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Juniper Cloud, Associate (JNCIA-Cloud) Sample Questions (Q13-Q18):
NEW QUESTION # 13
Which operating system must be used for control plane machines in Red Hat OpenShift?
- A. Ubuntu
- B. Red Hat Enterprise Linux
- C. Red Hat CoreOS
- D. Centos
Answer: C
Explanation:
Red Hat OpenShift requires specific operating systems for its control plane machines to ensure stability, security, and compatibility. Let's analyze each option:
A . Ubuntu
Incorrect:
While Ubuntu is a popular Linux distribution, it is not the recommended operating system for OpenShift control plane machines. OpenShift relies on Red Hat-specific operating systems for its infrastructure.
B . Red Hat Enterprise Linux
Incorrect:
Red Hat Enterprise Linux (RHEL) is commonly used for worker nodes in OpenShift clusters. However, control plane machines require a more specialized operating system optimized for Kubernetes workloads.
C . Red Hat CoreOS
Correct:
Red Hat CoreOS is the default operating system for OpenShift control plane machines. It is a lightweight, immutable operating system specifically designed for running containerized workloads in Kubernetes environments. CoreOS ensures consistency, security, and automatic updates.
D . CentOS
Incorrect:
CentOS is a community-supported Linux distribution based on RHEL. While it can be used in some Kubernetes environments, it is not supported for OpenShift control plane machines.
Why Red Hat CoreOS?
Immutable Infrastructure: CoreOS is designed to be immutable, meaning updates are applied automatically and consistently across the cluster.
Optimized for Kubernetes: CoreOS is tailored for Kubernetes workloads, providing a secure and reliable foundation for OpenShift control plane components.
JNCIA Cloud Reference:
The JNCIA-Cloud certification covers OpenShift architecture, including the operating systems used for control plane and worker nodes. Understanding the role of Red Hat CoreOS is essential for deploying and managing OpenShift clusters effectively.
For example, Juniper Contrail integrates with OpenShift to provide advanced networking features, relying on CoreOS for secure and efficient operation of control plane components.
Reference:
OpenShift Documentation: Red Hat CoreOS
Juniper JNCIA-Cloud Study Guide: OpenShift Architecture
NEW QUESTION # 14
You want to create a template that defines the CPU, RAM, and disk space properties that a VM will use when instantiated.
In this scenario, which OpenStack object should you create?
- A. flavor
- B. Image
- C. project
- D. role
Answer: A
Explanation:
In OpenStack, a flavor defines the compute, memory, and storage properties of a virtual machine (VM) instance. Let's analyze each option:
A . role
Incorrect: A role defines permissions and access levels for users within a project. It is unrelated to defining VM properties.
B . Image
Incorrect: An image is a template used to create VM instances. While images define the operating system and initial configuration, they do not specify CPU, RAM, or disk space properties.
C . project
Incorrect: A project (or tenant) represents an isolated environment for managing resources. It does not define the properties of individual VMs.
D . flavor
Correct: A flavor specifies the CPU, RAM, and disk space properties that a VM will use when instantiated. For example, a flavor might define a VM with 2 vCPUs, 4 GB of RAM, and 20 GB of disk space.
Why Flavor?
Resource Specification: Flavors allow administrators to define standardized resource templates for VMs, ensuring consistency and simplifying resource allocation.
Flexibility: Users can select the appropriate flavor based on their workload requirements, making it easy to deploy VMs with predefined configurations.
JNCIA Cloud Reference:
The JNCIA-Cloud certification covers OpenStack concepts, including flavors, as part of its cloud infrastructure curriculum. Understanding how flavors define VM properties is essential for managing compute resources effectively.
For example, Juniper Contrail integrates with OpenStack Nova to provide advanced networking features for VMs deployed using specific flavors.
Reference:
OpenStack Nova Documentation: Flavors
Juniper JNCIA-Cloud Study Guide: OpenStack Compute
NEW QUESTION # 15
Which two statements about containers are true? (Choose two.)
- A. Containers share the use of the underlying system's kernel.
- B. Containers contain executables, libraries, configuration files, and an operating system.
- C. Containers can only run on a system with a Type 2 hypervisor.
- D. Containers package the entire runtime environment of an application, including its dependencies.
Answer: A,D
Explanation:
Containers are a lightweight form of virtualization that enable the deployment of applications in isolated environments. Let's analyze each statement:
A . Containers contain executables, libraries, configuration files, and an operating system.
Incorrect: Containers do not include a full operating system. Instead, they share the host system's kernel and only include the application and its dependencies (e.g., libraries, binaries, and configuration files).
B . Containers package the entire runtime environment of an application, including its dependencies.
Correct: Containers bundle the application code, runtime, libraries, and configuration files into a single package. This ensures consistency across different environments and eliminates issues caused by differences in dependencies.
C . Containers can only run on a system with a Type 2 hypervisor.
Incorrect: Containers do not require a hypervisor. They run directly on the host operating system and share the kernel. Hypervisors (Type 1 or Type 2) are used for virtual machines, not containers.
D . Containers share the use of the underlying system's kernel.
Correct: Containers leverage the host operating system's kernel, which allows them to be lightweight and efficient. Each container has its own isolated user space but shares the kernel with other containers.
Why These Statements?
Runtime Environment Packaging: Containers ensure portability and consistency by packaging everything an application needs to run.
Kernel Sharing: By sharing the host kernel, containers consume fewer resources compared to virtual machines, which require separate operating systems.
JNCIA Cloud Reference:
The JNCIA-Cloud certification emphasizes understanding containerization technologies, including Docker and Kubernetes. Containers are a fundamental component of modern cloud-native architectures.
For example, Juniper Contrail integrates with Kubernetes to manage containerized workloads, leveraging the lightweight and portable nature of containers.
Reference:
Docker Documentation: Container Basics
Juniper JNCIA-Cloud Study Guide: Containerization
NEW QUESTION # 16
Which encapsulation protocol uses tunneling to provide a Layer 2 overlay over an underlying Layer 3 network?
- A. VXLAN
- B. GRE
- C. VLAN
- D. IPsec
Answer: A
Explanation:
Encapsulation protocols are used to create overlay networks that provide connectivity over an underlying network. Let's analyze each option:
A . VLAN
Incorrect: VLANs operate at Layer 2 and are limited to a single physical network. They do not provide tunneling or overlay capabilities over a Layer 3 network.
B . IPsec
Incorrect: IPsec is a security protocol used to encrypt and authenticate IP packets. It does not provide Layer 2 overlay capabilities.
C . VXLAN
Correct: VXLAN (Virtual Extensible LAN) is an encapsulation protocol that creates a Layer 2 overlay network over an underlying Layer 3 network. It encapsulates Layer 2 Ethernet frames within UDP packets, enabling scalable and flexible network architectures.
D . GRE
Incorrect: GRE (Generic Routing Encapsulation) is a tunneling protocol that encapsulates packets but does not inherently provide Layer 2 overlay capabilities. It is typically used for point-to-point tunnels.
Why VXLAN?
Layer 2 Overlay: VXLAN extends Layer 2 networks across Layer 3 boundaries, enabling seamless communication between distributed environments.
Scalability: VXLAN supports up to 16 million virtual networks, making it ideal for large-scale cloud deployments.
JNCIA Cloud Reference:
The JNCIA-Cloud certification covers overlay networking protocols like VXLAN as part of its curriculum on cloud architectures. Understanding VXLAN is essential for designing scalable and resilient virtual networks.
For example, Juniper Contrail uses VXLAN to extend virtual networks across data centers, ensuring consistent connectivity and isolation.
Reference:
VXLAN RFC 7348
Juniper JNCIA-Cloud Study Guide: Overlay Networking
NEW QUESTION # 17
The Kubernetes object definition file is in which format?
- A. YAML
- B. IXML
- C. HTML
- D. TXT
Answer: A
Explanation:
The Kubernetes object definition file is in YAML format. Kubernetes objects are represented in the Kubernetes API, and you can express them in .yaml format. You can execute kubectl get deployment <deployment-name> -o yaml to get the deployment definition in a yaml format.
NEW QUESTION # 18
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