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The ANS-C01 Certification Exam covers a wide range of advanced networking topics, including network design, routing, security, and optimization. Candidates are expected to have a deep understanding of AWS services such as Amazon VPC, AWS Direct Connect, Amazon Route 53, and AWS Global Accelerator. They must also be familiar with advanced network concepts such as routing protocols, VPNs, and load balancing.
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Amazon AWS Certified Advanced Networking Specialty Exam Sample Questions (Q66-Q71):
NEW QUESTION # 66
An application runs on a fleet of Amazon EC2 instances in a VPC. All instances can reach one another using private IP addresses. The application owner has a new requirement that the domain name received via DHCP should be different for a particular set of instances that are currently in one particular subnet.
What changes should be made to meet this requirement while continuing to support the existing application requirements?
- A. Modify the existing DHCP option set and specify the different domain name for the specified subnet.
- B. Create a new DHCP option set with the different domain name, associate it with the specified subnet, and re-launch the Amazon EC2 instances.
- C. Create a new subnet, configure the DHCP option set with the different domain name, and re- launch the required instances there.
- D. Create a new peered VPC, configure the DHCP option set with the different domain name, and re- launch the required instances there.
Answer: D
Explanation:
https://docs.aws.amazon.com/vpc/latest/userguide/VPC_DHCP_Options.html
After you create a set of DHCP options, you can't modify them. If you want your VPC to use a different set of DHCP options, you must create a new set and associate them with your VPC. You can also set up your VPC to use no DHCP options at all.
You can have multiple sets of DHCP options, but you can associate only one set of DHCP options with a VPC at a time. If you delete a VPC, the DHCP options set that is associated with the VPC is disassociated from the VPC.
You will have to create a new VPC and peer them since you cannot change DHCP per subnet
NEW QUESTION # 67
Non-compliant resources identified through the use of AWS Config Rules are automatically removed from operational service.
Response:
- A. True
- B. Only if it remains non-compliant for more than 6 hours
- C. False
- D. It depends on the Rule configuration
Answer: D
NEW QUESTION # 68
A company uses an AWS Site-to-Site VPN to connect its corporate network. The company recently added an AWS Direct Connect connection. A network engineer wants all traffic to use the Direct Connect connection, and for the VPN to be used as backup.
However, after the Direct Connect connection was added, traffic continued to pass through the VPN connection. What should the network engineer do to route the traffic through the Direct Connect connection?
Response:
- A. Advertise the same network routes over the Direct Connect connection and VPN connection
- B. Set local preference BGP community tags on the on-premises router
- C. Ensure the Direct Connect connection AS_PATH is longer than the VPN connection AS_PATH
- D. Add routes to the VPC route tables that specify the Direct Connect connection
Answer: A
NEW QUESTION # 69
An application team for a startup company is deploying a new multi-tier application into the AWS Cloud. The application will be hosted on a fleet of Amazon EC2 instances that run in an Auto Scaling group behind a publicly accessible Network Load Balancer (NLB). The application requires the clients to work with UDP traffic and TCP traffic.
In the near term, the application will serve only users within the same geographic location. The application team plans to extend the application to a global audience and will move the deployment to multiple AWS Regions around the world to bring the application closer to the end users. The application team wants to use the new Regions to deploy new versions of the application and wants to be able to control the amount of traffic that each Region receives during these rollouts. In addition, the application team must minimize first-byte latency and jitter (randomized delay) for the end users.
How should the application team design the network architecture for the application to meet these requirements?
- A. Use Amazon S3 Transfer Acceleration for the application in each Region. Adjust the amount of traffic that each Region receives from the Transfer Acceleration endpoints to the Regional NLBs.
- B. Create an AWS Global Accelerator accelerator and listeners for the required ports. Configure endpoint groups for each Region. Configure a traffic dial for the endpoint groups to control traffic to the newer Regional deployments. Register the NLBs with the endpoint groups.
- C. Create an Amazon CloudFront distribution that includes an origin group. Set the NLB for each Region as the origins for the origin group. Use an Amazon Route 53 latency routing policy to control traffic to the new Regional deployments.
- D. Create an Amazon CloudFront distribution to align to each Regional deployment. Set the NLB for each Region as the origin for each CloudFront distribution. Use an Amazon Route 53 weighted routing policy to control traffic to the newer Regional deployments.
Answer: B
Explanation:
CloudFront is designed to handle HTTP protocol meanwhile Global Accelerator is best used for both HTTP and non-HTTP protocols such as TCP and UDP.
https://docs.aws.amazon.com/AmazonCloudFront/latest/DeveloperGuide/DownloadDistS3AndCu stomOrigins.html
NEW QUESTION # 70
An insurance company is planning the migration of workloads from its on-premises data center to the AWS Cloud. The company requires end-to-end domain name resolution. Bi-directional DNS resolution between AWS and the existing on-premises environments must be established. The workloads will be migrated into multiple VPCs. The workloads also have dependencies on each other, and not all the workloads will be migrated at the same time.
Which solution meets these requirements?
- A. Configure a private hosted zone for each application VPC, and create the requisite records. Create a set of Amazon Route 53 Resolver inbound and outbound endpoints in an egress VPDefine Route 53 Resolver rules to forward requests for the on-premises domains to the on-premises DNS resolver.Associate the application VPC private hosted zones with the egress VPand s
- B. Configure a private hosted zone for each application VPC, and create the requisite records. Create a set of Amazon Route 53 Resolver inbound and outbound endpoints in an egress VPC. Define Route 53 Resolver rules to forward requests for the on-premises domains to the on-premises DNS resolver.
Associate the application VPC private hosted zones with the egress VPC, and share the Route 53 Resolver rules with the application accounts by using AWS Resource Access Manager. Configure the on-premises DNS servers to forward the cloud domains to the Route 53 inbound endpoints. - C. Configure a public hosted zone for each application VPC, and create the requisite records. Create a set of Amazon Route 53 Resolver inbound and outbound endpoints in an egress VPC. Define Route 53 Resolver rules to forward requests for the on-premises domains to the on-premises DNS resolver.
Associate the application VPC private hosted zones with the egress VPC. and share the Route 53 Resolver rules with the application accounts by using AWS Resource Access Manager. Configure the on-premises DNS servers to forward the cloud domains to the Route 53 inbound endpoints.
Answer: B
Explanation:
Creating a private hosted zone for each application VPC and creating the requisite records would enable end- to-end domain name resolution for the resources. Creating a set of Amazon Route 53 Resolver inbound and outbound endpoints in an egress VPC would enable bi-directional DNS resolution between AWS and the existing on-premises environments. Defining Route 53 Resolver rules to forward requests for the on-premises domains to the on-premises DNS resolver would enable DNS queries from AWS resources to on-premises resources. Associating the application VPC private hosted zones with the egress VPC and sharing the Route
53 Resolver rules with the application accounts by using AWS Resource Access Manager would enable DNS queries among different VPCs and accounts. Configuring the on-premises DNS servers to forward the cloud domains to the Route 53 inbound endpoints would enable DNS queries from on-premises resources to AWS resources1.
NEW QUESTION # 71
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