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VMware 3V0-23.25 Exam Syllabus Topics:
| Section | Weight | Objectives |
|---|---|---|
| Topic 1: Integration and Automation | 20% | - Automate storage provisioning and management tasks - Use APIs and command-line tools for storage management - Integrate storage components with other VMware Cloud Foundation services |
| Topic 2: Storage Optimization and Troubleshooting | 25% | - Monitor and optimize storage performance and capacity - Perform health checks and implement remediation - Troubleshoot common storage issues in VMware Cloud Foundation |
| Topic 3: Storage Configuration and Management | 30% | - Implement and manage storage policies - Manage data services (deduplication, compression, encryption) - Configure and manage vSAN in a VMware Cloud Foundation environment |
| Topic 4: Storage Architecture and Design | 25% | - Integrate external storage arrays with VMware Cloud Foundation - Plan for storage capacity, performance, and availability requirements - Design vSAN storage solutions for VMware Cloud Foundation |
VMware Advanced VMware Cloud Foundation 9.0 Storage Sample Questions:
1. An administrator is tasked with vertically scaling a vSAN ESA deployment. The current cluster contains 6 hosts each with the following configuration:
* 8 x 7.68 TB drives
* 2 x 25 GB NICs
* 2 x Intel Gold CPUs
What are the three reasons to add the same model and capacity drives when scaling each host? (Choose three.)
A) Balanced storage consumption across hosts in the cluster.
B) Improved predictability of storage performance.
C) Consistent maintenance procedures.
D) vSAN File Services are configured on the cluster.
E) Cache and capacity tiers should contain equal amounts of storage.
F) 7.68 TB drives can be used for cache drives.
2. An administrator attempts to enable vSAN Data-at-Rest Encryption on a cluster but receives the following error message:
"Key provider < vSphere Native Key Provider > is not available on host." The administrator configured the vSphere Native Key Provider (NKP) using the default settings.
What should the administrator validate before enabling vSAN Data-at-Rest Encryption?
A) Each ESX host has a Trusted Platform Module (TPM) 2.0 device installed.
B) Secure Boot has been disabled on all ESX hosts.
C) Crypto Safe Mode has been enabled on all ESX hosts.
D) A backup of the vSphere Native Key Provider has been created from the vSphere Client.
3. An administrator has been tasked with making changes to a VMware Cloud Foundation (VCF) Workload Domain cluster that is configured with NFS for both Principal storage and Supplemental storage.
The cluster has the following configuration:
* There are 3 x ESX host servers.
* There are 3 x NFS Datastores allocated to host Virtual Machines workloads.
* There is a single NFS Datastore allocated for hosting ISO files.
The administrator has the following concerns with the existing configuration:
* Every time a new Virtual Machine is deployed to the Workload Domain, the administrator must choose which datastore should be used.
* When reviewing the Datastores in VCF Operations:
* One of the datastores has no Virtual Machines running in it.
* The other two datastores have an imbalance of Virtual Machines and this is causing resource contention. The administrator has the following requirements: * Virtual Machines must be placed automatically on the most appropriate datastore based on utilization. * Migration recommendations on Virtual Machine placement should be made when one datastore reaches 50% utilization. * Virtual Machines must only be migrated to another datastore after being approved by an administrator. What four actions must the administrator take to meet all of the requirements? (Choose four.)
A) Create a new Datastore Cluster using all four available Datastores.
B) Ensure all three NFS Datastores are available to each ESX host server.
C) Configure the Datastore Cluster to set the Storage DRS storage space threshold to 50%.
D) Configure the Datastore Cluster to set the Storage DRS storage space utilization difference to 50%.
E) Create a new Datastore Cluster using all three NFS Datastores allocated to host Virtual Machines workloads.
F) Configure the Datastore Cluster to use Manual Storage DRS.
G) Configure the Datastore Cluster to use Fully Automated Storage DRS.
4. A cache drive failed on one of the vSAN OSA nodes in the cluster.
When the drive failed, vSAN started a resync to ensure the health of the data, and all objects are showing a healthy and compliant state.
The vSAN administrator needs to replace the failed cache drive.
Which set of steps should the vSAN administrator take?
A) Physically replace the failed cache device, and vSAN will automatically create a new disk group. Then, remove the disk group with the failed device.
B) Physically replace the failed cache device, and vSAN will automatically allocate the storage.
C) Remove the existing vSAN disk group, and physically replace the device. Then, check to verify that the ESX host automatically detects the new device. Afterwards, manually recreate the Disk Group.
D) Place the disk group into maintenance mode, and select Full Data Migration. Then, physically replace the failed cache device. Afterwards, vSAN will rebuild the disk group automatically.
5. A VMware Cloud Foundation (VCF) environment runs mixed workloads (Online Transaction Processing (OLTP) + analytics), with the following vSAN configuration:
* 8 hosts (all-flash), ESA enabled.
* Each host: 2 x 3.2 TB NVMe devices.
* Compression is Enabled.
* Checksum is Enabled.
* Storage Policy: FTT=1 (RAID-5/6), Failures to Tolerate = 1 and Object Space Reservation = 0%.
During peak OLTP load, vSAN resync I/O and backend congestion increase latency despite having sufficient network bandwidth.
What is the direct action the administrator can perform to improve write performance while maintaining data protection compliance?
A) Disable checksums to reduce metadata writes on NVMe devices.
B) Increase FTT to 2 with RAID-5/6 and disable compression.
C) Increase object reservation to 100% to pre-allocate capacity and prevent log-structuring overhead.
D) Convert policy to RAID-1 (FTT=1) for latency-sensitive workloads while keeping compression enabled.
Solutions:
| Question # 1 Answer: A,B,C | Question # 2 Answer: D | Question # 3 Answer: B,C,E,F | Question # 4 Answer: C | Question # 5 Answer: D |






