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ANS-C01 FAQs
The AWS ANS-C01 exam, also known as the AWS Certified Advanced Networking - Specialty exam, assesses advanced networking skills in AWS environments. It validates a candidate's ability to design, implement, and manage complex networking architectures and services on AWS.
With an AWS ANS-C01 certification, you can pursue roles such as Network Architect, Cloud Network Engineer, Network Operations Engineer, and Solutions Architect. These roles focus on designing and managing advanced networking solutions in AWS environments.
Certified AWS networking specialists can expect to earn between $100,000 and $150,000 annually, depending on experience, location, and specific job roles. This certification is recognized for its potential to enhance earning prospects significantly.
The AWS ANS-C01 certification can significantly boost your career by qualifying you for specialized roles in network engineering and cloud architecture. It opens up opportunities for leadership positions and allows you to work on complex and large-scale networking projects.
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Amazon AWS Certified Advanced Networking - Specialty Questions and Answers
A company delivers applications over the internet. An Amazon Route 53 public hosted zone is the authoritative DNS service for the company and its internet applications, all of which are offered from the same domain name.
A network engineer is working on a new version of one of the applications. All the application's components are hosted in the AWS Cloud. The application has a three-tier design. The front end is delivered through Amazon EC2 instances that are deployed in public subnets with Elastic IP addresses assigned. The backend components are deployed in private subnets from RFC1918.
Components of the application need to be able to access other components of the application within the application's VPC by using the same host names as the host names that are used over the public internet. The network engineer also needs to accommodate future DNS changes, such as the introduction of new host names or the retirement of DNS entries.
Which combination of steps will meet these requirements? (Choose three.)
A company has an application VPC and a networking VPC that are connected through VPC peering. The networking VPC contains a Network Load Balancer (NLB). The application VPC contains Amazon EC2 instances that run an application. The EC2 instances are part of a target group that is associated with the NLB in the networking VPC.
The company configures a third VPC and peers it to the networking VPC. The new VPC contains a new version of the existing application. The new version of the application runs on new EC2 instances in an application subnet. The new version of the application runs in a different Availability Zone than that original version of the application.
The company needs to establish connectivity between the NLB and the new version of the application.
Which combination of steps will meet this requirement? (Choose three.)
A company runs a workload in a single VPC on AWS. The company’s architecture contains several interface VPC endpoints for AWS services, including Amazon CloudWatch Logs and AWS Key Management Service (AWS KMS). The endpoints are configured to use a shared security group. The security group is not used for any other workloads or resources.
After a security review of the environment, the company determined that the shared security group is more permissive than necessary. The company wants to make the rules associated with the security group more restrictive. The changes to the security group rules must not prevent the resources in the VPC from using AWS services through interface VPC endpoints. The changes must prevent unnecessary access.
The security group currently uses the following rules:
• Inbound - Rule 1
Protocol: TCP
Port: 443
Source: 0.0.0.0/0
• Inbound - Rule 2
Protocol: TCP
Port: 443
Source: VPC CIDR
• Outbound - Rule 1
Protocol: All
Port: All
Destination: 0.0.0.0/0
Which rule or rules should the company remove to meet with these requirements?
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