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VMware vSphere 8.x Advanced Design Sample Questions (Q43-Q48):

NEW QUESTION # 43
An architect is designing the virtual networking components of a vSphere-based solution that will provide an environment for the development of a new latency sensitive stock trading application.
The following information was identified within the initial meeting with the customer:
The customer has vCenter Standard and vSphere Standard licenses left over from a previous project.
The customer's CFO has approved budget for additional purchases, if required.
The following requirements were also identified during the meeting:
The solution must support 500 development workloads concurrently running in the secondary site.
The solution must support the ability to complete all vSphere Operational Management centrally.
The solution must ensure business-critical applications are not impacted by vSphere system-level operations.
Given the requirements, the architect has decided on a single 20-node cluster for development.
Which three additional design decisions should the architect make to meet these requirements? (Choose three.)

Answer: B,C,E

Explanation:
The solution will deploy VMware vSphere Enterprise Plus on all hosts within the cluster.
VMware vSphere Enterprise Plus offers advanced networking and storage features that will support the required high availability, performance, and management capabilities. Features such as Distributed Switches and Network I/O Control (NIOC) are critical to meeting the business-critical application and performance requirements for the latency-sensitive stock trading application.
The solution will deploy a single vSphere Distributed Switch with each host connected to it.
A vSphere Distributed Switch (VDS) is ideal for managing network configurations centrally across multiple hosts, which meets the requirement for centralized vSphere operational management. It also ensures consistent network configurations and simplifies network management at scale.
The solution will configure Network I/O control to ensure that system-level bandwidth does not impact workload network traffic.
Network I/O Control (NIOC) is essential for prioritizing network traffic, ensuring that latency-sensitive workloads are not impacted by other system-level or less critical traffic. This is crucial for the performance requirements of the stock trading application.


NEW QUESTION # 44
During the creation of a vSphere-based design solution, an architect identifies the following assumption:
The customer will be responsible for providing all licensing for the vSphere platform.
The storage hardware has sufficient capacity for future workload scale.
The data center offers sufficient power, cooling and rack space for workload scale.
When documenting each assumption within the design, which two corresponding pieces of information must the architect also define? (Choose two.)

Answer: A,D

Explanation:
The storage hardware may not have capacity for future workload scale:
While the assumption is that the storage hardware has sufficient capacity for future workload scale, it's important to acknowledge that there may be scenarios where the current storage capacity might not be sufficient. The architect must document this potential limitation as a risk to the design, ensuring that it is clear that the capacity assumption is not guaranteed.
Additional storage capacity can be procured to expand the solution in the future as needed:
This statement provides a mitigation strategy to address the assumption regarding storage capacity. If future scale requires more storage than initially provided, the design should include a strategy for procuring and integrating additional storage resources to meet demand as needed. This helps ensure scalability and adaptability in the future.


NEW QUESTION # 45
An architect is documenting the design for a new multi-site vSphere solution. The customer has informed the architect that the workloads hosted on the solution are managed by application teams who must perform a number of steps to return the application to service following a failover of the workloads to the secondary site.
These steps are defined as the Work Recovery Time (WRT). The customer has provided the architect with the following information about the workloads, including the recovery time objective (RTO) and recovery point objective (RPO):
Critical workloads have a WRT of 12 hours
Production workloads have a WRT of 24 hours
Development workloads have a WRT of 24 hours
All workloads have an RPO of 4 hours
Critical workloads have an RTO of 1 hour
Production workloads have an RTO of 12 hours
Development workloads have an RTO of 24 hours
The customer has also confirmed that production and development workloads are managed by the same team and the disaster recovery solution will not begin the recovery of the development workloads until all critical and production workloads have been recovered at the secondary site.
Which three statements would the architect document as the maximum tolerable downtime (MTD) for workloads within the design? (Choose three.)

Answer: A,B,D

Explanation:
Critical Workloads: 12 hours
For critical workloads, the recovery time objective (RTO) is 1 hour, and the work recovery time (WRT) is 12 hours. Since the customer can tolerate a maximum of 12 hours to restore these workloads after a disaster, the MTD for critical workloads is 12 hours.
Development Workloads: 24 hours
For development workloads, the RTO is 24 hours and the WRT is also 24 hours. Therefore, the MTD for development workloads is 24 hours because it is the maximum time that the customer can tolerate for these workloads to be unavailable.
Production Workloads: 24 hours
Production workloads have an RTO of 12 hours and a WRT of 24 hours. Since the disaster recovery solution waits for the recovery of critical and production workloads before recovering development workloads, the MTD for production workloads can be up to 24 hours, including the time to fully recover both critical and production workloads.


NEW QUESTION # 46
What does defining a workload cluster design objective involve?

Answer: A


NEW QUESTION # 47
When configuring a vSphere High Availability (HA) cluster, which network redundancy option is recommended to ensure the availability of HA functionality even during a single network link failure?

Answer: B


NEW QUESTION # 48
......

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