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VMware Cloud Foundation 5.2 Architect Sample Questions (Q78-Q83):
NEW QUESTION # 78
Which of the following is part of developing a risk mitigation strategy in IT architecture?
Response:
- A. Ignoring all potential risks to speed up the design process.
- B. Designing the system without assessing potential risks.
- C. Focusing only on the cost and ignoring technical risks.
- D. Identifying risks and planning strategies to reduce their impact.
Answer: D
NEW QUESTION # 79
Given a scenario, which design decision is necessary to meet performance requirements in VMware Cloud Foundation (VCF)?
Response:
- A. Use a single network switch for all clusters to simplify configuration
- B. Deploy a separate storage domain for each workload to isolate traffic
- C. Use vSAN storage policy to optimize IOPS for high-performance workloads
- D. Increase the number of management nodes for better resource allocation
Answer: C
NEW QUESTION # 80
An architect is updating a design document in preparation for an expansion of their organization's existing VCF environment. Following the completion of a capacity assessment, a new cluster will be deployed to support the hosting of future application deployments. Due to restrictions on the availability of budget for the project, the hardware for the additional cluster has already been procured and there is no additional budget available for future procurements. What should the architect include within the design documentation based on this approach?
- A. A risk that additional hardware is not available for purchase.
- B. A requirement that the cluster must be deployed within the existing workload domain.
- C. An assumption that the new cluster will provide sufficient capacity for the applications.
- D. A constraint that the procured hardware must be used due to budget restrictions.
Answer: D
Explanation:
In VMware Cloud Foundation (VCF) design documentation, architects must adhere to VMware's recommended design methodology, which includes identifying constraints, risks, requirements, and assumptions. These elements ensure the design aligns with the project's scope and limitations. Let's evaluate each option based on the scenario:
Option A: A constraint that the procured hardware must be used due to budget restrictionsA constraint is a limitation or restriction that impacts the design. The scenario explicitly states that hardware has already been procured and no additional budget is available for future procurements. This directly imposes a design constraint: the architect must use the existing, procured hardware for the new cluster. Including this in the design documentation ensures clarity that no alternative hardware options can be considered, aligning with VMware'sVCF 5.2 Architectural Guiderecommendation to document budgetary and resource constraints explicitly in the design process.
Option B: A risk that additional hardware is not available for purchaseA risk represents a potential issue that could impact the project's success. While the lack of budget for future procurements is a fact, it's not framed as a risk (an uncertain event) but as a known limitation. A risk might be "insufficient capacity in the procured hardware," but the statement here focuses on the unavailability of additional purchases, which is already certain due to the budget constraint. Thus, this is better captured as a constraint (A) rather than a risk, per VMware's design methodology.
Option C: A requirement that the cluster must be deployed within the existing workload domainA requirement defines what must be achieved. The scenario doesn't specify that the new cluster must be part of an existing workload domain (a logical grouping of clusters in VCF). It only mentions deployment for future applications, leaving flexibility to create a new workload domain or expand an existing one. Without explicit customer or technical mandates tying the cluster to an existing domain, this isn't a justified inclusion.
Option D: An assumption that the new cluster will provide sufficient capacity for the applicationsAn assumption is a statement taken as true without proof, pending validation. While the capacity assessment suggests the cluster is intended to support future applications, stating it "will provide sufficient capacity" assumes a conclusion not yet verified. TheVCF 5.2 Architectural Guideadvises against assumptions about capacity unless validated, recommending instead that capacity risks or constraints be documented if uncertain.
Here, the constraint (A) takes precedence over an unverified assumption.
Conclusion:Option A is the most appropriate inclusion because it directly reflects the scenario's budgetary limitation as a design constraint, ensuring the architect's decision to use the procured hardware is documented clearly and aligns with VCF design best practices.References:
VMware Cloud Foundation 5.2 Architectural Guide(docs.vmware.com): Section on Design Methodology (Constraints, Risks, Requirements, Assumptions).
VMware Cloud Foundation 5.2 Administration Guide(docs.vmware.com): Cluster Deployment Considerations.
NEW QUESTION # 81
An architect is documenting the design for a new VMware Cloud Foundation-based solution. Following the requirements gathering workshops held with customer stakeholders, the architect has made the following assumptions:
The customer will provide sufficient licensing for the scale of the new solution.
The existing storage array that is to be used for the user workloads has sufficient capacity to meet the demands of the new solution.
The data center offers sufficient power, cooling, and rack space for the physical hosts required by the new solution.
The physical network infrastructure within the data center will not exceed the maximum latency requirements of the new solution.
Which two risks must the architect include as a part of the design document because of these assumptions?
(Choose two.)
- A. The customer may not have sufficient data center power, cooling, and physical rack space available.
- B. The customer may not have licensing that covers all of the physical cores the design requires.
- C. The assumptions may not be approved by a majority of the customer stakeholders before the solution is deployed.
- D. The physical network infrastructure may not provide sufficient bandwidth to support the user workloads.
Answer: B,D
Explanation:
In VMware Cloud Foundation (VCF) 5.2, assumptions are statements taken as true for design purposes, but they introduce risks if unverified. The architect must identify risks-potential issues that could impact the solution's success-stemming from these assumptions and include them in the design document. Let's evaluate each option against the assumptions:
Option A: The physical network infrastructure may not provide sufficient bandwidth to support the user workloadsThis is correct. The assumption states that the physical network infrastructure "will not exceed the maximum latency requirements," but it doesn't address bandwidth. In VCF, user workloads (e.g., in VI Workload Domains) rely on network bandwidth for performance (e.g., vSAN traffic, VM communication). Insufficient bandwidth could degrade workload performance or scalability, despite meeting latency requirements. This is a direct risk tied to an unaddressed aspect of the network assumption, making it a necessary inclusion.
Option B: The customer may not have sufficient data center power, cooling, and physical rack space availableThis is incorrect as a mandatory risk in this context. The assumption explicitly states that "the data center offers sufficient power, cooling, and rack space" for the required hosts. While it's possible this could be untrue, the risk is already implicitly covered by questioning the assumption's validity. Including this risk would be redundant unless specific evidence (e.g., unverified data center specs) suggests doubt, which isn't provided. Other risks (A, C) are more immediate and distinct.
Option C: The customer may not have licensing that covers all of the physical cores the design requires This is correct. The assumption states that "the customer will provide sufficient licensing for the scale of the new solution." In VCF 5.2, licensing (e.g., vSphere, vSAN, NSX) is core-based, and misjudging the number of physical cores (e.g., due to host specs or scale) could lead to insufficient licenses. This riskdirectly challenges the assumption's accuracy-if the customer's licensing doesn't match the design's core count, deployment could stall or incur unplanned costs. It's a critical risk to document.
Option D: The assumptions may not be approved by a majority of the customer stakeholders before the solution is deployedThis is incorrect. While stakeholder approval is important, this is a process-related risk, not a technical or operational risk tied to the assumptions' content. The VMware design methodology focuses risks on solution impact (e.g., performance, capacity), not procedural uncertainties like consensus. This risk is too vague and outside the scope of the assumptions' direct implications.
Conclusion:The two risks the architect must include are:
A: Insufficient network bandwidth (not covered by the latency assumption).
C: Inadequate licensing for physical cores (directly tied to the licensing assumption).These align with VCF
5.2 design principles, ensuring potential gaps in network performance and licensing are flagged for validation or mitigation.
References:
VMware Cloud Foundation 5.2 Planning and Preparation Guide (Section: Risk Identification) VMware Cloud Foundation 5.2 Architecture and Deployment Guide (Section: Network and Licensing Considerations)
NEW QUESTION # 82
Which two strategies are essential for monitoring VCF management components effectively?
(Choose two)
Response:
- A. Integrating third-party monitoring tools into VMware Cloud Foundation
- B. Configuring SNMP alerts for network issues
- C. Using VMware vRealize Log Insight for log aggregation and analysis
- D. Setting up automatic remediation actions for common infrastructure issues
Answer: C,D
NEW QUESTION # 83
......
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