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VMware 3V0-21.23 Exam Syllabus Topics:
Topic
Details
Topic 1
- Plan and Design the VMware Solution: This part targets Solution Designers, evaluating their ability to gather business objectives, create conceptual models based on these objectives, develop logical designs, and translate them into physical designs that meet specific requirements like manageability or security.
Topic 2
- VMware Products and Solutions: Targeting VMware Engineers, this section describes VMware Cloud Foundation architecture, its components like vSphere and NSX, benefits such as automation and scalability, and use cases like hybrid cloud environments. It assesses understanding of VMware Validated Solutions.
Topic 3
- IT Architectures, Technologies, Standards: This section of the exam measures the skills of IT Architects and covers differentiating between business and technical requirements, as well as conceptual, logical, and physical design. A key skill measured is "Designing System Availability."
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VMware vSphere 8.x Advanced Design Sample Questions (Q72-Q77):
NEW QUESTION # 72
An architect is tasked with reviewing the design of a VMware software-defined data center (SDDC) for a software development company. The platform is used to developing applications and services.
It is important that the customer be able to accurately benchmark performance of developed applications. The platform has recently commissioned new hosts to update the development cluster.
The development cluster host configuration is:
- 4 ESXi hosts with 2 sockets × 16 cores
- 512 GB RAM divided evenly between sockets
- There is no resource contention
The benchmarking cluster host configuration is:
- 8 ESXi hosts with 2 sockets × 8 cores
- 256 GB RAM divided evenly between sockets
- There is no resource contention
The customer is developing an application that includes a database virtual machine. The application developer states that the database virtual machine performs as required only when allocated 8 vCPUs
256 GB RAM.
The database virtual machine performance meets the required levels when run from the development cluster. Performance benchmarking for the database virtual machine yields highly variable results when run from the benchmarking cluster.
The application cannot be released without reliable performance benchmarking data.
What is a possible reason for the difference in performance test results between the development and benchmarking clusters?
- A. The database tier breaches a single NUMA node boundary for the benchmarking cluster
- B. The development cluster can support a lower %Ready time per vCPU
- C. The development cluster has more available RAM per host
- D. The database tier breaches a single NUMA node boundary for the development cluster
Answer: A
NEW QUESTION # 73
An architect is responsible for the lifecycle management design for a brownfield vSphere-based solution.
The following information has been provided during initial meetings around the new solution:
Existing heterogeneous server hardware will be used to provide the hosting platform.
The available hardware is:
-- 10 servers that contain 2 x 20-Core Intel Xeon processors and 512 GB RAM from Vendor A
-- 10 servers that contain 2 x 24-Core Intel Xeon processors and 768 GB RAM from Vendor A
-- 20 servers that contain 2 x 16-Core AMD EPYC processors and 512 GB RAM from Vendor B
-- 10 servers that contain 1 x 24-Core AMD EPYC processors and 256 GB RAM from Vendor C All of the hardware is currently listed on the VMware Hardware Compatibility List (HCL).
All existing server hardware has 36 months vendor support remaining.
The requirements from the customer are:
REQ001 - The solution must support the hosting of 5,000 workloads across two physical sites.
REQ002 - The solution should minimize the number of clusters.
REQ003 - The solution must ensure that there is no impact to service when completing upgrades.
Given the resource requirements needed for the solution, the architect has calculated that all of the existing servers will be required to provide sufficient resources for the new environment. The Intel-based servers will be deployed to the primary site and the AMD-based servers will be deployed to the secondary site.
Which four additional design decisions should the architect make to ensure all requirements can be met?
(Choose four.)
- A. The solution will use vSphere Lifecycle Manager images to update and upgrade vSphere ESXi hosts in the primary site.
- B. The solution will ensure each vSphere cluster is configured with Distributed Power Management (DPM).
- C. The solution will use vSphere Lifecycle Manager baselines to perform patching and upgrading of vSphere ESXi hosts in the secondary site.
- D. The solution will create an Intel-based 20-node vSphere cluster in the primary site and an AMD-based
30-node vSphere cluster in the secondary site. - E. The solution will ensure each vSphere cluster supports a minimum of N + 1 redundancy.
- F. The solution will use vSphere Lifecycle Manager images to update and upgrade vSphere ESXi hosts in the secondary site.
- G. The solution will use VMware SDDC Manager to perform lifecycle management of the solution.
Answer: A,C,D,E
NEW QUESTION # 74
A customer defines a requirement to minimize the vMotion migration time during a maintenance period. The servers being used are equipped with eight 1 GbE network adapters.
Per the defined logical network configuration, there are two network adapters each used for:
- Management traffic
- vMotion traffic
- iSCSI traffic
- Virtual machine traffic.
Which design decision should the architect make to meet the customer requirement?
- A. Combine vMotion and Management traffic to make use of four adapters.
- B. Implement Multi-NIC vMotion by adding additional vMotion VMkernels.
- C. Use Network I/O Control to define a reservation for vMotion traffic.
- D. Configure a dedicated TCP/IP stack for vMotion traffic.
Answer: C
NEW QUESTION # 75
An architect is designing a vSphere-based private cloud solution to support the following customer requirements:
The solution should support running 5,000 concurrent production compute workloads across the primary and secondary sites.
The solution should support running 1,000 development compute workloads within the secondary site.
The solution should support up to 50 management workloads across the primary and secondary site.
The solution must ensure the isolation of virtual infrastructure management operations between management and compute workloads.
The solution must ensure that hosting of any virtual infrastructure management workloads does not impact the amount of capacity available for compute workloads.
The solution must ensure that all production compute workloads are physically isolated from development compute workloads.
The solution must ensure that the operational management of compute workloads in the secondary site is possible in the event of a disaster affecting the primary site.
A combination of which four design decisions should the architect make to support the requirements?
(Choose four.)
- A. The solution will deploy a VMware vCenter instance in the secondary site management domain for the virtual infrastructure management of production compute workloads.
- B. The solution will deploy a VMware vCenter instance in the primary site management domain for virtual infrastructure management of production and development compute workloads.
- C. The solution will deploy a VMware vCenter instance in each management domain for the virtual infrastructure management of management workloads.
- D. The solution will deploy a VMware vCenter instance in the primary site management domain for the virtual infrastructure management of production compute workloads.
- E. The solution will deploy a VMware vCenter instance within the primary site management domain for hosting all management virtual machines.
- F. The solution will deploy a separate management domain within each site for hosting local management workloads only.
- G. The solution will deploy a VMware vCenter instance in the secondary site management domain for the virtual infrastructure management of production and development compute workloads.
Answer: A,C,D,F
Explanation:
VMware vCenter instance in each management domain for the virtual infrastructure management of management workloads:
The customer requiresisolation between management and compute workloads. By deployingvCenter instances in dedicated management domains, the management workloads can be handled separately from production and development compute workloads, ensuring isolation.
VMware vCenter instance in the secondary site management domain for the virtual infrastructure management of production compute workloads:
Thesecondary siteshould also have avCenter instancefor the management ofproduction compute workloads.
This ensures thatoperational managementof production workloads is still possible even in the event of adisaster affecting the primary site, which aligns with the requirement to ensure themanagement of compute workloads in the secondary site.
VMware vCenter instance in the primary site management domain for the virtual infrastructure management of production compute workloads:
AvCenter instancein theprimary site management domainshould handle themanagement of production compute workloads. The primary site is typically where most production workloads reside, and having the vCenter instance here ensures that management operations can be performed efficiently.
Separate management domain within each site for hosting local management workloads:
To ensure thatmanagement operations are isolatedand that themanagement workloads do not affect compute workloads, aseparate management domainshould be deployed in each site. This ensures that the management functions do not consume compute resources that are intended for production or development workloads.
NEW QUESTION # 76
Refer to the exhibit.
An architect is assigned a new project to design a VMware hybrid cloud solution.
The project is following a proven design methodology following the V-Model of systems engineering and verification. The selected methodology follows these phases: Assess, Design, Deploy and Validate.
Which activity would be conducted during the Design phase?
- A. The architect helps stakeholders learn the mechanics of the solution
- B. The architect resolves configuration issues and addresses concerns
- C. The architect conducts a series of group interviews with stakeholders
- D. The architect defines the scope of the project
Answer: B
NEW QUESTION # 77
......
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