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A global logistics company is planning to expand its operations to multiple locations across continents. Their existing on-premises network is unable to scale to meet the demands of the growing number of sites and the increasing volume of East-West traffic within their data center. The company has chosen VMware NSX as their preferred network virtualization platform, aiming to simplify network management and improve intra-data center routing.

Which of the following would be part of the optimal recommended design?

A.

Deploy NSX and use Centralized Service Ports to handle East-West routing within the data center.

B.

Deploy NSX with Aria Operations for Networks to handle North-South routing within the data center.

C.

Deploy NSX with Tier-1 Gateways to handle East-West routing within the data center.

D.

Deploy NSX with Tier-0 Gateways to handle North-South routing within the data center.

Which of the following would be an example of a customer requirement that a solutions architect must consider in the design of an NSX solution?

A.

A customer wants to implement segmentation to improve network security.

B.

A customer has a limited budget for the NSX implementation.

C.

A customer assumes that NSX will be able to integrate with their existing infrastructure.

D.

A customer has limited resources available for the implementation, such as personnel or hardware.

A Network Solutions Architect is tasked with designing an optimized and high-performing NSX solution, keeping in mind the need for DPU-based acceleration. The architect needs to consider the use of Geneve Offload, Receive Side Scaling (RSS), Geneve Rx Filters, SSL Offload, and the effects of Multi-TEP, MTU size, and NIC speed on throughput. Furthermore, the architect also needs to consider the key performance factors for compute nodes and NSX Edge nodes.

As the company's traffic continues to surge, there's a requirement to ensure NSX Edge nodes can handle the increasing load.

Which of the following factors should primarily be considered for performance optimization?

A.

The NSX Edge VM node size

B.

The available storage for the cluster

C.

The number of ESXi hosts

D.

The number of NSX Edge Node uplinks

A digital marketing agency is planning to modernize its IT infrastructure to accommodate a growing number of applications and services. The agency's current physical network infrastructure is complex and difficult to manage due to the high number of VLANs. They have chosen VMware NSX as their preferred network virtualization platform, aiming to simplify the network design and increase flexibility. The agency is particularly interested in creating isolated networks for each application and optimizing East-West traffic.

Which of the following would be part of the optimal recommended design?

A.

Deploy NSX and create VLAN-backed segments for each application, connected via Tier-1 Gateways.

B.

Deploy NSX and create VLAN-backed segments for each application, connected via NSX Edge nodes.

C.

Deploy NSX and create Overlay Networks using segments for each application, connected via Tier-1 Gateways.

D.

Deploy NSX and create Overlay Networks using segments for each application, connected via NSX Edge nodes.

What is a design justification for a solution with 3 NSX Manager nodes deployed in a 4 ESXi cluster Management Cluster?

A.

Compute consumption guarantees NSX Manager nodes can be run on the same ESXi host.

B.

Single point of failure on Control Plane and Management Plane will be mitigated.

C.

NSX Management Plane and Control Plane will be reduced to a single point of failure.

D.

NSX Controllers are separated from NSX Managers allowing 6 ESXi servers to host them.

A Network Solutions Architect is tasked with designing an optimized and high-performing NSX solution, keeping in mind the need for DPU-based acceleration. The architect needs to consider the use of Geneve Offload, Receive Side Scaling (RSS), Geneve Rx Filters, SSL Offload, and the effects of Multi-TEP, MTU size, and NIC speed on throughput. Furthermore, the architect also needs to consider the key performance factors for compute nodes and NSX Edge nodes.

The company CTO is worried about potential network bottlenecks as they continue to grow.

Which strategy should the architect recommend to address the CTO's concern?

A.

Increase the MTU size but use only a single TEP.

B.

Increase the MTU size and use Multi-TEP with high-speed NICs.

C.

Decrease the MTU size and use a single TEP.

D.

Keep the MTU size constant and reduce NIC speed.

Which three VMware guidelines are recommended when designing VLANs and subnets for a single region and single availability zone?(Choose three.)

A.

Use the RFC1918 IPv4 address space for these subnets and allocate one octet by region and another octet by function.

B.

Use the RFC2460 IPv6 address space for these subnets and allocate one set by region and another set by function.

C.

Use only /16 subnets to reduce confusion and mistakes when handling IPv4 subnetting.

D.

Use only /24 subnets to reduce confusion and mistakes when handling IPv4 subnetting.

E.

Use the IP address of the floating interface for Virtual Router Redundancy Protocol (VRRP) or Hot Standby Routing Protocol (HSRP) as the gateway.

A Solutions Architect is designing an NSX solution for a customer. Which of the following would be an example of a logical design for this project?

A.

A set of instructions for installing and configuring the NSX software.

B.

A detailed diagram of the interfaces for the NSX Edge components in the data center.

C.

A high-level overview of the NSX solution, including objectives of the implementation.

D.

A detailed description of the NSX configuration, including VLAN and IP address assignments.

Which two of the following are constraints that may impact the design of an NSX solution?(Choose two.)

A.

Network bandwidth

B.

Available hardware

C.

Security requirements

D.

Product knowledge

Which three VMware guidelines are recommended when designing VLANs and subnets for a single region and single availability zone?(Choose three.)

A.

Use the RFC1918 IPv4 address space for these subnets and allocate one octet by region and another octet by function.

B.

Use the RFC2460 IPv6 address space for these subnets and allocate one set by region and another set by function.

C.

Use only /16 subnets to reduce confusion and mistakes when handling IPv4 subnetting.

D.

Use only /24 subnets to reduce confusion and mistakes when handling IPv4 subnetting.

E.

Use the IP address of the floating interface for Virtual Router Redundancy Protocol (VRRP) or Hot Standby Routing Protocol (HSRP) as the gateway.