Exam Fear Into Confidence

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Juniper JN0-481 PDF Questions-Turn Your Exam Fear Into Confidence

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Juniper Data Center, Specialist (JNCIS-DC) Sample Questions (Q48-Q53):NEW QUESTION # 48
In the EVPN-VXLAN data center fabric bridged overlay architecture shown in the exhibit, the servers are connected to Lead and Leat6 using the same virtual network identifier (VNI). Which two statements are correct in this scenario? (Choose two.)

  • A. Loopback IPv4 addresses must be advertised into the EBGP underlay from leaf and spine devices.
  • B. The underlay must use IRB interfaces.
  • C. The underlay must be provisioned with PIMv2.
  • D. The underlay EBGP peering's must be established between leaf and spine devices.
Answer: A,D
Explanation:
In the EVPN-VXLAN data center fabric bridged overlay architecture shown in the exhibit, the servers are connected to Leaf1 and Leaf6 using the same virtual network identifier (VNI). This means that the servers belong to the same Layer 2 domain and can communicate with each other using VXLAN tunnels across the fabric. The underlay network provides the IP connectivity between the leaf and spine devices, and it uses EBGP as the routing protocol. Therefore, the following two statements are correct in this scenario:
Loopback IPv4 addresses must be advertised into the EBGP underlay from leaf and spine devices. This is because the loopback addresses are used as the source and destination IP addresses for the VXLAN tunnels, and they must be reachable by all the devices in the fabric.
The loopback addresses are also used as the router IDs and the BGP peer addresses for the EBGP sessions.
The underlay EBGP peering's must be established between leaf and spine devices. This is because the EBGP sessions are used to exchange the underlay routing information and the EVPN routes for the overlay network. The EBGP sessions are established using the loopback addresses of the devices, and they follow a spine-and-leaf topology, where each leaf device peers with all the spine devices, and each spine device peers with all the leaf devices.

NEW QUESTION # 49
What is one indicator in the Apstra UI that implies that changes to a blueprint are ready to be committed?
  • A. Interface maps have been assigned through Device Profiles.
  • B. The Staged tab turns yellow
  • C. Each assigned device has been set to Deploy mode.
  • D. The Staged tab turns green
Answer: D

NEW QUESTION # 50
Referring to the exhibit, what is the minimum information you must add to create a new routing zone?

  • A. VRF Name, VLAN ID, VNI, Routing Policies
  • B. VRF Name and Routing policies
  • C. VRF Name, VLAN ID. And VNI
  • D. VRF Name only
Answer: C
Explanation:
To create a new routing zone, you must specify the VRF Name, VLAN ID, and VNI for the routing zone. These are the mandatory fields in the user interface shown in the exhibit. The VRF Name is the name of the L3 domain that isolates the IP traffic of the routing zone from other routing zones.
The VLAN ID is the identifier for the VLAN tagged Layer 3 links on external connections. The VNI is the VxLAN Network Identifier associated with the routing zone. The Routing Policies are optional fields that allow you to configure import and export route targets for the routing zone.
These are only applicable for EVPN routing zones, which use MP-EBGP as the overlay control protocol.

NEW QUESTION # 51
In Juniper Apstra, which statement is correct?
  • A. VMware anomaly detection is on by default.
  • B. VMware anomaly detection requires an Apstra server running on VMware.
  • C. VMware anomaly detection requires a vCenter server configured under External Systems
  • D. VMware anomaly detection requires a VMware hypervisor with exports enabled.
Answer: C
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 # 52
What is the purpose of a Juniper Apstra rack?
  • A. It stores IP address and ASN pool information.
  • B. It stores device port data rates and vendor information.
  • C. It stores information on how leaf nodes connect to generic devices
  • D. It stores information on how pods connect to super spines.
Answer: C
Explanation:
A Juniper Apstra rack is a physical entity that contains one or more network devices, such as leaf nodes, access switches, or generic systems. A rack is used to organize and manage the network devices in the Apstra software application. A rack has the following characteristics:
It stores information on how leaf nodes connect to generic devices. This is because a rack can include generic systems, which are devices that are not managed by Juniper Apstra, but are connected to the network. A generic system can be a server, a firewall, a load balancer, or any other device that has a network interface. A rack stores the information on how the leaf nodes, which are the devices that provide access to the end hosts, connect to the generic devices, such as the port number, the link speed, the LAG mode, and the roles.
It has a rack type, which defines the type and number of leaf devices, access switches, and/or generic systems that are used in the rack. A rack type is a resource that is created in the data center design phase, and it does not specify the vendor or the model of the devices. A rack type can be predefined or custom-made, and it can be used to create multiple racks with the same structure and configuration.
It has a rack build, which assigns the specific vendor and model of the devices to the rack. A rack build is created in the staged phase, and it uses the rack type as a template. A rack build can also assign the resources, such as the IP addresses, the ASNs, and the VNIs, to the devices in the rack. It has a rack deployment, which applies the network configuration and services to the devices in the rack. A rack deployment is performed in the active phase, and it uses the rack build as a reference. A rack deployment can also monitor the network performance and compliance of the devices in the rack.

NEW QUESTION # 53
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