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3V0-21.23 aktueller Test, Test VCE-Dumps für VMware vSphere 8.x Advanced Design
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VMware 3V0-21.23 Prüfungsplan:| Thema | Einzelheiten | | Thema 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.
| | Thema 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.
| | Thema 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."
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Neueste VMware vSphere 8.x Advanced Design Prüfung pdf & 3V0-21.23 Prüfung TorrentUnser It-Pruefung bietet erstklassige Informationsressourcen zur IT-Zertifizierung. In It-Pruefung können Sie die Lernhilfe sowie Lernmaterialien finden. Die Fragenkataloge zur VMware 3V0-21.23 Prüfung von It-Pruefung werden von den IT-Fachleuten langfristig nach ihren Erfahrungen und Kenntnissen bearbeitet. Unsere Fragenkataloge haben eine hohe Genauigkeit und starke Logik. Benutzen Sie beruhigt unsere Fragenkataloge zur VMware 3V0-21.23 Zertifizierung von It-Pruefung. Sie können sich ganz gut auf Ihre 3V0-21.23 Prüfung vorbereiten.
VMware vSphere 8.x Advanced Design 3V0-21.23 Prüfungsfragen mit Lösungen (Q14-Q19):14. Frage
An architect is designing a solution for an environment with a limited number of operating system licenses.
How should the architect design the virtual infrastructure to meet the operating system license requirements?
- A. Use standalone ESXi hosts and only apply the operating system licenses to those hosts.
- B. Create a resource pool and only put the virtual machines that need the operating system licenses within the pool.
- C. Place the hosts into a single cluster and enable automated placement of virtual machines.
- D. Create rules to restrict placement of virtual machines to specified hosts.
Antwort: D
15. Frage
Which type of requirements describe specific tasks or operations that a system must perform?
- A. SLA requirements
- B. Functional requirements
- C. Performance requirements
- D. Capacity requirements
Antwort: B
16. Frage
An architect is responsible for the lifecycle management design for a brownfield vSphere-based solution.
The following information has been provided during initial meetings around the new solution:
Existing heterogeneous server hardware will be used to provide the hosting platform.
The available hardware is:
- 10 servers that contain 2 x 20-Core Intel Xeon processors and 512 GB RAM from Vendor A
- 10 servers that contain 2 x 24-Core Intel Xeon processors and 768 GB RAM from Vendor A
- 20 servers that contain 2 x 16-Core AMD EPYC processors and 512 GB RAM from Vendor B
- 10 servers that contain 1 x 24-Core AMD EPYC processors and 256 GB RAM from Vendor B All of the hardware is currently listed on the VMware Hardware Compatibility List (HCL).
All existing server hardware has 36 months vendor support remaining.
The requirements from the customer are:
REQ001 - The solution must support the hosting of 5,000 workloads spread across two physical sites.
REQ002 - The solution should minimize the number of clusters.
REQ003 - The solution must ensure that there is no impact to service when completing upgrades.
Given the resource requirements needed for the solution, the architect has calculated that all of the existing servers will be required to provide sufficient resources for the new environment. The Intel-based (Vendor A) servers will be deployed to the primary site and both the Intel-based and AMD-based servers (Vendor B) will be deployed to the secondary site.
Which assumption should the architect make to support the lifecycle management of vSphere 8?
- A. The different processor architectures across both sites will remediate against a shared vSphere Lifecycle Manager baseline.
- B. The different processor architecture within a single site will remediate against a single vSphere Lifecycle Manager image.
- C. The different processor architectures will be located in the same cluster to support vSphere Lifecycle Manager image-based remediation.
- D. The different processor architectures across both sites will remediate against a single vSphere Lifecycle Manager image.
Antwort: B
Begründung:
vSphere Lifecycle Manager (vLCM) is used to manage ESXi host configurations and software versions in a consistent and streamlined manner. In this case, the architect needs to account for the heterogeneous hardware across two sites (Intel and AMD-based servers).
Since Intel and AMD processors are incompatible for remediation with a single vSphere Lifecycle Manager image, the different processor architectures should be grouped by site (not across sites). Within each site, vLCM can manage a single image per processor architecture, ensuring that each site'shosts with compatible processors are remediated consistently. Intel-based servers will be managed with one image and AMD-based servers with another image, but they can be managed in separate sites.
This approach avoids the issue where heterogeneous hardware with different processor types would need separate images. By keeping them within the same site, the architecture simplifies the lifecycle management and meets the requirement for minimizing clusters and ensuring service availability during upgrades.
17. Frage
What does the term "Recoverability" refer to in the AMPRSS framework?
- A. The process of restoring data and services after a failure.
- B. Ensuring that only authorized users can access the system.
- C. Monitoring and managing the system's resources efficiently.
- D. The ability of the system to withstand increased user demands.
Antwort: A
18. Frage
An architect is creating the design for a vSphere platform that will be used as the target for a migration from multiple legacy vSphere platforms that are being decommissioned. The customer has provided the following information:
Each legacy platform has its own set of virtual machine templates stored in OVF format.
All of the templates need to be migrated to the new platform.
After migration, the templates should be centralized into a single location.
The templates must be accessible to all clusters in the new platform vCenter instance.
Any new templates added to the central location must be automatically available to all clusters.
Administrators must be able to deploy new virtual machines directly from the template instances.
The customer also confirmed that after the migrations are complete, the new platform will be the only vSphere solution available.
Which design choice should the architect evaluate in the logical design for the storage and management of virtual machine templates?
- A. Use a dedicated datastore on each vSphere cluster
- B. Use a local content library
- C. Use a subscribed content library
- D. Use a shared datastore on each vSphere cluster
Antwort: B
Begründung:
Based on VMware vSphere 8.x Advanced documentation, the architect is designing a vSphere platform as the target for migrating virtual machine templates from multiple legacy vSphere platforms. The customer requirements specify that templates (stored in OVF format) must be migrated, centralized in a single location, accessible to all clusters in the new vCenter instance, automatically available to all clusters when new templates are added, and support direct VM deployment. The new platform will be the only vSphere solution after migration. The architect must evaluate the best design choice for the storage and management of these templates in the logical design.
Requirements Analysis:
* Migrate templates from legacy platforms: All OVF templates from multiple legacy vSphere platforms must be migrated to the new platform.
* Centralized in a single location: Templates must be stored and managed in one central repository.
* Accessible to all clusters in the new vCenter instance: All clusters managed by the new vCenter must have access to the templates.
* New templates automatically available to all clusters: Adding a new template to the central location should make it instantly accessible to all clusters without manual propagation.
* Direct VM deployment from templates: Administrators must be able to deploy VMs directly from the template instances.
* Single vSphere platform post-migration: The new platform will be the only vSphere environment, implying a single vCenter instance managing all clusters.
* Logical design: The focus is on the high-level approach to template storage and management, not specific implementation details (e.g., storage type or hardware).
Evaluation of Options:
* A. Use a dedicated datastore on each vSphere cluster:
* Why incorrect: Storing templates on a dedicated datastore per cluster creates multiple storage locations, violating the requirement for a centralized single location. Each cluster would have its own templates, requiring manual replication to ensure consistency across clusters. This approach does not support automatic availability of new templates to all clusters and complicates management, as administrators would need to access each datastore separately for deployment.: VMware vSphere 8 documentation notes that datastores are cluster-specific storage, not centralized repositories for templates.
B: Use a shared datastore on each vSphere cluster:
Why incorrect: While a shared datastore accessible to all clusters could centralize template storage, this approach still requires manual management of templates (e.g., copying OVF files to each cluster's datastore).
It does not provide a unified management interface or automatic propagation of new templates to all clusters.
Deploying VMs from templates stored on shared datastores is possible but less streamlined than using a content library, which is designed specifically for template management.
Reference: VMware vSphere 8 supports shared datastores, but they lack the automation and management features of content libraries.
C: Use a subscribed content library:
Why incorrect: A subscribed content library is synchronized with a published content library, typically used for distributing templates across multiple vCenter instances or environments. Since the new platform is the only vSphere solution with a single vCenter instance, a subscribed content library is unnecessary and introduces complexity. Subscribed libraries are designed for scenarios where content is managed centrally but consumed by separate vCenter instances, which does not apply here. A local content library is simpler and sufficient for a single vCenter environment.
Reference: VMware vSphere 8 documentation describes subscribed content libraries for cross-vCenter template sharing, not single-vCenter centralization.
D: Use a local content library:
Why correct: A local content library in vSphere 8 is a centralized repository managed by a single vCenter instance, ideal for storing and managing VM templates (including OVF files) in one location. It meets all requirements:
Migration: OVF templates from legacy platforms can be imported into the local content library.
Centralized location: The library is a single, unified repository accessible via vCenter.
Accessible to all clusters: All clusters managed by the vCenter instance can access the content library, as it is integrated with vCenter's management interface.
Automatic availability: New templates added to the local content library are instantly available to all clusters without manual propagation, as the library is centrally managed.
Direct VM deployment: Administrators can deploy VMs directly from templates in the content library using vCenter's UI or APIs.
Single platform: A local content library is designed for a single vCenter environment, aligning with the post- migration scenario where only one vSphere platform exists.
Reference: VMware vSphere 8 documentation highlights content libraries as the recommended solution for centralized template management, supporting OVF imports, VM deployment, and automatic accessibility across clusters.
Why D is the Best Choice:
Centralization: A local content library provides a single, centralized repository for all templates, streamlining management and migration from legacy platforms.
Automation: New templates added to the library are automatically available to all clusters managed by the vCenter instance, meeting the requirement for instant accessibility.
Ease of deployment: The content library integrates with vCenter, allowing administrators to deploy VMs directly from templates with a standardized process.
Single vCenter alignment: As the new platform uses a single vCenter instance, a local content library is the simplest and most efficient solution, avoiding the complexity of subscribed libraries designed for multi- vCenter environments.
VMware best practices: Content libraries are VMware's recommended approach for template management in vSphere 8, supporting OVF formats and centralized administration.
Example Implementation:
Content Library Creation: Create a local content library in the new vCenter instance, stored on a shared datastore accessible to all clusters.
Template Migration: Import OVF templates from legacy platforms into the local content library using vCenter's import functionality.
Access Configuration: Ensure all clusters in the vCenter instance have access to the content library (automatic by default).
Template Management: Add new templates to the library as needed, which are instantly available to all clusters for VM deployment.
Deployment: Administrators use vCenter's UI or APIs to deploy VMs from the content library templates, selecting the target cluster and datastore.
Clarification on C vs. D:
A subscribed content library (C) is designed for scenarios with multiple vCenter instances or external content sources, which does not apply here, as the new platform uses a single vCenter. A local content library (D) is the correct choice for a single-vCenter environment, providing all required functionality without unnecessary complexity.
19. Frage
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