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| Section | Weight | Objectives |
|---|---|---|
| Multi-Cluster Operations | 20-25% | - Centralized management across multiple clusters - Cluster health monitoring - Cluster discovery and registration |
| Infrastructure Lifecycle Management | 20-25% | - Lifecycle Manager (LCM) operations - Node addition and removal - Upgrading AOS and firmware - AHV hypervisor management |
| Networking Concepts | 15-20% | - Network virtualization with AHV - IP address management - Flow networking (Nutanix Flow) - Network security policies |
| Storage Configuration | 10-15% | - Data reduction and compression - Storage tiering - Volume groups - Storage pools and containers |
| Troubleshooting and Monitoring | 10-15% | - Common issue resolution - Performance monitoring - Prism alerts and notifications - Log collection and analysis |
| Security and Authentication | 15-20% | - Role-Based Access Control (RBAC) - Authentication integration (LDAP/AD) - Audit logging - SSL certificate management |
| Prism Central | 20-25% | - Prism Central navigation and dashboard - Prism Central overview and deployment - Managing clusters via Prism Central |
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NEW QUESTION # 105
What is the minimum number of nodes required for a storage container with Replication Factor 2 and Erasure Coding?
Answer: C
Explanation:
Nutanix documentation for Erasure Coding is explicit: a cluster must have a minimum of four nodes to enable erasure coding, and for RF2 the minimum remains four nodes. Nutanix further explains that RF3 with erasure coding requires six nodes, which helps distinguish the two thresholds clearly for exam purposes. Since the question asks specifically about Replication Factor 2 and Erasure Coding, the minimum supported node count is 4. ( Nutanix ) This question is testing one of the most common node-count rules in Nutanix storage efficiency. A three-node cluster can provide RF2 storage, but that does not automatically mean erasure coding is available there.
Erasure coding introduces its own resiliency and stripe-width requirements, and Nutanix sets the minimum at four nodes for RF2. The values 5 and 6 are distractors meant to confuse RF2 and RF3 rules. Because the official requirement is four nodes for RF2 EC, the correct answer is B. ( Nutanix )
NEW QUESTION # 106
An administrator is configuring Runway Analysis settings in Prism Central and selects Auto Detect under Reserve Capacity For Failure.
How will runway capacity be calculated in this configuration?
Answer: C
Explanation:
Nutanix documentation for Updating Capacity Configurations explains that the Reserve Capacity For Failure option determines whether runway analysis should account for the impact of a node failure, and when Auto Detect is selected, Prism Central automatically uses the cluster's failure assumptions rather than the full unconstrained cluster total. In practical runway terms, that means the calculation reflects the loss of the node whose failure would have the greatest effect on usable capacity. Among the provided options, the best match for that documented logic is D: the runway analysis excludes the resources of the largest node so estimates account for a node failure. ( Nutanix Portal ) This behavior is important because runway is intended to answer "how long until I run out of safe usable capacity," not just "how long until all raw resources are consumed." Nutanix therefore lets administrators model capacity while preserving headroom for failure scenarios. The fixed 10% answer is too generic and not how Nutanix documents the option. Storage-only reservation also misses the fact that runway tracks CPU, memory, and storage dimensions. So, based on Nutanix's Auto Detect wording and the resilience-oriented design of runway planning, D is the most authentic answer. ( Nutanix Portal )
NEW QUESTION # 107
An administrator needs to configure the virtual switch on a Nutanix AHV cluster to maximize both per-VM and per-host network throughput with LACP support. Which bond type should the administrator configure?
Answer: D
Explanation:
Nutanix networking documentation is explicit that LACP on AHV requires the Active-Active bond type, also described as balance-tcp. Nutanix further explains that this mode increases host and VM bandwidth utilization beyond a single uplink by balancing VM NIC TCP and UDP sessions across multiple physical adapters. That directly addresses both parts of the requirement in the question: maximizing per-host throughput and per-VM throughput while also providing LACP support. For that reason, B is the correct answer.
The other options do not satisfy the stated requirement. Active-Backup gives redundancy but does not aggregate active bandwidth. Active-Active with MAC pinning (balance-slb) can use multiple adapters without switch configuration, but Nutanix documents that it must not be used with LACP. "No Uplink Bond" obviously cannot maximize throughput or provide aggregation. This question is testing a core AHV networking distinction: if the user explicitly wants LACP, then the answer is always the Active-Active / balance-tcp model. That is why B is the authentic Nutanix answer.
NEW QUESTION # 108
An administrator is tasked with creating a Disaster Recovery plan between two clusters within Prism Central local AZ. To ensure a failover operation is successful, the administrator also needs the ability to test recovery in both directions.
What are the recommended networks required between the two clusters for successfully testing the recovery?
Answer: C
Explanation:
Nutanix DR documentation for test failover states that recovered test VMs are brought up in a test virtual network at the recovery AZ, separate from production. Nutanix also documents that when multiple recovery directions or multiple recovery AZs are involved, recovery planning should be created per target direction and the required production and test network mappings need to exist for the recovery plan being tested. If recovery must be tested in both directions between the two clusters, each side effectively needs a production network and a test network. That makes two production networks and two test networks the most complete and correct answer.
This question is really about symmetry. One-direction failover testing can be done with a simpler mapping set, but the moment the requirement says test recovery in both directions, each cluster must be able to act as a recovery site and provide an isolated test-recovery network. That is why a single shared test network is not the best answer here. Nutanix's recovery-plan structure and test-failover guidance support this interpretation.
Therefore C is the correct and most practical answer.
NEW QUESTION # 109
An administrator needs to adjust the settings of an existing virtual machine. Which parameter is restricted from modification once the VM has been created?
Answer: A
Explanation:
Nutanix documentation for updating a VM through Prism Central states explicitly: "BIOS mode: You cannot modify the BIOS mode after the VM is created." That wording directly answers the question and makes A the correct option. By contrast, vCPU count and memory allocation are common VM settings that administrators can adjust as part of lifecycle management, and boot priority can also be changed in supported conditions.
The only one Nutanix calls out as restricted after creation is the BIOS mode. ( Nutanix Portal ) This reflects how foundational firmware mode is to VM identity and boot architecture. Once the VM is created using Legacy BIOS or UEFI, many guest-OS assumptions, boot-device structures, and security options depend on that original firmware model. Nutanix therefore locks this parameter after creation instead of treating it as an ordinary runtime edit. For exam preparation, this is a classic item to memorize: CPU and memory can generally be changed, but BIOS mode cannot be modified after VM creation. So the authentic Nutanix answer here is A. BIOS mode. ( Nutanix Portal )
NEW QUESTION # 110
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