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| Section | Weight | Objectives |
|---|---|---|
| Topic 1: Performance Optimization and Monitoring | 20% | - Performance tuning
|
| Topic 2: Advanced Storage Solutions | 10% | - Multi-cloud storage management - Storage for Kubernetes workloads - External storage integration |
| Topic 3: vSAN Deployment and Configuration | 25% | - Advanced configuration
|
| Topic 4: VMware Cloud Foundation Storage Architecture and Design | 20% | - Storage Policy Based Management (SPBM)
|
| Topic 5: Disaster Recovery and Business Continuity | 10% | - Site Recovery Manager integration - Failover and failback operations - vSphere Replication configuration |
| Topic 6: Storage Lifecycle Management | 15% | - Lifecycle management with SDDC Manager
|
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NEW QUESTION # 21
A vSAN ESA solution is configured using the following requirements:
* Seven ESX Hosts, each host contains:
* 32 CPU
* 256 GB memory
* 25 GbE network
* 12 storage devices 4 TB each
* One storage pool using the 12 storage devices * RAID-6 with FTT=2 If a storage device on a single host fails, what percentage of that host's capacity is impacted?
Answer: A
Explanation:
In vSAN ESA, each host uses a storage pool instead of the older OSA disk-group model. The question asks what percentage of that host's local capacity is impacted by the failure of one storage device. Each host has 12 equal-capacity storage devices, and all 12 devices participate in one storage pool. Therefore, one failed device represents one-twelfth of that host's local pool capacity. One divided by twelve equals approximately 8.3%. RAID-6 with FTT=2 determines object resilience across hosts and fault domains, but it does not change the simple local-capacity fraction represented by a single failed disk on one host.
With sufficient cluster resources and policy compliance, vSAN ESA can continue serving data and begin repair or reprotection using remaining capacity. However, the impacted local host capacity is still the failed device's share of the host storage pool. The correct percentage is therefore 8.3%, not 25%,
50%, or 0%. Reference topics: vSAN ESA Storage Pools, Storage Device Failure, RAID-6 FTT=2, Capacity Impact Calculation.
NEW QUESTION # 22
An L3 Support Engineer is called into a war room. A vSAN ESA Stretched Cluster (Site A and Site B, with Witness at Site C) has suffered a complex cascade failure.
Current State:
1. Site B suffered a total power loss.
2. Simultaneously, the Witness Appliance network link at Site C was severed.
3. Site A remains fully operational with no hardware faults.
The VMs originally running on Site B are unreachable. The VMs originally running on Site A are frozen.
The Storage Policy configuration is shown below:
```
# Stretched Cluster Policy
[Site-Disaster-Tolerance]
Rule = "Dual site mirroring (stretched cluster)"
[Failures-to-Tolerate]
Rule = "1 failure - RAID-5 (Erasure Coding) [Local]"
[Advanced-Rule]
ForceProvisioning = 0
```
Based on the integration of Object Health states and Stretched Cluster topology, why are the VMs on Site A frozen, and what is the exact status of their storage objects? (Select all that apply.)
Answer: A,B,E
NEW QUESTION # 23
A VCF Deployment Specialist is troubleshooting a complex partition in a vSAN ESA cluster.
Following a vCenter restore from backup, the cluster split into 3 separate partition groups. The specialist uses Ruby vSphere Console (RVC) to dump the CMMDS cluster table:
```
[RVC Output: vsan.cluster_info ~cluster]
Partition Group 1: esx-01 (Master), esx-02 (Backup), esx-03
Partition Group 2: esx-04 (Master)
Partition Group 3: esx-05 (Master), esx-06
[root@esx-04:~] vmkping -I vmk2 192.168.10.1 (esx-01) -s 8972 -d
Response: sendto() failed: Message too long
```
Based on the RVC topology and vmkping output, which TWO configurations are directly causing this cluster segmentation? (Choose 2.)
Answer: D,E
NEW QUESTION # 24
A VI Admin is diagnosing a "Component Limit Exceeded" alert on a vSAN OSA cluster.
The cluster capacity is at 50%, but several ESXi hosts have hit their 9,000 maximum component count.
The admin queries the component tree for a large data warehouse VM.
```
[RVC Output: vsan.obj_status_report ~cluster]
Object: SQL-DW-Data (4.0 TB)
Policy: FTT=1 (RAID-1), Stripe Width = 12
Total Object Component Count: 28 components
- Replica 1: 12 Stripe chunks + 2 Concatenation chunks (Size > 255GB)
- Replica 2: 12 Stripe chunks + 2 Concatenation chunks
- Witness: 0 (No tie-breaker currently mapped)
```
Based on the RVC output and vSAN mechanics, which TWO factors directly caused this single VMDK to consume 28 metadata components? (Choose 2.)
Answer: A,E
NEW QUESTION # 25
An administrator has been tasked with modifying an existing vSAN File Services deployment which uses Active Directory for Kerberos authentication.
Select three settings which can be modified after initially configuring the vSAN File Services. (Choose three.)
Answer: A,C,F
Explanation:
After vSAN File Services has been deployed, the editable settings are primarily related to the File Service domain network configuration. The vSAN File Service workflow allows modification of primary IP addresses, static IP addresses, and DNS names. These values define how the file service endpoints are presented to clients and how file server instances are resolved on the network. The File Service domain can be adjusted by editing the network configuration and adding or removing IP addresses as needed. The Active Directory domain is not treated as a simple post-deployment editable field because changing domain membership can disrupt authentication, permissions, and file-share access. The Active Directory username and Organizational Unit are part of the directory integration and domain-join configuration, but they are not the three standard settings identified for modification after the initial File Services configuration. Therefore, the three modifiable settings are Static IP addresses, Primary IP addresses, and DNS names. Reference topics: vSAN File Service, Edit File Service Domain, File Service Network Configuration, Active Directory Integration.
NEW QUESTION # 26
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