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VMware 3V0-21.23 Exam Syllabus Topics:
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VMware vSphere 8.x Advanced Design Sample Questions (Q60-Q65):
NEW QUESTION # 60
In a meeting to discuss the minimum viable product (MVP) deployment of a new customer-facing application, the key stakeholder shares details of the application components and the application administrators share details of performance and integrity tests for the application.
The application will be made up of the following components:
- A web server Steps to confirm the web server is operating correctly will take 15 minutes after the application server is online.
- An application server Steps to confirm application server integrity will take 15 minutes after the database is online.
- A database server The database server will be managed by a database administrator, with an agreed service-level agreement (SLA) to restore and validate database services within one hour.
The existing VMware infrastructure offers a recovery point objective (RPO) of 5 minutes and recovery time objective (RTO) of 15 minutes through a combination of backups and replication.
In the event of an outage impacting all three application components, how long will it take for the application to recover and complete all checks?
- A. 105 minutes
- B. 60 minutes
- C. 15 minutes
- D. 90 minutes
Answer: A
NEW QUESTION # 61
An architect is tasked with updating the design of an existing vSphere-based solution for a pharmaceuticals customer. The update will include upgrade to VMware vCenter 8 and VMware vSphere 8 and the creation of a new cluster that will be used for ongoing research projects. The research project that is driving the need for an update includes a number of applications that are latency-sensitive.
The customer has confirmed the following information during the initial workshop:
The customer recently completed a right sizing exercise using VMware Aria Operations that resulted in a number of ESXi hosts becoming available for use.
Each of the VMware ESXi host servers is configured with:
-- 2 x 20-core Intel Xeon CPU sockets
-- 1024 GB RAM divided evenly between sockets
There is no additional budget for purchasing hardware.
After confirming the existing hardware is still listed on the VMware Hardware Compatibility List (HCL), the architect makes the following design decisions with regard to the workload design:
The solution will support a maximum of 20 combined cores and sockets per virtual machine.
The solution will support a maximum of 512 GB RAM per virtual machine.
What should the architect document as justification for these design decisions?
- A. The maximum supported configuration will ensure the virtual machines will adhere to a single Non- Uniform Memory Access (NUMA) node boundary.
- B. The maximum supported configuration will allow the creation of virtual machines that cross NUMA node boundaries resulting in improved overall performance.
- C. The maximum supported configuration will ensure each virtual machine will exclusively consume a whole CPU socket.
- D. The maximum supported configuration will ensure efficient use of RAM by sharing memory pages between virtual machines.
Answer: A
Explanation:
NUMA (Non-Uniform Memory Access) is a system architecture in which a multiprocessor system is divided into multiple memory nodes. Each NUMA node typically has its own local memory that is faster to access than remote memory from other nodes.
In this case, each ESXi host has two CPU sockets (each with 20 cores) and 1024 GB of RAM divided evenly between the two sockets, meaning there are two NUMA nodes in each host.
By limiting the virtual machine to a maximum of 20 cores and sockets per virtual machine, and 512 GB of RAM, this ensures that each virtual machine will fit within a single NUMA node, preventing the virtual machine from crossing NUMA node boundaries. This design helps maintain better memory access performance and avoids potential performance degradation that can occur when a VM accesses memory across NUMA nodes.
NEW QUESTION # 62
An architect is designing a VMware solution for a customer based on the following information:
- The solution must use investments in existing storage array that supports both block and file storage.
- The solution must support the ability to migrate workloads between hosts within a cluster.
- The solution must support resource management priorities.
- The solution must support the ability to connect virtual machines directly to LUNs.
- The solution should use existing IPv4 based network infrastructure.
- There is no budget for additional physical hardware.
Which two design decisions could the architect make to meet these requirements- (Choose two.)
- A. The ESXi hosts will leverage NFS 4.1
- B. The ESXi hosts will leverage iSCSI
- C. The ESXi hosts will leverage Fibre Channel (FC)
- D. The ESXi hosts will leverage Fibre Channel over Ethernet (FCoE)
- E. The ESXi hosts will leverage NFS 3
Answer: B,E
Explanation:
FC is not IP
NFS4.1 does not support I/O control
https://docs.vmware.com/en/VMware-vSphere/7.0/com.vmware.vsphere.storage.doc/GUID-
8A929FE4-1207-4CC5-A086-7016D73C328F.html
Starting from vSphere 7.0, VMware no longer supports software FCoE in production environments.
https://docs.vmware.com/en/VMware-vSphere/7.0/com.vmware.vsphere.storage.doc/GUID-
6B49866F-7005-4099-84AC-4FB2A1A91F64.html
NEW QUESTION # 63
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 deploy a vSphere distributed switch with three (3) uplink port groups.
- B. The solution will configure the six (6) available network connections into a single load balanced group.
- C. The solution will configure the six (6) available network connections into load balanced pairs.
- D. The solution will configure the Route Based on Physical NIC Load load balancing method.
- E. The solution will configure the Route Based on Source MAC Hash load balancing method.
- F. The solution will deploy three (3) vSphere standard switches each with a single uplink port group.
Answer: A,C,D
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 # 64
An architect will be taking over control of a former Linux server fleet and repurposing the hardware into a new vSphere cluster. The current environment is already connected to the network but the hosts do not have any local disks. Since the fleet hardware is uniform, the architect can use a single ESXi image.
All hosts within the cluster have the same CPU and memory capacity.
Which ESXi deployment method should the architect use?
- A. Stateless cached vSphere Auto Deploy
- B. Stateless vSphere Auto Deploy
- C. Manual install of each ESXi host with an image from USB
- D. Stateful vSphere Auto Deploy
Answer: B
NEW QUESTION # 65
......
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