JN0-214 VALID EXAM FORMAT & JN0-214 FREE PRACTICE PDF & JN0-214 LATEST STUDY MATERIAL

JN0-214 valid exam format & JN0-214 free practice pdf & JN0-214 latest study material

JN0-214 valid exam format & JN0-214 free practice pdf & JN0-214 latest study material

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Juniper Cloud, Associate (JNCIA-Cloud) Sample Questions (Q11-Q16):

NEW QUESTION # 11
Which component of a software-defined networking (SDN) controller defines where data packets are forwarded by a network device?

  • A. the management plane
  • B. the forwarding plane
  • C. the operational plane
  • D. the control plane

Answer: B

Explanation:
The forwarding plane (also known as the data plane) of a software-defined networking (SDN) controller is responsible for forwarding data packets based on the instructions given by the control plane. It handles all activities involving data packets sent by the end-user, including forwarding of packets.


NEW QUESTION # 12
Your organization manages all of its sales through the Salesforce CRM solution.
In this scenario, which cloud service model are they using?

  • A. Platform as a Service (Paa)
  • B. Storage as a Service (STaas)
  • C. Infrastructure as a Service (IaaS)
  • D. Software as a Service (Saa

Answer: D

Explanation:
Cloud service models define how services are delivered and managed in a cloud environment. The three primary models are:
Infrastructure as a Service (IaaS): Provides virtualized computing resources such as servers, storage, and networking over the internet. Examples include Amazon EC2 and Microsoft Azure Virtual Machines.
Platform as a Service (PaaS): Provides a platform for developers to build, deploy, and manage applications without worrying about the underlying infrastructure. Examples include Google App Engine and Microsoft Azure App Services.
Software as a Service (SaaS): Delivers fully functional applications over the internet, eliminating the need for users to install or maintain software locally. Examples include Salesforce CRM, Google Workspace, and Microsoft Office 365.
In this scenario, the organization is using Salesforce CRM, which is a SaaS solution. Salesforce provides a complete customer relationship management (CRM) application that is accessible via a web browser, with no need for the organization to manage the underlying infrastructure or application code.
Why SaaS?
No Infrastructure Management: The customer does not need to worry about provisioning servers, databases, or networking components.
Fully Managed Application: Salesforce handles updates, patches, and maintenance, ensuring the application is always up-to-date.
Accessibility: Users can access Salesforce CRM from any device with an internet connection.
JNCIA Cloud Reference:
The JNCIA-Cloud certification emphasizes understanding the different cloud service models and their use cases. SaaS is particularly relevant in scenarios where organizations want to leverage pre-built applications without the complexity of managing infrastructure or development platforms.
For example, Juniper's cloud solutions often integrate with SaaS platforms like Salesforce to provide secure connectivity and enhanced functionality. Understanding the role of SaaS in cloud architectures is essential for designing and implementing cloud-based solutions.
Reference:
Juniper JNCIA-Cloud Study Guide: Cloud Service Models
Salesforce CRM Documentation


NEW QUESTION # 13
Which two statements correctly describe the Kubernetes networking model?

  • A. Pods are not allowed to communicate if they are in different namespaces.
  • B. Full communication between pods is allowed across nodes without requiring NAT.
  • C. Each pod has its own IP address in a flat, shared networking namespace.
  • D. Pods are allowed to communicate if they are only in the default namespaces.

Answer: B,C

Explanation:
Kubernetes networking is designed to provide seamless communication between pods, regardless of their location in the cluster. Let's analyze each statement:
A . Pods are allowed to communicate if they are only in the default namespaces.
Incorrect: Pods can communicate with each other regardless of the namespace they belong to. Namespaces are used for logical grouping and isolation but do not restrict inter-pod communication.
B . Pods are not allowed to communicate if they are in different namespaces.
Incorrect: Pods in different namespaces can communicate with each other as long as there are no network policies restricting such communication. Namespaces do not inherently block communication.
C . Full communication between pods is allowed across nodes without requiring NAT.
Correct: Kubernetes networking is designed so that pods can communicate directly with each other across nodes without Network Address Translation (NAT). Each pod has a unique IP address, and the underlying network ensures direct communication.
D . Each pod has its own IP address in a flat, shared networking namespace.
Correct: In Kubernetes, each pod is assigned a unique IP address in a flat network space. This allows pods to communicate with each other as if they were on the same network, regardless of the node they are running on.
Why These Statements?
Flat Networking Model: Kubernetes uses a flat networking model where each pod gets its own IP address, simplifying communication and eliminating the need for NAT.
Cross-Node Communication: The design ensures that pods can communicate seamlessly across nodes, enabling scalable and distributed applications.
JNCIA Cloud Reference:
The JNCIA-Cloud certification emphasizes Kubernetes networking concepts, including pod-to-pod communication and the flat networking model. Understanding these principles is essential for designing and managing Kubernetes clusters.
For example, Juniper Contrail provides advanced networking features for Kubernetes, ensuring efficient and secure pod communication across nodes.
Reference:
Kubernetes Documentation: Networking Model
Juniper JNCIA-Cloud Study Guide: Kubernetes Networking


NEW QUESTION # 14
What are two reasons to create a Kubernetes deployment rather than work with pods directly?
(Choose two.)

  • A. A deployment simplifies pod updates and roll-outs.
  • B. A deployment is ephemeral and therefore requires less configuration.
  • C. A deployment contains imperative instructions on how to re-create a pod if a pod dies unexpectedly.
  • D. A deployment ensures that the desired number of pods is running at all times.

Answer: A,D

Explanation:
A Kubernetes deployment is a resource object in Kubernetes that provides declarative updates to applications. It allows you to describe an application's life cycle, such as which images to use for the app, the number of pods there should be, and the way in which they should be updated. Two reasons to create a Kubernetes deployment rather than work with pods directly are:
A deployment ensures that the desired number of pods is running at all times. If a pod crashes, the Deployment will automatically re-create it.
A deployment simplifies pod updates and roll-outs. It allows you to describe a desired state in its specification and the Deployment controller changes the actual state to the desired state at a controlled rate.


NEW QUESTION # 15
You are deploying CN2 using Kubernetes as your orchestrator.
In this scenario, which component contains the vRouter agent?

  • A. worker node
  • B. Ikube-scheduler
  • C. Contrail controller
  • D. kube-manager

Answer: A

Explanation:
In a CN2 deployment using Kubernetes as the orchestrator, the vRouter agent is contained in the worker node. The vRouter agent is responsible for managing the forwarding plane on each node in a Contrail cluster. It interacts with the kernel to manage the services and interfaces within the virtual networks.


NEW QUESTION # 16
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