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| Section | Weight | Objectives |
|---|---|---|
| Disaster Recovery and Business Continuity | 10% | - Site Recovery Manager integration - vSphere Replication configuration - Failover and failback operations |
| VMware Cloud Foundation Storage Architecture and Design | 20% | - vSAN Architecture in VCF Environment
|
| Performance Optimization and Monitoring | 20% | - Monitoring and troubleshooting
|
| vSAN Deployment and Configuration | 25% | - Advanced configuration
|
| Storage Lifecycle Management | 15% | - Compliance and health checks
|
| Advanced Storage Solutions | 10% | - Storage for Kubernetes workloads - External storage integration - Multi-cloud storage management |
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NEW QUESTION # 21
An administrator is managing a local vSAN 3-node cluster running the Express Storage Architecture (ESA) as part of a VMware Cloud Foundation (VCF) Workload Domain.
The following parameters apply at the cluster level:
* HA is enabled
* Reserved Failover Capacity = 25% for both CPU and Memory
The administrator is tasked with configuring the VSAN storage policy so it will tolerate the maximum number of failures.
What two protection levels can the administrator configure? (Choose two.)
Answer: D,E
Explanation:
In a three-node vSAN ESA cluster, the maximum practical storage policy failure tolerance is one failure. RAID-1 mirroring with Failures to tolerate set to 1 is supported because vSAN can place mirrored data components across the available hosts while maintaining quorum. RAID-5 erasure coding with Failures to tolerate set to 1 is also supported in vSAN ESA three-host clusters. The documentation specifically states that RAID-5 in vSAN ESA supports three ESX host clusters. RAID-6 with FTT=2 is not supported because it requires at least six ESX hosts in the vSphere cluster. RAID-1 with FTT=2 would also require additional fault domains because vSAN requires 2n+1 fault domains for n failures tolerated. HA reserved failover capacity for CPU and memory does not change the number of vSAN fault domains available for storage object placement. It only affects compute admission control.
Therefore, the two valid maximum protection levels for this three-node ESA cluster are RAID-1 mirroring with one failure and RAID-5 erasure coding with one failure. Reference topics: vSAN ESA Storage Policies, Failures to Tolerate, RAID-1 Mirroring, RAID-5 Erasure Coding, RAID-6 Requirements.
NEW QUESTION # 22
Select the storage capabilities supported for use with persistent volumes in the VMware Kubernetes Service (VKS) in VMware Cloud Foundation (VCF).
Drag and drop the five supported capabilities from the vSphere Storage Capabilities list on the left and place them into the Supported Storage Capabilities list on the right in any order. (Choose five.)
Answer:
Explanation:
Explanation:
Full Clone from Volume Snapshot
4kn Support
Online Volume Expansion
Offline Volume Expansion
Static Persistent Volume
VMware Kubernetes Service persistent volumes use vSphere storage integrations such as CNS and pvCSI to provide Kubernetes storage services backed by vSphere datastores and storage policies. The supported persistent volume capabilities include Static Persistent Volume, which allows pre-existing storage to be consumed by Kubernetes workloads; Offline Volume Expansion and Online Volume Expansion, which allow persistent volumes to be resized depending on workload and filesystem state; Full Clone from Volume Snapshot, which enables a new volume to be created from an existing snapshot; and 4kn Support, which supports modern 4K native storage devices where the underlying stack supports them. Storage vMotion with attached Persistent Volumes is not supported because moving an attached Kubernetes persistent volume while it is in active use can break attachment and consistency assumptions. Storage DRS is also not a supported persistent volume capability in this VKS context. Flash Read Cache is not part of the supported VKS persistent-volume capability set. Reference topics: VMware Kubernetes Service Storage, CNS, pvCSI, Persistent Volume Capabilities, Volume Expansion, Volume Snapshot Clone.
NEW QUESTION # 23
An administrator is tasked with attaching an FC-based VMFS datastore to an existing Workload Domain cluster.
Which option reflects the correct process?
Answer: D
Explanation:
The correct process is to present the Fibre Channel LUNs from the storage array, rescan HBAs on each ESX host, create the VMFS datastore once, verify that the datastore is visible on all hosts, and confirm the result in vCenter. Fibre Channel storage requires correct SAN fabric zoning, LUN masking, host registration, and HBA discovery so that all hosts in the workload domain cluster can see the same shared LUN. After the array presents the LUN, each host must rescan its HBAs to discover the new storage device. VMFS is a clustered file system, so the datastore is created only once on the shared LUN. The datastore then becomes available to all hosts that have access to that device; it must not be independently formatted on each host. Creating the VMFS datastore separately on each host would risk datastore corruption or duplicate formatting. The final validation step is confirming datastore visibility and accessibility for all cluster hosts in vCenter. Reference topics: Fibre Channel Storage Model, HBA Rescan, Create VMFS Datastore, Shared VMFS Datastore Visibility.
NEW QUESTION # 24
A storage architect has been called into a meeting with the accounting team who is trying to determine why
20% of their raw capacity is not available for consumption. Their vSAN cluster was created with the following characteristics:
* 2 x 2 TB NVMe disks in 6 hosts in their vSAN cluster.
* FTT=1, RAID-1 for the default policy.
* Host Rebuild Reserve not activated for this cluster.
Which two items should the Architect say accounts for most of the unusable capacity? (Choose two.)
Answer: A,D
Explanation:
The two major contributors are RAID overhead and Operational Reserve. With the default policy set to FTT=1 using RAID-1 mirroring, vSAN stores two copies of protected data. The capacity planning guidance states that when Failures to tolerate is set to 1 failure with RAID-1 mirroring, virtual machines can use about
50 percent of raw capacity because each object consumes mirrored space. This is the largest capacity- impacting factor. The second contributor is Operational Reserve, which reserves capacity for vSAN internal operations such as policy changes, rebalancing, object movement, and other transient storage activities. Even when Host Rebuild Reserve is not activated, vSAN capacity monitoring still accounts for the operations threshold/reserve needed to keep the cluster functional during internal activity. Encryption overhead is typically not the primary reason for a 20% capacity difference. Host upgrade overhead is not a vSAN capacity category. VM swap can consume capacity, but it does not normally account for most unavailable raw capacity compared with RAID mirroring and operational reservation. Reference topics: vSAN Capacity Planning, RAID-1 FTT=1 Capacity Impact, Operations Reserve, Reserved Capacity.
NEW QUESTION # 25
An L3 Support Engineer is troubleshooting a momentary loss of the Inter-Site Link (ISL) between Site A and Site B in a vSAN Stretched Cluster.
The link was down for 5 minutes and then restored. During the outage, VMs running on Site A continued to accept user write data.
```
[Log Analysis: vpxd.log - ISL Recovery]
2026-11-20T10:05:00Z WARN vpxd - [vSAN] ISL Link Down. Site B partition detected.
2026-11-20T10:05:01Z INFO vpxd - [vSAN] Quorum Check: Site A + Witness
= ACTIVE. Site B = STALE.
2026-11-20T10:10:00Z INFO vpxd - [vSAN] ISL Link Restored.
2026-11-20T10:10:05Z INFO vpxd - [vSAN] Initiating DOM Delta Resync for
500 degraded objects.
```
How does the "Site Disaster Tolerance" logic natively heal the cluster following this outage without requiring the 50 TB datastore to be fully re-cloned? (Select all that apply.)
Answer: B,D,E
NEW QUESTION # 26
......
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