
[Jun 16, 2025] 2V0-13.24 Test Engine files, 2V0-13.24 Dumps PDF
Latest VMware 2V0-13.24 PDF and Dumps (2025) Free Exam Questions Answers
NEW QUESTION # 45
When configuring VMware Cloud Foundation (VCF), which component must be installed before vSAN?
Response:
- A. SDDC Manager
- B. vSphere
- C. NSX
- D. Aria Operations
Answer: B
NEW QUESTION # 46
When designing for availability across multiple availability zones, which design decision is essential for VMware Cloud Foundation?
Response:
- A. Using a single vCenter for all availability zones to ensure centralized management
- B. Limiting the storage replication to a single data center to minimize overhead
- C. Distributing the network infrastructure across zones for resilience
- D. Ensuring high-speed interconnectivity between zones through a dedicated backbone network
Answer: D
NEW QUESTION # 47
Which of the following is true about the Conceptual Model in IT architecture?
Response:
- A. It defines a high-level representation of the system's structure and interactions.
- B. It is a direct blueprint for the physical implementation of the system.
- C. It only focuses on security components of the system.
- D. It is highly detailed and includes specific hardware and software components.
Answer: A
NEW QUESTION # 48
An architect is tasked with designing a new VMware Cloud Foundation environment and has identified the following customer-provided requirements:
REQ01: The application server must handle at least 30,000 transactions per second.
REQ02: The design must meet ISO 27001 information security standards.
REQ03: The storage network should maintain a minimum latency of 12 milliseconds before path failover.
REQ04: The staging environment should utilize a secondary third-party data center.
REQ05: Planned maintenance must be performed outside the hours of 8 AM to 8 PM GMT.
What are the two functional requirements? (Choose two.)
- A. REQ05
- B. REQ04
- C. REQ03
- D. REQ01
- E. REQ02
Answer: B,D
Explanation:
In VMware Cloud Foundation (VCF) 5.2, requirements are classified asfunctional(what the system must do) ornon-functional(how the system performs or operates). Functional requirements describe specific capabilities or behaviors, while non-functional requirements address qualities like performance, security, or constraints.
Let's classify each:
Option A: REQ01 - The application server must handle at least 30,000 transactions per second This is correct. This is afunctional requirementbecause it specifies what the application server (a component of the solution) must do-process a defined transaction volume. It's a capability the system must deliver, directly tied to workload performance within the VCF environment.
Option B: REQ02 - The design must meet ISO 27001 information security standards This is anon-functional requirement. ISO 27001 addresses security qualities (e.g., confidentiality, integrity), defininghowthe system should operate securely, not what it does. It's a compliance and operational constraint, not a functional capability.
Option C: REQ03 - The storage network should maintain a minimum latency of 12 milliseconds before path failover This is anon-functional requirement. It specifies a performance threshold (latency) and reliability behavior (failover), describinghowthe storage network should perform, not a specific function it must provide.
Option D: REQ04 - The staging environment should utilize a secondary third-party data center This is correct. This is afunctional requirementbecause it defines what the solution must include-a staging environment located in a specific secondary data center. It's a capability or structural requirement of the VCF deployment, dictating a functional aspect of the system.
Option E: REQ05 - Planned maintenance must be performed outside the hours of 8 AM to 8 PM GMT This is anon-functional requirement. It's an operational constraint onwhenmaintenance occurs, affecting availability and manageability, not a specific function the system must perform.
Conclusion:The two functional requirements areREQ01 (A)andREQ04 (D). They define what the VCF solution must do (handle transactions, include a staging environment), aligning with VMware's design methodology for functional specifications.
References:
VMware Cloud Foundation 5.2 Planning and Preparation Guide (Section: Functional vs. Non-Functional Requirements) VMware Cloud Foundation 5.2 Architecture and Deployment Guide (Section: Requirements Classification)
NEW QUESTION # 49
Which of the following are crucial when documenting design decisions in IT architecture?
(Choose two)
Response:
- A. Focusing only on performance requirements.
- B. Ignoring the physical components of the design.
- C. Listing assumptions and constraints considered during design.
- D. Specifying reasons behind each design choice.
Answer: C,D
NEW QUESTION # 50
Which two design decisions should be prioritized to meet performance requirements in a VCF environment?
(Choose two)
Response:
- A. Configuring dedicated resource pools for high-priority workloads
- B. Ensuring network load balancing across all available bandwidth
- C. Using local storage for all critical workloads to minimize latency
- D. Using local storage for all critical workloads to minimize latency
Answer: A,B
NEW QUESTION # 51
During a requirements gathering workshop, several Business and Technical requirements were captured from the customer. Which requirement is classified as a Technical Requirement?
- A. Increase customer satisfaction by 15%.
- B. Reduce system processing time for service requests by 25%.
- C. The system must support 5,000 concurrent users.
- D. Expand market reach to include new geographical regions.
Answer: C
Explanation:
In VMware Cloud Foundation (VCF) architecture, requirements are categorized as Business or Technical based on their focus. Technical requirements specify measurable system capabilities or constraints, directly influencing design decisions for infrastructure components like compute, storage, or networking. Business requirements, conversely, focus on organizational goals or outcomes that IT supports. Option B, "The system must support 5,000 concurrent users," is a technical requirement because it defines a specific system capacity metric (concurrent users), which directly impacts scalability and resource allocation in VCF design, such as the sizing of workload domains or NSX configurations. Option A, "Reduce system processing time for service requests by 25%," could be technical but is often a derivative of a business goal (efficiency), making it less explicitly technical in this context. Options C and D, focusing on customer satisfaction and market reach, are clearly business-oriented, tied to organizational outcomes rather than system specifications.
NEW QUESTION # 52
A customer has stated the following requirements for Aria Automation within their VCF implementation:
* Users must have access to specific resources based on their company organization
* Developers must only be able to provision to the Development environment
* Production workloads can be placed on DMZ or Production clusters
What two design decisions must be implemented to satisfy these requirements? (Choose two.)
- A. Separate tenants will be configured for Development and Production.
- B. Users' access to resources will be controlled by project membership.
- C. Separate cloud zones will be configured for Development and Production.
- D. Users' access to resources will be controlled by tenant membership.
Answer: B,C
NEW QUESTION # 53
Which two strategies are essential for monitoring VCF management components effectively?
(Choose two)
Response:
- A. Setting up automatic remediation actions for common infrastructure issues
- B. Using VMware vRealize Log Insight for log aggregation and analysis
- C. Integrating third-party monitoring tools into VMware Cloud Foundation
- D. Configuring SNMP alerts for network issues
Answer: A,B
NEW QUESTION # 54
During a design discussion, the VMware Cloud Foundation Architect was presented with a requirement to reduce power utilization across all workload domains including management. The architect has suggested to use vSphere Distributed Power Management (DPM) to satisfy this requirement. Which recommendation should the architect provide?
- A. vSphere DPM for VI Workload Domains (excluding when vSAN is a principal storage).
- B. vSphere DPM for Management Workload Domain (any principal storage).
- C. vSphere DPM for Management Workload Domain (only when hosted within a Hyperscaler Data Center).
- D. vSphere DPM for Management Workload Domain (excluding when vSAN is a principal storage).
- E. vSphere DPM for VI Workload Domains (any principal storage).
Answer: A
NEW QUESTION # 55
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 minimum tolerable amount of time allowed before an application/service should be recovered to a usable state.
- B. It determines the maximum amount of data loss that can be tolerated.
- C. It determines the minimum amount of data loss that can be tolerated.
- D. It determines the maximum tolerable amount of time allowed before an application/service should be recovered to a usable state.
Answer: D
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 # 56
The following requirements were identified in an architecture workshop for a virtual infrastructure design project.
REQ001: All virtual machines must satisfy the Recovery Point Objective (RPO) of fifteen (15) minutes or less in a disaster recovery (DR) situation REQ002: Service level availability must satisfy 99.999% measured yearly.
Which two test cases will validate these requirements?
- A. Simulate or invoke an outage of the primary datacenter. All virtual machines must not lose more than fifteen (15) minutes of data prior to the outage.
- B. Simulate or invoke an outage of the primary datacenter. All virtual machines must not lose more than one (1) hour of data prior to the outage.
- C. Simulate or invoke an outage of the primary datacenter. All virtual machines must be restored within fifteen (15) minutes or less.
- D. Simulate or invoke an outage of the primary datacenter. All virtual machines must be restored within one (1) hour or less.
Answer: A,C
NEW QUESTION # 57
When designing VMware Cloud Foundation architecture, which two factors must be prioritized for optimizing scalability?
(Choose two)
Response:
- A. Ability to scale compute and storage resources independently
- B. Integration with existing hardware without modification
- C. Centralized management across multiple regions
- D. Sufficient network bandwidth between data centers
Answer: A,D
NEW QUESTION # 58
Which design decision helps ensure optimal performance in a VCF environment?
Response:
- A. Using multiple Availability Zones to distribute workloads evenly
- B. Configuring resource pools to limit CPU and memory consumption
- C. Implementing a centralized logging system for performance monitoring
- D. Utilizing a shared storage solution for all VCF components
Answer: A
NEW QUESTION # 59
During a transformation project kick-off meeting, an architect highlights specific areas on which to focuswhile developing the new conceptual design. Which statement is the business requirement?
- A. The project should use the existing storage devices within the data center.
- B. Sites must support a network latency of less than 12 ms RTT.
- C. The solution must continue to operate even in case of an entire datacenter failure.
- D. There is no budget specifically assigned for disaster recovery.
Answer: C
NEW QUESTION # 60
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. Recoverability
- C. Availability
- D. Manageability
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 # 61
When creating a VMware Cloud Foundation physical design for Cloud Operations, which two considerations are essential?
(Choose two)
Response:
- A. Defining the integration points with external monitoring tools
- B. Selecting third-party solutions for network security and firewalls
- C. Designing the monitoring components for network traffic and system logs
- D. Designing the monitoring components for network traffic and system logs
Answer: C,D
NEW QUESTION # 62
Which architecture option is recommended for an organization looking to implement VMware Cloud Foundation with minimal disruption during migration from legacy systems?
Response:
- A. VMware Cloud Foundation with an edge-cloud deployment
- B. VMware Cloud Foundation with a traditional three-tier architecture
- C. VMware Cloud Foundation with cloud automation integration
- D. VMware Cloud Foundation with a hybrid cloud deployment
Answer: D
NEW QUESTION # 63
Which option in VMware Cloud Foundation allows you to roll back an operation in case of a failure during the deployment?
Response:
- A. VMware vCenter Server
- B. VMware Aria Operations
- C. VMware vRealize Automation
- D. VMware Cloud Foundation Lifecycle Manager
Answer: D
NEW QUESTION # 64
When designing for capacity management in VMware Cloud Foundation, which two factors should be prioritized?
(Choose two)
Response:
- A. Automating the scaling of vSphere clusters in response to increased load
- B. Deploying more management nodes to improve the user interface
- C. Resource provisioning based on forecasted workload growth
- D. Ensuring that storage resources are sized based on the expected data growth rate
Answer: C,D
NEW QUESTION # 65
The following are a set of design decisions related to networking:
DD01: Set NSX Distributed Firewall (DFW) to block all traffic by default.
DD02: Use VLANs to separate physical network functions.
DD03: Connect the management interface eth0 of each NSX Edge node to VLAN 100.
DD04: Deploy 2x 64-port Cisco Nexus 9300 switches for top-of-rack ESXi host connectivity.
Which design decision would an architect include in the logical design?
- A. DD04
- B. DD01
- C. DD02
- D. DD03
Answer: C
Explanation:
In VMware Cloud Foundation (VCF) 5.2, the logical design outlines high-level architectural decisions that define the system's structure and behavior, distinct from physical or operational details, as per theVCF 5.2 Design Guide. Networking decisions in the logical design focus on connectivity frameworks, security policies, and scalability. Let's evaluate each:
Option A: DD04 - Deploy 2x 64-port Cisco Nexus 9300 switches for top-of-rack ESXi host connectivity This specifies physical hardware (switch model, port count), which belongs in the physical design (e.g., BOM, rack layout). TheVCF 5.2 Architectural Guideclassifies hardware selections as physical, not logical, unless they dictate architecture, which isn't the case here.
Option B: DD01 - Set NSX Distributed Firewall (DFW) to block all traffic by defaultThis is a specific security policy within NSX DFW, defining traffic behavior. While critical, it's an implementation detail (e.g., rule configuration), not a high-level logical design decision. TheVCF 5.2 Networking Guideplaces DFW rules in detailed design, not the logical overview.
Option C: DD03 - Connect the management interface eth0 of each NSX Edge node to VLAN 100This details a specific interface-to-VLAN mapping, an operational or physical configuration. TheVCF 5.2 Networking Guidetreats such specifics as implementation-level decisions, not logical design elements.
Option D: DD02 - Use VLANs to separate physical network functionsUsing VLANs to segment network functions (e.g., management, vMotion, vSAN) is a foundational networking architecture decision in VCF. It defines the logical separation of traffic types, enhancing security and scalability. TheVCF 5.2 Architectural Guideincludes VLAN segmentation as a core logical design component, aligning with standard VCF networking practices.
Conclusion:Option D (DD02) is included in the logical design, as it defines the architectural approach to network segmentation, a key logical networking decision in VCF 5.2.References:
VMware Cloud Foundation 5.2 Architectural Guide(docs.vmware.com): Logical Design and Network Segmentation.
VMware Cloud Foundation 5.2 Networking Guide(docs.vmware.com): VLAN Usage in VCF.
VMware Cloud Foundation 5.2 Design Guide(docs.vmware.com): Logical vs. Physical Design.
NEW QUESTION # 66
The following are a list of design decisions made relating to networking:
NSX Distributed Firewall (DFW) rule to block all traffic by default.
Implement overlay network technology to scale across data centers.
Configure Cisco Discovery Protocol (CDP) - Listen mode on all Distributed Virtual Switches (DVS).
Use of 2x 64-port Cisco Nexus 9300 for top-of-rack ESXi host switches.
Which design decision would an architect document within the logical design?
- A. Configure Cisco Discovery Protocol (CDP) - Listen mode on all Distributed Virtual Switches (DVS).
- B. NSX Distributed Firewall (DFW) rule to block all traffic by default.
- C. Use of 2x 64-port Cisco Nexus 9300 for top-of-rack ESXi host switches.
- D. Implement overlay network technology to scale across data centers.
Answer: D
Explanation:
In VCF 5.2, the logical design focuses on high-level architectural decisions that define the system's structure and behavior, as opposed to physical or operational details. Networking decisions in the logical design emphasize scalability, security policies, and connectivity frameworks, per theVCF 5.2 Architectural Guide.
Let's evaluate each:
Option A: Use of 2x 64-port Cisco Nexus 9300 for top-of-rack ESXi host switchesThis specifies physical hardware, a detail typically documented in the physical design (e.g., BOM, rack layout). TheVCF 5.2 Design Guidedistinguishes hardware choices as physical, not logical, unless they dictate architecture (e.g., spine-leaf), which isn't implied here.
Option B: NSX Distributed Firewall (DFW) rule to block all traffic by defaultThis is a security policy configuration within NSX, defining how traffic is controlled. While critical, it's an operational or detailed design decision (e.g., rule set), not a high-level logical design element. TheVCF 5.2 Networking Guideplaces DFW rules in implementation details, not the logical overview.
Option C: Implement overlay network technology to scale across data centersOverlay networking (e.g., NSX VXLAN or Geneve) is a foundational architectural decision in VCF, enabling scalability, multi-site connectivity, and logical separation of networks. TheVCF 5.2 Architectural Guidehighlights overlays as a core logical design component, directly impacting how the solution scales across data centers, making it a prime candidate for the logical design.
Option D: Configure Cisco Discovery Protocol (CDP) - Listen mode on all Distributed Virtual Switches (DVS)CDP in Listen mode aids network discovery and troubleshooting on DVS. This is a configuration setting, not a logical design decision. TheVCF 5.2 Networking Guidetreats such protocol settings as operational details, not architectural choices.
Conclusion:Option C belongs in the logical design, as it defines a scalable networking architecture critical to VCF 5.2's multi-data center capabilities.References:
VMware Cloud Foundation 5.2 Architectural Guide(docs.vmware.com): Logical Design and Overlay Networking.
VMware Cloud Foundation 5.2 Networking Guide(docs.vmware.com): NSX and DVS Configuration.
VMware Cloud Foundation 5.2 Design Guide(docs.vmware.com): Logical vs. Physical Design.
NEW QUESTION # 67
What is a primary advantage of deploying VMware Cloud Foundation in a multi-cloud environment?
Response:
- A. Reduced complexity of the management domain
- B. Enhanced disaster recovery options with cross-region replication
- C. Improved performance due to centralized data storage
- D. Increased security with on-premises encryption
Answer: B
NEW QUESTION # 68
Which statement defines the purpose of Business Requirements?
- A. Business requirements define which audience needs to be involved.
- B. Business requirements define which goals and objectives can be achieved.
- C. Business requirements define how the goals and objectives can be achieved.
- D. Business requirements define what goals and objectives need to be achieved.
Answer: D
Explanation:
In the context of VMware Cloud Foundation (VCF) 5.2 and IT architecture design,business requirements articulate the high-level needs and expectations of the organization that the solution must address. They serve as the foundation for the architectural design process, guiding the development of technical solutions to meet specific organizational goals. According to VMware's architectural methodology and standard IT frameworks (e.g., TOGAF, which aligns with VMware's design principles), business requirements focus onwhatthe organization aims to accomplish rather thanhowit will be accomplished orwhowill be involved. Let's evaluate each option:
Option A: Business requirements define which audience needs to be involved.This statement is incorrect.
Identifying the audience or stakeholders (e.g., end users, IT staff, ormanagement) is part of stakeholder analysis or requirements gathering, not the purpose of business requirements themselves. Business requirements focus on the goals and objectives of the organization, not the specific people involved in the process. This option misaligns with the role of business requirements in VCF design.
Option B: Business requirements define how the goals and objectives can be achieved.This statement is incorrect. Thehowaspect-detailing the methods, technologies, or processes to achieve goals-falls under the purview offunctional requirementsortechnical design specifications, not business requirements. For example, in VCF 5.2, deciding to use vSAN for storage or NSX for networking is a technical decision, not a business requirement. Business requirements remain agnostic to implementation details, making this option invalid.
Option C: Business requirements define which goals and objectives can be achieved.This statement is misleading. Business requirements do not determinewhichgoals are achievable (implying a feasibility assessment); rather, they statewhatthe organization intends or needs to achieve. Assessing feasibility comes later in the design process (e.g., during risk analysis or solution validation). In VCF, business requirements might specify the need for high availability or scalability, but they don't evaluate whether those are possible- that's a technical consideration. Thus, this option is incorrect.
Option D: Business requirements define what goals and objectives need to be achieved.This is the correct answer. Business requirements articulatewhatthe organization seeks to accomplish with the solution, such as improving application performance, ensuring disaster recovery, or supporting a specific number of workloads.
In the context of VMware Cloud Foundation 5.2, examples might include "the solution must support 500 virtual machines" or "the environment must provide 99.99% uptime." These statements define the goals and objectives without specifying how they will be met (e.g., via vSphere HA or vSAN) or who will implement them. This aligns with VMware's design methodology, where business requirements drive the creation of subsequent functional and non-functional requirements.
In VMware Cloud Foundation 5.2, the architectural design process begins with capturing business requirements to ensure the solution aligns with organizational needs. The VMware Cloud Foundation Planning and Preparation Guide emphasizes that business requirements establish the "what" (e.g., desired outcomes like cost reduction or workload consolidation), which then informs the technical architecture, such as the sizing of VI Workload Domains or the deployment of management components.
References:
VMware Cloud Foundation 5.2 Planning and Preparation Guide (Section: Requirements Gathering) VMware Cloud Foundation 5.2 Architecture and Deployment Guide (Section: Design Methodology Overview) VMware Validated Design Documentation (Business Requirements Definition, applicable to VCF 5.2 principles)
NEW QUESTION # 69
Which two operations are managed by VMware Cloud Foundation Lifecycle Manager?
(Choose two)
Response:
- A. Automating the deployment of NSX
- B. Backing up VMware Cloud Foundation components
- C. Managing software upgrades
- D. Creating and managing VMs
Answer: A,C
NEW QUESTION # 70
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