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VMware vSphere 8.x Advanced Design Sample Questions (Q33-Q38):
NEW QUESTION # 33
A new vSphere platform is being created. The platform will host virtual machines that will run management services and line-of-business applications.
What should the architect consider when designing the number and type of clusters required?
- A. Auditing requirements for the virtual machines
- B. The level of isolation required between virtual machine classifications
- C. Predicted platform growth
- D. Maximum tolerable downtime
Answer: B
Explanation:
Since question is based upon number and types of cluster required.
NEW QUESTION # 34
What is the primary focus of "Availability" in the AMPRSS framework?
- A. Optimizing the system's performance and responsiveness.
- B. Ensuring data is accurate and consistent across the system.
- C. Maximizing the system's uptime and minimizing downtime.
- D. Preventing unauthorized access and data breaches.
Answer: C
NEW QUESTION # 35
An architect is designing a new vSphere-based solution for a customer.
During a requirements gathering workshop, the following information is provided:
The solutions must provide a recovery point objective (RPO) of 15 minutes.
The solution must have a primary and secondary site.
The solution must support orchestration to address application dependencies.
Which two solutions should the architect include in the design to meet these requirements? (Choose two.)
- A. vSphere Fault Tolerance
- B. vSphere HA
- C. vSAN stretched cluster
- D. vSphere Replication
- E. Site Recovery Manager
Answer: D,E
Explanation:
Based on VMware vSphere 8.x Advanced documentation, the architect is designing a vSphere-based solution to meet three specific requirements: a recovery point objective (RPO) of 15 minutes, a primary and secondary site, and support for orchestration to address application dependencies. The solution must include two VMware technologies that collectively satisfy these requirements.
Requirements Analysis:
* Recovery Point Objective (RPO) of 15 minutes: The solution must ensure that no more than 15 minutes of data is lost in a disaster, requiring frequent data replication or synchronization between sites.
* Primary and secondary site: The solution must support a disaster recovery (DR) architecture with two distinct sites, implying replication or failover capabilities between them.
* Orchestration to address application dependencies: The solution must provide automated recovery workflows to manage the startup order and dependencies of multi-tier applications (e.g., ensuring a database starts before an application server).
Evaluation of Options:
* A. vSAN stretched cluster:
* Why incorrect: A vSAN stretched cluster provides high availability and disaster recovery by synchronously replicating data across two sites, achieving near-zero RPO and RTO. However, it is designed for high-availability scenarios within a single vSphere cluster spanning sites, not traditional DR with orchestration. vSAN stretched clusters do not natively provide orchestration for application dependencies (e.g., automated recovery plans or startup order), which is a key requirement. Additionally, stretched clusters require low-latency, high-bandwidth connections (typically <5ms RTT), which is not guaranteed in the provided information. This option does not fully meet the orchestration requirement.
* B. vSphere HA:
* Why incorrect: vSphere High Availability (HA) provides automatic VM restarts within a cluster in case of host failures, but it operates within a single site and does not support replication or failover between primary and secondary sites. vSphere HA does not address the 15-minute RPO requirement, as it does not replicate data, nor does itprovide orchestration for application dependencies across sites. This option is unsuitable for a multi-site DR scenario.
* C. Site Recovery Manager:
* Why correct: VMware Site Recovery Manager (SRM) is a disaster recovery solution designed for automated failover and failback between primary and secondary sites. SRM supports orchestration of recovery plans, allowing the architect to define the startup order and dependencies of multi-tier applications (e.g., starting a database before an application server).
When paired with vSphere Replication, SRM can achieve an RPO of 15 minutes by orchestrating the failover of replicated VMs. SRM meets the requirements for primary/secondary site support, orchestration for application dependencies, and integration with replication technologies to achieve the required RPO.: VMware vSphere 8 documentation highlights SRM for automated DR orchestration, supporting recovery plans and integration with vSphere Replication for site-to-site failover.
D: vSphere Fault Tolerance:
Why incorrect: vSphere Fault Tolerance (FT) provides continuous availability by maintaining a live secondary VM on another host within the same site, with zero RPO and RTO for host failures. However, FT is not designed for multi-site disaster recovery, as it operates within a single cluster and does not replicate data between sites. FT also lacks orchestration capabilities for application dependencies and is resource- intensive, unsuitable for large-scale DR scenarios. This option does not meet the multi-site or orchestration requirements.
E: vSphere Replication:
Why correct: vSphere Replication is a hypervisor-based replication solution that asynchronously replicates VMs from a primary site to a secondary site, supporting an RPO as low as 15 minutes. It integrates with SRM to provide orchestrated recovery, ensuring application dependencies are addressed through SRM's recovery plans. vSphere Replication meets the 15-minute RPO requirement and supports the primary/secondary site architecture by enabling data replication. When used with SRM, it provides a complete DR solution.
Reference: VMware vSphere 8 documentation confirms vSphere Replication supports RPOs of 15 minutes or less and integrates with SRM for orchestrated recovery.
Why C and E are the Best Choices:
Site Recovery Manager (C): SRM provides the orchestration needed to manage application dependencies during failover, defining recovery plans that ensure the correct startup order for multi-tier applications. It automates DR processes between primary and secondary sites, meeting the multi-site requirement.
vSphere Replication (E): vSphere Replication ensures data is replicated between sites with an RPO of 15 minutes, meeting the data loss requirement. It works seamlessly with SRM to enable orchestrated failover, completing the DR solution.
Combined Solution: SRM and vSphere Replication together provide a comprehensive DR solution that addresses all requirements: 15-minute RPO, primary/secondary site support, and orchestration for application dependencies.
Why Not A, B, or D?
vSAN stretched cluster (A): While it supports near-zero RPO, it lacks native orchestration for application dependencies and assumes low-latency site connectivity, which is not specified.
vSphere HA (B): Limited to single-site host failure recovery, it does not support multi-site DR, replication, or orchestration.
vSphere Fault Tolerance (D): Designed for single-site, host-level availability, not multi-site DR or orchestration.
Example Implementation:
vSphere Replication: Configure replication for VMs from the primary site to the secondary site, setting an RPO of 15 minutes.
Site Recovery Manager: Deploy SRM at both sites, integrated with vSphere Replication. Create recovery plans specifying the startup order for applications (e.g., database VMs before application VMs) to address dependencies.
vCenter: Use a vCenter instance at each site to manage replication and recovery, with SRM orchestrating failover.
NEW QUESTION # 36
A customer requires the use of data encryption to ensure data is not accessible when a drive is removed from the primary storage platform. However, there is also a requirement to use deduplication and compression against all workloads in order to conserve space.
Which solution meets the customer requirements?
- A. Array-based encryption
- B. Encrypted backups
- C. Data-in-transit encryption
- D. OS-level encryption
Answer: A
NEW QUESTION # 37
An architect is tasked with designing a new vSphere environment for a customer. The new environment must:
Be standardized, repeatable, and consistent
Contain the same common heterogenous components that run from commercial hardware across an on- premises, edge, and broad hybrid cloud eco-system Provide intrinsic and intelligent security in every component from the hypervisor to the storage, networking, and management layers Which VMware solution will satisfy these requirements?
- A. VMware Cloud Foundation
- B. VMware Validated Design
- C. VMware Validated Solutions
- D. VMware
Answer: A
Explanation:
VMware Cloud Foundation is an integrated solution that provides a standardized, repeatable, and consistent architecture for deploying and managing a vSphere-based environment. It is designed to run on heterogeneous hardware across on-premises, edge, and hybrid cloud environments. VMware Cloud Foundation integrates compute, storage, and networking in a single solution, making it ideal for environments that span multiple locations, including edge and hybrid cloud ecosystems.
VMware Cloud Foundation includes intrinsic and intelligent security features across the entire stack - from the hypervisor to storage, networking, and management layers, which aligns with the customer's security requirements.
NEW QUESTION # 38
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