JUNIPER JN0-214 EXAM DUMPS - GET SUCCESS DUMPSQUESTION MINIMAL EFFORT

Juniper JN0-214 Exam Dumps - Get Success DumpsQuestion Minimal Effort

Juniper JN0-214 Exam Dumps - Get Success DumpsQuestion Minimal Effort

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Juniper Cloud, Associate (JNCIA-Cloud) Sample Questions (Q24-Q29):

NEW QUESTION # 24
Which two consoles are provided by the OpenShift Web UI? (Choose two.)

  • A. administrator console
  • B. management console
  • C. developer console
  • D. operational console

Answer: A,C

Explanation:
OpenShift provides a web-based user interface (Web UI) that offers two distinct consoles tailored to different user roles. Let's analyze each option:
A . administrator console
Correct:
The administrator console is designed for cluster administrators. It provides tools for managing cluster resources, configuring infrastructure, monitoring performance, and enforcing security policies.
B . developer console
Correct:
The developer console is designed for application developers. It focuses on building, deploying, and managing applications, including creating projects, defining pipelines, and monitoring application health.
C . operational console
Incorrect:
There is no "operational console" in OpenShift. This term does not correspond to any official OpenShift Web UI component.
D . management console
Incorrect:
While "management console" might sound generic, OpenShift specifically refers to the administrator console for management tasks. This term is not officially used in the OpenShift Web UI.
Why These Consoles?
Administrator Console: Provides a centralized interface for managing the cluster's infrastructure and ensuring smooth operation.
Developer Console: Empowers developers to focus on application development without needing to interact with low-level infrastructure details.
JNCIA Cloud Reference:
The JNCIA-Cloud certification emphasizes understanding OpenShift's Web UI and its role in cluster management and application development. Recognizing the differences between the administrator and developer consoles is essential for effective collaboration in OpenShift environments.
For example, Juniper Contrail integrates with OpenShift to provide advanced networking features, leveraging both consoles for seamless operation.
Reference:
OpenShift Documentation: Web Console Overview
Juniper JNCIA-Cloud Study Guide: OpenShift Web UI


NEW QUESTION # 25
Which term identifies to which network a virtual machine interface is connected?

  • A. Virtual Extensible LAN
  • B. virtual tunnel endpoint (VTEP)
  • C. virtual network ID
  • D. machine access control (MAC)

Answer: C

Explanation:
In cloud environments, virtual machines (VMs) connect to virtual networks to enable communication. Identifying the network to which a VM interface is connected is essential for proper configuration and isolation. Let's analyze each option:
A . virtual network ID
Correct: The virtual network ID uniquely identifies the virtual network to which a VM interface is connected. This ID is used to logically group VMs and ensure they can communicate within the same network while maintaining isolation from other networks.
B . machine access control (MAC)
Incorrect: The MAC address is a hardware identifier for a network interface card (NIC). While it is unique to each interface, it does not identify the network to which the VM is connected.
C . Virtual Extensible LAN (VXLAN)
Incorrect: VXLAN is a tunneling protocol used to create overlay networks in cloud environments. While VXLAN encapsulates traffic, it does not directly identify the network to which a VM interface is connected.
D . virtual tunnel endpoint (VTEP)
Incorrect: A VTEP is a component of overlay networks (e.g., VXLAN) that encapsulates and decapsulates traffic. It is used to establish tunnels but does not identify the virtual network itself.
Why Virtual Network ID?
Logical Isolation: The virtual network ID ensures that VMs are logically grouped into isolated networks, enabling secure and efficient communication.
Scalability: Virtual networks allow cloud environments to scale by supporting multiple isolated networks within the same infrastructure.
JNCIA Cloud Reference:
The JNCIA-Cloud certification emphasizes understanding virtual networking concepts, including virtual networks and their identifiers. Virtual network IDs are fundamental to cloud architectures, enabling multi-tenancy and network segmentation.
For example, Juniper Contrail uses virtual network IDs to manage connectivity and isolation for VMs in cloud environments. Proper configuration of virtual networks ensures seamless communication and security.
Reference:
Virtual Networking Documentation
Juniper JNCIA-Cloud Study Guide: Virtual Networks


NEW QUESTION # 26
Regarding the third-party CNI in OpenShift, which statement is correct?

  • A. OpenShift does not support third-party CNIs.
  • B. In OpenShift, you must specify the third-party CNI to be installed during the initial cluster deployment.
  • C. In OpenShift, you can remove and install a third-party CNI after the cluster has been deployed.
  • D. In OpenShift, you can have multiple third-party CNIs installed simultaneously.

Answer: B

Explanation:
OpenShift supports third-party Container Network Interfaces (CNIs) to provide advanced networking capabilities. However, there are specific requirements and limitations when using third-party CNIs. Let's analyze each statement:
A . In OpenShift, you can remove and install a third-party CNI after the cluster has been deployed.
Incorrect:
OpenShift does not allow you to change or replace the CNI plugin after the cluster has been deployed. The CNI plugin must be specified during the initial deployment.
B . In OpenShift, you must specify the third-party CNI to be installed during the initial cluster deployment.
Correct:
OpenShift requires you to select and configure the desired CNI plugin (e.g., Calico, Cilium) during the initial cluster deployment. Once the cluster is deployed, changing the CNI plugin is not supported.
C . OpenShift does not support third-party CNIs.
Incorrect:
OpenShift supports third-party CNIs as alternatives to the default SDN (Software-Defined Networking) solution. This flexibility allows users to choose the best networking solution for their environment.
D . In OpenShift, you can have multiple third-party CNIs installed simultaneously.
Incorrect:
OpenShift does not support running multiple CNIs simultaneously. Only one CNI plugin can be active at a time, whether it is the default SDN or a third-party CNI.
Why This Statement?
Initial Configuration Requirement: OpenShift enforces the selection of a CNI plugin during the initial deployment to ensure consistent and stable networking across the cluster.
Stability and Compatibility: Changing the CNI plugin after deployment could lead to network inconsistencies and compatibility issues, which is why it is not allowed.
JNCIA Cloud Reference:
The JNCIA-Cloud certification covers OpenShift networking, including the use of third-party CNIs. Understanding the limitations and requirements for CNI plugins is essential for deploying and managing OpenShift clusters effectively.
For example, Juniper Contrail can be integrated as a third-party CNI in OpenShift to provide advanced networking and security features, but it must be specified during the initial deployment.
Reference:
OpenShift Documentation: Third-Party CNIs
Juniper JNCIA-Cloud Study Guide: OpenShift Networking


NEW QUESTION # 27
You are asked to provision a bare-metal server using OpenStack.
Which service is required to satisfy this requirement?

  • A. Zun
  • B. Trove
  • C. Magnum
  • D. Ironic

Answer: D

Explanation:
OpenStack is an open-source cloud computing platform that provides various services for managing compute, storage, and networking resources. To provision a bare-metal server in OpenStack, the Ironic service is required. Let's analyze each option:
A . Ironic
Correct: OpenStack Ironic is a bare-metal provisioning service that allows you to manage and provision physical servers as if they were virtual machines. It automates tasks such as hardware discovery, configuration, and deployment of operating systems on bare-metal servers.
B . Zun
Incorrect: OpenStack Zun is a container service that manages the lifecycle of containers. It is unrelated to bare-metal provisioning.
C . Trove
Incorrect: OpenStack Trove is a Database as a Service (DBaaS) solution that provides managed database instances. It does not handle bare-metal provisioning.
D . Magnum
Incorrect: OpenStack Magnum is a container orchestration service that supports Kubernetes, Docker Swarm, and other container orchestration engines. It is focused on containerized workloads, not bare-metal servers.
Why Ironic?
Purpose-Built for Bare-Metal: Ironic is specifically designed to provision and manage bare-metal servers, making it the correct choice for this requirement.
Automation: Ironic automates the entire bare-metal provisioning process, including hardware discovery, configuration, and OS deployment.
JNCIA Cloud Reference:
The JNCIA-Cloud certification covers OpenStack as part of its cloud infrastructure curriculum. Understanding OpenStack services like Ironic is essential for managing bare-metal and virtualized environments in cloud deployments.
For example, Juniper Contrail integrates with OpenStack to provide networking and security for both virtualized and bare-metal workloads. Proficiency with OpenStack services ensures efficient management of diverse cloud resources.
Reference:
OpenStack Documentation: Ironic Bare-Metal Provisioning
Juniper JNCIA-Cloud Study Guide: OpenStack Services


NEW QUESTION # 28
Which statement is correct about overlay or underlay networks or fabrics?

  • A. Overlay networks are Layer 3 networks that must use OSPF for routing purposes.
  • B. Underlay fabrics enable multitenancy through virtualization.
  • C. Underlay fabrics decouple network services from the overlay infrastructure.
  • D. Overlay networks are virtual networks.

Answer: D

Explanation:
Overlay networks are indeed virtual networks. They are logical constructs that stitch together disparate, dispersed network infrastructure, often referred to as underlay. Underlay networks refer to the physical network infrastructure, while overlay networks implement network virtualization concepts.


NEW QUESTION # 29
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