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Amazon ANS-C01 (AWS Certified Advanced Networking Specialty) Certification Exam is a professional-level certification exam designed for individuals who want to validate their skills and knowledge in advanced networking technologies on the Amazon Web Services (AWS) platform. AWS Certified Advanced Networking Specialty Exam certification exam is ideal for network architects, network engineers, and other IT professionals who want to demonstrate their expertise in designing, implementing, and managing complex network solutions on AWS.
The ANS-C01 Exam covers a wide range of topics related to advanced networking in AWS, including network design and implementation, network security, and network optimization. Candidates will need to demonstrate their understanding of these topics by passing a rigorous exam that tests their knowledge and skills in these areas.
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Amazon AWS Certified Advanced Networking Specialty Exam Sample Questions (Q228-Q233):
NEW QUESTION # 228
A company has multiple firewalls and ISPs for its on-premises data center. The company has a single AWS Site-to-Site VPN connection from the company's on-premises data center to a transit gateway. A single ISP services the Site-to-Site VPN connection. Multiple VPCs are attached to the transit gateway.
A customer gateway that the Site-to-Site VPN connection uses fails. Connectivity is completely lost, but the company's network team does not receive a notification.
The network team needs to implement redundancy within a week in case a single customer gateway fails again. The team wants to use an Amazon CloudWatch alarm to send notifications to an Amazon Simple Notification Service (Amazon SNS) topic if any tunnel of the Site-to-Site VPN connection fails.
Which solution will meet these requirements MOST cost-effectively?
- A. Add an AWS Direct Connect connection to the existing Site-to-Site VPN connection to the transit gateway. For each VPN connection, set up a CloudWatch TunnelState alarm for the VPN connection.
Use a value of failed for the alarm. - B. Use a second customer gateway with the existing ISP. Create a new Site-to-Site VPN connection to the transit gateway. For each VPN connection, set up a CloudWatch TunnelState alarm for the VPN connection. Use a value of unavailable for the alarm.
- C. Replace the existing customer gateway with a new router. Create a new Site-to-Site VPN connection to the transit gateway. For each VPN connection, set up a CloudWatchTunnelState alarm for the VPN connection. Use a value of 0 for the alarm.
- D. Use a second customer gateway and a second ISP. Create a new Site-to-Site VPN connection to the transit gateway. For each VPN connection, set up a CloudWatch TunnelState alarm for the VPN connection. Use a value of less than 1 for the alarm.
Answer: D
Explanation:
Redundancy requires a second customer gateway and ideally a second ISP to avoid a single point of failure.
AWS Site-to-Site VPN connections support two tunnels per VPN connection.
By creating a second VPN connection (to the transit gateway) with a second customer gateway and ISP, the solution meets the redundancy requirement.
CloudWatch TunnelState alarms can be configured on each tunnel. A value of < 1 (i.e., when the tunnel is down) will trigger the alarm.
NEW QUESTION # 229
A company is planning to migrate an internal application to the AWS Cloud. The application will run on Amazon EC2 instances in one VPC. Users will access the application from the company's on-premises data center through AWS VPN or AWS Direct Connect. Users will use private domain names for the application endpoint from a domain name that is reserved explicitly for use in the AWS Cloud.
Each EC2 instance must have automatic failover to another EC2 instance in the same AWS account and the same VPC. A network engineer must design a DNS solution that will not expose the application to the internet.
Which solution will meet these requirements?
- A. Place the EC2 instances in private subnets. Create an Amazon Route 53 public hosted zone for the AWS reserved domain name. Associate the public hosted zone with the VPC. Create a Route
53 Resolver inbound endpoint. Configure conditional forwarding in the on-premises DNS resolvers to forward all DNS queries for the AWS domain to the inbound endpoint IP address for Route 53 Resolver. In the public hosted zone, configure primary and failover records that point to the IP addresses of the EC2 instances. Create an Amazon CloudWatch metric and alarm to monitor the application's health. Set up a health check on the alarm for the primary application endpoint. - B. Place the EC2 instances in private subnets. Create an Amazon Route 53 private hosted zone for the AWS reserved domain name. Associate the private hosted zone with the VPCreate a Route 53 Resolver inbound endpoint. Configure conditional forwarding in the on-premises DNS resolvers to forward all DNS queries for the AWS domain to the inbound endpoint IP address for Route 53 Resolver. In the private hosted zone, configure primary and failover records that point to the IP addresses of the EC2 instances. Create an Amazon CloudWatch metric and alarm to monitor the application's health. Set up a health check on the alarm for the primary application endpoint.
- C. Assign public IP addresses to the EC2 instances. Create an Amazon Route 53 private hosted zone for the AWS reserved domain name. Associate the private hosted zone with the VPC. Create a Route 53 Resolver outbound endpoint. Configure conditional forwarding in the on-premises DNS resolvers to forward all DNS queries for the AWS domain to the outbound endpoint IP address for Route 53 Resolver. In the private hosted zone, configure primary and failover records that point to the public IP addresses of the EC2 instances. Create an Amazon CloudWatch metric and alarm to monitor the application's health. Set up a health check on the alarm for the primary application endpoint.
- D. Place the EC2 instances in private subnets. Create an Amazon Route 53 private hosted zone for the AWS reserved domain name. Associate the private hosted zone with the VPC. Create a Route
53 Resolver inbound endpoint. Configure conditional forwarding in the on-premises DNS resolvers to forward all DNS queries for the AWS domain to the inbound endpoint IP address for Route 53 Resolver. In the private hosted zone, configure primary and failover records that point to the IP addresses of the EC2 instances. Set up Route 53 health checks on the private IP addresses of the EC2 instances.
Answer: B
NEW QUESTION # 230
You have a web application (app.mycompany.com) running on an EC2 instance with a single elastic network interface in a subnet in a VPC. Because of a network redesign, you need to move the web application to a different subnet in the same Availability Zone.
Which of the following migration strategies meets the requirements?
Response:
- A. Create an elastic network interface in the new subnet. Attach this interface to the instance, and detach the old interface.
- B. Change the IP addresses manually to another subnet within the server operating system.
- C. Launch a new instance in the subnet via an AMI created from the instance, and redirect new connections to this new instance using DNS. Decommission the old instance.
- D. Make an API call to change the subnet association of the elastic network interface.
Answer: C
NEW QUESTION # 231
After creating an AWS Direct Connect connection, what is the earliest point in time that you start receiving port-hour charges?
Response:
- A. When a Virtual Interface (VIF) is created
- B. When the connection becomes available for the first time
- C. Once you have transferred 100 MB of data
- D. 90 days from creation
Answer: B
NEW QUESTION # 232
You place an application load balancer in front of two web servers that are stateful. Users begin to report intermittent connectivity issues when accessing the website. Why is the site not responding?
Response:
- A. The web servers need to have their security group set to allow all Transmission Control Protocol (TCP) traffic from 0.0.0.0/0.
- B. Sticky sessions must be enabled on the application load balancer
- C. The network Access Control List (ACL) on the subnet needs to allow a stateful connection.
- D. The website needs to have port 443 open.
Answer: B
NEW QUESTION # 233
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