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[General] Certified KCNA Questions & Test KCNA Passing Score

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【General】 Certified KCNA Questions & Test KCNA Passing Score

Posted at yesterday 20:05      View:7 | Replies:0        Print      Only Author   [Copy Link] 1#
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Linux Foundation KCNA Certification Exam is recognized as a highly respected and industry-recognized certification. It is designed to test the knowledge and skills of individuals who are responsible for designing, deploying, and managing cloud-native applications. KCNA exam covers a wide range of topics, including Kubernetes, containerization, microservices, and cloud-native architecture. Kubernetes and Cloud Native Associate certification is ideal for individuals who want to advance their careers in the field of cloud-native computing.
The KCNA Certification is highly regarded in the IT industry and is recognized by many organizations as a benchmark for cloud-native expertise. Kubernetes and Cloud Native Associate certification is ideal for IT professionals who want to enhance their career prospects and demonstrate their knowledge and skills in the field of cloud computing and containerization. Kubernetes and Cloud Native Associate certification is also suitable for organizations that want to validate the skills of their employees in Kubernetes and other cloud-native technologies.
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Linux Foundation Kubernetes and Cloud Native Associate Sample Questions (Q193-Q198):NEW QUESTION # 193
Consider the following Kubernetes resource definition:

What does the "resources" section define in this Deployment manifest?
  • A. The network bandwidth allocated to the pod
  • B. The minimum and maximum resource requirements for the container
  • C. The number of replicas that Kubernetes should create for the Deployment
  • D. The number of CPU cores and memory available on the node
  • E. The storage capacity required for the pod
Answer: B
Explanation:
The "resources" section in the Deployment manifest defines the minimum (requests) and maximum (limits) resource requirements for the container This helps Kubernetes schedule pods effectively and prevents resource starvation or excessive resource consumption by individual pods.

NEW QUESTION # 194
You are building a web application that needs to serve traffic through a load balancer. Which Kubernetes resource should you use to expose the application service externally?
  • A. Ingress
  • B. Deployments
  • C. Services
  • D. StatefulSets
  • E. ConfigMaps
Answer: A
Explanation:
Ingress is a Kubernetes resource used to define rules for how external traffic is routed to different services within your cluster. It allows you to configure load balancers, SSL termination, and other advanced routing features.

NEW QUESTION # 195
What is a commonly used package manager for kubernetes applications?
  • A. kubernetes manifest
  • B. npm
  • C. apt
  • D. helm
Answer: D
Explanation:
https://helm.sh/

NEW QUESTION # 196
What is a cloud native application?
  • A. It is an application designed to run all its functions in separate containers.
  • B. It is any application that runs in a cloud provider and uses its services.
  • C. It is a monolithic application that has been containerized and is running now on the cloud.
  • D. It is an application designed to be scalable and take advantage of services running on the cloud.
Answer: D
Explanation:
B is correct. A cloud native application is designed to be scalable, resilient, and adaptable, and to leverage cloud/platform capabilities rather than merely being "hosted" on a cloud VM. Cloud-native design emphasizes principles like elasticity (scale up/down), automation, fault tolerance, and rapid, reliable delivery.
While containers and Kubernetes are common enablers, the key is the architectural intent: build applications that embrace distributed systems patterns and cloud-managed primitives.
Option A is not enough. Simply containerizing a monolith and running it in the cloud does not automatically make it cloud native; that may be "lift-and-shift" packaging. The application might still be tightly coupled, hard to scale, and operationally fragile. Option C is too narrow and prescriptive; cloud native does not require
"all functions in separate containers" (microservices are common but not mandatory). Many cloud-native apps use a mix of services, and even monoliths can be made more cloud native by adopting statelessness, externalized state, and automated delivery. Option D is too broad; "any app running in a cloud provider" includes legacy apps that don't benefit from elasticity or cloud-native operational models.
Cloud-native applications typically align with patterns: stateless service tiers, declarative configuration, health endpoints, horizontal scaling, graceful shutdown, and reliance on managed backing services (databases, queues, identity, observability). They are built to run reliably in dynamic environments where instances are replaced routinely-an assumption that matches Kubernetes' reconciliation and self-healing model.
So, the best verified definition among these options is B.
=========

NEW QUESTION # 197
What is the minimum number of etcd members that are required for a highly available Kubernetes cluster?
  • A. Two etcd members.
  • B. Five etcd members.
  • C. Three etcd members.
  • D. Six etcd members.
Answer: C
Explanation:
D (three etcd members) is correct. etcd is a distributed key-value store that uses the Raft consensus algorithm. High availability in consensus systems depends on maintaining a quorum (majority) of members to continue serving writes reliably. With 3 members, the cluster can tolerate 1 failure and still have 2/3 available-enough for quorum.
Two members is a common trap: with 2, a single failure leaves 1/2, which is not a majority, so the cluster cannot safely make progress. That means 2-member etcd is not HA; it is fragile and can be taken down by one node loss, network partition, or maintenance event. Five members can tolerate 2 failures and is a valid HA configuration, but it is not the minimum. Six is even-sized and generally discouraged for consensus because it doesn't improve failure tolerance compared to five (quorum still requires 4), while increasing coordination overhead.
In Kubernetes, etcd reliability directly affects the API server and the entire control plane because etcd stores cluster state: object specs, status, controller state, and more. If etcd loses quorum, the API server will be unable to persist or reliably read/write state, leading to cluster management outages. That's why the minimum HA baseline is three etcd members, often across distinct failure domains (nodes/AZs), with strong disk performance and consistent low-latency networking.
So, the smallest etcd topology that provides true fault tolerance is 3 members, which corresponds to option D.

NEW QUESTION # 198
......
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