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Nutanix NCP-MCI-6.10 Exam Syllabus Topics:

SectionObjectives
Topic 1: Troubleshoot a Nutanix Multicloud Environment- Troubleshoot data protection and replication
- Troubleshoot LCM operations
- Troubleshoot performance issues
- Troubleshoot security issues
Topic 2: Configure Disaster Recovery and Data Protection- Configure Metro Replication
- Set up Protection Policies and Domains
- Execute Recovery Plans
Topic 3: Manage Clusters within a Nutanix Multicloud Environment- Perform storage and network administration
- Configure AOS and Prism Central
- Execute firmware/software lifecycle management
- Conduct hardware maintenance
- Configure Intelligent Operations
Topic 4: Manage VMs within a Nutanix Multicloud Environment- Configure VM categories and attributes
- Create, update, deploy, and migrate VMs

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Nutanix Certified Professional - Multicloud Infrastructure (NCP-MCI v6.10) Sample Questions (Q11-Q16):

NEW QUESTION # 11
In anRF2 cluster, what is theminimum number of nodes requiredto allow ahost removal?

Answer: B

Explanation:
In a Nutanix cluster, Replication Factor 2 (RF2) means that each piece of data has two copies: a primary and a replica. To safely remove a node while ensuring data redundancy and cluster health, the system must have enough nodes to maintain the RF2 protection and complete the removal.
From the Nutanix Enterprise Cloud Administration (ECA) documentation:
"The minimum number of nodes required for a safe host removal in an RF2 cluster is four. This ensures that even after removing a node, there are enough remaining nodes to continue hosting the primary and replica data copies, meeting the RF2 requirement." The logic is:
* In a 3-node RF2 cluster, there isn't enough redundancy to safely remove a node without impacting data availability.
* A 4-node RF2 cluster allows safe removal of one node while still ensuring two copies of all data remain.
Thus, the minimum number of nodes required for a safe host removal in an RF2 cluster is 4


NEW QUESTION # 12
A security team asks an administrator toset up port mirroringof aspecific source VMto atarget VM.
What must the administrator ensure for this configuration to be possible?

Answer: A

Explanation:
Port mirroring requires the source and target VMs to be on the same host to efficiently copy network traffic without additional routing overhead.
* Option B (Source VM and Target VM are on the same host) is correct:
* AHV's port mirroringonly works within a single hostbecause network packets are intercepted before leaving the hypervisor.
* If the VMs are on different hosts,mirroring cannot be configured without additional network tools.
* Option A (Same VLAN) is incorrect:
* VLAN membership isnot a requirementfor port mirroring.
* Option C (Same subnet) is incorrect:
* Port mirroring happens atthe virtual switch level, which does not require VMs to be in the same subnet.
* Option D (Same VPC) is incorrect:
* While VPCs provide network isolation,they do not control port mirroring availability.
References:
* Nutanix AHV Networking Guide #Configuring Port Mirroring in AHV
* Nutanix KB #Port Mirroring Best Practices


NEW QUESTION # 13
An administrator needs tocreate a storage containerforVM disks. The container must meet the following conditions:
* 10 GiB of the total allocated space must not be used by other containers.
* The container must have a maximum storage capacity of 500 GiB.
What settings should the administrator configure while creating the storage container?

Answer: B

Explanation:
Nutanix storage containers allow administrators to configure capacity reservations and advertised limits for better resource management.
* Option D (Set Reserved Capacity to 10 GiB and Advertised Capacity to 500 GiB) is correct:
* Reserved Capacityensures that10 GiB is always available for this container and not consumed by other containers.
* Advertised Capacitydefines alogical limit of 500 GiBto prevent over-allocation.
* Option A is incorrect:
* Advertised Capacity of 10 GiB is too lowand does not match the requirement of a500 GiB storage container.
* Option B is incorrect:
* Only setting Advertised Capacity does not guarantee Reserved Capacity, meaning other containers could consume the reserved space.
* Option C is incorrect:
* Setting only Reserved Capacity does not enforce an upper limit, which could lead to overprovisioning.
References:
Nutanix Storage Management Guide#Understanding Storage Container Settings Nutanix KB#Advertised vs. Reserved Capacity in Storage Containers


NEW QUESTION # 14
A Disaster Recovery administrator has setup a Protection Policy for 50 workloads - all configured in a similar fashion in terms of OS, storage, network, and performance. The RPO is 60 minutes with a specified retention of 10 copies local, 5 copies remote, and crash consistency.
After configuring the Protection Policy and activating it, the administrator has noticed that recovery points are not showing up in DR. Yet, everything within the Protection Policy looks correct and recovery points are showing up on production side.
What is the most likely issue?

Answer: A

Explanation:
In Nutanix Protection Domain-based replication, both thesourceanddestinationstorage containersmust have the same Replication Factor (RF)to ensure consistent data protection and replication. This is a key requirement for the data's protection and integrity.
From theNutanix ECAdocumentation:
"Replication and recovery require that the source and destination containers have the same RF setting (either RF2 or RF3). If the RF does not match, replication and recovery points will not be generated in the DR site." The other options:
* A (NGT): NGT is not required for crash-consistent protection.
* C (Windows updates): Updates are not directly relevant to replication consistency.
* D (container name): Names can differ; what matters is the container's RF setting.


NEW QUESTION # 15
An administrator receives complaints about VM performance.

After reviewing theVM's CPU Ready Timedata shown in the exhibit, which step should the administrator take to diagnose the issue further?

Answer: A

Explanation:
Understanding the Issue
The administrator is investigating VM performance complaints and is analyzing CPU Ready Time data.
CPU Ready Time is a crucial metric in Nutanix and virtualization environments (AHV, ESXi, or Hyper-V).
It measures the amount of time a VM is waiting for CPU scheduling due to resource contention.
High CPU Ready Time indicates that VMs are ready to run but are waiting because the host lacks available CPU resources.
Analysis of the Exhibit
The graph shows CPU Ready Time spikes for multiple VMs.
Some VMs have CPU Ready Time exceeding 18% to 21.5%, which is very high.
A healthy CPU Ready Time should be below 5%.
Values above 10% indicate CPU contention, and anything above 20% is critical and requires immediate troubleshooting.
Evaluating the Answer Choices
#(A) Check the number of vCPUs assigned to each CVM. (Incorrect)
CVMs (Controller VMs) have fixed CPU allocation, and modifying their vCPU count is not recommended unless advised by Nutanix Support.
The issue is related to VM CPU contention, not CVM configuration.
#(B) Review host CPU utilization. (Correct Answer)
High CPU Ready Time suggests CPU overcommitment or host saturation.
The administrator should check host CPU usage in Prism Central to determine if the cluster is overloaded.
If host CPU usage is consistently above 85-90%, VMs are competing for CPU resources, leading to high CPU Ready Time.
#(C) Assess cluster SSD capacity. (Incorrect)
SSD capacity impacts storage performance (latency, read/write speeds) but does not affect CPU Ready Time.
High CPU Ready Time is a CPU scheduling issue, not a storage bottleneck.
#(D) Enable VM memory oversubscription. (Incorrect)
Memory oversubscription does not impact CPU scheduling.
Enabling memory oversubscription affects RAM allocation, but CPU Ready Time is strictly related to CPU contention.
Next Steps to Diagnose & Resolve the Issue
Review Host CPU Utilization:
Navigate to Prism Central # Analysis # CPU Usage per Host.
Identify hosts experiencing high CPU load.
Check VM vCPU Allocation:
Ensure that VMs do not have excessive vCPUs assigned, which can lead to scheduling inefficiencies.
Overprovisioning vCPUs can cause unnecessary contention.
Balance Workload Across Hosts:
Use Nutanix AHV DRS (Dynamic Scheduling) or VMware DRS to redistribute VMs across hosts.
Check if certain hosts are overloaded while others have spare CPU capacity.
Consider Scaling Out the Cluster:
If CPU usage is consistently high, adding more nodes may be required to reduce CPU contention.
Multicloud Infrastructure References & Best Practices
CPU Ready Time Best Practices:
Keep CPU Ready Time below 5%.
Avoid overcommitting vCPUs on heavily loaded hosts.
Monitor Prism Central Runway Metrics to predict future CPU resource needs.
Nutanix AHV CPU Scheduling Optimization:
Ensure proper VM sizing (avoid excessive vCPU allocation).
Balance workloads using Nutanix AHV DRS.
References:
Nutanix Prism Central: Performance Analysis and CPU Metrics
Nutanix Bible: VM Performance and Resource Management
Nutanix KB: Troubleshooting High CPU Ready Time in AHV


NEW QUESTION # 16
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