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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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The ANS-C01 Certification Exam is intended for professionals who have experience in networking and AWS environments. Candidates should have a deep understanding of networking concepts and protocols, as well as hands-on experience with AWS networking services. They should also be familiar with AWS security and compliance requirements and have experience designing and deploying scalable, highly available, and fault-tolerant network architectures.
Amazon AWS Certified Advanced Networking Specialty Exam Sample Questions (Q208-Q213):
NEW QUESTION # 208
A company has deployed a production environment in the AWS Cloud. The environment is contained in a VPC and includes a virtual private gateway. The company has established an AWS Direct Connect connection.
which includes a private Virtual Interface (VIF), and a VPN connection to the on-premises data center.For traffic originating in the VPC, what is the order of BGP path selection from MOST preferred to LEAST preferred?
Response:
- A. Longest prefix match; VPN BGP routes; static routes; Direct Connect BGP routes.
- B. Direct Connect BGP routes; static routes; longest prefix match; VPN BGP routes
- C. Static routes; longest prefix match; Direct Connect BGP routes; VPN BGP routes
- D. Longest prefix match; static routes; Direct-Connect BGP routes; VPN BGP routes
Answer: C
NEW QUESTION # 209
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.)
- A. 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.
- B. 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.
- C. 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.
- D. Ensure that networking exists between the other accounts and the central account so that traffic can reach the Amazon Route 53 Resolver endpoints.
- E. 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.
- F. 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.
Answer: A,B,E
NEW QUESTION # 210
Where would you create a firewall rule to block access to instance metadata?
Response:
- A. In the Network ACL
- B. In the Security Group
- C. In the OS of the EC2 instance
Answer: C
NEW QUESTION # 211
A company is building its website on AWS in a single VPC. The VPC has public subnets and private subnets in two Availability Zones. The website has static content such as images. The company is using Amazon S3 to store the content.
The company has deployed a fleet of Amazon EC2 instances as web servers in a private subnet.
The EC2 instances are in an Auto Scaling group behind an Application Load Balancer. The EC2 instances will serve traffic, and they must pull content from an S3 bucket to render the webpages.
The company is using AWS Direct Connect with a public VIF for on-premises connectivity to the S3 bucket. A network engineer notices that traffic between the EC2 instances and Amazon S3 is routing through a NAT gateway. As traffic increases, the company's costs are increasing. The network engineer needs to change the connectivity to reduce the NAT gateway costs that result from the traffic between the EC2 instances and Amazon S3.
Which solution will meet these requirements?
- A. Implement gateway VPC endpoints for Amazon S3. Update the VPC route table.
- B. Create a Direct Connect private VIF. Migrate the traffic from the public VIF to the private VIF.
- C. Create an AWS Site-to-Site VPN tunnel over the existing public VIF.
- D. Implement interface VPC endpoints for Amazon S3. Update the VPC route table.
Answer: A
Explanation:
To reduce data transfer charges for NAT gateways, you can use an interface endpoint or a gateway endpoint.
https://repost.aws/knowledge-center/vpc-reduce-nat-gateway-transfer-costs If your NAT gateway charges are from traffic to Amazon S3 or Amazon DynamoDB in the same Region, you should choose a gateway endpoint. There is no additional charge for using gateway endpoints. On the other hand, An interface endpoint charges apply for each Gigabyte processed through the endpoint.
https://docs.aws.amazon.com/vpc/latest/privatelink/gateway-endpoints.html
https://docs.aws.amazon.com/vpc/latest/privatelink/what-is-privatelink.html
https://aws.amazon.com/privatelink/pricing/
NEW QUESTION # 212
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 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.
- B. 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.
- C. 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
Answer: A
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 # 213
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