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| Section | Objectives |
|---|---|
| Networking and Security | - Virtual networking concepts - Microsegmentation and security policies - Network configuration in AHV |
| Prism Administration and Management | - Monitoring and alerts - Reporting and analytics - Prism Element and Prism Central |
| Cluster Operations and Lifecycle Management | - Health monitoring and troubleshooting - Capacity planning and optimization - Upgrades and lifecycle management |
| Virtualization and AHV | - VM lifecycle management - Image service and VM deployment - AHV architecture and features |
| Storage and Data Services | - Storage containers and policies - Data resiliency and replication - Snapshots and backups |
| Nutanix Architecture and Core Concepts | - Nutanix AOS components and architecture - Cluster design fundamentals - Hyperconverged Infrastructure (HCI) principles |
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NEW QUESTION # 84
An administrator has noticed that a cluster consists of four Full-NVMe nodes. Which expansion path is supported?
Answer: B
Explanation:
The uploaded answer key lists B, and that is the safest supported choice among the options because it preserves the cluster's all-NVMe storage profile rather than introducing mixed media tiers or an all-SSD design that changes the storage architecture. In Nutanix cluster expansion planning, keeping node media type aligned with the existing cluster profile is the normal supported design principle, especially when the existing cluster is already Full-NVMe. Nutanix storage documentation also emphasizes a single storage-pool-per- cluster model and consistent cluster design so that performance and capacity are optimized predictably across the nodes.
The alternative answers introduce obvious design mismatches. Mixed NVMe+HDD or SSD+NVMe nodes would materially change latency and tier behavior, while adding an all-SSD node into a Full-NVMe cluster would also break architectural consistency. Although the exact public expansion-matrix wording was not surfaced in the search results, the answer set itself strongly points to the only media-aligned option: one All NVMe node with 96 TiB RAW capacity. So for an exam-prep answer aligned with Nutanix design logic and the provided key, B is the correct choice.
NEW QUESTION # 85
An administrator must configure a VM which would run a write-intensive application on a hybrid NVMe + SSD cluster. When setting VM options, which action would give the best performance?
Answer: A
Explanation:
For a write-intensive, latency-sensitive VM running on a hybrid cluster, the Nutanix feature that most directly improves storage performance at the VM object level is Flash Mode. Nutanix documents describe Flash Mode for VMs, disks, and volume groups as a way to set the storage tier preference to SSD, specifically for workloads that are sensitive to latency. That is exactly the design intent of this setting: instead of depending only on normal tiering behavior, you explicitly bias the workload toward flash storage so hot write data stays on the fast tier more consistently. ( Nutanix Portal ) The other choices are either indirect or aimed at different outcomes. Network segmentation isolates traffic, but it does not by itself pin or prefer the VM's storage data on flash. Load balancing for volume groups is relevant to externally attached block storage patterns, not a general VM write-intensive optimization. A dedicated RF3 container affects resilience and usable capacity, but it does not inherently outperform Flash Mode for a single VM's storage path. Nutanix's own wording for Flash Mode specifically calls out latency- sensitive applications, which is why it is the best fit here. ( Nutanix Portal )
NEW QUESTION # 86
The administrator observed the following NCC check in a cluster running VDI workloads:
ec_enablement_check:
Node XX.XX.XX.XX:
INFO: Consider enabling erasure coding on container SelfServiceContainer to get 26% space savings.
INFO: Consider enabling erasure coding on container default-container203943 to get 22% space savings.
What is the best course of action?
Answer: A
Explanation:
Nutanix's NCC ec_enablement_check identifies containers where erasure coding could save space, but administrators still need to apply judgment based on workload behavior. In a VDI environment, user-created or self-service clone data may be a strong fit for EC, while the default container may host a wider mix of system, transient, or write-active workloads where capacity efficiency is not always the first priority. Since the recommendation is informational rather than mandatory, the best answer is to enable EC on the container that is the better fit and leave the more general default container unchanged. That makes D the most balanced answer.
This question is testing operational discretion. "Enable EC everywhere NCC mentions" is too simplistic.
Erasure coding is highly effective for suitable RF2/RF3 workloads, but the default container often ends up holding broad-purpose content that administrators may deliberately leave on non-EC settings depending on I
/O profile and design standards. The "SelfServiceContainer" is the more targeted candidate here, so D best reflects Nutanix-minded administration rather than blind automation.
NEW QUESTION # 87
An administrator manages a 3-node AHV cluster and needs to optimize overall cluster consumption starting from a recording server workload that stores MP4 videos on dedicated local vDisks. Specifications:
Compression: post process 60 min
Capacity dedupe: disabled
Erasure coding: Disabled
Which configuration would best improve cluster performance?
Answer: A
Explanation:
This workload stores MP4 video files, which are typically large, sequential, and already compressed. For data with those characteristics, additional compression work often provides little benefit and can create unnecessary processing overhead. The best optimization is to disable compression for that workload through a storage policy so cluster resources are not wasted trying to compress data that is unlikely to shrink meaningfully. ( Nutanix Portal ) The other choices are weaker for this scenario. Capacity deduplication is generally most beneficial for repeated blocks or common-image patterns, not unique media streams. Erasure Coding is a capacity- efficiency feature, but on a small 3-node cluster and for a write-heavy recording pattern, it is not the primary performance optimization answer. Moving the data to Files changes the access method, but it does not address the specific inefficiency already identified in the storage settings. Nutanix exams often test whether the administrator can match the data service to the workload profile. Since MP4 content is already compressed, removing unnecessary compression overhead is the most targeted and sensible answer, making D correct. ( Nutanix Portal )
NEW QUESTION # 88
An administrator has 16 hosts in a cluster, including four undersized older hosts that needs to be removed from the cluster. Unfortunately new servers will take more than six months to be procured.
What policy should be defined within Prism Central to prevent five mission critical VMs from ever running on the older hosts?
Answer: D
Explanation:
The requirement is not to keep the mission-critical VMs together or apart from each other; it is to prevent them from running on a specific set of older hosts. In Nutanix Prism Central policy terms, that is a VM-Host Anti-Affinity Policy. Anti-affinity at the VM-host level allows administrators to mark selected hosts as unsuitable targets for selected VMs, which is exactly what the scenario requires. Therefore C is the correct answer.
The distractors all target the wrong relationship. VM-VM affinity and anti-affinity control how VMs are placed relative to other VMs, not whether they can run on particular hosts. VM-Host Affinity would express a positive preference or requirement to run on a chosen host group, but the question is framed negatively: the VMs must never run on the older hosts. Nutanix's policy model supports this exact exclusion use case through VM-Host Anti-Affinity. In a long refresh delay scenario, this is the safest operational control to keep sensitive workloads off weaker or undesirable hardware without removing those hosts from the cluster immediately.
Therefore C is the authentic answer.
NEW QUESTION # 89
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