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| Section | Objectives |
|---|---|
| Topic 1: Describe Cluster Configuration and Maintenance | - Identify software maintenance tasks - Identify hardware maintenance tasks - Describe valid cluster options |
| Topic 2: Demonstrate and Understand Platform Health and Monitoring | - Review and interpret alerts and events - Leverage support functions - Perform and interpret a health check - Review and interpret workload performance |
| Topic 3: Describe Nutanix Platform Administration | - Identify virtual networking tasks - Describe licensing tasks - Discuss storage operations - Describe virtual machine tasks |
| Topic 4: Recognize Nutanix Solutions and Tools | - Recognize non-Nutanix Cloud Infrastructure (NCI) solutions, use cases, and features - Recognize Nutanix solutions, use cases, and features of Nutanix Cloud Infrastructure (NCI) technologies - Recognize use cases and features of Nutanix tools |
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NEW QUESTION # 89
When creating a new VLAN, what should be specified as the VLAN ID if a network interface uses the Native VLAN?
Answer: B
Explanation:
In Nutanix AHV network configuration, VLAN ID 0 represents the native or untagged VLAN. Therefore, when a VM network interface must communicate through the native VLAN on the connected physical-switch port, the administrator specifies VLAN ID 0 while creating the VLAN-backed virtual network.
The native VLAN carries Ethernet frames without a conventional 802.1Q VLAN tag across the applicable switch connection. Nutanix uses the value 0 as the administrative representation for this untagged behavior. It does not mean that an ordinary production VLAN numbered zero is being created on the physical switch. The physical switch port and AHV uplink configuration must still agree on which traffic is treated as native or untagged.
VLAN ID 1 is commonly a switch default but is not Nutanix's required value for designating native-VLAN behavior. VLAN 255 is an otherwise ordinary numerical VLAN identifier and has no special native-VLAN meaning. VLAN 4096 is outside the usable IEEE 802.1Q VLAN range; Nutanix accepts VLAN identifiers through 4094 for normal tagged VLAN configurations.
NHCF/NCA reference: Networking-AHV networking terminology, VLAN-backed virtual networks and virtual network configuration; NCA Section 2, "Identify virtual networking tasks." Official reference: Prism
7.5-Creating a Basic VLAN Subnet .
NEW QUESTION # 90
Before a cluster with active licenses is decommissioned, what must be done to ensure the licenses are available to be applied to a new cluster?
Answer: D
Explanation:
The active licenses must be reclaimed before the cluster is destroyed. Reclaiming or unlicensing the cluster releases its assigned entitlement so that the available capacity can be applied to another qualified Nutanix cluster. Nutanix explicitly lists license reclamation as a prerequisite for cluster destruction.
Destroying a cluster without first reclaiming its licenses can leave the entitlement associated with a cluster that no longer exists. The licenses are not guaranteed to return automatically merely because the underlying nodes were reimaged, removed, or decommissioned. This can prevent the organization from assigning the purchased capacity to the replacement environment and may require licensing remediation.
The proper workflow is to verify the cluster's current licensing state, use License Manager to reclaim or unlicense the applicable entitlement, confirm that the capacity has returned to the available license inventory, and only then proceed with cluster destruction. Nutanix Support may assist when a cluster is already inaccessible or was destroyed without reclamation, but contacting Support is not the standard required workflow.
Nutanix licenses are generally reusable and portable according to their applicable terms, so option C is also incorrect.
NHCF/NCA reference: License reclamation, cluster decommissioning, and License Manager. Official references: Destroying a Cluster and License Manager Guide .
NEW QUESTION # 91
How can an administrator protect volume-based containerized workloads?
Answer: A
Explanation:
Nutanix Data Services for Kubernetes (NDK) provides application-centric protection and data-management capabilities for stateful Kubernetes workloads. It is designed to protect persistent application data together with relevant Kubernetes configuration, allowing administrators to apply policies for snapshots, replication, recovery, migration, and disaster recovery. This includes persistent block volumes backed by Nutanix Volumes and, in supported releases, file-based persistent storage.
A generic replication policy does not by itself establish Kubernetes-aware protection. Effective recovery must account for both persistent data and application objects such as namespaces, StatefulSets, services, ConfigMaps, and secrets. NDK coordinates these elements and supplies policy-driven recovery workflows at the application level. Prism Central disaster-recovery capabilities primarily protect supported VM workloads and do not automatically provide the Kubernetes-native application awareness required here. Nutanix Objects replication protects object-store data and buckets rather than persistent block volumes consumed by containerized applications.
Nutanix describes NDK as extending enterprise data services to containerized applications and providing built- in disaster recovery with policy-driven data management. This directly matches the stated requirement.
Reference: Nutanix Data Services for Kubernetes . NHCF alignment: recognizing Nutanix cloud-native products and matching NDK to stateful Kubernetes data protection.
NEW QUESTION # 92
On an AHV host, what is the factory-configured default native Linux bridge?
Answer: C
Explanation:
The factory configuration of an AHV host includes a native Linux bridge named virbr0. This bridge is separate from the Open vSwitch components used for normal AHV workload and infrastructure networking.
Administrators should preserve the factory-defined bridge unless a specific Nutanix procedure instructs otherwise.
The similarly named components in the other options serve different purposes. br0 is the factory-configured default Open vSwitch bridge. It contains the physical uplink interfaces and internal ports used by the AHV networking architecture. vs0 is the default AHV virtual-switch configuration associated with br0; it is a logical virtual-switch object rather than a native Linux bridge. ovsbr0 is not the factory-default bridge name in the documented AHV configuration.
This distinction is operationally important when interpreting commands such as ovs-vsctl, Linux bridge utilities, interface listings, or network-troubleshooting output. Confusing virbr0 with br0 can lead an administrator to modify the wrong networking component and potentially disrupt host, CVM, or guest connectivity. Nutanix documentation explicitly identifies the native Linux bridge as virbr0. Reference: AHV
- About Open vSwitch . NHCF alignment: AHV virtual networking components and default bridge architecture.
NEW QUESTION # 93
Which Nutanix product provides capabilities for advanced insights and automation for troubleshooting applications?
Answer: D
Explanation:
NCM Intelligent Operations provides centralized monitoring, advanced operational analytics, capacity planning, anomaly detection, resource optimization, reporting, and automation. It evaluates infrastructure and workload behavior across managed environments and helps administrators correlate performance conditions with affected applications and resources. Its automation capabilities can initiate predefined actions or playbooks when specified events, alerts, or operational conditions occur.
Nutanix Cloud Infrastructure supplies the core compute, storage, virtualization, networking, resilience, and management foundation. Although it exposes operational metrics through Prism, it is not the dedicated advanced analytics and automation product described in the question. Nutanix Enterprise AI is used to deploy, manage, monitor, and test large language models and inference endpoints. Nutanix Cloud Clusters extends Nutanix infrastructure into supported public-cloud environments but does not itself provide the specialized operational-intelligence feature set.
Intelligent Operations is specifically positioned as an end-to-end operations, monitoring, optimization, and planning solution. It can identify anomalous behavior, inefficient VMs, resource constraints, and capacity risks while reducing manual troubleshooting through automated workflows. References: NCM Intelligent Operations Overview and Nutanix Cloud Monitoring and Intelligent Operations . NHCF alignment:
recognizing Nutanix management and operations products.
NEW QUESTION # 94
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