Last Updated: Thursday, August 24, 2017
Minimally Qualified Candidate
The Minimally Qualified Candidate (MQC) is a
conceptualization of the certification candidate that
possesses the minimum knowledge, skills,
experience, and competence to just meet our expectations of a
credentialed individual.
A minimally qualified candidate (MQC)
achieving the VMware Certified Advanced Professional 6.5 in Data
Center Virtualization Design is capable of
developing a conceptual design given a set of customer
requirements, determining the functional
requirements needed to create a logical design, and architecting
a physical design using these elements.
Candidates possess an advanced knowledge of
end-user computing environments and components,
enabling them to recommend and design VMware
solutions to meet specific goals and requirements. The
successful candidate will likely hold one or
more industry-recognized general IT certifications or
accreditation. The MQC must have a VMware
Certified Professional certification and should have all the
knowledge contained in the VCAP6.5-DCV Design
exam blueprint listed below.
Exam Sections
Section 1. Create a vSphere 6.5 Conceptual Design.
Objective 1.1 – Gather and analyze business requirements.
Objective 1.2 – Gather and analyze application
requirements.
Objective 1.3 – Determine risks, requirements,
constraints, and assumptions.
Section 2. Create a vSphere 6.x Logical Design from an
Existing Conceptual Design.
Objective 2.1 – Map business requirements to a vSphere
6.x logical design.
Objective 2.2 – Map service dependencies.
Objective 2.3 – Build availability requirements into a
vSphere 6.x logical design.
Objective 2.4 – Build manageability requirements into a
vSphere 6.x logical design.
Objective 2.5 – Build performance requirements into a
vSphere 6.x logical design.
Objective 2.6 – Build recoverability requirements into a
vSphere 6.x logical design.
Objective 2.7 – Build security requirements into a
vSphere 6.x logical design.
Section 3. Create a vSphere 6.x Physical Design from an
Existing Logical Design.
Objective 3.1 – Transition from a logical design to a
vSphere 6.x physical design.
Objective 3.2 – Create a vSphere 6.x physical network
design from an existing logical design.
Objective 3.3 – Create a vSphere 6.x physical storage
design from an existing logical design.
Objective 3.4 – Determine appropriate computer resources
for a vSphere 6.x physical design.
Objective 3.5 – Determine virtual machine configuration
for a vSphere 6.x physical design.
Objective 3.6 – Determine data center management options
for a vSphere 6.x physical design.
Sample Questions
Sample Question 1
A company wants to virtualize the SAP (Business
Application) for the first time. The company has to ensure
high availability for its virtualized workloads, so it
has explored several vSphere features and would like to
review the findings.
Which two features improve SAP’s availability and
recoverability? (Choose two.)
A.
B.
C.
D.
vSphere
High Availability
Single
Root I/O Virtualization (SR-IOV)
VMFS file
system
VMware
vSphere vMotion
Sample Question 2
A latency-sensitive, legacy business-critical application
must be migrated to a vSphere cluster.
·
·
The
application does NOT support application-level failovers.
The
application owner would like to leverage virtualization features like high
availability and
vMotion to increase availability during failures and
maintenance operations.
Which two performance optimizations can be enabled in
this scenario? (Choose two.)
A.
B.
C.
D.
Enable
the host and virtual machine for SR-IOV.
Enable
the host and virtual machine for appropriate network buffer sizes.
Enable
the host and virtual machine for Uniform Memory Access (UMA).
Enable
the host and virtual machine for SplitTx and SplitRx.
Sample Question 3
During a recent maintenance window, a customer
experienced a hardware failure of an ESXi host. As a result
of degraded capacity, vSphere HA was unable to restart a
number of virtual machines (VMs).
Which sizing strategy will allow the cluster to maintain
the ability for HA to restart VMs during maintenance
windows while keeping hardware resources at a minimum?
A.
B.
C.
D.
N-1
N+1
N+2
N=3
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