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Nutanix Certified Professional - Multicloud Infrastructure (NCP-MCI) 7.5 Sample Questions (Q12-Q17):

NEW QUESTION # 12
A node in a 3-node cluster is running out of physical resources. All three nodes are equally configured. An administrator wants to live migrate VMs to another node, but is unable to do so.
What is causing this issue?

Answer: D

Explanation:
Nutanix documentation clearly states that guest VMs with GPU passthrough cannot be migrated to other hosts in the cluster. By contrast, Nutanix does support live migration for some vGPU- enabled VMs under supported conditions, but not for passthrough GPUs. That distinction is exactly what this question is testing.
Therefore the correct answer is D. ( portal.nutanix.com , portal.nutanix.com , portal.nutanix.com ) This is a high-value exam distinction: vGPU and GPU passthrough are not interchangeable in migration behavior. Memory overcommitment and vNUMA may affect placement or performance, but they are not the documented hard stop presented here. If a VM uses GPU passthrough, live migration is not supported, so the administrator cannot evacuate it the way they can with ordinary VMs.


NEW QUESTION # 13
An administrator is troubleshooting intermittent network connectivity issues on an AHV host and runs the following command:
ethtool -S eth0 | grep error
Output:
rx_crc_errors: 4389675534
rx_missed_errors: 0
tx_aborted_errors: 0
tx_carrier_errors: 0
tx_window_errors: 0
rx_long_length_errors: 0
rx_short_length_errors: 0
rx_align_errors: 0
rx_errors: 0
tx_errors: 0
rx_length_errors: 0
rx_over_errors: 0
rx_frame_errors: 0
rx_fifo_errors: 0
tx_fifo_errors: 0
tx_heartbeat_errors: 0
The command is executed multiple times and it is observed that the CRC errors are incrementing.
What is the most likely cause of the high rx_crc_errors observed on the interface?

Answer: B

Explanation:
Incrementing rx_crc_errors usually point to a Layer 1 or physical-path problem, not a CPU or memory issue.
CRC errors mean frames are arriving corrupted, and the most common reasons are a faulty cable, damaged transceiver, bad port, or another physical medium issue between the AHV host and the switch. Because the CRC counter is specifically increasing while other counters like missed, FIFO, and general rx errors remain low, this strongly suggests corruption during transmission rather than host overload. That makes B the correct answer.
A duplex mismatch can cause broader link-performance problems, but the pattern of steadily rising CRC errors is much more classically tied to bad physical media. MTU issues usually show fragmentation or packet- handling problems, not CRC corruption itself. CPU saturation does not create on-the-wire checksum corruption. In Nutanix troubleshooting, when CRC counters rise repeatedly, the correct operational response is to inspect and swap the cable or optics, verify switch-port health, and test the NIC path physically. So B is the strongest technical match.


NEW QUESTION # 14
An administrator has been tasked to remove a node from a Nutanix cluster running SQL VMs to help with a hardware refresh. After the node removal started, the administrator received the following error:
Node node_uuid cannot be removed: Cluster needs at least 5 usable nodes.
What action does the administrator need complete to remove the node?

Answer: D

Explanation:
The error message is tied to resilience requirements. Nutanix documentation states that Replication Factor 3 requires at least five nodes so data remains online even if two nodes fail concurrently. If removing a node would drop the cluster below the minimum usable-node requirement, Nutanix blocks the operation. The safest and supported way to proceed during a hardware refresh is to add the replacement node first, restore compliant cluster capacity, and then remove the original node. ( Nutanix Portal ) The wrong answers all involve bypassing or weakening resilience inappropriately. Changing cluster or container RF to RF2 just to remove a node would reduce fault tolerance and is not the right answer for a SQL environment where resilience matters. Force-removal is also not the supported operational answer in a healthy refresh workflow. This question tests whether the administrator understands that node lifecycle actions are constrained by Nutanix fault-tolerance rules. When the cluster says it needs at least five usable nodes, the correct action is not to override the rule but to satisfy it by adding capacity first. Therefore A is the correct answer. ( Nutanix Portal )


NEW QUESTION # 15
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: C

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 # 16
An administrator is tasked with moving a workload from one cluster to another cluster utilizing PD-Based DR because the source side is currently having intermittent network issues.
How would the administrator accomplish the unplanned failover?

Answer: A

Explanation:
In PD-based DR, Nutanix distinguishes between planned migration and unplanned failover/activation. When the source side is unstable or unreachable, the administrator cannot rely on a clean migration workflow initiated from the source. In that case, the correct recovery action is to activate the protection domain on the destination cluster. This is the classic unplanned failover behavior: bring the replicated workload online at the target because the source cannot be trusted to participate in a coordinated handoff. That makes A the correct answer. ( portal.nutanix.com , portal.nutanix.com ) The exam distinction is simple: Migrate is for planned movement when both sides cooperate; Activate is for disaster-style recovery at the target. Since the question explicitly says the source has intermittent network issues, it is pointing you toward the unplanned-failover path. Therefore the administrator should perform Activate on the destination.


NEW QUESTION # 17
......

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