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VMware 2V0-13.25 Exam Overview:

Certification Vendor:VMware by Broadcom
Exam Name:VMware Cloud Foundation 9.0 Architect
Exam Number:2V0-13.25
Certificate Validity Period:2 years
Exam Price:$250 USD
Exam Duration:135 minutes
Available Languages:English
Real Exam Qty:60
Related Certifications:VMware Certified Professional - VMware Cloud Foundation Architect
VCP-VCF Architect
Exam Format:Multiple Choice, Multiple Choice Multiple Selection
Passing Score:300
Sample Questions:VMware 2V0-13.25 Sample Questions
Exam Way:Online proctored or test center delivery through Pearson VUE
Pre Condition:Recommended knowledge of VMware Cloud Foundation architecture and hands-on experience with VMware solutions. Official training course recommended.
Official Syllabus URL:https://www.broadcom.com/support/education/vmware/certification/vcp-vcf-architect

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VMware 2V0-13.25 Exam Syllabus Topics:

TopicDetails
Topic 1
  • 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.
Topic 2
  • 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 3
  • 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 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
  • 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.

VMware Cloud Foundation 9.0 Architect Sample Questions (Q47-Q52):

NEW QUESTION # 47
Which Broadcom components should be used to ensure optimal VMware vMotion performance?

Answer: A,C

Explanation:
Broadcom 25GbE Ethernet Adapters and vSphere Distributed Switch (VDS) ensure optimal vMotion performance.


NEW QUESTION # 48
The following requirements were identified in an architecture workshop for a VMware Cloud Foundation (VCF) design project utilizing vSAN for its primary storage solution:
REQ001: Application must maintain a minimum of 1,000 transactions per second (TPS) during business hours excluding disaster recovery (DR) scenarios.
REQ002: Automatic DRS and HA must be utilized.
REQ003: Planned maintenance must be executed outside of business hours.
Which of the following test scenarios should be added and performed to validate these requirements?

Answer: C

Explanation:
To validate the stated requirements, the test scenario must address all three: application performance (1,000 TPS), automatic DRS and HA functionality, and maintenance timing (implying minimal disruption during business hours). In a VCF environment with vSAN, test scenarios should simulate real-world conditions that challenge these requirements. Let's evaluate each option:
Option A: Trigger a Virtual Machine vMotion operation
vMotion tests DRS's ability to migrate VMs for load balancing, which aligns with REQ002's "automatic DRS" mandate. It can be scheduled outside business hours (REQ003) to minimize impact. However, it doesn't fully test HA (automatic failover) or ensure 1,000 TPS (REQ001) under failure conditions, as vMotion is a planned operation, not a failure scenario. This is a partial match but not comprehensive.
Option B: Trigger a vCenter Server update
Updating vCenter tests management plane resilience but doesn't directly validate application performance (REQ001), DRS/HA automation (REQ002), or vSAN-specific behavior. While it could relate to maintenance (REQ003), it's unrelated to workload or storage functionality in the VCF design, making it irrelevant here.
Option C: Trigger a vSAN disk group evacuation
Evacuating a vSAN disk group simulates maintenance (REQ003) by moving data to other nodes, testing vSAN's resilience. It may involve DRS for VM migration (REQ002), but it doesn't trigger HA failover. While it could indirectly affect TPS (REQ001), the requirement excludes DR scenarios, and this test doesn't guarantee performance validation during business hours under normal operations or host failure.
Option D: Trigger a failure of an ESXi host
Simulating an ESXi host failure directly tests REQ002: HA automatically restarts VMs on other hosts, and DRS balances the load post-failure. In a vSAN environment, it also validates data availability (vSAN rebuilds objects), ensuring 1,000 TPS (REQ001) is maintained during business hours under failure conditions (excluding DR, as this is a single-host failure within a site). While not a maintenance task (REQ003), it implicitly ensures maintenance-like disruptions (e.g., host failure) don't violate performance, aligning with VCF's HA/DRS automation goals. The VCF 5.2 Administration Guide recommends host failure testing to validate HA and vSAN resilience.
Conclusion:
Option D comprehensively validates REQ001 (TPS under failure), REQ002 (automatic DRS and HA), and indirectly supports REQ003 by ensuring business-hour performance during unplanned events, making it the best test scenario.
Reference: VMware Cloud Foundation 5.2 Administration Guide (docs.vmware.com): vSAN and HA/DRS Testing Scenarios.
vSphere Availability Guide (docs.vmware.com): HA Failover Testing.
vSAN Administration Guide (docs.vmware.com): Disk Group Evacuation and Failure Scenarios.


NEW QUESTION # 49
An organization is designing a VMware Cloud Foundation (VCF) solution hosting a business-critical database. The application owners specified the following requirements:
* All workload domains will use vSAN for storage.
* A maximum acceptable data loss of 5 minutes (Recovery Point Objective (RPO) 5 minutes).
* An automated failover in case of a site outage where Recovery Time Objective (RTO) should not exceed 30 minutes.
* The performance impact should be minimized.
Which design approach aligns with the application's requirement?

Answer: D

Explanation:
According to the VMware Cloud Foundation 9.0.2 Design Guide, a vSAN stretched cluster provides zero data loss (RPO = 0) and automated failover between two availability zones within the same region. It ensures continuous availability of workloads with minimal performance impact. The guide specifies:
"Stretching a vSAN cluster automatically initiates VM restart and recovery and has a low recovery time for unplanned failures. The solution supports synchronous replication with a maximum inter-site latency of 5ms RTT." This design fully satisfies the RPO (#5 minutes) and RTO (#30 minutes) requirements while minimizing performance impact, as all writes are synchronously mirrored between sites.
In contrast:
* Backup-based recovery (A) and asynchronous replication (B) cannot achieve RPO < 5 minutes.
* Array-based synchronous replication (D) is not applicable to vSAN-only VCF environments and introduces additional complexity.
Therefore, the vSAN stretched cluster is the recommended and VMware-validated solution for meeting near- zero RPO/RTO and automated failover requirements in a business-critical VCF environment.
References (VMware Cloud Foundation documents):
* VMware Cloud Foundation 9.0.2 Design Guide - "Stretching vSAN Clusters Across Availability Zones." (pp. 1039-1042)
* VMware Cloud Foundation 9.0.1 Architecture Overview - "Disaster Avoidance and Recovery with vSAN Stretched Clusters." (pp. 290-292)


NEW QUESTION # 50
When planning a scalable storage solution in VMware, which Broadcom components should be prioritized for performance and flexibility?

Answer: A,B,C

Explanation:
Broadcom RAID Controllers, NVMe SSDs, and vSAN are essential for creating scalable and flexible storage solutions in VMware environments.


NEW QUESTION # 51
An architect has compiled a list of statements following a workshop with the business stakeholders. Which statement would be included in a conceptual model?

Answer: C

Explanation:
A conceptual model focuses on high-level design and how users interact with the system.
Specifying that users connect to application servers via the NSX Advanced Load Balancer represents a conceptual interaction without detailing implementation settings.


NEW QUESTION # 52
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