An architect is designing a VMware Cloud Foundation (VCF) Operations deployment. The following requirements and constraints must be addressed:
VCF Operations must not experience a service interruption in the event of a single availability zone failure.
An External Load Balancer will be used.
The simplest deployment model that meets the above requirements must be used.
Which VCF Operations design decision should be used?
An Architect was provided with a list of findings and statements collected during a presales meeting with the customer.
Which two statements should be classified as requirements in the conceptual model? (Choose two.)
An architect is tasked with designing a VMware Cloud Foundation (VCF) architecture including multiple VKS clusters across different workload domains.
Security requirements mandate:
Control plane isolation between tenant Kubernetes environments.
No shared failure domains across tenants.
Independent upgrade paths.
Given the requirements, which design approach meets these requirements?
An architect is tasked with designing a VMware Cloud Foundation (VCF) workload domain network that minimizes infrastructure overhead and accelerates deployment time for a customer adopting VPC-based workload networking. During a design workshop with the stakeholders, the following requirements were identified:
Rapid onboarding of VPCs without deploying NSX Edge nodes.
Basic East-West and North-South connectivity for workloads.
External connectivity for specific VPC workloads via assigned public IPs.
No requirement for centralized services like NAT or VPN.
After evaluating available design options, the architect makes a design decision to use a Distributed Transit Gateway (DTGW) to meet the requirements.
Which justification should the architect use for this design decision?
An architect is responsible for designing a VMware Cloud Foundation (VCF) Private Cloud solution. During a requirements gathering workshop, the customer supplied the following information:
The solution must support the monitoring of all existing workloads.
There are currently 15,000 virtual machine workloads running within the existing environment.
All infrastructure components will also be monitored by the solution.
The solution must ensure that the 99.9% uptime Service Level Agreement can be met.
The solution must be resilient to a single fault domain failure.
The following logical design decisions have been made within the design:
Deploy the VCF Operations cluster following the High Availability Model.
The following table is from the VCF Operations sizing guide:
Small
Medium
Single-Node Object Maximum
10,000
30,000
Single-Node Max Collected Metrics
1,600,000
5,000,000
Maximum Nodes in a cluster
2
8
Multi-Node Object Maximum
6,000
17,000
Multi-Node Max Collected Metrics
1,400,000
4,000,000
Maximum Objects in a Cluster
12,000
136,000
Maximum Metrics in a Cluster
2,800,000
32,000,000
Maximum Nodes for Continuous Availability per Fault Domain
1
4
Given the information above, which three physical design decisions meet the stated requirements? (Choose three.)
The following information has been collected from an architect during initial VMware Cloud Foundation (VCF) design discussions:
Applications must be designed to tolerate the failure of a single data center.
Service account passwords must be stored and retrieved from the company password vault.
The self service catalog must meet the Service Level Objective (SLO) of 75% successful requests measured over a 12 month period.
Management plane applications must return to operation (RTO) in under 10 minutes.
Third-party pen testing must be executed against the solution yearly with a pass rate of 80 percent or higher.
The solution must provide the ability for users to view and track the progress of their requests.
All Identity management must use an external SAML based identity provider.
Which four statements are Functional Requirements? (Choose four.)
An architect is designing the network architecture for a multi-site VMware Cloud Foundation (VCF) deployment using NSX Federation. The environment spans two geographically dispersed data centers (Site A and Site B) to support disaster recovery, workload mobility, and consistent security policies across sites. During the design workshop, the architect determined that the solution must leverage NSX Federation for stretched networking to support overlay transport, routing, and high availability.
Which five design decisions are required when implementing NSX Federation in a multi-site VCF environment? (Choose five.)
An architect is expanding an existing private cloud infrastructure deployed with VMware Cloud Foundation (VCF). The requirements are:
Deploy two additional instances of VCF at two separate data centers within the existing private cloud with minimal additional footprint.
Data center A is 90 miles from the existing VCF Fleet instance with a network round trip time of 90 ms.
Data center B is 120 miles from the existing VCF Fleet instance with a network round trip time of 120 ms.
Which design decision would meet the requirement for this expansion?
An architect has been tasked with designing the storage components of a VMware Cloud Foundation (VCF) solution. The following information has been provided about the solution by the lead architect:
There will be a single VCF Instance within the Fleet.
The VCF instance will have a single Workload Domain with a single cluster.
The VCF Workload Domain requires a multiple tier storage solution consisting of:
A highly scalable, policy-based storage solution for critical application workloads.
A file-based storage solution that can scale independently of the cluster for workloads with large data requirements.
VCF installer will be used to deploy the environment.
Which two design decisions should the architect make for the VCF Workload Domain? (Choose two.)
An architect is drafting a design document in preparation for the deployment of a new VMware Cloud Foundation (VCF) solution. To minimize costs, the customer has asked that the VCF solution use existing the vSphere infrastructure. The customer has migrated all virtual machines off this infrastructure in preparation for the deployment of VCF.
The following information has been provided about the existing vSphere infrastructure:
There are three separate vSphere clusters, each consisting of five hosts.
Each host has been verified to be on the compatibility list.
Each host has two 10GB network adapters, with a vSphere Distributed Switch (vDS) configured per vSphere cluster.
A single vCenter manages the three vSphere clusters.
All clusters use NFSv4.1 for shared storage.
Based on this information, the architect makes a decision to create a new VCF Fleet with a single VCF instance.
What design implication should the architect document for this decision?