Pass the actual test with the help of 3V0-21.23 study guide
Last Updated: Sep 08, 2026
No. of Questions: 94 Questions & Answers with Testing Engine
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The 3V0-21.23 exam is known for its demanding coverage, and many candidates underestimate the VMware vSphere 8.x Advanced Design syllabus until it is too late. Actualtests4sure breaks that challenge down into 94 practice questions that mirror the scope and style of the test, helping you prepare with purpose.
| Certification Vendor: | VMware |
|---|---|
| Exam Name: | VMware vSphere 8.x Advanced Design |
| Exam Number: | 3V0-21.23 |
| Related Certifications: | VMware Certified Advanced Professional - Data Center Virtualization Design (VCAP-DCV Design) |
| Passing Score: | 300 |
| Exam Duration: | 145 minutes |
| Exam Format: | Proctored, Single Choice, Multiple Choice |
| Exam Price: | $250 USD |
| Available Languages: | English |
| Certificate Validity Period: | 2 years |
| Real Exam Qty: | 60 |
| Sample Questions: | VMware 3V0-21.23 Sample Questions |
| Exam Way: | Online proctored or testing center |
| Pre Condition: | Candidates are recommended to hold a current VMware Certified Professional - Data Center Virtualization (VCP-DCV) certification and have hands-on experience with VMware vSphere 8.x environments. |
| Official Syllabus URL: | https://www.broadcom.com/support/education/vmware/certification/vcap-dcv-design |
| Section | Objectives |
|---|---|
| Topic 1: VMware Products and Solutions | - vSphere and VMware Cloud Foundation
|
| Topic 2: Planning and Designing VMware Solutions | - Operational Considerations
|
| Topic 3: IT Architectures, Technologies, and Standards | - Conceptual, Logical, and Physical Design
|
The 3V0-21.23 exam leads to the VCAP-DCV Design certification, a Advanced-level credential from VMware. It validates the skills measured by the VMware vSphere 8.x Advanced Design syllabus and is a recognized step for IT professionals building their careers, and it sits alongside related credentials such as VMware Certified Advanced Professional - Data Center Virtualization Design (VCAP-DCV Design).
The VMware vSphere 8.x Advanced Design exam includes 60 questions and gives you 145 minutes to complete them. That works out to a fairly tight pace, so reading each question carefully but decisively matters more than perfectionism. If a question stalls you, flag it and move on; banking the easier points first keeps time pressure from snowballing near the end. Before test day, run at least one full timed session with the Actualtests4sure practice test so the rhythm feels familiar rather than rushed.
You need 300 to pass the 3V0-21.23 exam, and the official registration fee is $250 USD. Keep in mind that a failed attempt means paying the full fee again to retake the exam, so it pays to be honest with yourself before booking a seat. A practical benchmark: work through the 94 practice questions at Actualtests4sure until you can score comfortably above the passing line in timed mode, then schedule your exam.
Candidates are recommended to hold a current VMware Certified Professional - Data Center Virtualization (VCP-DCV) certification and have hands-on experience with VMware vSphere 8.x environments. Because VMware may adjust its policies over time, we recommend confirming the latest requirements on the official exam page (official exam page) before you register.
Yes. Actualtests4sure offers a free PDF demo of the VMware vSphere 8.x Advanced Design material, so you can review the question style and answer quality before making a decision. Every purchase also includes 365 days of free updates, and after that period you can extend your updates at a 50% discount, which keeps your preparation current through 2026 and beyond.
If you take the VMware vSphere 8.x Advanced Design exam within 60 days of your purchase and do not pass, Actualtests4sure offers a full refund under its Money Back Guarantee. To apply, send a scanned copy of your exam enrollment slip together with your official Score Report in PDF format within 2 days of the exam date, and your claim will be processed within 7 days. The guarantee applies only to the corresponding exam: attempts made within 3 days of purchase, exams downloaded but never actually taken, free materials, and expired orders are not eligible, and the candidate name must match the purchaser name. If you would rather not take a refund, you can exchange your product for two additional exam preparation products of equal value and keep the update service on your original purchase. Delivery itself is instant: your product is available for download right after payment and is also sent to your email within one minute, and if it has not arrived within 2 hours, contact our support team. There is no limit on how many computers you can install it on.
The VMware vSphere 8.x Advanced Design syllabus is divided into 3 main domains, including Planning and Designing VMware Solutions, VMware Products and Solutions, IT Architectures, Technologies, and Standards. Each domain carries a different share of the total score, so knowing where the weight sits helps you allocate your study time wisely. You will find the complete, up-to-date outline in the Exam Topics section above.
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?
An architect is documenting the design for a new multi-site vSphere solution. The customer has informed the architect that the workloads hosted on the solution are managed by application teams, who must perform a number of steps to return the application to service following a failover of the workloads to the secondary site.
These steps are defined as the Work Recovery Time (WRT). The customer has provided the architect with the following information about the workloads:
Critical workloads have a WRT of 12 hours
Production workloads have a WRT of 24 hours
Development workloads have a WRT of 24 hours
All workloads have an RPO of 4 hours
Critical workloads have an RTO of 1 hour
Production workloads have an RTO of 12 hours
Development workloads have an RTO of 24 hours
The customer has also confirmed that the Disaster Recovery solution will not begin the recovery of the development workloads until all critical and production workloads have been recovered at the secondary site.
What would the architect document as the maximum tolerable downtime (MTD) for each type of workload in the design?
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An architect is designing a new vSphere 8 environment and needs to plan the migration of virtual machines from the source vSphere 7 infrastructure.
The following has been captured about the source infrastructure and project:
All virtual machines operate supported versions of Microsoft Windows
All virtual machines have VMware Tools 11 or higher installed
vCenter Enhanced Linked Mode is configured
VMware PowerCLI is available in the environment
No budget is available for discovery tooling
The architect must capture and review active services from inside running virtual machines to inform the migration design.
Considering the information available, which method can the architect use to acquire the information required?
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An architect is documenting the logical design for a new vSphere solution. The following requirements have been provided to the architect by the customer for the design:
The solution must be deployed in two locations: DC1 and DC2
The solution must limit the impact radius of accidental changes by administrators The solution must meet a recovery time objective (RTO) of four (4) hours and recovery point objective (RPO) of 24 hours The solution must allow workloads to run in both DC1 and DC2 during normal operations The solution must allow workloads to be moved bi-directionally between DC1 and DC2 The solution must use hyper-converged infrastructure for the virtual machine storage The customer has also confirmed that the network connection between DC1 and DC2 has a 10 Gbps bandwidth with a maximum round trip latency of 4 ms.
The architect recommends the following design decision:
Use separate clusters in DC1 and DC2 to form a multi-region design
What should the architect include as justification for this design decision?
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During the creation of a vSphere-based design solution, an architect identifies the following assumption:
The customer will be responsible for providing all licensing for the vSphere platform.
The storage hardware has sufficient capacity for future workload scale.
The data center offers sufficient power, cooling and rack space for workload scale.
When documenting each assumption within the design, which two corresponding pieces of information must the architect also define? (Choose two.)
Adair
Barlow
Burnell
Derrick
Gary
Isaac
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