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100% Pass 2025 3V0-21.23: Valid VMware vSphere 8.x Advanced Design Valid Test Syllabus
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VMware 3V0-21.23 Exam Syllabus Topics:
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VMware vSphere 8.x Advanced Design Sample Questions (Q91-Q96):
NEW QUESTION # 91
As part of designing a greenfield vSphere-based hosting solution, an architect is responsible for defining a patch management solution for the virtual infrastructure.
During initial meetings with the customer, the following information is provided:
There are two geographically dispersed physical sites (primary and secondary) in scope for the solution.
The inter-site connectivity has been classified as low bandwidth and high latency.
The customer has the following requirements:
REQ001 - Only IT Security Team-approved versions of VMware Tools should be installed across all workloads within the infrastructure.
REQ002 - The solution should minimize traffic across the inter-site link.
REQ003 - Upgrades to the virtual infrastructure should continue in the event of a failure with either site.
A combination of which three design decisions could the architect make to ensure the requirements are met?
(Choose three.)
- A. The solution will set the UserVars.ProductLockerLocation advanced system setting on each VMware ESXi host to point to the local site shared Repository
- B. The solution will create a shared repository on a VMFS datastore within the primary site that contains all approved versions of VMwareTools.
- C. The solution will use VMware Autodeploy to ensure the latest version of VMware Tools is deployed to each workload.
- D. The solution will ensure that all VMware ESXi hosts within a site have access to the local VMFS datastore containing the shared VMware Tools repository.
- E. The solution will create a shared repository on a VMFS datastore within each site that contains all approved versions of VMware Tools.
- F. The solution will set the UserVars.ToolsRamdisk advanced system setting on each VMware ESXi host to "1" (enabled).
Answer: A,D,E
Explanation:
The solution will ensure that all VMware ESXi hosts within a site have access to the local VMFS datastore containing the shared VMware Tools repository.
This decision ensures that each site has local access to the VMware Tools repository, which minimizes traffic across the low-bandwidth, high-latency inter-site link. By keeping the repository within each site, the local ESXi hosts can access the repository without needing to traverse the inter-site link frequently.
The solution will set the UserVars.ProductLockerLocation advanced system setting on each VMware ESXi host to point to the local site shared repository.
This ensures that each ESXi host points to the local site repository for VMware Tools. This approach minimizes inter-site traffic by ensuring that all updates and patches are performed using local resources, avoiding the need to transfer VMware Tools files over the low-bandwidth, high-latency connection.
The solution will create a shared repository on a VMFS datastore within each site that contains all approved versions of VMware Tools.
This decision ensures that both sites have a local copy of the approved VMware Tools versions, in line with REQ001, which mandates that only IT Security Team-approved versions of VMware Tools should be installed. Additionally, it minimizes inter-site traffic, as both sites will use their local repositories.
NEW QUESTION # 92
An architect is designing a new vSphere cluster. The requirement is to provide a total of 96 CPU cores and 1.5 TB RAM across all hosts.
The following information has been provided:
Two different physical hardware profiles are available for the ESXi hosts in the cluster.
- Profile 1: 16 CPU cores and 256 GB RAM
- Profile 2: 32 CPU cores and 512 GB RAM
Profile 2 is twice as expensive to purchase as Profile 1.
Which two aspects should the architect consider when selecting the hardware profile- (Choose two.)
- A. The manufacturer and model of the CPUs in the hosts
- B. The downtime allowed for virtual machines that will be running within the cluster
- C. The amount of capacity available for failover of virtual machines within the cluster
- D. The number of virtual machines that will be running within the cluster
- E. The cost to procure and maintain the hardware
Answer: C,D
NEW QUESTION # 93
An architect is designing a vSphere environment for a customer and learns that the customer has:
- A single vSphere cluster
- Two storage arrays with different RAID capabilities.
Which two design decisions should the architect make to maximize data availability and data performance for this customer? (Choose two.)
- A. Use Storage DRS.
- B. Use VMDK anti-affinity rules.
- C. Use a minimum of three storage arrays.
- D. Use VM to host DRS rules.
- E. Use multiple datastores for heartbeat.
Answer: A,B
NEW QUESTION # 94
What does evaluating storage protocols in a given scenario involve?
- A. Selecting the most suitable storage protocol (e.g., NFS, iSCSI, Fibre Channel) based on specific requirements.
- B. Determining the physical and storage connectivity topology.
- C. Ensuring that different storage segregation techniques are implemented in the vSphere environment.
- D. Identifying the network protocols required for vSphere networking.
Answer: A
NEW QUESTION # 95
An architect is designing a new vSphere-based solution for a customer.
During a requirement gathering workshop, the following information is provided:
The solution must have a primary and secondary site.
The solution must support a maximum of 1,000 concurrent workloads.
The profile of the workloads are as follows:
- Production Workloads
-- 300 x Small: 1 vCPU, 2 GB RAM
-- 400 x Medium: 2 vCPU, 6 GB RAM
-- 100 x Large: 4 vCPU, 8 GB RAM
- Development Workloads
-- 200 x Small: 1 vCPU, 2 GB RAM
The corporate security policy states that, during normal operations, production workloads must be physically segregated from development workloads.
All production workloads are split evenly across the primary and secondary site.
All development workloads run only within the secondary site.
In the event of a disaster affecting workloads in the primary site, the secondary site must be capable of running all production and development workloads.
The vCPU to physical core ratio should be a maximum of 10:1 for production workloads and 20:1 for development workloads.
The solution should provide a minimum of N + 1 resiliency at each component level.
The target physical host hardware platform has already been defined by the company's hardware standards and therefore each host has the following configuration:
-- 2 x 24 physical cores
-- 768 GB RAM
-- 2 x 100 GB SSD drives
-- 6 x 10 GbE network cards
What is the minimum number of hosts required to meet the requirements?
- A. 0
- B. 1
- C. 2
- D. 3
Answer: C
Explanation:
1. Production Workloads:
300 x Small: 1 vCPU, 2 GB RAM
400 x Medium: 2 vCPU, 6 GB RAM
100 x Large: 4 vCPU, 8 GB RAM
TotalvCPUsrequired for production:
Small: 300 x 1 = 300 vCPUs
Medium: 400 x 2 = 800 vCPUs
Large: 100 x 4 = 400 vCPUs
Total production vCPUs= 300 + 800 + 400 =1,500 vCPUs
2. Development Workloads:
200 x Small: 1 vCPU, 2 GB RAM
Total vCPUsrequired for development:
Small: 200 x 1 =200 vCPUs
3. Workload Distribution:
Production workloads are split evenly across the primary and secondary site:750 vCPUs per site(1,500/2).
All development workloads run in the secondary site:200 vCPUs.
4. vCPU to Physical Core Ratio:
Production workloads:10:1 ratio(vCPU to core ratio).
Development workloads:20:1 ratio(vCPU to core ratio).
5. Hosts Configuration:
Each host has24 physical coresand768 GB of RAM.
Since the maximum vCPU-to-core ratio for production is 10:1, each host can support240 vCPUs(24 cores x
10).
For development, with a ratio of 20:1, each host can support480 vCPUs(24 cores x 20).
6. Host Calculation:
Production Workloads(750 vCPUs per site):
750 vCPUs for production divided by 240 vCPUs per host =3.125 hosts(rounding up =4 hostsper site for production).
Development Workloads(200 vCPUs):
200 vCPUs divided by 480 vCPUs per host =0.416 hosts(rounding up =1 hostfor development).
7. Resiliency:
N + 1 resiliencymeans we need one extra host per site to provide redundancy.
8. Total Hosts:
4 hostsfor production in the primary site.
4 hostsfor production in the secondary site.
1 hostfor development in the secondary site.
1 additional hostfor N + 1 resiliency in both sites.
Total hosts required= 4 (primary production) + 4 (secondary production) + 1 (secondary development) + 2 (N
+ 1) =12 hosts.
NEW QUESTION # 96
......
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