VALID JN0-214 EXAM TUTORIAL, LATEST JN0-214 EXAM REGISTRATION

Valid JN0-214 Exam Tutorial, Latest JN0-214 Exam Registration

Valid JN0-214 Exam Tutorial, Latest JN0-214 Exam Registration

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Tags: Valid JN0-214 Exam Tutorial, Latest JN0-214 Exam Registration, JN0-214 Reliable Test Bootcamp, JN0-214 New Study Materials, JN0-214 Valid Exam Camp Pdf

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Juniper Cloud, Associate (JNCIA-Cloud) Sample Questions (Q57-Q62):

NEW QUESTION # 57
You are asked to support an application in your cluster that uses a non-IP protocol.
In this scenario, which type of virtual network should you create to support this application?

  • A. an Ethernet VPN (EVPN) Type 5 virtual network
  • B. a Layer 2 virtual network
  • C. a Layer 3 virtual network
  • D. a virtual network router connected to the virtual network

Answer: B

Explanation:
In cloud environments, virtual networks are used to support applications that may rely on different protocols for communication. Let's analyze each option:
A . a Layer 3 virtual network
Incorrect: A Layer 3 virtual network operates at the IP level and is designed for routing traffic between subnets or networks. It is not suitable for applications that use non-IP protocols (e.g., Ethernet-based protocols).
B . a Layer 2 virtual network
Correct: A Layer 2 virtual network operates at the data link layer (Layer 2) and supports non-IP protocols by forwarding traffic based on MAC addresses. This makes it ideal for applications that rely on protocols like Ethernet, MPLS, or other Layer 2 technologies.
C . an Ethernet VPN (EVPN) Type 5 virtual network
Incorrect: EVPN Type 5 is a Layer 3 overlay technology used for inter-subnet routing in EVPN environments. It is not designed to support non-IP protocols.
D . a virtual network router connected to the virtual network
Incorrect: A virtual network router is used to route traffic between different subnets or networks. It operates at Layer 3 and is not suitable for applications using non-IP protocols.
Why Layer 2 Virtual Network?
Support for Non-IP Protocols: Layer 2 virtual networks forward traffic based on MAC addresses, making them compatible with non-IP protocols.
Flexibility: They can support a wide range of applications, including those that rely on Ethernet or other Layer 2 technologies.
JNCIA Cloud Reference:
The JNCIA-Cloud certification covers virtual networking concepts, including Layer 2 and Layer 3 networks. Understanding the differences between these layers is essential for designing networks that meet application requirements.
For example, Juniper Contrail supports Layer 2 virtual networks to enable seamless communication for applications using non-IP protocols.
Reference:
Virtual Networking Documentation
Juniper JNCIA-Cloud Study Guide: Virtual Networks


NEW QUESTION # 58
Your company has a Web app hosted in Kubernetes with a fluctuating number of pods.
In this scenario, which Kubernetes service type would provide equal access to all nodes using a single URL?

  • A. LoadBalancer
  • B. ExternalName
  • C. NodePort
  • D. ClusterIP

Answer: A

Explanation:
The LoadBalancer service type in Kubernetes exposes the service externally using a cloud provider's load balancer. NodePort and ClusterIP services, to which the external load balancer routes, are automatically created.


NEW QUESTION # 59
Which component is directly responsible for running containers in a Kubernetes node?

  • A. kube-proxy
  • B. container runtime
  • C. kube controller
  • D. kubelet

Answer: B

Explanation:
This question seems to be asking about a Kubernetes component that is responsible for running containers. Let's analyze each option:
A . kubelet
Incorrect: The kubelet is responsible for managing the state of pods and containers on a worker node. It ensures that containers are running as expected but does not directly execute or run the containers.
B . kube-proxy
Incorrect: The kube-proxy manages network communication for services and pods by implementing load balancing and routing rules. It does not handle the execution of containers.
C . container runtime
Correct: The container runtime (e.g., containerd, cri-o) is the component that actually runs and manages containers on a Kubernetes node. It interacts with the operating system to start, stop, and manage containerized applications.
D . kube controller
Incorrect: The kube controller is part of the control plane and ensures that the desired state of the cluster (e.g., number of replicas) is maintained. It does not directly run containers.
Why Container Runtime?
Execution of Containers: The container runtime is responsible for pulling container images, starting containers, and managing their lifecycle.
Integration with Kubernetes: Kubernetes communicates with the container runtime through the Container Runtime Interface (CRI).
JNCIA Cloud Reference:
The JNCIA-Cloud certification covers Kubernetes architecture, including the role of the container runtime. Understanding how containers are executed is essential for managing Kubernetes clusters.
For example, Juniper Contrail integrates with Kubernetes to provide networking and security for containerized workloads, relying on the container runtime to execute applications.
Reference:
Kubernetes Documentation: Container Runtimes
Juniper JNCIA-Cloud Study Guide: Kubernetes Architecture


NEW QUESTION # 60
Click to the Exhibit button.

Referring to the exhibit, which OpenStack service provides the UI shown in the exhibit?

  • A. Horizon
  • B. Neutron
  • C. Nova
  • D. Heat

Answer: A

Explanation:
The UI shown in the exhibit is the OpenStack Horizon dashboard. Horizon is the web-based user interface (UI) for OpenStack, providing administrators and users with a graphical interface to interact with the cloud environment. Through Horizon, users can manage resources like instances, networks, and storage, which is evident in the displayed metrics (Instances, VCPUs, RAM) for the project.


NEW QUESTION # 61
Which two tools are used to deploy a Kubernetes environment for testing and development purposes? (Choose two.)

  • A. oc
  • B. kind
  • C. minikube
  • D. OpenStack

Answer: B,C

Explanation:
Minikube and kind are two tools that are commonly used to deploy a Kubernetes environment for testing and development purposes.


NEW QUESTION # 62
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