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VMware 2V0-13.25 Exam Overview:

Certification Vendor:VMware
Exam Name:VMware Cloud Foundation 9.0 Architect
Exam Number:2V0-13.25
Available Languages:English
Certificate Validity Period:2 years
Real Exam Qty:60
Related Certifications:VMware Certified Advanced Professional (VCAP)
VMware Certified Design Expert (VCDX)
Exam Format:Scenario-based questions, Multiple Selection, Multiple Choice
Exam Duration:135 minutes
Passing Score:300 (scaled score, range 100–500)
Exam Price:$250 USD
Recommended Training:VMware Cloud Foundation 9.0 Documentation
VMware Cloud Foundation: Design and Architect [Course]
Exam Registration:Pearson VUE Registration
Broadcom Certification Portal
Sample Questions:VMware 2V0-13.25 Sample Questions
Exam Way:Proctored online or onsite via Pearson VUE test centers
Pre Condition:Recommended: 2+ years experience designing VMware infrastructure; hands-on knowledge of vSphere, vSAN, NSX; understanding of data center networking, storage, and security principles; familiarity with SDDC Manager and VMware Aria Suite
Official Syllabus URL:https://www.broadcom.com/support/certification/exams/2V0-13.25

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VMware 2V0-13.25 Exam Syllabus Topics:

TopicDetails
Topic 1
  • Plan and Design the VMware Solution: This section measures the skills of Cloud Infrastructure Designers. It focuses on gathering and analyzing business requirements and then transforming them into conceptual, logical, and physical models of VMware Cloud Foundation. Candidates are expected to identify prerequisites and make design decisions across fleet topologies, networking, management domains, workload domains, automation, and operations. The section also includes designing for availability within and across zones, creating strategies for manageability such as lifecycle, scalability, and capacity, and ensuring performance and recoverability through BCDR strategies. Additional emphasis is given to designing secure environments, workload migration strategies, and creating consumption, automation, and monitoring strategies to support modern applications and governance.
Topic 2
  • IT Architectures, Technologies, Standards: This section of the exam measures the skills of IT Architects and covers the ability to distinguish business requirements from technical ones. It expects candidates to understand the differences between conceptual, logical, and physical designs while also differentiating requirements, assumptions, constraints, and risks. Core concepts of availability, manageability, performance, recoverability, and security (AMPRS) are tested. Learners also need to document risk mitigation strategies, design decisions, and create a validation strategy that ties requirements to practical implementation.
Topic 3
  • Install, Configure, Administrate the VMware Solution: This section of the exam is relevant to System Administrators. Although it has no directly testable objectives, it underlines the expectation that candidates are familiar with installation, configuration, and administration tasks that form the foundation for VMware Cloud Foundation solutions.
Topic 4
  • Troubleshoot and Optimize the VMware Solution: This section of the exam measures the skills of Operations Engineers. There are no explicitly testable objectives provided in this domain, but candidates are expected to understand troubleshooting and optimization principles to maintain the VMware environment effectively in real-world deployments.
Topic 5
  • VMware Products and Solutions: This section of the exam evaluates the knowledge of VMware Solution Specialists and focuses on VMware Cloud Foundation (VCF). Candidates must be able to identify and differentiate between various VCF architecture options in given scenarios. The emphasis is on understanding the key products and how they integrate into enterprise design choices.

VMware Cloud Foundation 9.0 Architect Sample Questions (Q109-Q114):

NEW QUESTION # 109
What is the role of VMware vMotion in a vSphere environment?

Answer: A

Explanation:
vMotion facilitates live migration of VMs for maintenance or load balancing.


NEW QUESTION # 110
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?

Answer: B

Explanation:
In the context of VMware Cloud Foundation (VCF) and disaster recovery planning, two key metrics are defined: Recovery Point Objective (RPO) and Recovery 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 window between 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 tolerated This 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 state This is correct. The VMware 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 state This 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 tolerated This 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, making B the correct answer. This aligns with VMware's recovery planning definitions.
Reference: 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 # 111
An architect is defining the conceptual design for a VCF Private Cloud spanning two geographically separate sites for disaster recovery purposes. Which statement correctly distinguishes the conceptual design from the logical design in this context?

Answer: A

Explanation:
In the VCF/VMware design methodology, the conceptual design captures the high-level business intent and relationships (why and what at a business level), the logical design maps out components and their logical relationships/data flows (still vendor/implementation agnostic), and the physical design specifies exact implementation details like IP addresses, VLANs, and hardware - these are three distinct, progressively detailed layers.


NEW QUESTION # 112
During a transformation project kick-off meeting, an architect highlights specific areas on which to focus while developing the new conceptual design.
Which statement is the business requirement?

Answer: D

Explanation:
Business requirements in VCF reflect organizational goals or operational needs, distinct from technical constraints or assumptions.
Option A, "The solution must continue to operate even in case of an entire datacenter failure," is a business requirement as it states a high-level objective- continuous operation-driving the need for disaster recovery (DR) and high availability (HA), directly impacting business continuity.
Option B (using existing storage) is a constraint, limiting design choices.
Option C (latency) is a technical requirement, specifying performance metrics.
Option D (no DR budget) is a financial constraint, not a requirement. VCF's conceptual design phase prioritizes identifying such business drivers to shape the solution, and A aligns with this focus on resilience.
Reference: VMware Cloud Foundation 5.2 Architect Study Guide, Chapter 1: Conceptual Design, Section on Identifying Business Requirements.


NEW QUESTION # 113
Which Broadcom components should be prioritized for a VMware environment focused on low latency?

Answer: B,D

Explanation:
Broadcom 25GbE Ethernet Adapters and NVMe SSDs are essential for reducing latency in VMware environments.


NEW QUESTION # 114
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