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Advanced Design VMware vSphere 7.x test Dumps

3V0-21.21 test Format | Course Contents | Course Outline | test Syllabus | test Objectives

Exam Number: 3V0-21.21

Exam Name : Advanced Design VMware vSphere 7.x

Exam Duration : 150 min.

Number of Questions: 60

Passing Score : 300

Format: Single and Multiple Choice, Proctored



Exam Description

This test tests a candidate's ability to apply design principles to develop a vSphere 7.x conceptual design given a set of customer requirements, determine the functional and non-functional requirements needed to create a logical design, and architect a physical design using these elements.

The Advanced Design VMware vSphere 7.x test (3V0-21.21), which leads to the VMware Certified Advanced Professional
– Data Center Virtualization Design 2021 certification, is a 60-item test with a passing score of 300 using a scaled
method. Candidates are given an test time of 150 minutes, which includes adequate time to complete the test for nonnative
English speakers.



Exam Sections


VMware test blueprint sections are now standardized to the seven sections below, some of which may NOT be included
in the final test blueprint depending on the test objectives.

Section 1 – Architecture and Technologies

Section 2 – Products and Solutions

Section 3 – Planning and Designing

Section 4 – Installing, Configuring, and Setup

Section 5 – Performance-tuning, Optimization, and Upgrades

Section 6 – Troubleshooting and Repairing

Section 7 – Administrative and Operational Tasks



Sections Included in this Exam

Section 1 –Architectures and Technologies

Objective 1.1 – Differentiate between conceptual, logical and physical elements of a design

Objective 1.2 – Differentiate between functional and non-functional requirements

Objective 1.3 – Differentiate between Availability, Manageability, Performance, Recoverability, Scalability and
Security (AMPRSS)

Section 2 – VMware Products and Solutions - There are no testable objectives for this section.

Section 3 – Planning and Designing

Objective 3.1 – Gather and analyze functional requirements

3.1.1 – Gather and analyze service-level agreement (SLA) requirements

3.1.2 – Gather network, storage and compute requirements

3.1.3 – Gather workload design requirements

3.1.4 – Gather capacity and performance requirements

Objective 3.2 – Gather and analyze non-functional requirements

3.2.1 – Determine security requirements for a vSphere design

3.2.2 – Determine data protection requirements for a vSphere design

3.2.3 – Determine business continuity requirements for a vSphere design

3.2.4 – Determine disaster recovery requirements for a vSphere design

3.2.5 – Determine compliance requirements for a vSphere design

Objective 3.3 – Determine risks, constraints and assumptions for a design

Objective 3.4 – Create a vCenter Server logical design

3.4.1 – Design a single-site, multi-site, multi-region deployment

3.4.2 – Define a virtual data center design

3.4.3 – Determine availability requirements for vCenter Server

Objective 3.5 – Create a vSphere cluster logical design

3.5.1. – Differentiate between workload or management clusters

3.5.2. – Define a workload cluster design

Objective 3.6 – Create a vSphere host logical design

3.6.1 – Recommend compute resource requirements

3.6.2 – Identify and address scalability requirements

3.6.3 – Determine hypervisor deployment method

Objective 3.7 – Create a vSphere network logical design

3.7.1 – Determine network protocol needs

3.7.2 – Design network segregation for different traffic types

3.7.3 – Determine physical and virtual networking topology

Objective 3.8 – Create a vSphere storage logical design

3.8.1 – Determine storage topology needs (e.g., SAN, local, Hyper-Converged Infrastructure or HCI)

3.8.2 – Evaluate storage protocols based on a given scenario/requirements

3.8.3 – Determine different storage segregation techniques based on a given scenario

3.8.4 – Determine physical and storage connectivity topology

Objective 3.9 – Create a workload logical design

3.9.1 – Determine workload sizing

3.9.2 – Determine workload placement

Objective 3.10 – Create a vCenter Server physical design

3.10.1 – Determine the correct sizing for vCenter Server based on workload requirements

3.10.2 – Map clusters to logical design

Objective 3.11 – Create a vSphere cluster physical design

3.11.1 – Determine the appropriate Distributed Resource Scheduler (DRS), Predictive Distributed Resource

Scheduler (pDRS), and Distributed Power Management (DPM) configurations based on requirements

3.11.2 – Determine the appropriate Proactive High Availability/High Availability configurations based on
requirements

3.11.3 – Determine the appropriate vSphere Enhanced vMotion Compatibility (EVC) configurations based
on requirements

3.11.4 – Determine the appropriate cluster size based on requirements

Objective 3.12 – Create a vSphere host physical design

3.12.1 – Identify the hypervisor deployment method

3.12.2 – Determine the appropriate host size based on requirements

3.12.3 – Determine the appropriate host configurations (network adapters, local storage, RAID controller)

based on requirements

Objective 3.13 – Create a vSphere network physical design

3.13.1 – Determine bandwidth needs based on requirements

3.13.2 – Determine NIC teaming and load balancing methods

3.13.3 – Design VMkernel adapters based on requirements

3.13.4 – Determine Network I/O Control (NIOC) configurations based on requirements

3.13.5 – Determine switch type (standard vs distributed) based on requirements

Objective 3.14 – Create a vSphere storage physical design

3.14.1 – Determine storage multi-pathing and load balancing methods

3.14.2 – Determine the Storage DRS configuration

3.14.3 – Determine appropriate datastore configurations based on requirements

3.14.4 – Determine the physical storage design based on requirements

3.14.5 – Determine appropriate storage policy based on requirements

Objective 3.15 – Create a workload physical design based on application requirements

3.15.1 – Determine workload virtual hardware (e.g., number of network interface cards (NICs) and type of NIC)

3.15.2 – Design content library topology

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Advanced Design VMware vSphere 7.x
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Question: 100
A Cloud Service Provider wants to introduce backup as a service for a customers vSphere-based virtual machines.
The following information is noted:
They have a single four-port (2 10 GbE and 2 1 GbE) NIC per ESXi host
All top-of-rack (ToR) switches are 10 GbE and fully populated
The backup traffic must not impact existing services
Which two recommendations should the architect make to help the customer incorporate the service? (Choose two.)
A. Enable and tag traffic on the backup distributed port group
B. Add a new two-port 10 GbE NIC per ESXi host
C. Replace the existing NIC with a two-port 25 GbE NIC per ESXi host
D. Match the Class of Service (CoS) and Differentiated Services Code Point (DSCP) values to the physical network
E. Create a new virtual switch using the 1 GbE uplinks
Answer: A,B
Question: 101
A customer requests a review of its current vSphere platform design.
The following information is noted:
There are three different workload profiles for the virtual machines:
[email protected]
Tier-1, Tier-2 and Tier-3 virtual machines are all hosted on a single large vSphere cluster.
The Chief Information Security Officer (CISO) has raised concerns that hosting externally facing applications
alongside management tools does not meet internal compliance standards.
The Operations team has raised concerns about Tier-1 virtual machines negatively impacting the performance of
vCenter Server.
The Operations lead has stated that management changes have consistently been rejected by application teams.
As a result of the review, which recommendation should the architect make regarding the design of this platform?
A. Separate Tier-1, Tier-2 and Tier-3 virtual machines using dedicated distributed virtual switches (DVS)
B. Separate Tier-2 virtual machines onto a dedicated cluster
C. Separate Tier-1, Tier-2 and Tier-3 virtual machines onto dedicated clusters
D. Separate Tier-1, Tier-2 and Tier-3 virtual machines using resource pools and shares
Answer: D
Question: 102
An architect is tasked with planning the design of a new vSphere environment. When commissioned, this environment
will be used to migrate an existing set of virtual machines.
An inventory of the existing infrastructure, including configured vCPU, RAM and storage sizes has been provided.
In order for each virtual machine to be migrated, which two data sources with peak and average utilization data are
required for sizing? (Choose two.)
A. %Ready
B. Disk Write latency
C. CPU
D. Ballooned memory
E. IOPS
Answer: B,E
Question: 103
An architect will be taking over control of a former Linux server fleet and repurposing the hardware into a new
vSphere cluster. The current environment is already connected to the network but the hosts do not have any local disks.
Since the fleet hardware is uniform, the architect can use a single ESXi image. All hosts within the cluster have the
same CPU and memory capacity.
Which ESXi deployment method should the architect use?
A. Stateless cached vSphere Auto Deploy
B. Stateless vSphere Auto Deploy
C. Manual install of each ESXi host with an image from USB
D. Stateful vSphere Auto Deploy
Answer: A
Explanation:
Reference: https://docs.vmware.com/en/VMware-vSphere/7.0/com.vmware.esxi.install.doc/GUID-0813B4BE- 485D-
4129-902B-49AA42EBF54E.html
Question: 104
An architect is considering placement of virtual machines within an existing VMware software-defined data center
(SDDC).
During the discovery phase, the following information is documented:
Cluster One
Six ESXi hosts
vSphere HA with host failures cluster tolerates = 1
Proactive HA is enabled and set to automated
Fully Automated vSphere DRS
Transparent Page Sharing (TPS) is enabled
Cluster Two
Eight ESXi hosts
vSphere HA with host failures cluster tolerates = 1
Proactive HA is disabled
Partially Automated vSphere DRS
Transparent Page Sharing (TPS) is disabled
Cluster Three
Three ESXi hosts
vSphere HA with admission control is disabled
Proactive HA is not supported
Transparent Page Sharing (TPS) is disabled
Virtual Machine Resource Profile 1
Memory sharing techniques should not be used
Virtual machines should be automatically restarted in the event of host failure if resources are available
Automated initial virtual machine placement
Virtual Machine Resource Profile 2
Memory sharing techniques should not be used
Virtual machines should be automatically restarted in the event of host failure regardless of available resources
Automated initial virtual machine placement
Which two recommendations should the architect make for placement of the virtual machines to meet resource profile
requirements? (Choose two.)
A. All virtual machines matching Virtual Machine Resource Profile 2 should be placed on Cluster One.
B. All virtual machines matching Virtual Machine Resource Profile 1 should be placed on Cluster One.
C. All virtual machines matching Virtual Machine Resource Profile 2 should be placed on Cluster Two.
D. All virtual machines matching Virtual Machine Resource Profile 1 should be placed on Cluster Two.
E. All virtual machines matching Virtual Machine Resource Profile 2 should be placed on Cluster Three.
Answer: B,E
Question: 105
A customer has a database cluster with 40/60 read/write ratio and a high IOPs requirement with no contention on an
all-flash vSAN cluster.
Which two storage settings should be configured for best performance? (Choose two.)
A. IOPs limits enabled
B. RAID 1
C. Deduplication and Compression disabled
D. RAID 5/6
E. Deduplication and Compression enabled
Answer: A,B
Explanation:
Reference: https://core.vmware.com/resource/troubleshooting-vsan-performance
Question: 106
A customer requires the use of data encryption to ensure data is not accessible when a drive is removed from the
primary storage platform. However, there is also a requirement to use deduplication and compression against all
workloads in order to conserve space.
Which solution meets the customer requirements?
A. Data-in-transit encryption
B. OS-level encryption
C. Encrypted backups
D. Array-based encryption
Answer: D
Question: 107
Following a company merger, there are two data centers running vSphere environments.
Both data centers are leveraging separate Layer 3 vMotion networks.
Which requirement must be met in order to enable vMotion migration between these locations?
A. The vMotion service must be configured on the Management VMkernel adapter
B. A dedicated TCP/IP stack for vMotion with a dedicated gateway must be configured
C. A stretched vMotion network must be configured between data centers
D. Virtual machines must be powered off in order to migrate them between data centers
Answer: B
Question: 108
Which design decision must be included in a design to allow for the deployment of a minimum supported
configuration of vCenter High Availability (HA)?
A. A new subnet will be provisioned for vCenter HA services
B. A vSphere cluster will consist of more than three nodes
C. The deployed vCenter Server will be Tiny
D. The vCenter HA network will support a latency of less than 50 ms
Answer: B
Explanation:
Reference: https://www.vmware.com/pdf/vmware-validated-design-20-reference-architecture-guide.pdf (116)
Question: 109
Refer to the exhibit.
During a requirements gathering workshop, a customer shares the following diagram regarding their availability
service-level agreements (SLAs):
The customer states that there is no application level availability for legacy applications.
Which recommendation could the architect make to meet the customers high availability requirements for the legacy
applications virtual machines?
A. Enable vSphere HA and add a VM Override with VM Restart Priority set to Disabled
B. Enable Fault Tolerance
C. Achieve application availability with snapshots
D. Enable vSphere HA and add a VM Override with VM Restart Priority set to Lowest
Answer: A
Question: 110
An architect is designing a solution based on the following information:
Each ESXi host has a single physical NIC with two 10 Gbps ports.
There is a performance-based service-level agreement (SLA) that guarantees 15 Gbps bandwidth for production
virtual machines at all times.
There is no budget to purchase additional hardware.
The hardware replacement SLA is based on a delivery agreement of two business days.
Which recommendation for the configuration of vSphere High Availability (HA) should the
architect include in the design?
A. Configure vSphere HA
Configure % based admission control Configure two isolation addresses
Consider an OEM with NIC failure conditions in their Proactive HA plugin
B. Configure vSphere HA
Set das.IgnoreRedundantNetWarning to true
Consider an OEM with NIC failure conditions in their Proactive HA plugin
C. Configure vSphere HA
Configure two existing data stores for heartbeat
Consider an OEM with NIC failure conditions in their Proactive HA plugin
D. Configure Proactive HA Automation Level: Automated
Remediation: Maintenance mode for all failures
Consider an OEM with NIC failure conditions in their Proactive HA plugin
Answer: A
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