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NEW QUESTION # 103
Which design decision is critical for monitoring VCF workload components?
Response:
Answer: B
NEW QUESTION # 104
Which two strategies are essential for monitoring VCF management components effectively?
(Choose two)
Response:
Answer: B,D
NEW QUESTION # 105
An architect is tasked with designing a new VMware Cloud Foundation environment and has identified the following customer-provided requirements:
REQ01: The application server must handle at least 30,000 transactions per second.
REQ02: The design must meet ISO 27001 information security standards.
REQ03: The storage network should maintain a minimum latency of 12 milliseconds before path failover.
REQ04: The staging environment should utilize a secondary third-party data center.
REQ05: Planned maintenance must be performed outside the hours of 8 AM to 8 PM GMT.
What are the two functional requirements? (Choose two.)
Answer: A,B
Explanation:
In VMware Cloud Foundation (VCF) 5.2, requirements are classified asfunctional(what the system must do) ornon-functional(how the system performs or operates). Functional requirements describe specific capabilities or behaviors, while non-functional requirements address qualities like performance, security, or constraints.
Let's classify each:
Option A: REQ01 - The application server must handle at least 30,000 transactions per second This is correct. This is afunctional requirementbecause it specifies what the application server (a component of the solution) must do-process a defined transaction volume. It's a capability the system must deliver, directly tied to workload performance within the VCF environment.
Option B: REQ02 - The design must meet ISO 27001 information security standards This is anon-functional requirement. ISO 27001 addresses security qualities (e.g., confidentiality, integrity), defininghowthe system should operate securely, not what it does. It's a compliance and operational constraint, not a functional capability.
Option C: REQ03 - The storage network should maintain a minimum latency of 12 milliseconds before path failover This is anon-functional requirement. It specifies a performance threshold (latency) and reliability behavior (failover), describinghowthe storage network should perform, not a specific function it must provide.
Option D: REQ04 - The staging environment should utilize a secondary third-party data center This is correct. This is afunctional requirementbecause it defines what the solution must include-a staging environment located in a specific secondary data center. It's a capability or structural requirement of the VCF deployment, dictating a functional aspect of the system.
Option E: REQ05 - Planned maintenance must be performed outside the hours of 8 AM to 8 PM GMT This is anon-functional requirement. It's an operational constraint onwhenmaintenance occurs, affecting availability and manageability, not a specific function the system must perform.
Conclusion:The two functional requirements areREQ01 (A)andREQ04 (D). They define what the VCF solution must do (handle transactions, include a staging environment), aligning with VMware's design methodology for functional specifications.
References:
VMware Cloud Foundation 5.2 Planning and Preparation Guide (Section: Functional vs. Non-Functional Requirements) VMware Cloud Foundation 5.2 Architecture and Deployment Guide (Section: Requirements Classification)
NEW QUESTION # 106
What must be considered when designing a VMware Cloud Foundation logical design for a vSAN configuration?
Response:
Answer: C
NEW QUESTION # 107
As part of the requirement gathering phase, an architect identified the following requirement for the newly deployed SDDC environment:
Reduce the network latency between two application virtual machines.
To meet the application owner's goal, which design decision should be included in the design?
Answer: C
Explanation:
The requirement is to reduce network latency between two application virtual machines (VMs) in a VMware Cloud Foundation (VCF) 5.2 SDDC environment. Network latency is influenced by the physical distance and network hops between VMs. In a vSphere environment (core to VCF), VMs on the same ESXi host communicate via the host's virtual switch (vSwitch or vDS), avoiding physical network traversal, which minimizes latency. Let's evaluate each option:
Option A: Configure a Storage DRS rule to keep the application virtual machines on the same datastore Storage DRS manages datastore usage and VM placement based on storage I/O and capacity, not network latency. ThevSphere Resource Management Guidenotes that Storage DRS rules (e.g., VMaffinity) affect storage location, not host placement. Two VMs on the same datastore could still reside on different hosts, requiring network communication over physical links (e.g., 10GbE), which doesn't inherently reduce latency.
Option B: Configure a DRS rule to keep the application virtual machines on the same ESXi hostDRS (Distributed Resource Scheduler) controls VM placement across hosts for load balancing and can enforce affinity rules. A "keep together" affinity rule ensures the two VMs run on the same ESXi host, where communication occurs via the host's internal vSwitch, bypassing physical network latency (typically <1us vs.
milliseconds over a LAN). TheVCF 5.2 Architectural GuideandvSphere Resource Management Guide recommend this for latency-sensitive applications, directly meeting the requirement.
Option C: Configure a DRS rule to separate the application virtual machines to different ESXi hostsA DRS anti-affinity rule forces VMs onto different hosts, increasing network latency as traffic must traverse the physical network (e.g., switches, routers). This contradicts the goal of reducing latency, making it unsuitable.
Option D: Configure a Storage DRS rule to keep the application virtual machines on different datastoresA Storage DRS anti-affinity rule separates VMs across datastores, but this affects storage placement, not host location. VMs on different datastores could still be on different hosts, increasing network latency over physical links. This doesn't address the requirement, per thevSphere Resource Management Guide.
Conclusion:Option B is the correct design decision. A DRS affinity rule ensures the VMs share the same host, minimizing network latency by leveraging intra-host communication, aligning with VCF 5.2 best practices for latency-sensitive workloads.References:
VMware Cloud Foundation 5.2 Architectural Guide(docs.vmware.com): Section on DRS and Workload Placement.
vSphere Resource Management Guide(docs.vmware.com): DRS Affinity Rules and Network Latency Considerations.
VMware Cloud Foundation 5.2 Administration Guide(docs.vmware.com): SDDC Design for Performance.
NEW QUESTION # 108
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