VMWARE 2V0-13.24 PRACTICE TEST - 100% EXAM PASSING GUARANTEE (2025)

VMware 2V0-13.24 Practice Test - 100% Exam Passing Guarantee (2025)

VMware 2V0-13.24 Practice Test - 100% Exam Passing Guarantee (2025)

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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
  • Install, Configure, and Administrate the VMware by Broadcom Solution: This section has NO TESTABLE OBJECTIVES in this version of the exam.
Topic 3
  • 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 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
  • 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.

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VMware Cloud Foundation 5.2 Architect Sample Questions (Q44-Q49):

NEW QUESTION # 44
Which of the following are key steps when differentiating between requirements, assumptions, constraints, and risks in an IT architecture project?
(Choose two)
Response:

  • A. Distinguishing between the impact of assumptions and risks.
  • B. Documenting risks only after the implementation phase.
  • C. Identifying the scope of the project to define assumptions.
  • D. Identifying constraints that could limit design decisions.

Answer: C,D


NEW QUESTION # 45
Given a scenario, which design decision is necessary to meet performance requirements in VMware Cloud Foundation (VCF)?
Response:

  • A. Use vSAN storage policy to optimize IOPS for high-performance workloads
  • B. Increase the number of management nodes for better resource allocation
  • C. Deploy a separate storage domain for each workload to isolate traffic
  • D. Use a single network switch for all clusters to simplify configuration

Answer: A


NEW QUESTION # 46
An administrator is documenting the design for a new VMware Cloud Foundation (VCF) solution. During discovery workshops with the customer, the following information was shared with the architect:
All users and administrators of the solution will need to be authenticated using accounts in the corporate directory service.
The solution will need to be deployed across two geographically separate locations and run in an Active
/Standby configuration where supported.
The management applications deployed as part of the solution will need to be recovered to the standby location in the event of a disaster.
All management applications will need to be deployed into a management tooling zone of the network, which is separated from the corporate network zone by multiple firewalls.
The corporate directory service is deployed in the corporate zone.
There is an internal organization policy that requires each application instance (management or end user) to detail the ports that access is required on through the firewall separately.
Firewall rule requests are processed manually one application instance at a time and typically take a minimum of 8 weeks to complete.
The customer also informed the architect that the new solution needs to be deployed and ready to start the organization's acceptance into service process within 3 months, as it is a dependency in the deployment of a business-critical application. When considering the design for the Cloud Automationand Operations products within the VCF solution, which three design decisions should the architect include based on this information?
(Choose three.)

  • A. The Identity Broker solution will be connected with the corporate directory service for user authentication.
  • B. The Cloud Automation and Operations products will be integrated directly with the corporate directory service.
  • C. The Cloud Automation and Operations products will be integrated with a single instance of an Identity Broker solution at the primary site.
  • D. The Cloud Automation and Operations products will be reconfigured to integrate with the Identity Broker solution instance at the standby site in case of a Disaster Recovery incident.
  • E. The Identity Broker solution will be deployed at both the primary and standby site.
  • F. The Identity Broker solution will be deployed at the primary site and failed over to the standby site in case of a disaster.

Answer: A,C,E

Explanation:
In VMware Cloud Foundation (VCF) 5.2, Cloud Automation (e.g., Aria Automation) and Operations (e.g., Aria Operations) products rely on identity management for authentication. The customer's requirements- corporate directory authentication, Active/Standby across two sites, disaster recovery (DR), network zoning, slow firewall processes, and a 3-month deployment timeline-shape the design decisions. The architect must ensure authentication works efficiently across sites while meeting the timeline and DR needs. Let's evaluate:
Key Constraints and Context:
Authentication: All users/administrators use the corporate directory (e.g., Active Directory in the corporate zone).
Deployment: Active/Standby across two sites, with management apps in a separate tooling zone behind firewalls.
DR: Management apps must recover to the standby site.
Firewall Delays: 8-week minimum per rule, but deployment must occur within 12 weeks (3 months).
Identity Broker: In VCF, VMware Workspace ONE Access (or similar) acts as an identity broker, bridging VCF components with external directories (e.g., AD via LDAP/S).
Evaluation of Options:
Option A: The Cloud Automation and Operations products will be reconfigured to integrate with the Identity Broker solution instance at the standby site in case of a Disaster Recovery incident This implies a single Identity Broker at the primary site, with reconfiguration to a standby instance post-DR.
Reconfiguring products (e.g., updating SSO endpoints) during DR adds complexity and downtime, contradicting the Active/Standby goal of seamless failover. It's feasible but not optimal given the need for continuous operation and the 3-month timeline.
Option B: The Identity Broker solution will be deployed at both the primary and standby site This is correct. Deploying Workspace ONE Access (or equivalent) at both sites supports Active/Standby by ensuring authentication availability at the primary site and immediate usability at the standby site post-DR. It aligns with VCF's multi-site HA capabilities and avoids reconfiguration delays, addressing the DR requirement efficiently within the timeline.
Option C: The Identity Broker solution will be connected with the corporate directory service for user authentication This is correct. The requirement states all users/administrators authenticate via the corporate directory (in the corporate zone). An Identity Broker (e.g., Workspace ONE Access) connects to AD via LDAP/S, acting as a proxy between the management tooling zone and corporate zone. This satisfies the authentication need and simplifies firewall rules (one broker-to-AD connection vs. multiple app connections), critical given the 8- week delay.
Option D: The Identity Broker solution will be deployed at the primary site and failed over to the standby site in case of a disaster This suggests a single Identity Broker with DR failover. While possible (e.g., via vSphere Replication), it risks authentication downtime during failover, conflicting with Active/Standby continuity. The 8-week firewall rule delay for the standby site's broker connection post-DR also jeopardizes the 3-month timeline and DR readiness, making this less viable than dual-site deployment (B).
Option E: The Cloud Automation and Operations products will be integrated with a single instance of an Identity Broker solution at the primary site This is correct. Integrating Aria products with one Identity Broker instance at the primary site during initial deployment simplifies setup and meets the 3-month timeline. It leverages the broker deployed at the primary site (part of B) for authentication, minimizing firewall rules (one broker vs. multiple apps). Pairing this with a standby instance (B) ensures DR readiness without immediate complexity.
Option F: The Cloud Automation and Operations products will be integrated directly with the corporate directory service This is incorrect. Direct integration requires each product (e.g., Aria Automation, Operations) to connect to AD across the firewall, necessitating multiple rule requests. With an 8-week minimum per rule and several products, this exceeds the 3-month timeline. It also complicates DR, as each app would need re-pointing to a standby AD, violating efficiency and zoning policies.
Conclusion:
The three design decisions are:
B: Identity Broker at both sites ensures Active/Standby and DR readiness.
C: Connecting the broker to the corporate directory fulfills the authentication requirement and simplifies firewall rules.
E: Integrating products with a primary-site broker meets the 3-month deployment goal while leveraging B and C for DR.This trio balances timeline, security, and DR needs in VCF 5.2.
References:
VMware Cloud Foundation 5.2 Architecture and Deployment Guide (Section: Identity and Access Management) VMware Aria Automation 8.10 Documentation (integrated in VCF 5.2): Authentication Design VMware Cloud Foundation 5.2 Planning and Preparation Guide (Section: Multi-Site and DR Considerations)


NEW QUESTION # 47
An architect is designing a VMware Cloud Foundation (VCF)-based private cloud solution for a customer.
During the requirements gathering workshop, the customer provided the following requirement:
All SSL certificates should be provided by the company's certificate authority.
When creating the design, how should the architect classify this stated requirement?

  • A. Security
  • B. Manageability
  • C. Availability
  • D. Recoverability

Answer: A

Explanation:
In VMware Cloud Foundation (VCF) 5.2, requirements are classified using design qualities as defined in VMware's architectural methodology: Availability, Manageability, Performance, Recoverability, and Security. These qualities help architects align customer needs with technical solutions. The requirement specifies that "all SSL certificates should be provided by the company's certificate authority," which involves encryption, identity verification, and trust management. Let's classify it:
Option A: RecoverabilityRecoverability focuses on restoring services after failures, such as disaster recovery (DR) or failover (e.g., RTO, RPO). SSL certificates relate to securing communication, not recovery processes. TheVMware Cloud Foundation 5.2 Architectural Guidedefines Recoverability as pertaining to system restoration, not certificate management, making this incorrect.
Option B: SecuritySecurity encompasses protecting the system from threats, ensuring data confidentiality, integrity, and authenticity. Requiring SSL certificates from the company's certificate authority (CA) directly relates to securing VCF components (e.g., vCenter, NSX, SDDC Manager) by enforcing trusted, organization- specific encryption and authentication. TheVMware Cloud Foundation 5.2 Design Guideclassifies certificate usage under Security, as it mitigates risks like man-in-the-middle attacks and aligns with compliance standards (e.g., PCI-DSS, if applicable). This is the correct classification.
Option C: AvailabilityAvailability ensures system uptime and fault tolerance (e.g., HA, redundancy). While SSL certificates enable secure access, they don't directly influence uptime or failover. TheVCF 5.2 Architectural Guideties Availability to resilience mechanisms (e.g., clustered deployments), not security controls like certificates.
Option D: ManageabilityManageability focuses on operational ease (e.g., monitoring, automation). Using a company CA involves certificate deployment and renewal, which could relate to management processes.
However, the primary intent is securing communication, not simplifying administration. VMware documentation distinguishes certificate-related requirements as Security, not Manageability, unless explicitly about operational workflows.
Conclusion:The requirement is best classified asSecurity (B), as it addresses the secure configuration of SSL certificates, a core security concern in VCF 5.2.References:
VMware Cloud Foundation 5.2 Architectural Guide(docs.vmware.com): Section on Design Qualities (Security, Recoverability, etc.).
VMware Cloud Foundation 5.2 Design Guide(docs.vmware.com): Certificate Management and Security Classification.
VMware Cloud Foundation 5.2 Administration Guide(docs.vmware.com): SSL Certificate Configuration.


NEW QUESTION # 48
Given a scenario, which design decision is most important for capacity management in a VMware Cloud Foundation (VCF) solution?
Response:

  • A. Using high-availability clusters for all management components
  • B. Limiting workload migrations to the same region to prevent latency issues
  • C. Deploying multiple vCenter Servers for workload isolation
  • D. Sizing storage resources to ensure sufficient IOPS (Input/Output Operations Per Second)

Answer: D


NEW QUESTION # 49
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