
Give Push to your Success with VCP-VCF Architect 2V0-13.25 Exam Questions
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NEW QUESTION # 13
Which VMware Cloud Foundation tools help optimize cloud cost management?
- A. VMware vSphere
- B. VMware vSAN
- C. VMware vRealize Automation
- D. VMware vRealize Operations
Answer: C,D
Explanation:
VMware vRealize Automation and vRealize Operations help optimize cloud cost management in VMware Cloud Foundation.
NEW QUESTION # 14
An architect is responsible for designing a new VMware Cloud Foundation (VCF)-based Private Cloud solution. During the requirements gathering workshop with key customer stakeholders, the following information was captured:
* The solution must support a yearly workload growth of up to 10%.
When creating the design document, which design quality should be used to classify the stated requirements?
- A. Security
- B. Manageability
- C. Performance
- D. Availability
Answer: C
Explanation:
The requirement specifying "yearly workload growth of up to 10%" relates directly to thesystem's ability to handle increased demand over time, which falls under the design quality ofPerformance. Performance in VMware Cloud Foundation design includes considerations for scalability and the ability to sustain projected growth. This requirement addresses the system's capacity to manage future workload expansion without degradation in service levels.
Reference:VMware Cloud Foundation Architecture and Design Guide 9.0 - Design Qualities Section:
Performance and Scalability
NEW QUESTION # 15
Which Broadcom components are necessary for administering a VMware environment with minimal latency?
- A. VMware DRS
- B. Broadcom NVMe SSD
- C. Broadcom 25GbE Ethernet Adapter
- D. vSAN
Answer: B,C
Explanation:
Broadcom 25GbE Ethernet Adapters and NVMe SSDs are necessary for minimizing latency in VMware environments.
NEW QUESTION # 16
Which VMware Cloud Foundation features are critical for ensuring disaster recovery and business continuity?
- A. VMware vSphere HA
- B. VMware NSX
- C. VMware vRealize Automation
- D. VMware vSAN
Answer: A,B,D
Explanation:
VMware vSphere HA, vSAN, and NSX are critical for disaster recovery and business continuity in VMware Cloud Foundation.
NEW QUESTION # 17
Which tool is commonly used to monitor vSphere environments?
- A. vMotion
- B. vRealize Operations Manager
- C. NSX Manager
- D. vSAN
Answer: B
Explanation:
vRealize Operations Manager offers robust monitoring capabilities for vSphere environments.
NEW QUESTION # 18
What is the best way to ensure Broadcom network adapters work optimally in VMware environments?
- A. Keep the firmware and drivers updated
- B. Use VMware's network adapter optimization settings
- C. Configure network teaming
- D. Disable Jumbo Frames
Answer: A,B,C
Explanation:
Keeping firmware updated, using optimization settings, and configuring teaming can ensure optimal performance.
NEW QUESTION # 19
Which Broadcom components should be prioritized when planning a VMware cloud infrastructure that needs high scalability?
- A. Broadcom NVMe SSD
- B. Broadcom 25GbE Ethernet Adapter
- C. vSAN
- D. vSphere HA
Answer: A,B,C
Explanation:
Broadcom 25GbE Ethernet Adapters, vSAN, and NVMe SSDs contribute to building a scalable VMware cloud infrastructure.
NEW QUESTION # 20
Which factors should be considered when designing a VMware vSphere network using Broadcom solutions for maximum scalability?
- A. vSAN
- B. Broadcom RAID Controller
- C. 25GbE Ethernet Adapter
- D. vSphere Distributed Switch (VDS)
Answer: C,D
Explanation:
The 25GbE Ethernet Adapter and vSphere Distributed Switch (VDS) are crucial for network scalability in VMware vSphere.
NEW QUESTION # 21
An architect is responsible for designing a new VMware Cloud Foundation environment and has identified the following requirements provided by the customer:
REQ01: The database server must support a minimum of 15,000 transactions per second.
REQ02: The design must satisfy PCI-DSS compliance.
REQ03: The storage network must have a minimum latency of 10 milliseconds prior to path failover.
REQ04: The Production environment must be deployed into the primary data center.
REQ05: The platform must be capable of running 1500 virtual machines across both data centers.
What are the two functional requirements? (Choose two.)
- A. The platform must be capable of running 1500 virtual machines across both data centers.
- B. The design must satisfy PCI-DSS compliance.
- C. The storage network must have a minimum latency of 10 milliseconds prior to path failover.
- D. The Production environment must be deployed into the primary data center.
- E. The database server must support a minimum of 15,000 transactions per second.
Answer: A,E
Explanation:
In VMware's design methodology (aligned with VCF 5.2), requirements are classified as functional (what the system must do) or non-functional (how the system must perform or constraints it must meet). Functional requirements describe specific capabilities or behaviors, while non-functional requirements cover quality attributes, constraints, or compliance.
Let's categorize each:
Option A: The design must satisfy PCI-DSS compliance
PCI-DSS (Payment Card Industry Data Security Standard) compliance is a non-functional requirement. It defines security and operational standards (e.g., encryption, access control) rather than a specific system function. The VCF 5.2 Architectural Guide treats compliance as a constraint or quality attribute, not a functional capability.
Option B: The database server must support a minimum of 15,000 transactions per second This is a functional requirement. It specifies a measurable capability-the database server's ability to process 15,000 transactions per second-directly tied to workload performance. The VCF 5.2 Design Guide classifies such performance metrics as functional, as they dictate what the system must achieve.
Option C: The storage network must have a minimum latency of 10 milliseconds prior to path failover This is a non-functional requirement. It defines a quality attribute (latency) and a performance threshold for the storage network, not a specific function. VMware documentation categorizes latency and failover characteristics as non-functional, focusing on "how" the system operates.
Option D: The Production environment must be deployed into the primary data center This is a non-functional requirement or constraint. It specifies a location or deployment condition rather than a system capability. The VCF 5.2 Architectural Guide treats deployment location as a design constraint, not a functional behavior.
Option E: The platform must be capable of running 1500 virtual machines across both data centers This is a functional requirement. It defines a specific capability-the platform's capacity to support 1500 VMs across two data centers-quantifying what the system must do. VMware's design methodology includes such capacity requirements as functional, per the VCF 5.2 Design Guide.
Conclusion:
B: A functional requirement specifying database transaction capacity.
E: A functional requirement defining VM hosting capability.
These two focus on "what" the system must deliver, distinguishing them from non-functional constraints or qualities.
Reference: VMware Cloud Foundation 5.2 Architectural Guide (docs.vmware.com): Section on Requirements Classification.
VMware Cloud Foundation 5.2 Design Guide (docs.vmware.com): Functional vs. Non-Functional Requirements.
NEW QUESTION # 22
An architect is responsible for designing a VMware Cloud Foundation (VCF)-based private cloud. During the design requirements gathering workshop, the following information was captured:
* The solution must capture events from all infrastructure components of the VCF fleet.
* The solution must provide a single pane of glass management interface for troubleshooting, alerting, and monitoring using metrics, events, and flows.
* The solution must meet a 99.9% Service Level Agreement for Availability.
Which three design decisions should the architect make to meet the stated requirements? (Choose three.)
- A. Configure VCF Operations for logs to capture events from all VCF infrastructure components.
- B. Deploy VCF Operations for logs in a Simple model.
- C. Configure the integration for VCF Operations and VCF Operations for logs.
- D. Configure VCF Operations for logs to capture events from only VCF Management components.
- E. Deploy VCF Operations for logs in a High Availability model.
- F. Configure the integration for VCF Operations and VCF Automation.
Answer: C,E,F
Explanation:
The VMware Cloud Foundation 9.0.1 Architecture Overview and Operations Integration Guide state that VCF Operations, combined with VCF Operations for Logs, provides a unified monitoring and observability solution across the entire VCF fleet. The documentation specifies:
"Integrating VCF Operations with VCF Operations for Logs and VCF Automation provides a single-pane-of- glass for monitoring metrics, events, and flows across all management and workload domains." Furthermore, the High Availability deployment model for VCF Operations for Logs is required to meet the
99.9% SLA for continuous availability of monitoring data.
"VCF Operations for Logs can be deployed in High Availability mode to ensure log continuity and fault tolerance." Thus, the architect must:
* Integrate VCF Operations with both Logs and Automation (B, D) for unified visibility.
* Deploy Logs in High Availability (F) mode to achieve the 99.9% availability SLA.
References (VMware Cloud Foundation documents):
* VMware Cloud Foundation 9.0.1 Operations Design Guide - "Integrated Operations and Log Monitoring Architecture."
* VMware Cloud Foundation 9.0.4 Integration Guide - "VCF Operations and Logs HA Deployment."
NEW QUESTION # 23
An architect is designing a VMware Cloud Foundation (VCF)-based solution. The company policy mandates that all VCF patches and upgrades must be tested in a development environment before applying to production.
Which VCF construct design decision would comply with this mandate?
- A. Deploy two VCF Domains within a VCF Instance.
- B. Deploy two VCF vSphere Clusters within a VCF Domain.
- C. Deploy two VCF Instances within a VCF Fleet.
- D. Deploy two VCF Fleets within a VCF Private Cloud.
Answer: C
Explanation:
Deployingtwo VCF Instancesallows isolation between environments. One instance can serve asdevelopment
/testand the other asproduction.
This separation enables patch/upgrade validation without impacting production. VCF architecture supports managing multiple VCF instances in aFleetfor centralized visibility and policy enforcement.
VMware explicitly recommends separating environments for lifecycle testing in environments with strict change control policies.
NEW QUESTION # 24
In a large-scale VMware deployment with Broadcom solutions, which components are most important for ensuring both performance and scalability?
- A. Broadcom 25GbE Ethernet Adapter
- B. vSphere DRS
- C. vSAN
- D. Broadcom RAID Controller
Answer: A,B
Explanation:
The 25GbE Ethernet Adapter and vSphere DRS are crucial for ensuring performance and scalability in large-scale VMware environments.
NEW QUESTION # 25
Which Broadcom components should be prioritized in a VMware environment requiring low-latency storage and high throughput?
- A. Broadcom NVMe SSD
- B. Broadcom 25GbE Ethernet Adapter
- C. vSphere HA
- D. Broadcom RAID Controller
Answer: A,B
Explanation:
The Broadcom 25GbE Ethernet Adapter and Broadcom NVMe SSD are essential for low-latency, high-throughput storage and networking in VMware.
NEW QUESTION # 26
An architect is designing a VMware Cloud Foundation (VCF)-based private cloud solution for a customer. The customer has stated the following requirement:
* All management tooling must be resilient against a single ESXi host failure When considering the design decisions for VMware Aria Suite components, what should the Architect document to support the stated requirement?
- A. The solution will deploy the VCF Workload domain in a stretched topology across two sites.
- B. The solution will deploy Aria Suite Lifecycle in a clustered topology.
- C. The solution will deploy three Aria Automation appliances in a clustered topology.
- D. The solution will deploy an external load balancer for Aria Operations Cloud Proxies.
Answer: C
Explanation:
Resilience against a single ESXi host failure requires high availability (HA) for management components in VCF. VMware Aria Suite, including Aria Automation, supports HA via clustering.
Option B, deploying "three Aria Automation appliances in a clustered topology," ensures that if one host fails, the remaining two can maintain service, meeting the requirement directly. A cluster of three nodes is the minimum for HA in Aria Automation, providing fault tolerance within a VCF management domain.
Option A (stretched workload domain) is unrelated to management tooling HA, C (Aria Suite Lifecycle clustering) isn't a standard HA feature for that component, and D (load balancer for Operations proxies) addresses a different component and purpose.
Reference: VMware Aria Automation 8.10 Installation Guide, Section on High Availability Configuration; VMware Cloud Foundation 5.2 Architecture and Deployment Guide, Management Domain HA.
NEW QUESTION # 27
Which VMware components enable automation of resource provisioning and scaling in VMware Cloud Foundation?
- A. VMware vSphere DRS
- B. VMware vSAN
- C. VMware vRealize Automation
- D. VMware NSX
Answer: A,C
Explanation:
VMware vRealize Automation and vSphere DRS enable automation in VMware Cloud Foundation.
NEW QUESTION # 28
An architect is responsible for designing a VMware Cloud Foundation (VCF)-based private cloud for a customer. During the customer requirements gathering workshop, the customer has stated the following:
* All Platinum applications/services must have an availability SLA of 99.99%.
* All Gold applications/services must have an availability SLA of 99.9%.
* All Silver applications/services must have an availability SLA of 99%.
* The private cloud must have an availability SLA of 99.9%.
What should the architect recommend to meet the stated requirements?
- A. The Platinum service availability requirements must be met by the application.
- B. The Platinum service availability requirements must be met by configuring Proactive High Availability (HA) on the workload domain.
- C. The private cloud must only be used to host Silver and Gold services.
- D. The private cloud SLA can only be met using multiple VMware Cloud Foundation instances configured as a single VCF Fleet.
Answer: A
Explanation:
The overall private cloud SLA is99.9%, butPlatinum applications require 99.99%, which exceeds the infrastructure SLA. VMware design methodology states:
* If an application's SLA ishigher than the infrastructure SLA, thenthe application itself must provide the additional resilience(e.g., clustering, active-active deployment, or application-level HA).
* Options A and B reduce flexibility or impose unnecessary complexity.
* Option D (Proactive HA) improves resiliency but cannot guarantee99.99%, since Proactive HA still depends on underlying infrastructure SLA.
Therefore, the only valid recommendation is thatPlatinum workloads must implement resilience at the application layer.
Reference:VMware Cloud Foundation 9.0 - Availability and SLA Design Guide.
NEW QUESTION # 29
Which VMware tools help ensure security and compliance in VMware Cloud Foundation?
- A. VMware vSphere
- B. VMware NSX
- C. VMware vSAN
- D. VMware vRealize Suite
Answer: B,D
Explanation:
VMware NSX and vRealize Suite provide essential security and compliance features within VMware Cloud Foundation environments.
NEW QUESTION # 30
An architect is documenting the design for a new VMware Cloud Foundation solution. During workshops with key stakeholders, the architect discovered that some of the workloads that will be hosted within the Workload Domains will need to be connected to an existing Fibre Channel storage array.
How should the architect document this information within the design?
- A. As an assumption
- B. As a constraint
- C. As a business requirement
- D. As a design decision
Answer: B
Explanation:
In VMware Cloud Foundation (VCF) 5.2, design documentation categorizes information into requirements, assumptions, constraints, risks, and decisions to guide the solution's implementation. The need for workloads in VI Workload Domains to connect to an existing Fibre Channel (FC) storage array has specific implications. Let's analyze how this should be classified:
Option A: As an assumption
An assumption is a statement taken as true without proof, typically used when information is uncertain or unverified. The scenario states that the architect discovered this need during workshops with stakeholders, implying it's a confirmed fact, not a guess. Documenting it as an assumption (e.g., "We assume workloads need FC storage") would understate its certainty and misrepresent its role in the design process. This option is incorrect.
Option B: As a constraint
This is the correct answer. A constraint is a limitation or restriction that influences the design, often imposed by existing infrastructure, policies, or resources. The requirement to use an existing FC storage array limits the storage options for the VI Workload Domains, as VCF natively uses vSAN as the principal storage for workload domains. Integrating FC storage introduces additional complexity (e.g., FC zoning, HBA configuration) and restricts the design from relying solely on vSAN. In VCF 5.2, external storage like FC is supported via supplemental storage for VI Workload Domains, but it's a deviation from the default architecture, making it a constraint imposed by the environment. Documenting it as such ensures it's accounted for in planning and implementation.
Option C: As a design decision
A design decision is a deliberate choice made by the architect to meet requirements (e.g., "We will use FC storage over iSCSI"). Here, the need for FC storage is a stakeholder-provided fact, not a choice the architect made. The decision to support FC storage might follow, but the initial discovery is a pre-existing condition, not the decision itself. Classifying it as a design decision skips the step of recognizing it as a design input, making this option incorrect.
Option D: As a business requirement
A business requirement defines what the organization needs to achieve (e.g., "Workloads must support 99.9% uptime"). While the FC storage need relates to workloads, it's a technical specification about how connectivity is achieved, not a high-level business goal. Business requirements typically originate from organizational objectives, not infrastructure details discovered in workshops. This option is too broad and misaligned with the technical nature of the information, making it incorrect.
Conclusion:
The need to connect workloads to an existing FC storage array is a constraint (Option B) because it limits the storage design options for the VI Workload Domains and reflects an existing environmental factor. In VCF 5.2, this would influence the architect to plan for Fibre Channel HBAs, external storage configuration, and compatibility with vSphere, documenting it as a constraint ensures these considerations are addressed.
Reference: VMware Cloud Foundation 5.2 Architecture and Deployment Guide (Section: VI Workload Domain Storage Options) VMware Cloud Foundation 5.2 Planning and Preparation Guide (Section: Design Constraints and Assumptions) vSphere 7.0U3 Storage Guide (integrated in VCF 5.2): External Storage Integration
NEW QUESTION # 31
Which Broadcom products are essential for improving data availability and resilience in VMware Cloud Foundation?
- A. Broadcom NVMe SSDs
- B. Broadcom Ethernet adapters
- C. Broadcom RAID controllers
- D. Broadcom Fibre Channel HBAs
Answer: C,D
Explanation:
Broadcom RAID controllers and Fibre Channel HBAs improve data availability and resilience in VMware Cloud Foundation.
NEW QUESTION # 32
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 amount of data loss that can be tolerated.
- B. It determines the minimum tolerable amount of time allowed before an application/service should be recovered to a usable state.
- C. It determines the maximum tolerable amount of time allowed before an application/service should be recovered to a usable state.
- D. It determines the maximum amount of data loss that can be tolerated.
Answer: C
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 # 33
An architect is planning the deployment of Aria components in a VMware Cloud Foundation environment using SDDC Manager and must prepare a logical diagram with networking connections for particular Aria products.
Which are two valid Application Virtual Networks for Aria Operations deployment using SDDC Manager? (Choose two.)
- A. X-Region - Overlay backed segment
- B. Region-A - Overlay backed segment
- C. X-Region - VLAN backed segment
- D. Region-A - VLAN backed segment
Answer: C,D
Explanation:
In VMware Cloud Foundation (VCF) 5.2, Aria Operations (formerly vRealize Operations) is deployed via SDDC Manager to monitor the environment. SDDC Manager automates the deployment of Aria components, including networking configuration, using Application Virtual Networks (AVNs). AVNs provide isolated network segments for management components. The question asks for valid AVNs for Aria Operations, which operates within the Management Domain.
Let's evaluate:
VCF Networking Context:
Region-Specific (Region-A): Refers to a single VCF instance or region, typically the Management Domain's scope.
Cross-Region (X-Region): Spans multiple regions or instances, used for components needing broader connectivity.
VLAN-backed: Traditional Layer 2 VLANs on physical switches, common for management traffic.
Overlay-backed: NSX-T virtual segments using Geneve encapsulation, used for flexibility and isolation.
Aria Operations Deployment:
Deployed in the Management Domain by SDDC Manager onto a single cluster.
Requires connectivity to vCenter, NSX, and ESXi hosts for monitoring, typically using management network segments.
SDDC Manager assigns Aria Operations to an AVN during deployment, favoring VLAN-backed segments for simplicity and compatibility with management traffic.
Evaluation:
Option A: Region-A - Overlay backed segment
Overlay segments (NSX-T) are supported in VCF for workload traffic or advanced isolation, but Aria Operations, as a management component, typically uses VLAN-backed segments for direct connectivity to other management services (e.g., vCenter, SDDC Manager). While technically possible, SDDC Manager defaults to VLANs for Aria deployments unless explicitly overridden, making this less standard and not a primary valid choice.
Option B: Region-A - VLAN backed segment
This is correct. A VLAN-backed segment in Region-A aligns with the Management Domain's networking, where Aria Operations resides. SDDC Manager uses VLANs (e.g., Management VLAN) for management components to ensure straightforward deployment and connectivity to vSphere/NSX. This is a valid and common AVN for Aria Operations in VCF 5.2.
Option C: X-Region - VLAN backed segment
This is correct. An X-Region VLAN-backed segment supports cross-region management traffic, which is valid if Aria Operations monitors multiple VCF instances or domains (e.g., Management and VI Workload Domains across regions). SDDC Manager supports this for broader visibility, making it a valid AVN, especially in multi-site designs.
Option D: X-Region - Overlay backed segment
Similar to Option A, overlay segments are feasible with NSX-T but less common for Aria Operations. X-Region overlay could theoretically work for multi-site monitoring, but SDDC Manager prioritizes VLANs for management simplicity and compatibility. This is not a default or primary valid choice.
Conclusion:
The two valid Application Virtual Networks for Aria Operations deployment using SDDC Manager are Region-A - VLAN backed segment (B) and X-Region - VLAN backed segment (C). These reflect VCF
5.2's standard use of VLANs for management components, supporting both local and cross-region monitoring scenarios.
Reference: VMware Cloud Foundation 5.2 Architecture and Deployment Guide (Section: Aria Operations Deployment) VMware Cloud Foundation 5.2 Planning and Preparation Guide (Section: Networking for Management Components) VMware Aria Operations 8.10 Documentation (integrated in VCF 5.2): Network Configuration
NEW QUESTION # 34
What strategies can improve VMware performance with Broadcom network adapters?
- A. Use RSS to balance network traffic
- B. Optimize network adapters for load balancing
- C. Enable Jumbo Frames
- D. Disable NIC offloading features
Answer: A,B,C
Explanation:
Jumbo Frames, RSS, and load balancing improve network performance in VMware environments.
NEW QUESTION # 35
What is the key consideration when selecting Broadcom hardware for a VMware environment requiring low-latency networking?
- A. Broadcom 25GbE Ethernet Adapter
- B. Broadcom NVMe SSD
- C. Broadcom 10GbE Ethernet Adapter
- D. Broadcom RAID Controller
Answer: A
Explanation:
The Broadcom 25GbE Ethernet Adapter is critical for achieving low-latency networking in a VMware environment.
NEW QUESTION # 36
Which Broadcom solutions are essential when installing VMware vSphere?
- A. VMware ESXi
- B. Broadcom 25GbE Ethernet Adapter
- C. vSAN
- D. Broadcom RAID Controller
Answer: B,C,D
Explanation:
Broadcom 25GbE Ethernet Adapters, RAID Controllers, and vSAN play key roles in VMware vSphere installation.
NEW QUESTION # 37
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