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2V0-13.24 Practice Exams | Test 2V0-13.24 Dump

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VMware 2V0-13.24 Exam Syllabus Topics:

TopicDetails
Topic 1
  • 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 2
  • Install, Configure, and Administrate the VMware by Broadcom Solution: This section has NO TESTABLE OBJECTIVES in this version of the exam.
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
  • Troubleshoot and Optimize the VMware by Broadcom Solution: This section has NO TESTABLE OBJECTIVES in this version of the exam.

VMware Cloud Foundation 5.2 Architect Sample Questions (Q78-Q83):

NEW QUESTION # 78
In a VMware Cloud Foundation stretched cluster architecture, what is the primary benefit?
Response:

  • A. Easier configuration of storage policies
  • B. Reduced total cost of ownership (TCO) by using fewer hosts
  • C. Improved network performance across regions
  • D. Increased resilience to outages across sites

Answer: D


NEW QUESTION # 79
A customer has a requirement to use isolated domains in VMware Cloud Foundation but is constrained to a single NSX management pane. What should the architect recommend satisfying this requirement?

  • A. A 1:1 NSX Instance
  • B. A Shared NSX Instance
  • C. NSX Federation
  • D. An NSX VPC

Answer: D


NEW QUESTION # 80
Which of the following components should be included in the design to ensure high availability for a VMware Cloud Foundation solution deployed across multiple availability zones?
Response:

  • A. Configuring vMotion between availability zones to ensure workload migration
  • B. Deploying a fault-tolerant storage solution with multi-pathing
  • C. Limiting the number of workloads to reduce network traffic between zones
  • D. Using an external monitoring tool for workload placement

Answer: B


NEW QUESTION # 81
Which of the following factors should be included in the risk mitigation strategy?
(Choose two)
Response:

  • A. Creating backup strategies for system failures and performance dips.
  • B. Setting up a proactive risk monitoring and response plan.
  • C. Ignoring minor risks to focus on major ones.
  • D. Evaluating the likelihood and impact of each identified risk.

Answer: B,D


NEW QUESTION # 82
An architect is designing a new VCF solution to meet the following requirements:
The solution must be deployed across two availability zones.
The physical hosts must be installed in a single rack per availability zone.
Workloads running in the cluster must be able to run on hosts in either availability zone.
The architect has decided that to meet these requirements, the solution will be deployed using the Single Instance - Multiple Availability Zones VCF Topology. When considering the design for the network, what should the architect include in the logical design to meet these requirements?

  • A. A physical network fabric in a leaf-spine configuration with dual Cisco switches within each availability zone.
  • B. A 25-GbE port on each Top of Rack (ToR) switch connected to the ESXi host uplinks.
  • C. A highly available gateway that supports the failure of an entire availability zone.
  • D. A single NSX Overlay Transport Zone for all clusters to carry the traffic between the ESXi hosts.

Answer: D

Explanation:
The VCF 5.2 design uses a Single Instance - Multiple Availability Zones topology (e.g., stretched cluster), requiring centralized management across two AZs, hosts in one rack per AZ, and workload mobility across AZs. The logical design focuses on high-level networking architecture, not physical details. Let's evaluate:
Option A: A physical network fabric in a leaf-spine configuration with dual Cisco switches within each availability zoneA leaf-spine fabric enhances physical network scalability and redundancy, aligning with rack-based deployments. However, it's a physical design detail (switch topology), not a logical networking decision, per theVCF 5.2 Design Guide.
Option B: A highly available gateway that supports the failure of an entire availability zoneA gateway (e.g., NSX Edge Tier-0) with AZ failover supports North-South traffic resilience. While valuable, it doesn't directly enable workload mobility across AZs (East-West traffic), which is the core requirement. TheVCF 5.2 Networking Guidetreats gateways as supplementary, not foundational for stretched clusters.
Option C: A 25-GbE port on each Top of Rack (ToR) switch connected to the ESXi host uplinks Specifying 25-GbE ports is a physical network detail (bandwidth, cabling), not a logical design element. The VCF 5.2 Design Guiderelegates port speeds to physical implementation, not logical architecture.
Option D: A single NSX Overlay Transport Zone for all clusters to carry the traffic between the ESXi hostsIn a stretched cluster topology, a single NSX Overlay Transport Zone enables VM mobility across AZs via overlay networks (e.g., Geneve). It ensures workloads can run on hosts in either AZ by providing a unified L2/L3 connectivity layer, managed by NSX. TheVCF 5.2 Architectural Guidemandates a single Overlay TZ for stretched deployments to support vMotion and workload distribution, directly meeting the requirement.
Conclusion:Option D is the logical design decision, enabling workload mobility across AZs in a stretched VCF topology via NSX overlay networking.References:
VMware Cloud Foundation 5.2 Architectural Guide(docs.vmware.com): Multi-AZ Topology and NSX Overlay.
VMware Cloud Foundation 5.2 Networking Guide(docs.vmware.com): Transport Zones in Stretched Clusters.
VMware Cloud Foundation 5.2 Design Guide(docs.vmware.com): Logical vs. Physical Design.


NEW QUESTION # 83
......

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