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ANS-C01 Dumps - Amazon AWS Certified Advanced Networking - Specialty Practice Exam Questions

Amazon Web Services ANS-C01 - Amazon AWS Certified Advanced Networking - Specialty Braindumps

Amazon Web Services ANS-C01 - AWS Certified Specialty Practice Exam

  • Certification Provider:Amazon Web Services
  • Exam Code:ANS-C01
  • Exam Name:Amazon AWS Certified Advanced Networking - Specialty Exam
  • Total Questions:288 Questions and Answers
  • Updated on:Nov 16, 2025
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ANS-C01 Question and Answers

Question # 1

A global company runs business applications in the us-east-1 Region inside a VP

C.  

One of the company's regional offices in London uses a virtual private gateway for an AWS Site-to-Site VPN connection tom the VP

C.  

The company has configured a transit gateway and has set up peering between the VPC and other VPCs that various departments in the company use.

Employees at the London office are experiencing latency issues when they connect to the business applications.

What should a network engineer do to reduce this latency?

Options:

A.  

Create a new Site-to-Site VPN connection. Set the transit gateway as the target gateway. Enable acceleration on the new Site-to-Site VPN connection. Update the VPN device in the London office with the new connection details.

B.  

Modify the existing Site-to-Site VPN connection by setting the transit gateway as the target gateway. Enable acceleration on the existing Site-to-Site VPN connection.

C.  

Create a new transit gateway in the eu-west-2 (London) Region. Peer the new transit gateway with the existing transit gateway. Modify the existing Site-to-Site VPN connection by setting the new transit gateway as the target gateway.

D.  

Create a new AWS Global Accelerator standard accelerator that has an endpoint of the Site-to-Site VPN connection. Update the VPN device in the London office with the new connection details.

Discussion 0
Question # 2

A company's network engineer is configuring an AWS Site-to-Site VPN connection between a transit gateway and the company's on-premises network. The Site-to-Site VPN connection is configured to use BGP over two tunnels in active/active mode with equal-cost multi-path (ECMP) routing activated on the transit gateway.

When the network engineer attempts to send traffic from the on-premises network to an Amazon EC2 instance, traffic is sent over the first tunnel. However, return traffic is received over the second tunnel and is dropped at the customer gateway. The network engineer must resolve this issue without reducing the overall VPN bandwidth.

Which solution will meet these requirements?

Options:

A.  

Configure the customer gateway to use AS PATH prepending and local preference to prefer one tunnel over the other.

B.  

Configure the Site-to-Site VPN options to set the first tunnel as the primary tunnel to eliminate asymmetric routing.

C.  

Configure the virtual tunnel interfaces on the customer gateway to allow asymmetric routing.

D.  

Configure the Site-to-Site VPN to use static routing in active/active mode to ensure that traffic flows over a preferred path.

Discussion 0
Question # 3

A network engineer is designing the DNS architecture for a new AWS environment. The environment must be able to resolve DNS names of endpoints on premises, and the on-premises systems must be able to resolve the names of AWS endpoints. The DNS architecture must give individual accounts the ability to manage subdomains.

The network engineer needs to create a single set of rules that will work across multiple accounts to control this behavior. In addition, the network engineer must use AWS native services whenever possible.

Which combination of steps should the network engineer take to meet these requirements? (Choose three.)

Options:

A.  

Create an Amazon Route 53 private hosted zone for the overall cloud domain. Plan to create subdomains that align to other AWS accounts that are associated with the central Route 53 private hosted zone.

B.  

Create AWS Directory Service for Microsoft Active Directory server endpoints in the central AWS account that hosts the private hosted zone for the overall cloud domain. Create a conditional forwarding rule in Microsoft Active Directory DNS to forward traffic to a DNS resolver endpoint on premises. Create another rule to forward traffic betweensubdomains to the VPC resolver.

C.  

Create Amazon Route 53 Resolver inbound and outbound endpoints in the central AWS account that hosts the private hosted zone for the overall cloud domain. Create a forwarding rule to forward traffic to a DNS resolver endpoint on premises. Create another rule to forward traffic between subdomains to the Resolver inbound endpoint.

D.  

Ensure that networking exists between the other accounts and the central account so that traffic can reach the AWS Directory Service for Microsoft Active Directory DNS endpoints.

E.  

Ensure that networking exists between the other accounts and the central account so that traffic can reach the Amazon Route 53 Resolver endpoints.

F.  

Share the Amazon Route 53 Resolver rules between accounts by using AWS Resource Access Manager (AWS RAM). Ensure that networking exists between the other accounts and the central account so that traffic can reach the Route 53 Resolver endpoints.

Discussion 0

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