PASS GUARANTEED 2025 2V0-13.24: NEWEST NEW VMWARE CLOUD FOUNDATION 5.2 ARCHITECT EXAM FORMAT

Pass Guaranteed 2025 2V0-13.24: Newest New VMware Cloud Foundation 5.2 Architect Exam Format

Pass Guaranteed 2025 2V0-13.24: Newest New VMware Cloud Foundation 5.2 Architect Exam Format

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VMware 2V0-13.24 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Troubleshoot and Optimize the VMware by Broadcom Solution: This section has NO TESTABLE OBJECTIVES in this version of the exam.
Topic 2
  • IT Architectures, Technologies, Standards: This section of the exam measures the skills of enterprise architects and solution architects and focuses on the fundamentals of IT architectures, technologies, and standards. It covers differentiating between business and technical requirements, understanding conceptual models, and logical and physical designs, and recognizing the distinctions between requirements, assumptions, constraints, and risks. Also included are availability, manageability, performance, recoverability, and security (AMPRS), developing risk mitigation strategies, documenting design decisions, and creating design validation strategies.
Topic 3
  • VMware by Broadcom Solution: This section of the exam measures the skills of cloud architects and infrastructure engineers and focuses on understanding the architecture of VMware by Broadcom solution. Candidates should be able to differentiate between various VMware Cloud Foundation architecture options based on different scenarios.
Topic 4
  • Plan and Design the VMware by Broadcom Solution: This section of the exam measures the skills of VMware administrators. It involves gathering and analyzing business objectives and requirements to create a conceptual model. Additionally, it covers the creation of VMware Cloud Foundation logical and physical designs. This includes prerequisites and design decisions related to Network Infrastructure, VCF Management Domain, VCF Workload Domain, VCF Edge Cluster, VCF Cloud Automation, and VCF Cloud Operations. Designs should consider availability within and across availability zones, manageability (Lifecycle Management, Scalability, Capacity Management), performance, recoverability (BCDR strategies), and security for VCF Management Components and Workloads. Workload mobility, consumption, and monitoring strategies are also addressed in this section.
Topic 5
  • Install, Configure, and Administrate the VMware by Broadcom Solution: This section has NO TESTABLE OBJECTIVES in this version of the exam.

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VMware Cloud Foundation 5.2 Architect Sample Questions (Q12-Q17):

NEW QUESTION # 12
Given a scenario, which design decision is crucial when providing availability within an availability zone for a VMware Cloud Foundation solution?
Response:

  • A. Deploying redundant ESXi hosts in the same availability zone
  • B. Designing a centralized management network across multiple regions
  • C. Deciding the physical location of the storage appliances
  • D. Configuring an external disaster recovery solution for failover

Answer: A


NEW QUESTION # 13
What is the main goal of creating a conceptual model for a VMware Cloud Foundation solution?
Response:

  • A. To outline the high-level components and their relationships
  • B. To specify the networking requirements
  • C. To configure storage policies for the workloads
  • D. To define the physical hardware required for the deployment

Answer: A


NEW QUESTION # 14
An Architect is responsible for designing a VMware Cloud Foundation (VCF)-based solution for a customer.
During the discovery workshop, the following requirements were stated by the customer:
All applications/workloads designated as business critical have a Recovery Point Objective (RPO) of 1 business hour.
The infrastructure components of the VCF solution must have a Recovery Time Objective (RTO) of 4 business hours.
In the context provided, what does the RTO measure?

  • A. It determines the maximum amount of data loss that can be tolerated.
  • B. It determines the maximum tolerable amount of time allowed before an application/service should be recovered to a usable state.
  • C. It determines the minimum amount of data loss that can be tolerated.
  • D. It determines the minimum tolerable amount of time allowed before an application/service should be recovered to a usable state.

Answer: B

Explanation:
In the context of VMware Cloud Foundation (VCF) and disaster recovery planning, two key metrics are defined:Recovery Point Objective (RPO)andRecovery Time Objective (RTO). These terms are standardized in VMware documentation and IT disaster recovery frameworks. Let's clarify their meanings and evaluate the options:
RPO (Recovery Point Objective):RPO measures the maximum amount of data loss that can be tolerated, expressed as the time windowbetween the last backup and the point of failure. In this case, an RPO of 1 business hour means the customer can lose up to 1 hour of data for business-critical workloads.
RTO (Recovery Time Objective):RTO measures the maximum tolerable downtime-or the time allowed- between a failure and the restoration of an application or service to a usable state. Here, an RTO of 4 business hours means the infrastructure components must be recovered within 4 hours after a failure.
Option A: It determines the minimum amount of data loss that can be toleratedThis is incorrect. Data loss is tied to RPO, not RTO. Additionally, "minimum" data loss doesn't align with the concept of a maximum tolerance threshold defined by RPO.
Option B: It determines the maximum tolerable amount of time allowed before an application/service should be recovered to a usable stateThis is correct. TheVMware Cloud Foundation 5.2 Architectural Guide defines RTO as the maximum time a system, application, or process can be down before causing significant harm, matching the scenario's 4-hour RTO for infrastructure recovery. This is the standard definition in VMware's disaster recovery context.
Option C: It determines the minimum tolerable amount of time allowed before an application/service should be recovered to a usable stateThis is incorrect. RTO is about the maximum acceptable downtime, not a minimum. A "minimum tolerable time" would imply a floor, not a ceiling, which contradicts RTO's purpose.
Option D: It determines the maximum amount of data loss that can be toleratedThis is incorrect.
Maximum data loss is defined by RPO (1 hour in this case), not RTO. RTO focuses on time to recovery, not data loss.
Conclusion:RTO measures the maximum tolerable downtime, makingBthe correct answer. This aligns with VMware's recovery planning definitions.References:
VMware Cloud Foundation 5.2 Architectural Guide(docs.vmware.com): Section on Disaster Recovery Planning (RPO and RTO Definitions).
VMware vSphere Availability Guide(docs.vmware.com): RTO and RPO in HA and DR Contexts.


NEW QUESTION # 15
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. Storage capacity planning for the management domain
  • C. Availability and redundancy requirements for management components
  • D. Placement of management components such as vCenter and NSX

Answer: C,D


NEW QUESTION # 16
An architect is planning the deployment of Aria components in a VMware Cloud Foundation environment using SDDC Manager and must prepare a logical diagram with networking connections for particular Aria products. Which are two valid Application Virtual Networks for Aria Operations deployment using SDDC Manager? (Choose two.)

  • A. X-Region - VLAN backed segment
  • B. X-Region - Overlay backed segment
  • C. Region-A - VLAN backed segment
  • D. Region-A - Overlay backed segment

Answer: A,C

Explanation:
In VMware Cloud Foundation (VCF) 5.2, Aria Operations (formerly vRealize Operations) is deployed via SDDC Manager to monitor the environment. SDDC Manager automates the deployment of Aria components, including networking configuration, using Application Virtual Networks (AVNs). AVNs provide isolated network segments for management components. The question asks for valid AVNs for Aria Operations, which operates within the Management Domain. Let's evaluate:
VCF Networking Context:
Region-Specific (Region-A): Refers to a single VCF instance or region, typically the Management Domain's scope.
Cross-Region (X-Region): Spans multiple regions or instances, used for components needing broader connectivity.
VLAN-backed: Traditional Layer 2 VLANs on physical switches, common for management traffic.
Overlay-backed: NSX-T virtual segments using Geneve encapsulation, used for flexibility and isolation.
Aria Operations Deployment:
Deployed in the Management Domain by SDDC Manager onto a single cluster.
Requires connectivity to vCenter, NSX, and ESXi hosts for monitoring, typically using management network segments.
SDDC Manager assigns Aria Operations to an AVN during deployment, favoring VLAN-backed segments for simplicity and compatibility with management traffic.
Evaluation:
Option A: Region-A - Overlay backed segment
Overlay segments (NSX-T) are supported in VCF for workload traffic or advanced isolation, but Aria Operations, as a management component, typically uses VLAN-backed segments for direct connectivity to other management services (e.g., vCenter, SDDC Manager). While technically possible, SDDC Manager defaults to VLANs for Aria deployments unless explicitly overridden, making this less standard and not a primary valid choice.
Option B: Region-A - VLAN backed segment
This is correct. A VLAN-backed segment in Region-A aligns with the Management Domain's networking, where Aria Operations resides. SDDC Manager uses VLANs (e.g., Management VLAN) for management components to ensure straightforward deployment and connectivity to vSphere/NSX. This is a valid and common AVN for Aria Operations in VCF 5.2.
Option C: X-Region - VLAN backed segment
This is correct. An X-Region VLAN-backed segment supports cross-region management traffic, which is valid if Aria Operations monitors multiple VCF instances or domains (e.g., Management and VI Workload Domains across regions). SDDC Manager supports this for broader visibility, making it a valid AVN, especially in multi-site designs.
Option D: X-Region - Overlay backed segment
Similar to Option A, overlay segments are feasible with NSX-T but less common for Aria Operations. X- Region overlay could theoretically work for multi-site monitoring, but SDDC Manager prioritizes VLANs for management simplicity and compatibility. This is not a default or primary valid choice.
Conclusion:The two valid Application Virtual Networks for Aria Operations deployment using SDDC Manager areRegion-A - VLAN backed segment (B)andX-Region - VLAN backed segment (C). These reflect VCF 5.2's standard use of VLANs for management components, supporting both local and cross- region monitoring scenarios.
References:
VMware Cloud Foundation 5.2 Architecture and Deployment Guide (Section: Aria Operations Deployment) VMware Cloud Foundation 5.2 Planning and Preparation Guide (Section: Networking for Management Components) VMware Aria Operations 8.10 Documentation (integrated in VCF 5.2): Network Configuration


NEW QUESTION # 17
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