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This product is enough to get ready for the 3V0-21.23 test on the first attempt. Three formats are easy to use and meet the needs of every VMware vSphere 8.x Advanced Design (3V0-21.23) test applicant. The VMware 3V0-21.23 practice material's three formats are Desktop practice test software, web-based practice exam, and PDF.
VMware vSphere 8.x Advanced Design Sample Questions (Q122-Q127):
NEW QUESTION # 122
An architect is tasked with expanding an existing VMware software-defined data center (SDDC) solution so that it can be used to deliver a virtual desktop infrastructure (VDI) service off-shore development activities.
The production environment is currently delivered across two geographically dispersed data centers. The two data centers are currently connected to each other through multiple diversely routed, high bandwidth and low latency links. The current operations management components are deployed to a dedicated management cluster that is configured with N+1 redundancy. The current VMware software-defined data center (SDDC) has a monthly availability target of 99.5%, which includes all management components.
The customer requires that the new solution scale to support the concurrent running of 500 persistent virtual desktops. The virtual desktops must not share the same virtual infrastructure as existing virtual machines, but can be managed using the same VMware operations management components. Any new VDI service management components must be installed into the management cluster. There is no requirement to back up the virtual desktops because all relevant user data is stored centrally. The VDI service is providing business critical services and must have an availability target of 99.9%.
Given the information from the customer, which two assumptions would the architect include in the design- (Choose two.)
Answer: D,E
NEW QUESTION # 123
Which feature enables live migration of a running virtual machine from one ESXi host to another with zero downtime?
Answer: A
NEW QUESTION # 124
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?
Answer: D
Explanation:
Array-based encryption provides the same benefits as SEDs (self-encrypting drives), in that the drive shows no readable data once it is removed from the array. That means drives don't need to be physically destroyed when they are removed, which brings cost, security and environmental benefits.
NEW QUESTION # 125
An architect is tasked with expanding an existing VMware software-defined data center (SDDC) solution so that it can be used to deliver a virtual desktop infrastructure (VDI) service off-shore development activities.
The production environment is currently delivered across two geographically dispersed data centers. The two data centers are currently connected to each other through multiple diversely routed, high bandwidth and low latency links.
The current operations management components are deployed to a dedicated management cluster that is configured with N+1 redundancy. The current VMware software-defined data center (SDDC) has a monthly availability target of 99.5%, which includes all management components.
The customer requires that the new solution scale to support the concurrent running of 500 persistent virtual desktops. The virtual desktops must not share the same virtual infrastructure as existing virtual machines, but can be managed using the same VMware operations management components.
Any new VDI service management components must be installed into the management cluster. There is no requirement to back up the virtual desktops because all relevant user data is stored centrally. The VDI service is providing business critical services and must have an availability target of 99.9%.
Given the information from the customer, which two assumptions would the architect include in the design? (Choose two.)
Answer: D,E
NEW QUESTION # 126
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.)
Answer: A,B,F
Explanation:
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.
NEW QUESTION # 127
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