Nutanix NCP-CN Exam | NCP-CN Valid Test Notes - High-effective Company for NCP-CN: Nutanix Certified Professional - Cloud Native v6.10 Exam

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Nutanix NCP-CN Exam Overview:

Certification Vendor:Nutanix
Exam Name:Nutanix Certified Professional - Cloud Native (NCP-CN v6.10)
Exam Number:NCP-CN
Passing Score:3000 (on a scale of 1000-6000)
Available Languages:English, Japanese
Certificate Validity Period:3 years (for certifications earned on or after August 1, 2025)
Related Certifications:Nutanix Certified Professional - Cloud Native (NCP-CN 6)
Real Exam Qty:75
Exam Price:$199 USD
Exam Duration:120 minutes
Exam Format:Multiple Choice
Sample Questions:Nutanix NCP-CN Sample Questions
Exam Way:Online (Remote Proctored) via PSI or at a PSI Test Center
Pre Condition:Candidates should have at least 6-12 months of experience building and managing Kubernetes clusters, 6-12 months of working with Linux, and 6 months of experience with a Kubernetes platform. Knowledge equivalent to a Certified Kubernetes Administrator (CKA) is recommended. There are no strict prerequisites, but taking the Nutanix Kubernetes Platform Administration (NKPA) course is highly recommended.
Official Syllabus URL:https://www.nutanix.com/support-services/training-certification/certifications/certification-details-nutanix-certified-professional-cloud-native-v6-10

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Nutanix NCP-CN Exam Syllabus Topics:

TopicDetails
Topic 1
  • Conduct NKP Fleet Management: This section tests the abilities of platform administrators and cloud operations engineers in managing multiple clusters as a fleet. It focuses on configuring workspaces to organize clusters, deploying workload clusters within these workspaces, and attaching or detaching clusters as needed. Additionally, candidates must be able to configure projects for workload segmentation and manage platform applications that support the overall NKP environment.
Topic 2
  • Prepare the Environment for an NKP Deployment: This section of the exam measures the skills of infrastructure engineers and cloud administrators and covers the initial setup tasks needed for NKP deployment. Candidates must demonstrate the ability to seed a private container registry, create a bootstrap Kubernetes cluster, and determine license tiers suitable for clusters. They also need to prepare a bastion host for secure access, build machine images or prepare nodes for deployment, and gather all necessary information to build a cluster on the target cloud or on-premises provider.
Topic 3
  • Manage Building an NKP Cluster: This section evaluates the skills of Kubernetes administrators and platform engineers in customizing and deploying NKP clusters. Candidates must show proficiency in tailoring cluster configurations to meet specific requirements and deploying Kommander, the management platform, while applying the appropriate licenses to enable cluster features and management capabilities.
Topic 4
  • Perform Day 2 Operations: This part assesses the expertise of site reliability engineers and cluster operators in ongoing cluster management tasks after deployment. It includes configuring authentication and authorization mechanisms, setting up logging systems, and implementing cluster backup and recovery procedures. Candidates also need to demonstrate skills in monitoring cluster performance and health, configuring autoscaling to handle workload changes, and performing lifecycle management functions such as upgrades and maintenance.

Nutanix Certified Professional - Cloud Native v6.10 Sample Questions (Q81-Q86):

NEW QUESTION # 81
A Platform Engineer needs to do an air-gapped installation of NKP. This environment needs to run without Internet access and be fully operational, including updates. Docker has been installed, and the NKP bundle exists on a bastion host. What is the first command that the engineer must run to begin the process?

Answer: D


NEW QUESTION # 82
A Platform Engineer manages an NKP environment and is preparing a machine image to become an NKP cluster node. Which statement is correct regarding the default node preparation process?

Answer: B

Explanation:
The NKPA course details the default node preparation process for NKP cluster nodes, which involves creating a machine image that is compliant with Cluster API (CAPI) standards. The primary tool used in this process is Packer, which automates the creation of machine images by provisioning a base OS image (e.g., Ubuntu or Rocky Linux) with the necessary components for Kubernetes, such as kubeadm, containerd, and other dependencies.
Packer ensures the image is CAPI-compliant by installing the required Kubernetes binaries, configuring the container runtime, and setting up networking and storage components. The Nutanix Cloud Native (NCP-CN)
6.10 Study Guide states: "In the default node preparation process for NKP, Packer is used to build a CAPI- compliant OS image, installing Kubernetes components and dependencies for use as an NKP node." This process is typically orchestrated by NKP Image Builder (NIB) or Kubernetes Image Builder (KIB), both of which rely on Packer for image creation.
Incorrect Options:
* B. Ansible is used to make the OS image CAPI-compliant: Ansible is used by KIB/NIB to apply configurations during the Packer build process, but Packer is the primary tool for creating the image.
Ansible alone does not make the image CAPI-compliant.
* C. Goss is used to harden the OS image: Goss is a validation tool that can be used for image hardening, but it is not part of the default NKP node preparation process. Hardening is an optional step.
* D. Terraform is utilized to clone an existing OS image: Terraform is for infrastructure provisioning, not image creation or cloning. Packer handles image creation in NKP.
:
Nutanix Kubernetes Platform Administration (NKPA) Course, Section on Node Preparation.
Nutanix Cloud Native (NCP-CN) 6.10 Study Guide, Chapter on NKP Deployment Prerequisites.
Nutanix Cloud Bible, NutanixKubernetesPlatform Section: https://www.nutanixbible.com Packer Documentation: https://www.packer.io


NEW QUESTION # 83
Some time ago, an EKS cluster was attached to be managed with NKP (Fleet Management). Now, a Platform Engineer has been asked to disconnect the EKS cluster from NKP for licensing reasons. After disconnecting the cluster, the developers realized that application changes are still being reflected in the EKS cluster, despite the fact that the EKS cluster was successfully detached from NKP. How should the engineer resolve this issue?

Answer: D

Explanation:
When an Amazon EKS cluster is attached to NKP for fleet management, NKP uses GitOps principles, leveraging Flux (a GitOps operator) to synchronize application deployments and configurations from a management Git repository to the attached cluster. The NKPA course explains that detaching a cluster from NKP removes it from the NKP management plane, but the Flux installation on the cluster may continue to reconcile with the Git repository, causing application changes to persist post-detachment.
To resolve this, the engineer must manually disconnect the Flux installation by suspending the Git repository reconciliation. The correct command, as per the NKPA course, is: kubectl -n kommmander-flux patch gitrepo management -p '{"spec":{"suspend":true}}' --type merge. This command suspends Flux's synchronization with the management Git repository, stopping further application updates. The Nutanix Cloud Native (NCP- CN) 6.10 Study Guide states: "After detaching an external cluster from NKP, the Flux GitOps operator may continue to apply changes unless its GitRepo resource is suspended using kubectl patch in the kommmander- flux namespace." Incorrect Options:
* A. Forcefully detach EKS cluster: The --force flag is not a standard option for the nkp detach cluster command, and forceful detachment does not address the Flux reconciliation issue.
* B. Detached cluster must also be deleted from NKP: The cluster is already detached, and deletion is not necessary to stop GitOps updates. The issue lies with Flux, not NKP's state.
* C. Developers must have some bad configuration: The issue is not with developer configurations but with Flux's ongoing synchronization, as explained in the NKPA course.
:
Nutanix Kubernetes Platform Administration (NKPA) Course, Section on Fleet Management and GitOps.
Nutanix Cloud Native (NCP-CN) 6.10 Study Guide, Chapter on Detaching Clusters.
Nutanix Cloud Bible, NutanixKubernetesPlatform Section: https://www.nutanixbible.com Flux Documentation: https://fluxcd.io


NEW QUESTION # 84
A Kubernetes administrator needs to deploy a new Kubernetes cluster into a new workspace. This cluster requires a predictive analytics solution that detects current and future anomalies. Which option does the administrator need to deploy after the cluster is ready?

Answer: A

Explanation:
The NKPA course highlights that NKP Insights is the platform's integrated solution for observability and analytics, providing predictive analytics to detect current and future anomalies in Kubernetes clusters. NKP Insights leverages machine learning to analyze metrics, logs, and events, identifying performance issues and potential failures proactively. After deploying a new cluster, the administrator can enable NKP Insights as a platform application in the workspace to meet the predictive analytics requirement.
The Nutanix Cloud Native (NCP-CN) 6.10 Study Guide states: "NKP Insights provides predictive analytics and anomaly detection for Kubernetes clusters, enabling administrators to monitor and optimize cluster performance." This is deployed via the NKP UI or CLI by enabling the Insights application in the workspace.
Incorrect Options:
* B. NCM Intelligent Ops: Nutanix Cloud Manager (NCM) Intelligent Ops is for broader infrastructure management, not Kubernetes-specific analytics.
* C. Nutanix Pulse: Pulse is a telemetry service for Nutanix support, not for analytics.
* D. NKP AI Navigator: This is not a recognized NKP component in the NKPA documentation.
:
Nutanix Kubernetes Platform Administration (NKPA) Course, Section on Observability and Insights.
Nutanix Cloud Native (NCP-CN) 6.10 Study Guide, Chapter on Day 2 Operations.
Nutanix Cloud Bible, NutanixKubernetesPlatform Section: https://www.nutanixbible.com


NEW QUESTION # 85
A corporate IT team provides Kubernetes clusters for three groups within the company:
Fin VD
Fin Insurance
Fin TravelThe IT group needs to federate policy for all Kubernetes clusters from a single pane of glass, but separate the Kubernetes clusters according to the group that uses them. How should the IT team license and configure their NKP environment to satisfy these requirements?

Answer: D


NEW QUESTION # 86
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