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VMware 3V0-21.23 考試大綱:
主題
簡介
主題 1
- VMware Products and Solutions: Targeting VMware Engineers, this section describes VMware Cloud Foundation architecture, its components like vSphere and NSX, benefits such as automation and scalability, and use cases like hybrid cloud environments. It assesses understanding of VMware Validated Solutions.
主題 2
- Plan and Design the VMware Solution: This part targets Solution Designers, evaluating their ability to gather business objectives, create conceptual models based on these objectives, develop logical designs, and translate them into physical designs that meet specific requirements like manageability or security.
主題 3
- IT Architectures, Technologies, Standards: This section of the exam measures the skills of IT Architects and covers differentiating between business and technical requirements, as well as conceptual, logical, and physical design. A key skill measured is "Designing System Availability."
3V0-21.23題庫資訊 - 3V0-21.23考試題庫
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最新的 VCAP-DCV Design 3V0-21.23 免費考試真題 (Q33-Q38):
問題 #33
An architect is responsible for extending the hosting design for a customer. The customer has a mission- critical 3-node application which is load balanced in an active/active/passive configuration. The application administrator requests that the virtual infrastructure team be responsible for maintaining platform level availability. An organizational policy exists to mandate the highest possible availability for mission-critical applications.
Based on the resource requirements, the architect has made the following design decision:
The target vSphere cluster contains three VMware ESXi host servers
A combination of which additional four physical design decisions should the architect make to maximize availability of the application? (Choose four.)
- A. The solution will create a virtual machine DRS group that contains all of the critical application workloads.
- B. The solution will create a VM-VM Affinity rule to keep virtual machines together.
- C. The solution will enable vSphere High Availability (HA) with restart priority set to "Highest" for the application virtual machines.
- D. The solution will create a VM-VM Affinity rule to keep virtual machines separate.
- E. The solution will create a host DRS group containing all hosts within the cluster.
- F. The solution will create a VM-Host Affinity rule that specifies that workloads must run on hosts in a group.
- G. The solution will enable vSphere Fault Tolerance with vSphere High Availability (HA) virtual machine component failure enabled.
答案:A,C,F,G
解題說明:
The solution will create a VM-Host Affinity rule that specifies that workloads must run on hosts in a group.
Creating a VM-Host Affinity rule ensures that specific workloads are restricted to certain hosts, which can be useful to avoid placing critical applications on hosts that may not meet their availability requirements.
The solution will enable vSphere High Availability (HA) with restart priority set to "Highest" for the application virtual machines.
Enabling vSphere HA ensures that virtual machines are automatically restarted on other hosts in the event of a host failure. Setting the restart priority to "Highest" for mission-critical VMs ensures that these VMs will have the highest priority for restart if any issues arise.
The solution will enable vSphere Fault Tolerance with vSphere High Availability (HA) virtual machine component failure enabled.
Enabling vSphere Fault Tolerance (FT) ensures that the application VMs are fully protected by creating a live shadow VM that runs in lockstep with the primary VM. In the event of a host failure, the shadow VM will take over instantly, providing continuous availability for the application.
The solution will create a virtual machine DRS group that contains all of the critical application workloads.
Creating a virtual machine DRS (Distributed Resource Scheduler) group for critical workloads ensures that these VMs are placed and migrated to the optimal hosts based on the cluster's resource requirements, improving availability and performance.
問題 #34
An architect is reviewing the information gathered from an initial requirements gathering workshop.
The following requirements have been identified:
REQ001 - The architecture must support tracking of administrative logons and actions.
REQ002 - The architecture must support class three (three nines or 99.9%) system availability.
REQ003 - The architecture must report on system usage in terms of CPU, memory, storage and network.
REQ004 - The architecture must provide for system recovery point objective (RPO) of two hours.
REQ005 - The architecture must provide access to a precision time protocol (PTP) for time synchronization.
Which two of the listed requirements would be classified as business (formerly functional) requirements?
(Choose two.)
- A. The architecture must provide access to a precision time protocol (PTP) for time synchronization.
- B. The architecture must support tracking of administrative logons and actions.
- C. The architecture must provide for system recovery point objective (RPO) of two hours.
- D. The architecture must support class three (Three nines or 99.9%) system availability.
- E. The architecture must report on system usage in terms of CPU, memory, storage and network.
答案:C,D
解題說明:
The architecture must support class three (three nines or 99.9%) system availability.
This requirement focuses on the availability of the system, which is a business goal related to ensuring that the system is operational for a specified percentage of time (99.9% uptime). It is a high-level operational requirement that is tied to business continuity and meeting customer service expectations.
The architecture must provide for system recovery point objective (RPO) of two hours.
The RPO is a business requirement related to disaster recovery. It specifies how much data loss is acceptable in the event of a failure. This requirement ensures that business processes are protected by minimizing the potential impact of data loss, making it a key business consideration.
問題 #35
An architect is responsible for designing a new vSphere-based solution to meet the following customer requirements:
The solution must support component-level redundancy.
The solution must support physical segregation of management and workload traffic.
Any traffic from virtual infrastructure-level operations (such as migrations of workloads between hosts within a cluster) must not impact any workload.
The solution should react to any substantial impact of physical network traffic to ensure workload traffic is unaffected.
In response to this requirement, the architect makes the following logical design decisions:
The solution will separate vSphere management traffic from all other network traffic.
The solution will ensure that all replication and vMotion traffic will be separated from all other traffic.
The solution will separate workload traffic from all other network traffic.
The customer has a hardware standard for physical VMware ESXi host servers that includes 6 x 10 GbE network.
Which three physical design decisions should the architect make to meet the requirements? (Choose three.)
- A. The solution will configure the Route Based on Physical NIC Load load balancing method.
- B. The solution will deploy three (3) vSphere standard switches each with a single uplink port group.
- C. The solution will configure the Route Based on Source MAC Hash load balancing method.
- D. The solution will configure the six (6) available network connections into load balanced pairs.
- E. The solution will configure the six (6) available network connections into a single load balanced group.
- F. The solution will deploy a vSphere distributed switch with three (3) uplink port groups.
答案:A,D,F
解題說明:
The solution will configure the six (6) available network connections into load balanced pairs.
Configuring the six network connections into load-balanced pairs ensures that network traffic is distributed efficiently across the available physical NICs, providing redundancy and preventing any single network adapter from becoming a bottleneck. This aligns with the requirement to separate and balance traffic types, ensuring that no single network adapter is overloaded.
The solution will deploy a vSphere distributed switch with three (3) uplink port groups.
Using a vSphere Distributed Switch with three uplink port groups provides a clean separation of traffic types (management, replication, vMotion, and workload traffic). The distributed switch allows for better scalability, visibility, and management of network traffic in a multi-NIC setup, meeting the need to segregate network traffic and ensure redundancy at the switch level.
The solution will configure the Route Based on Physical NIC Load load balancing method.
The Route Based on Physical NIC Load load balancing method distributes traffic based on the current load of each physical NIC, ensuring that network traffic is balanced efficiently across all available NICs. This helps maintain optimal performance and ensures that one NIC is not overwhelmed by traffic from different types of network operations.
問題 #36
An architect is working on a new VMware vSphere design and notes the following information during interviews with stakeholders:
The company has previously worked with multiple VMware partners
The company has an internal security policy that is referenced in long running contracts The company has an Enterprise License Agreement (ELA) with VMware The company has a multi-year cloud subscription agreement Which of these is a business factor that will impact this design?
- A. The company has previously worked with multiple VMware partners.
- B. The company has an Enterprise License Agreement (ELA) with VMware.
- C. The company has a multi-year cloud subscription agreement.
- D. The company has an internal security policy that is referenced in long running contracts.
答案:D
解題說明:
Based on VMware vSphere 8.x Advanced documentation and standard IT architecture practices, the architect is designing a new VMware vSphere solution and must identify a business factor that will impact the design.
A business factor is a high-level organizational or strategic consideration that influences the design, typically related to goals, policies, financial constraints, or contractual obligations, as opposed to technical or operational details.
Requirements Analysis:
* Business factor: This refers to a non-technical, strategic element that shapes the vSphere design, such as corporate policies, financial agreements, or business objectives. It impacts decisions like security, compliance, licensing, or integration with existing strategies.
* Provided information:
* The company has worked with multiple VMware partners (historical vendor relationships).
* The company has an internal security policy referenced in long-running contracts (compliance and security obligations).
* The company has an Enterprise License Agreement (ELA) with VMware (licensing and cost structure).
* The company has a multi-year cloud subscription agreement (cloud strategy alignment).
Evaluation of Options:
* A. The company has previously worked with multiple VMware partners:
* Why incorrect: While prior partnerships with VMware partners may influence vendor selection or implementation expertise, this is a historical operational detail, not a strategic business factor.
It does not directly impact the design's architecture, such as security, licensing, or workload placement, unless explicitly tied to ongoing obligations (not indicated here).: VMware vSphere 8 design principles focus on business factors like policies or agreements, not past vendor relationships.
B: The company has an Enterprise License Agreement (ELA) with VMware:
Why incorrect: An ELA with VMware is a financial and licensing agreement that provides access to VMware products at a negotiated rate. While it influences cost and licensing choices (e.g., vSphere Enterprise Plus vs. Standard), it is a contractual enabler rather than a primary business driver shaping the design's architecture. The ELA ensures access to features but does not dictate specific design decisions like security or workload isolation.
Reference: VMware vSphere 8 documentation notes ELAs as cost-related considerations, secondary to strategic business factors like compliance.
C: The company has an internal security policy that is referenced in long running contracts:
Why correct: An internal security policy referenced in long-running contracts is a business factor because it represents a strategic, organizational requirement that directly impacts the vSphere design. Such policies typically mandate specific security controls (e.g., encryption, access controls, auditing) or compliance standards (e.g., GDPR, HIPAA) that must be incorporated into the architecture. Long-running contracts suggest external obligations (e.g., with customers or regulators), making compliance a critical business driver.
The design must align with these policies to ensure legal and contractual adherence, affecting decisions like VM encryption, network segmentation, or logging.
Reference: VMware vSphere 8 design best practices emphasize incorporating corporate security policies as business factors to ensure compliance and alignment with contractual obligations.
D: The company has a multi-year cloud subscription agreement:
Why incorrect: A multi-year cloud subscription agreement indicates a strategic commitment to cloud services (e.g., VMware Cloud on AWS or another provider). While this could influence hybrid cloud integration, it is a secondary consideration compared to the security policy, as it does not directly mandate specific design requirements for the on-premises vSphere solution. The agreement may suggest future cloud migration but does not inherently impact the current vSphere design's architecture.
Reference: VMware vSphere 8 documentation considers cloud strategies as business factors, but security policies take precedence when tied to contractual obligations.
Why C is the Best Choice:
Strategic impact: The internal security policy, especially when referenced in long-running contracts, is a critical business factor that drives design decisions to ensure compliance, security, and contractual adherence.
It may require specific vSphere features like VM Encryption, NSX firewalls, or audit logging.
Contractual obligations: Long-running contracts imply external commitments (e.g., to clients or regulators), elevating the policy's importance as a business driver over licensing (B) or cloud agreements (D).
Design influence: Security policies directly affect the vSphere architecture, influencing choices like network segmentation, encryption, access controls, and monitoring, making them a primary business factor.
Example Design Implications:
Security Policy Requirements: The policy may mandate data-at-rest encryption, prompting the use of vSphere VM Encryption or vSAN encryption.
Compliance: Contracts may require audit trails, leading to integration with VMware Aria Operations for logging or NSX for micro-segmentation.
Isolation: The policy may enforce workload isolation, influencing cluster design or NSX network policies.
問題 #37
An architect is designing the access management component of a vSphere-based solution. During a requirements gathering workshop, the customer states that the architecture must use a centralized user authentication solution.
The architect decides that an Open Lightweight Directory Access Protocol (OpenLDAP) solution would meet the requirement. The security team intervenes and requires that the solution use the corporate Active Directory Domain Services solution.
At which point did the architect's design become constrained?
- A. When the architect made the design decision to use an OpenLDAP solution for user authentication.
- B. When the customer provided the requirement for the use a centralized user authentication solution.
- C. When the customer required the use of the corporate Active Directory Domain Services solution.
- D. When the architect finished documenting all of the requirements.
答案:C
解題說明:
The design became constrained when the customer required the use of the corporate Active Directory Domain Services (AD DS) solution. The security team's intervention and insistence on using the corporate Active Directory effectively limited the options available for the authentication solution, as OpenLDAP was no longer a valid choice. At this point, the solution's scope was restricted to ensure compatibility with the customer's existing Active Directory infrastructure, which imposed a specific requirement on the design.
問題 #38
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