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NEW QUESTION 38
A company has a service that runs on TCP port 443 in VPC A within AWS account A.
The company wants to expose the service to Amazon EC2 instances in VPC B within AWS account B.
The service must not be made public, and all other services in VPC A must not be accessible from VPC B.
A network engineer is using AWS PrivateLink for the configuration.
Which set of procedures should the network engineer follow to meet these requirements?

  • A. In VPC A, create an Application Load Balancer (ALB) that has an HTTPS listener. Create an endpoint service in VPC A that points to the ALB. Add the principal ARN of account B to the service endpoints allow list. In VPC B, create an interface endpoint that points to the service identifier of the endpoint service in AWS account A.
  • B. In VPC A, create a Network Load Balancer (NLB) that has a TCP listener. Create an endpoint service in VPC A that points to the NLB. Add the principal ARN of account B to the service endpoints allow list. In VPC B, create a gateway endpoint that points to the service identifier of the endpoint service in AWS account A.
  • C. In VPC A, create an Application Load Balancer (ALB) that has a TCP listener. Create an endpoint service in VPC A that points to the ALB. Add the principal ARN of account B to the service endpoints allow list. In VPC B, create a Gateway Load Balancer endpoint that points to the service identifier of the endpoint service in AWS account A.
  • D. In VPC A, create a Network Load Balancer (NLB) that has a TCP listener. Create an endpoint service in VPC A that points to the NLB. Add the principal ARN of account B to the service endpoints allow list. In VPC B, create an interface endpoint that points to the service identifier of the endpoint service in AWS account A.

Answer: A

Explanation:
https://docs.aws.amazon.com/vpc/latest/privatelink/vpce-interface.html

 

NEW QUESTION 39
Your company runs an application for the US market in the us-east-1 AWS region. This application uses proprietary TCP and UDP protocols on Amazon Elastic Compute Cloud (EC2) instances. End users run a real-time, front-end application on their local PCs. This front-end application knows the DNS hostname of the service.
You must prepare the system for global expansion. The end users must access the application with lowest latency.
How should you use AWS services to meet these requirements?

  • A. Set the Amazon API gateway in front of the service, and register the API gateway name of the main service as an ALIAS record in Route 53.
  • B. Register the IP addresses of the service hosts as "A" records with latency-based routing policy in Amazon Route 53, and set a Route 53 health check for these hosts.
  • C. Set Amazon CloudFront in front of the host of the service, and register the CloudFront name of the main service as an ALIAS record in Route 53.
  • D. Set the Elastic Load Balancing (ELB) load balancer in front of the hosts of the service, and register the ELB name of the main service host as an ALIAS record with a latency-based routing policy in Route 53.

Answer: D

 

NEW QUESTION 40
A company offers a web-based service that uses Amazon EC2 instances behind an Application Load Balancer (ALB). One of the company's large customers reports slow bulk transfer throughput. The company's network engineer suspects that this problem is the result of the TCP window size setting in the customer's corporate laptop computers.
How can the network engineer check the value of the TCP window size?

  • A. Configure VPC Traffic Mirroring. Set the traffic mirror source to the ALB elastic network interface.
    Set the traffic mirror target to Amazon S3 for analysis with Amazon Athena.
  • B. Configure VPC Flow Logs on the ALB elastic network interface. Use custom flow logs to add the TCP window size parameter to the captured metadata.
  • C. Configure VPC Traffic Mirroring. Set the traffic mirror source to the ALB elastic network interface.
    Set the traffic mirror target to an EC2 instance with packet capture software.
  • D. Configure VPC Flow Logs on the ALB elastic network interface. Send the flow logs to Amazon S3 in the same AWS Region for analysis by AWS Network Manager.

Answer: D

Explanation:
https://docs.aws.amazon.com/vpc/latest/userguide/flow-logs.html

 

NEW QUESTION 41
Non-compliant resources identified through the use of AWS Config Rules are automatically removed from operational service.

  • A. It depends on the Rule configuration
  • B. False
  • C. True
  • D. Only if it remains non-compliant for more than 6 hours

Answer: B

Explanation:
Each time a change is made to one of your supported resources, AWS config will check its compliance against any Config Rules that you have in place. If there is a violation against these rules then AWS Config will send a message to the Configuration Stream via SNS and the resource will be marked as `noncompliant'.
It's important to note that this does not mean the resource will be taken out of service or it will stop working. It will continue to operate exactly as it is with its new configuration. AWS Config simply alerts you that there is a violation and it's up to you to take the appropriate action.
Reference:
http://docs.aws.amazon.com/config/latest/developerguide/evaluate-config_view-compliance.html

 

NEW QUESTION 42
A company with several VPCs in the us-east-1 Region wants to reduce the cost of its workloads A network engineer has identified that all traffic bound to Amazon services is flowing through a NAT gateway. Additionally, all the VPCs are peered to a hub VPC for access to common services.

  • A. Enable the private DNS name for the SQS endpoint. Create an Amazon Route 53 private hosted zone for the domain us-east-1 .sqs.amazonaws.com. Create an alias record to the DNS name of the SQS endpoint. Share the private hosted zone with all other VPCs.
  • B. Disable the private DNS name for the SQS endpoint. Create an Amazon Route 53 private hosted zone for the domain us-east-1.sqs.amazonaws.com. Create a CNAME record to the DNS name of the SQS endpoint Share the private hosted zone with ail other VPCs
  • C. Disable the private DNS name for the SOS endpoint. Create an Amazon Route 53 private hosted zone for the domain sqs.us-east-1 .amazonaws.com. Create an alias record to the DNS name of the SOS endpoint. Share the private hosted zone with all other VPCs
  • D. Enable the private DNS name for the SOS endpoint Create an Amazon Route 53 private hosted zone for the domain SQS.us-east-t.amazonaws.com. Create a CNAME record to the DNS name of the SQS endpoint. Share the private hosted zone with all other VPCs.

Answer: B

 

NEW QUESTION 43
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