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100% Pass Fantastic 2V0-32.22 - Passing VMware Cloud Operations 8.x Professional Score
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VMware 2V0-32.22 Exam is part of the VMware Certified Professional (VCP) certification program, which is a globally recognized certification program for IT professionals. VMware Cloud Operations 8.x Professional certification program provides IT professionals with the skills, knowledge, and tools required to manage and operate VMware technologies.
2V0-32.22 Exam Questions - 2V0-32.22 Guide Torrent & 2V0-32.22 Test Torrent
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VMware 2V0-32.22 Certification Exam is an important certification for professionals who want to enhance their skills in cloud operations. VMware Cloud Operations 8.x Professional certification exam validates the skills and knowledge of professionals in VMware cloud operations, and it is recognized by many IT organizations. To prepare for the exam, candidates should have experience with VMware vSphere, VMware NSX, and VMware vRealize Automation. With this certification, professionals can advance their careers in cloud operations and increase their job opportunities and earning potential.
VMware Cloud Operations 8.x Professional Sample Questions (Q48-Q53):
NEW QUESTION # 48
On VMware Cloud on AWS, which type of host do you use when you require high local storage requirements and additional cores for your workloads? (Select one option)
- A. i3.metal
- B. i3en. metal
- C. AV36
- D. ve-standard-72
Answer: A
Explanation:
when you require high local storage requirements and additional cores for your workloads on VMware Cloud on AWS. i3.metal instances offer up to 4TB of local NVMe storage and up to 96 CPU cores, giving you the power and storage you need to handle large workloads. Additionally, i3.metal instances are great for applications that benefit from high CPU-to-memory ratios, like artificial intelligence, machine learning, big data analysis, and HPC workloads.
NEW QUESTION # 49
A Cloud administrator is starting to plan a workload migration and wants to estimate the cost of running those workloads on VMware Cloud.
Which VMware Cloud service should the administrator use to achieve this goal?
- A. VMware vRealize Automation Cloud
- B. VMware vRealize Operations Cloud
- C. VMware vRealize Log Insight Cloud
- D. VMware vRealize Network Insight Cloud
Answer: B
Explanation:
Managing Costs:
With its capacity and cost management features, vRealize Operations Cloud can predict future demand and provide actionable recommendations to help in managing costs. Reclamation of Existing Resources:
Assess workload status and resource contention in data centers across your environment:
Determine the time remaining until CPU, memory, or storage resources run out.
Realize cost savings when underutilized VMs are identified and reclaimed to be deployed more effectively.
Future Infrastructure Requirements
Run what-if scenarios:
Identify how much capacity remains after you add or remove VMs or hosts.
Add hyperconverged infrastructure (HCI) nodes.
Get a recommendation based on the cost relative to workload placement on different hosts, clusters, data centers, and even different clouds.
Cloud Migration Planning:
Migration planning shows you the capacity and cost information after the migration to a cloud-based infrastructure.
Cost Overview
vRealize Operations Cloud supports costing for private clouds, public clouds, and VMware Cloud infrastructure.
You can track expenses for a single virtual machine, and identify how these expenses attribute to the overall cost associated with your private cloud accounts and VMware Cloud infrastructure accounts.
On the Cost Overview home page in vRealize Operations Cloud, you can find details about the costs associated with your VMware Cloud infrastructure accounts, public cloud accounts, and your private cloud accounts.
You can view the Total Cost of Ownership, Potential Savings, and Realized Savings for your VMware Cloud infrastructure cloud accounts and vSphere private cloud accounts, and Total Cost of Ownership for your private cloud accounts.
Reference: https://docs.vmware.com/en/vRealize-Business/7.6/vRBforCloud.user.doc/GUID-AA3C209A-
2DFA-433F-BD57-67E66A598E5D.html
NEW QUESTION # 50
Which statement accurately describes vSphere distributed switches? (Select one option)
- A. Each ESXi host can have only one distributed switch configured at any time.
- B. A distributed switch is a virtual switch that is configured for a single ESXi host.
- C. A distributed switch is managed by vCenter Server for all ESXi hosts associated with the distributed switch.
- D. A standard switch is different from a distributed switch in that standard switches contain VMkernel ports.
Answer: C
Explanation:
A distributed switch is managed by vCenter Server for all ESXi hosts associated with the distributed switch. A standard switch is different from a distributed switch in that standard switches contain VMkernel ports, but the entire configuration is managed by each ESXi host. A distributed switch is managed by vCenter Server for all ESXi hosts associated with the distributed switch and can contain multiple VMkernel ports. Each ESXi host can have multiple distributed switches configured at any time.
NEW QUESTION # 51
A cloud administrator wants to migrate a virtual machine using VMware vSphere vMotlon from their on-premises data center to their VMware Cloud on AWS software-defined data center (SDDC), using an existing private line to the cloud SDDC.
Which two requirements must be met before the migration can occur? (Choose two.)
- A. AWS Direct Connect is configured between the on-premises data center and the cloud SDD
- B. IPsec VPN is configured between the on-premises data center and the cloud SDDC.
- C. Cluster-level Enhanced vMotion Compatibility (EVC) is configured in the on-premises data center and the cloud SDD
- D. The versions of VMware vSphere need to match between the on-premises data center and the cloud SDDC.
- E. A Layer 2 connection is configured between the on-premises data center and the cloud SDD
Answer: A,B
Explanation:
https://docs.vmware.com/en/VMware-Cloud-on-AWS/services/com.vmware.vmc-aws-operations/GUID-1A175E91-2317-4261-A63E-B398D92ECE8D.html
vMotion Requirements for SDDCs With NSX: Networking speed and latency: Migration with vMotion requires sustained minimum bandwidth of 250 Mbps between source and destination vMotion vMkernel interfaces, and a maximum latency of 100 ms round trip between source and destination.
On-premises vSphere version: Your on-premises vSphere installation must be vSphere 6.7U2 or higher.
See VMware Knowledge Base article 56991 for more information. On-premises DVS version: 6.0 or higher.
On-premises NSX version: any
Note: SDDCs configured with NSX do not support hot vMotion to or from on-premises VXLAN encapsulated networks (NSX for vSphere) or Geneve Datacenter Overlay networks (NSX). IPsec VPN:
Configure an IPsec VPN for the management gateway.
See Configure a VPN Connection Between Your SDDC and On-Premises Data Center in the VMware Cloud on AWS Networking and Security guide.
Direct Connect: Direct Connect over a private virtual interface between your on-premise data center and your VMware Cloud on AWS SDDC is required for migration with vMotion. See Using AWS Direct Connect with VMware Cloud on AWS.
Hybrid Linked Mode: Hybrid Linked Mode is required to initiate migration from the vSphere Client. It is not required to initiate migration using the API or PowerCLI.
See "Hybrid Linked Mode" in Managing the VMware Cloud on AWS Data Center.
L2 VPN: Configure a Layer 2 VPN to extend virtual machine networks between your on-premises data center and cloud SDDC. Routed networks are not supported. See VMware Cloud on AWS Networking and Security. VMware Cloud on AWS firewall rules Ensure that you have created the necessary firewall rules as described in Required Firewall Rules for vMotion.
On-premises firewall rules: Ensure that you have created the necessary firewall rules as described in Required Firewall Rules for vMotion.
Virtual machine hardware and settings: Ensure that these requirements are met for virtual machine hardware.
Virtual machine hardware version 9 or later is required for migration with vMotion from the on-premises data center to the cloud SDDC.
EVC is not supported in the VMware Cloud on AWS SDDC.
VMs that are created in the cloud SDDC or that have been power-cycled after migration to the cloud SDDC can't be migrated back to the on-premises data center with vMotion unless the on-premises EVC baseline is Broadwell. You can relocate these VMs after powering them off, as long as their virtual machine hardware version is compatible with the on-premises data center.
Migration of VMs with DRS or HA VM overrides is not supported. For more information on VM overrides, see Customize an Individual Virtual Machine.
Important: Source switch configurations (including NIOC, spoofguard, distributed firewall, and Switch Security) and runtime state are not applied at the destination as part of migration in either dir ection.
Before you initiate vMotion, apply the source switch configuration to the destination network.
In order for a virtual machine to be migrated using VMware vSphere vMotion, the versions of VMware vSphere need to match between the on-premises data center and the cloud SDDC, and a Layer 2 connection needs to be configured between them. Additionally, cluster-level Enhanced vMotion Compatibility (EVC) must be configured in both the on-premises data center and the cloud SDDC. IPsec VPN and AWS Direct Connect do not need to be configured for the migration to occur.
NEW QUESTION # 52
Forty days ago, an administrator provisioned a Virtual Machine (vm-01) in preparation for a new project. The project has now been delayed due to budgetary constraints. As part of the monthly service management checks, a second administrator executes the reclaim action on all idle virtual machines and vm-01 is listed.
The second administrator accidentally reclaims all idle virtual machines including vm-01.
What action can the administrator complete to prevent this scenario from happening again?
- A. Create a dynamic group with membership based on vSphere tags so that all new virtual machines are included and then exclude the entire group from reclaim analysis.
- B. Create a new policy that disables the capacity reclamation on the policy and apply the policy to the parent object hosting new virtual machines.
- C. Increase the default value of the Exclude VM provisioned in the last x days setting.
- D. Disable Capacity reclamation on the policy applied to new virtual machines.
Answer: C
Explanation:
Questions no: 3 Verified Answer = D Comprehensive Detailed Explanation with all VMware References
= To prevent the accidental reclamation of recently provisioned VMs, the administrator should increase the default value of the "Exclude VM provisioned in the last x days" setting. This setting determines the period during which newly provisioned VMs are excluded from reclamation analysis. By increasing this value, the administrator can ensure that VMs provisioned for new projects are not inadvertently reclaimed .
Here's why the other options are not the best solution:
* A. Create a dynamic group with membership based on vSphere tags so that all new virtual machines are included and then exclude the entire group from reclaim analysis. While this approach can be effective, it requires additional configuration and management of dynamic groups and vSphere tags. Increasing the "Exclude VM provisioned in the last x days" setting is a simpler and more direct solution.
* B. Disable Capacity reclamation on the policy applied to new virtual machines. Disabling capacity reclamation entirely would prevent vRealize Operations from identifying and reclaiming any idle resources on those VMs, which may not be desirable.
* C. Create a new policy that disables the capacity reclamation on the policy and apply the policy to the parent object hosting new virtual machines. Similar to option B, this would disable capacity reclamation for all VMs under the parent object, which may be too broad and prevent the reclamation of other idle resources.
NEW QUESTION # 53
......
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