WEB-BASED JUNIPER JN0-214 PRACTICE EXAM SOFTWARE - SOLUTION FOR ONLINE SELF-ASSESSMENT

Web-based Juniper JN0-214 Practice Exam Software - Solution for Online Self-Assessment

Web-based Juniper JN0-214 Practice Exam Software - Solution for Online Self-Assessment

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The Juniper JN0-214 certification is one of the top-rated career advancement certifications in the market. This Cloud, Associate (JNCIA-Cloud) (JN0-214) certification exam has been inspiring candidates since its beginning. Over this long time period, thousands of JN0-214 exam candidates have passed their Cloud, Associate (JNCIA-Cloud) (JN0-214) certification exam and now they are doing jobs in the world's top brands. The ExamPrepAway JN0-214 Dumps will provide you with everything that you need to learn, prepare and pass the challenging Network Security Specialist JN0-214 exam with flying colors. You must try ExamPrepAway JN0-214 exam questions today.

Juniper JN0-214 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Cloud Orchestration with OpenShift: This section of the exam measures the skills of DevOps Engineers and focuses on OpenShift-based orchestration. Candidates must understand how to create, manage, and monitor workloads using OpenShift, as well as navigate the OpenShift CLI and WebUI. The exam also tests knowledge of node types and different network configurations. One skill assessed is managing OpenShift workloads in a production environment.
Topic 2
  • Software-Defined Networking: This section of the exam measures the skills of Network Automation Engineers and focuses on SDN concepts, including its architecture, controllers, and solutions. Candidates must understand how SDN separates the control plane from the data plane to improve network agility and automation. The exam also evaluates knowledge of SDN’s role in modern cloud environments. One key skill assessed is identifying SDN components and their functions.
Topic 3
  • Network Virtualization: This section of the exam measures the skills of Cloud Network Architects and evaluates the principles of network virtualization. Candidates must understand different types of virtual networks, as well as underlay and overlay network configurations. The exam also covers encapsulation and tunneling technologies such as MPLS over GRE, VXLAN, and GENEVE. One skill assessed is the ability to differentiate between underlay and overlay networks in cloud environments.
Topic 4
  • Cloud Virtualization: This section of the exam measures the skills of Linux System Administrators and covers Linux-based virtualization technologies. Candidates must understand Linux architecture, hypervisors (Type 1 & 2), and KVM
  • QEMU operations. The exam also includes creating virtual machines and managing Linux virtualization environments. One skill assessed is setting up and managing Linux-based virtual machines effectively.
Topic 5
  • Cloud Orchestration with Kubernetes: This section of the exam measures the skills of Kubernetes Administrators and tests their knowledge of container orchestration. Candidates must demonstrate proficiency in creating and managing Kubernetes containers, working with API objects such as Pods, ReplicaSets, Deployments, and Services, and configuring namespaces and CNI plugins. One key skill assessed is deploying and scaling Kubernetes applications effectively.
Topic 6
  • Network Functions Virtualization: This section of the exam measures the skills of Virtualization Specialists and covers the core principles of NFV. Candidates will be tested on NFV architecture, orchestration, and Virtual Network Functions (VNFs), which are crucial for creating scalable and flexible network infrastructures. Understanding NFV helps optimize network performance and reduce dependency on hardware-based solutions. One skill assessed is the ability to explain NFV’s role in modern network management.

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Juniper Cloud, Associate (JNCIA-Cloud) Sample Questions (Q48-Q53):

NEW QUESTION # 48
Your organization manages all of its sales through the Salesforce CRM solution.
In this scenario, which cloud service model are they using?

  • A. Storage as a Service (STaas)
  • B. Infrastructure as a Service (IaaS)
  • C. Platform as a Service (Paa)
  • 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 # 49
What is the function that enables CN2 to manage its resources and interact with the kube-api?

  • A. the control plane
  • B. the management plane
  • C. the data plane
  • D. the configuration plane

Answer: D

Explanation:
The configuration plane is the function that enables CN2 to manage its resources and interact with the kube-api. The configuration plane is responsible for storing and managing all configuration data in a Contrail cluster. It provides APIs for other components to retrieve this data.
This allows CN2 to manage its resources and interact with the kube-api.


NEW QUESTION # 50
Which two statements are correct about Network Functions Virtualization (NFV)? (Choose two.)

  • A. The NFV framework explains how VNFs fits into the whole solution.
  • B. The NFV infrastructure (NFVI) is a component of NFV.
  • C. The NFV framework is defined by the W3C.
  • D. The NFV infrastructure (NFVI) is not a component of NFV.

Answer: A,B

Explanation:
Network Functions Virtualization (NFV) is a network architecture concept that uses IT virtualization technologies to virtualize entire classes of network node functions into building blocks that may connect or chain together to create communication services. The NFV framework explains how Virtual Network Functions (VNFs) fit into the whole solution. The NFV Infrastructure (NFVI) is a component of NFV that consists of the infrastructure components --compute, storage, networking-- on a platform to support software.


NEW QUESTION # 51
You are asked to provision a bare-metal server using OpenStack.
Which service is required to satisfy this requirement?

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

Answer: C

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 # 52
Click the Exhibit button.

You have issued the openstack server show VM-A command and received the output shown in the exhibit.
To which virtual network is the VM-A instance attached?

  • A. m1.tiny
  • B. public1
  • C. kollaopenstack
  • D. Nova

Answer: B

Explanation:
The openstack server show command provides detailed information about a specific virtual machine (VM) instance in OpenStack. The output includes details such as the instance name, network attachments, power state, and more. Let's analyze the question and options:
Key Information from the Exhibit:
The addresses field in the output shows
public1=10.0.2.176
This indicates that the VM-A instance is attached to the virtual network named public1 , with an assigned IP address of 10.0.2.176 .
Option Analysis:
A . m1.tiny
Incorrect: m1.tiny refers to the flavor of the VM, which specifies the resource allocation (e.g., CPU, memory, disk). It is unrelated to the virtual network.
B . public1
Correct: The addresses field explicitly states that the VM-A instance is attached to the public1 virtual network.
C . Nova
Incorrect: Nova is the OpenStack compute service that manages VM instances. It is not a virtual network.
D . kollaopenstack
Incorrect: kollaopenstack appears in the output as the hostname or project name but does not represent a virtual network.
Why public1?
Network Attachment: The addresses field in the output directly identifies the virtual network (public1) to which the VM-A instance is attached.
IP Address Assignment: The IP address (10.0.2.176) confirms that the VM is connected to the public1 network.
JNCIA Cloud Reference:
The JNCIA-Cloud certification emphasizes understanding OpenStack commands and outputs, including the openstack server show command. Recognizing how virtual networks are represented in OpenStack is essential for managing VM connectivity.
For example, Juniper Contrail integrates with OpenStack Neutron to provide advanced networking features for virtual networks like public1.
Reference:
OpenStack CLI Documentation: openstack server show Command
Juniper JNCIA-Cloud Study Guide: OpenStack Networking


NEW QUESTION # 53
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