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Valid VMware 3V0-624 Practice Questions Q1-Q13
A customer wants to improve the performance of its vMotion migrations. The current configuration has only one
VMkernel port group for vMotion using vmnic3. The customer has vmnicS available for use. What change can be made
to increase vMotion performance?
A. * Add vmnic5 to the vMotion Port Group as an active uplink.
* Create a second vMotion Port Group with vmnic5 as an active uplink and vmnic3 as an active uplink.
B. * Add vmnic5 to the vMotion Port Group as a standby uplink.
* Do not create a second vMotion Port Group.
C. * Add vmnicS to the vMotion Port Group as a standby uplink.
* Create a second vMotion Port Group with vmnicS as an active uplink and vmnic3 as a standby uplink.
D. * Add vmnic5 to the vMotion Port Group as an active uplink.
* Do not create a second vMotion Port Group.
Correct Answer: D
A company is a leading provider for an online travel booking system with over a $1,000,000 turnover each day. The
company warns to leverage VMware cloud solutions to consolidate, scale, and ensure high availability for all of its data
Match each business requirement to its appropriate design concept.
Select and Place:
You are a platform designer constructing a physical design from an existing approved logicaldesign. Out of the vendor
proposals, there are two proposed solutions that could be used. Which of the following options is the most important
factor when making a decision?
A. Community and vendor-based best practices
B. Existing vendor relationships
C. Project requirements
D. Project budget
Correct Answer: C
A business organization has different types of network traffic, and all the types of traffic must be kept separated. The
design architect knows that the number of required networks is greater than the number of physical ports in the system.
Which three choices can the architect use to keep the traffic separated? (Choose three.)
A. Combine vMotion, Management, and vSAN to one VMkenel port.
B. Configure VLANs to create separate networks.
C. Purchase hardware that supports a greater number of network ports.
D. Utilize Private VLANs.
Correct Answer: BCD
The ability to live-migrate all virtual machines between two clusters is a requirement in the customer\\’s design.
Which two clusters and EVC configurations will accomplish this? (Choose two)
A. Cluster 1
Intel Skylake CPUs
EVC Enabled: AMD OpteronTM”;Steamrolle”; Generation
AMD Steamroller CPUs
EVC Enabled: AMD OpteronTM “Steamrolle”; Generation
B. Cluster 1
C. Cluster 1
AMD Piledriver CPUs
EVC Enabled: AMD OpteronTM”;Piledrive”; Generation
AMD Steamroller CPUs
EVC Enabled: AMD OpteronTM “Piledrive”; Generation
D. Cluster 1
Intel Broadwell CPUs
EVC Enabled: Intel?”Broadwe”t; Generation
Intel Sandy Bridge CPUs
EVC Enabled: Intel?”Sandy Brid”t; Generation
Correct Answer: BD
A) No – EVC doesn\\’t work with different CPU vendors
B) Yes, but officially not possible
A customer has requested that a new vSphere 6.5 environment be designed with its upcoming data center consolidation
effort in mind.
The existing environment is a mix of physical and virtual servers
Fibre Channel storage is used for 100 vSphere ESXi hosts and 600 physical servers across three data centers, some
of which contain latency sensitive applications critical to ongoing business
The customer expects to increase its virtualization ratio from 50% today to 90% at the conclusion of this effort, and
wants the new design to feature a software-defined storage solution that will decrease their TCO. Which two statements
are the business requirements in this scenario? (Choose two.)
A. The design must include VMware vSAN as the primary storage solution
B. The design must account for business-critical applications
C. The design must increase virtualization adoption
D. The design must reuse wherever possible to reduce cost
Correct Answer: AD
You have been tasked with creating a vSphere 6.5 data center design for an organization. The organization has
provided information via requirements gathering. Evaluate each statement and determine if the requirement is functional
Match Requirements on the left by dragging the red buttons (R1-R9) over the text of the appropriate Classification.
Select and Place:
You have been tasked with creating a vSphere 6.5 design for an organization. The customer wants to ensure isolation in
the network but does not know when to incorporate physical networks, VLANs and PVLANs.
Evaluate the design requirement and determine the isolation method to satisfy the design.
Match each Design Requirement on the left by dragging the red Requirement buttons (R1-R5) over the text of the
appropriate Isolation Method.
NOTE: Multiple Design Requirements may fit each Isolation Method.
Select and Place:
Customer Requirements: You have been tasked with creating a vSphere 6.5 data center design for an organization. The organization has
provided a number of Business Continuity and Disaster Recovery (BC/DR) requirements to meet their established
Agreements (SLAs). The preliminary design will include two sites.
-6 ESXi hosts in two clusters
-A Fiber Channel storage array with three types of storage:
15K SAS drives with vFlash Read Cache
SATA drives in RAID 5 configuration Secondary Site:
-3 ESXi hosts in a single cluster
-A Fiber Channel storage array of the same type and with the same configuration as that of the production site The
details of the organization\\’s SLAs include:
-Gold: Maximize read/write storage performance and provide automated offsite recovery with an RPO
-Silver: Maximize read performance and provide automated offsite recovery with an RPO from 15 minutes to 24 hours.
-Bronze: No performance requirement. Onsite recovery with no specific RPO.
The organization has a number of web-based multi-tier applications that are governed by their SLAs. The workloads in
these applications and their SLA assignments include:
-Database workloads -Gold
-Application workloads -Silver
-Web workloads -Bronze
Note that Web servers only contain static information that is site specific.
Create a design that incorporates the required elements:
Place an SLA container for each of the appropriate SLAs into the appropriate sites.
Place the appropriate storage type(s) for each SLA into the SLA container. –
Place the appropriate workload(s) into the SLA containers.
Place the appropriate BCDR components into the SLA containers.
Connect any replicated storage between the two sites using the appropriate replication connector.
Check the answer in explanation.
Correct Answer: A
A management company has requested that a new vSphere 6.5 design be developed to protect its existing data center
investment while it expands to a second data center site and introduces process automation.
The existing environment consists of 32 vSphere 6.0 hosts attached to an iSCSI storage array containing external
customer financial and medical records used by its investment and medical services divisions.
The customer is also interested in the ability to expand to and failover to a public cloud. Which two valid assumptions
can be made about the new design? (Choose two.)
A. The storage array is listed in the VMware Compatibility Guide (HCL/VCG) for vSphere 6.5. 12
B. The resulting design should utilize the existing hardware choices.
C. Sufficient power and cooling exists in the second data center.
D. Sufficient bandwidth exists between the sites for cross-cluster vMotion.
Correct Answer: CD
According to VMware-recommended best practices, on which cluster should each of the services be placed?
Select and Place:
A company has requested assistance with a new cross-site failover design to support business-critical applications.
It has two sites when are very well-connected, and latency is less than 5ms round trip.
The customer requires that its applications be restarted even in the event of a total site failure.
The applications must be kept online even when migrated during maintenance.
Storage arrays at either site support both synchronous and asynchronous replication.
Which two options are accurate application requirements for this scenario? (Choose two.)
A. The design must ensure continuous application uptime even during a total site failure.
B. The design must prioritize application availability.
C. The design must ensure application recoverability at the second site.
D. The applications are latency-sensitive.
Correct Answer: BC
Requirements are: The customer requires that its applications be restarted even in the event of a total site failure; The
applications must be kept online even when migrated during maintenance. Therefore: A) No customer requires the
application to be restarted in an event of site failure. A restart implies a short downtime, while answer A states
“continuous availability”, which is not true if a restart is involved (and false since the customer doesn\\’t require 100%
uptime and it\\’s fine with a restart) B) Yes – 2 of the requirements are about having the application available during
maintenance or after failover C) Yes – Same as A, application must be restarted on the secondary site if primary fails D)
No – There are no info supporting this
A customer is virtualizing a mission-critical Microsoft SQL database and needs a configuration that provides optimal
There are two possible clusters that the database virtual machine could reside in: Cluster A is vSphere 6.0 and Cluster
B is vSphere 6.5.
All ESXi hosts contain dual Intel Xeon E5-2650 v3 processors (ie: 2 socket, 10 cores per socket) and 256Gb RAM with
vNUMA in its default configuration. Given this scenario, which three statements are true? (Choose three.)
A. Enabling CPU Hot Add on a virtual machine will disable vNUMA.
B. Placing a 10 vCPU VM in Cluster A and configuring it with 2 Sockets and 5 Cores Per Socket will result in 2 vNUMA
C. Placing a 10 vCPU VM in Cluster B and configuring it with 2 Sockets and 5 Cores Per Socket will result in 2 vNUMA
D. Enabling Memory Hot Add on a virtual machine will disable vNUMA.
E. Placing the VM in Cluster B and configuring it with 5 Sockets and 2 Cores Per Socket will result in 1 vNUMA node.
Correct Answer: ABC
Enabling CPU Hot-Add disables vNUMA: https://kb.vmware.com/s/article/2040375
As for the vNUMA in ESXi 6.0 vs 6.5, there have been some major changes. Really good article explaining it here:
https://blogs.virtualmaestro.in/2018/05/vnuma-vmware-vsphere-65.html. Essentially, in 6.0 you defined the vNUMA
domain by specifying Cores and Sockets (As described in the example). In 6.5, it is abstracted (simply multiplies
Sockets and Cores together) and vSphere automatically decides the optimal vNUMA setting. In the example above, the
10 vCPU\\’s can fit on a single NUMA domain.
to sum up:
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