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JN0-214 Lerntipps & JN0-214 Prüfungsübungen
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Juniper JN0-214 Prüfungsplan:
Thema
Einzelheiten
Thema 1
- 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.
Thema 2
- Cloud Fundamentals: This section of the exam measures the skills of Cloud Infrastructure Engineers and covers the fundamental concepts of cloud networking. Candidates must understand different deployment models such as public, private, and hybrid cloud, as well as service models such as SaaS, IaaS, and PaaS. The exam also tests knowledge of cloud-native architectures, automation tools, and infrastructure technologies, including Network Functions Virtualization (NFV) and Software-Defined Networking (SDN). One key skill assessed is identifying appropriate cloud deployment models for different business needs.
Thema 3
- Cloud Orchestration with OpenStack: This section of the exam measures the skills of Cloud Operations Engineers and evaluates expertise in OpenStack-based orchestration. Candidates must understand how to create and manage virtual machines in OpenStack, use HEAT templates for automation, and navigate OpenStack interfaces. The exam also covers OpenStack networking plugins and security groups. One skill assessed is automating cloud deployments using HEAT templates.
Thema 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.
Thema 5
- 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.
Thema 6
- 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.
Reliable JN0-214 training materials bring you the best JN0-214 guide exam: Cloud, Associate (JNCIA-Cloud)
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Juniper Cloud, Associate (JNCIA-Cloud) JN0-214 Prüfungsfragen mit Lösungen (Q36-Q41):
36. Frage
Which statement is true about containers?
- A. Containers are slower to boot than virtual machines.
- B. Containers perform abstraction at the application layer.
- C. Containers perform abstraction at the physical layer.
- D. Containers share a copy of the host's operating system binaries.
Antwort: B
Begründung:
Containers perform abstraction at the application layer. They are executable units of software in which application code is packaged along with its libraries and dependencies, in common ways so that the code can be run anywhere--whether it be on desktop, traditional IT or the cloud.
37. Frage
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. Nova
- B. m1.tiny
- C. kollaopenstack
- D. public1
Antwort: D
Begründung:
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
38. Frage
Which CN2 component provides the network control plane capability?
- A. contrail-k8s-controller
- B. contrail-vrouter-nodes
- C. contrail-control
- D. contrail-k8s-kubemanaqer
Antwort: C
Begründung:
The network control plane in CN2 represents CN2's full-featured SDN capability. It communicates with other controllers and uses XMPP to communicate with the distributed data plane components on the worker nodes.
39. Frage
Which two features are provided by CN2? (Choose two.)
- A. user-defined virtual networks
- B. application firewall
- C. role-based access control
- D. isolated namespaces
Antwort: A,D
Begründung:
According to the CN2 datasheet, CN2 supports "multiple isolated namespaces for each tenant, allowing for overlapping IP addresses among tenants" and "user-defined virtual networks that can span across clusters, regions, and clouds". Other features of CN2 include cloud-native networking, NetOps-driven automation, edge and remote compute, enhanced observability, and ultra-fast, high performance.
40. Frage
Your e-commerce application is deployed on a public cloud. As compared to the rest of the year, it receives substantial traffic during the Christmas season.
In this scenario, which cloud computing feature automatically increases or decreases the resource based on the demand?
- A. resource pooling
- B. broad network access
- C. rapid elasticity
- D. on-demand self-service
Antwort: C
Begründung:
Cloud computing provides several key characteristics that enable flexible and scalable resource management. Let's analyze each option:
A . resource pooling
Incorrect: Resource pooling refers to the sharing of computing resources (e.g., storage, processing power) among multiple users or tenants. While important, it does not directly address the automatic scaling of resources based on demand.
B . on-demand self-service
Incorrect: On-demand self-service allows users to provision resources (e.g., virtual machines, storage) without requiring human intervention. While this is a fundamental feature of cloud computing, it does not describe the ability to automatically scale resources.
C . rapid elasticity
Correct: Rapid elasticity is the ability of a cloud environment to dynamically increase or decrease resources based on demand. This ensures that applications can scale up during peak traffic periods (e.g., Christmas season) and scale down during low-demand periods, optimizing cost and performance.
D . broad network access
Incorrect: Broad network access refers to the ability to access cloud services over the internet from various devices. While essential for accessibility, it does not describe the scaling of resources.
Why Rapid Elasticity?
Dynamic Scaling: Rapid elasticity ensures that resources are provisioned or de-provisioned automatically to meet changing workload demands.
Cost Efficiency: By scaling resources only when needed, organizations can optimize costs while maintaining performance.
JNCIA Cloud Reference:
The JNCIA-Cloud certification emphasizes the key characteristics of cloud computing, including rapid elasticity. Understanding this concept is essential for designing scalable and cost-effective cloud architectures.
For example, Juniper Contrail supports cloud elasticity by enabling dynamic provisioning of network resources in response to changing demands.
Reference:
NIST Cloud Computing Reference Architecture
Juniper JNCIA-Cloud Study Guide: Cloud Characteristics
41. Frage
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