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VMware Cloud Foundation 5.2 Architect Sample Questions (Q101-Q106):
NEW QUESTION # 101
Which two design decisions are critical when designing a VMware Cloud Foundation logical design for a VCF Management Domain?
(Choose two)
Response:
- A. The physical network configuration for the management domain
- B. Placement of management components such as vCenter and NSX
- C. Storage capacity planning for the management domain
- D. Availability and redundancy requirements for management components
Answer: B,D
NEW QUESTION # 102
Which of the following are key steps when differentiating between requirements, assumptions, constraints, and risks in an IT architecture project?
(Choose two)
Response:
- A. Identifying constraints that could limit design decisions.
- B. Distinguishing between the impact of assumptions and risks.
- C. Identifying the scope of the project to define assumptions.
- D. Documenting risks only after the implementation phase.
Answer: A,C
NEW QUESTION # 103
An architect is working on a design for a new VMware Cloud Foundation (VCF) solution for a retail organization. The organization wants to initially deploy the solution into their headquarters and a number of larger stores. They also plan to pilot the expansion of the deployment into some of their smaller stores. The locations have the following characteristics:
Headquarters has a brand-new datacenter and 40Gb network infrastructure.
Larger stores have secure machine rooms and 10Gb network infrastructure.
Smaller stores have small secure racks and 100Mb network infrastructure.
The organization's cloud administration team have stated a requirement that the design should minimize the number of instances of management tools they need to support without impacting the performance of the workloads consumed by the end users. What three design decisions about the VCF deployment architecture could the architect include in the logical design? (Choose three.)
- A. Headquarters will have a private cloud based on the VCF Consolidated Architecture.
- B. Larger stores will have workload domains deployed from the HQ VCF instance.
- C. Smaller stores will have remote clusters deployed from the HQ VCF instance.
- D. Smaller stores will have remote clusters deployed from the geographically closest Larger store VCF instance.
- E. Headquarters will have a private cloud based on the VCF Standard Architecture.
- F. Larger stores will have a private cloud based on the VCF Consolidated Architecture.
Answer: B,C,E
Explanation:
VMware Cloud Foundation (VCF) offers two primary architectural models:Standard Architecture(separate Management and Workload Domains) andConsolidated Architecture(combined management and workloads in a single domain). The requirement to minimize management tool instances suggests centralizing management where possible, while the diverse network infrastructure (40Gb, 10Gb, 100Mb) and workload performance needs influence the design. Let's evaluate each option:
Option A: Headquarters will have a private cloud based on the VCF Consolidated ArchitectureThe Consolidated Architecture combines management and workload components in one domain, suitable for smaller deployments with limited resources. However, headquarters has a brand-new datacenter with 40Gb networking, indicating a high-capacity environment likely intended as the central hub. TheVCF 5.2 Architectural Guiderecommends the Standard Architecture for larger, scalable deployments with robust infrastructure, as it separates management for better isolation and scalability, conflicting with Consolidated Architecture here.
Option B: Larger stores will have a private cloud based on the VCF Consolidated ArchitectureLarger stores have 10Gb infrastructure and secure machine rooms, suggesting moderate capacity. While Consolidated Architecture could work, it requires a full VCF stack (SDDC Manager, vCenter, NSX) per site, increasing management instances. This contradicts the requirement to minimize management tools, as each store would need its own management stack.
Option C: Smaller stores will have remote clusters deployed from the HQ VCF instanceSmaller stores with 100Mb infrastructure are resource-constrained. Deploying remote clusters (e.g., stretched or additional clusters) managed by the HQ VCF instance leverages centralized SDDC Manager and vCenter, minimizing management tools. TheVCF 5.2 Administration Guidesupports remote cluster deployment from a central VCF instance, ensuring performance via local workload placement while reducing administrative overhead-ideal for the pilot phase.
Option D: Smaller stores will have remote clusters deployed from the geographically closest Larger store VCF instanceThis assumes larger stores host their own VCF instances, which increases management complexity (multiple SDDC Managers). The requirement to minimize management tools favors a single HQ- managed instance over distributed management from larger stores, making this less optimal.
Option E: Headquarters will have a private cloud based on the VCF Standard ArchitectureThe Standard Architecture deploys a dedicated Management Domain at HQ (with 40Gb infrastructure) and allows workload domains or remote clusters to be managed centrally. This aligns with minimizing management instances (one SDDC Manager, one vCenter) while supporting high-performance workloads across all locations, per theVCF 5.2 Architectural Guide. It's the best fit for HQ's role as the central hub.
Option F: Larger stores will have workload domains deployed from the HQ VCF instanceDeploying workload domains for larger stores from HQ's VCF instance uses the Standard Architecture's flexibility to manage multiple domains centrally. With 10Gb infrastructure, larger stores can host workloads efficiently under HQ's SDDC Manager, avoiding separate VCF instances and meeting the management minimization requirement without compromising performance.
Conclusion:
E: Standard Architecture at HQ provides a scalable, centralized management foundation.
F: Workload domains for larger stores from HQ reduce management overhead.
C: Remote clusters for smaller stores from HQ support the pilot with minimal tools.This trio balances centralized management with performance across varied infrastructure.References:
VMware Cloud Foundation 5.2 Architectural Guide(docs.vmware.com): Section on Standard vs.
Consolidated Architecture.
VMware Cloud Foundation 5.2 Administration Guide(docs.vmware.com): Remote Cluster and Workload Domain Deployment.
NEW QUESTION # 104
In a multi-availability zone design, which two factors are critical for ensuring failover capabilities and availability in VMware Cloud Foundation?
(Choose two)
Response:
- A. Deploying backup and recovery systems that span multiple zones
- B. Configuring dedicated hardware for each availability zone
- C. Limiting the number of virtual machines to reduce the impact of downtime
- D. Ensuring storage replication and synchronization across availability zones
Answer: A,D
NEW QUESTION # 105
When creating a logical design for a VMware Cloud Foundation deployment, which of the following should be prioritized?
Response:
- A. The logical grouping of services such as compute, storage, and networking
- B. The exact hardware specifications for each component
- C. The physical location of hardware within the data center
- D. The list of vendor-specific hardware models
Answer: A
NEW QUESTION # 106
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