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NEW QUESTION # 24

A company has an image processing workload running on Amazon Elastic Container Service (Amazon ECS) in two private subnets. Each private subnet uses a NAT instance for internet access. All images are stored in Amazon S3 buckets. The company is concerned about the data transfer costs between Amazon ECS and Amazon S3.

What should a solutions architect do to reduce costs?

  • A. Configure a gateway endpoint for traffic destined to Amazon S3.
  • B. Configure an interface endpoint for traffic destined to Amazon S3.
  • C. Configure Amazon CloudFront for the S3 bucket storing the images.
  • D. Configure a NAT gateway to replace the NAT instances.

Answer: B



NEW QUESTION # 25

A company Is serving files to its customers through an SFTP server that Is accessible over the internet The SFTP server Is running on a single Amazon EC2 instance with an Elastic IP address attached Customers connect to the SFTP server through its Elastic IP address and use SSH for authentication The EC2 instance also has an attached security group that allows access from all customer IP addresses.

A solutions architect must implement a solution to improve availability minimize the complexity ot infrastructure management and minimize the disruption to customers who access files. The solution must not change the way customers connect.

Which solution will meet these requirements?

  • A. Disassociate the Elastic IP address from the EC2 instance. Create a new Amazon Elastic File System (Amazon EFS) file system to be used for SFTP file hosting. Create an AWS Fargate task definition to run an SFTP server. Specify the EFS file system as a mount in the task definition Create a Fargate service by using the task definition, and place a Network Load Balancer (NLB> is front of the service When configuring the service, attach the security group with customer IP addresses to the tasks that run the SFTP server Associate the Elastic IP address with the Nl B Sync all files from the SFTP server to the S3 bucket
  • B. Disassociate the Elastic IP address from the EC2 instance Create a multi-attach Amazon Elastic Block Store (Amazon EBS) volume to be used to SFTP file hosting Create a Network Load Balancer (NLB) with the Elastic IP address attached Create an Auto Scaling group with EC2 instances that run an SFTP server Define in the Auto Scaling group that instances that are launched should attach the new multi-attach EBS volume Configure the Auto Scaling group to automatically add instances behind the NLB Configure the Auto Scaling group to use the security group that allows customer IP addresses for the EC2 instances that the Auto Scaling group launches Sync all files from the SFTP server to the new multi-attach EBS volume
  • C. Disassociate the Elastic IP address from me EC2 instance Create an Amazon S3 bucket to be used for sftp file hosting Create an AWS Transfer Family server Configure the Transfer Family server with a publicly accessible endpoint. Associate the SFTP Elastic IP address with the new endpoint. Point the Transfer Family server to the S3 bucket Sync all files from the SFTP server to the S3 bucket.
  • D. Disassociate the Elastic IP address from the EC2 instance. Create an Amazon S3 bucket to be used for SFTP file hosting Create an AWS Transfer Family server. Configure the Transfer Family server with a VPC-hosted. internet-facing endpoint. Associate the SFTP Elastic IP address with the new endpoint.

    Attach the security group with customer IP addresses to the new endpoint. Point the Transfer Family server to the S3 bucket. Sync all files from the SFTP server to The S3 bucket

Answer: D

Explanation:

Explanation

https://aws.amazon.com/premiumsupport/knowledge-center/aws-sftp-endpoint-type/

https://docs.aws.amazon.com/transfer/latest/userguide/create-server-in-vpc.html

https://aws.amazon.com/premiumsupport/knowledge-center/aws-sftp-endpoint-type/



NEW QUESTION # 26

A solutions architect is implementing infrastructure as code for a two-tier web application in an AWS Cloud Formation template. The web frontend application will be deployed on Amazon EC2 instances m an Auto Scaling group The backend database will be an Amazon RDS fa MySQL DB instance The database password will be rotated every 60 days How can the solutions architect MOST securely manage the configuration of the application's database credentials?

  • A. Create a new AWS Secrets Manager secret resource in the CloudFormation template to be used as the database password Create an initialization script in the Auto Scaling group's launch configuration UserData property to reference the secret resource using the Ref intrinsic function Reference the secret resource for the value of the MasterUserPassword property in the AWS::RDS::DBlnstance resource using the Ref intrinsic function
  • B. Create a new AWS Secrets Manager secret resource in the CloudFormation template to be used as the database password Configure the application to retrieve the password from Secrets Manager when needed Reference the secret resource for the value of the MasterUserPassword property in the AWS RDS DBlnstance resource using a dynamic reference
  • C. Create a new AWS Systems Manager Parameter Store parameter in the CloudFormabon template to be used as the database password Create an initialization script in the Auto Scaling group's launch configuration UserData property to reference the parameter Reference the parameter for the value of the MasterUserPassword property in the AWS::RDS::DBlnstance resource using the Fn::GetAtt intrinsic function
  • D. Provide the database password as a parameter in the CloudFormation template Create an initialization script in the Auto Scaling group's launch configuration UserData property to reference the password parameter using the Ret intrinsic function Store the password on the EC2 instances Reference the parameter for the value of the MasterUserPassword property in the AWS RDS DBlnstance resource using the Ref intrinsic function

Answer: B



NEW QUESTION # 27

A company is currently using AWS CodeCommit for its source control and AWS CodePipeline for continuous integration. The pipeline has a build stage for building the artifacts which is then staged in an Amazon S3 bucket.

The company has identified various improvement opportunities in the existing process, and a Solutions Architect has been given the following requirement:

- Create a new pipeline to support feature development

- Support feature development without impacting production applications

- Incorporate continuous testing with unit tests

- Isolate development and production artifacts

- Support the capability to merge tested code into production code.

How should the Solutions Architect achieve these requirements?

  • A. Trigger a separate pipeline from CodeCommit tags Use Jenkins for running unit tests. Create a stage in the pipeline with S3 as the target for staging the artifacts with an S3 bucket in a separate testing account.
  • B. Trigger a separate pipeline from CodeCommit feature branches. Use AWS Lambda for running unit tests. Use AWS CodeDeploy to stage the artifacts within an S3 bucket in a separate testing account.
  • C. Create a separate CodeCommit repository for feature development and use it to trigger the pipeline.

    Use AWS Lambda for running unit tests. Use AWS CodeBuild to stage the artifacts within different S3 buckets in the same production account.
  • D. Trigger a separate pipeline from CodeCommit feature branches. Use AWS CodeBuild for running unit tests. Use CodeBuild to stage the artifacts within an S3 bucket in a separate testing account.

Answer: D



NEW QUESTION # 28

A company has a web application that securely uploads pictures and videos to an Amazon S3 bucket The company requires that only authenticated users are allowed to post content T.he application generates a presigned URL that is used to upload objects through a browser interface. Most users are reporting slow upload times for objects larger than 100 MB What can a solutions architect do to improve the performance of these uploads while ensuring only authenticated users are allowed to post content?

  • A. Configure an Amazon CloudFront distribution for the destination S3 bucket Enable PUT and POST methods for the CloudFront cache behavior Update the CloudFront origin to use an origin access identity (OAI) Give the OAl user s 3: Putobject permissions in the bucket policy Have the browser interface upload objects using the CloudFront distribution
  • B. Set up an Amazon API Gateway with a regional API endpoint that has a resource as an S3 service proxy Configure the PUT method for this resource to expose the S3 Putobject operation Secure the API Gateway using an AWS Lambda authonzer Have the browser interface use API Gateway instead of the presigned URL to upload objects
  • C. Enable an S3 Transfer Acceleration endpoint on the S3 bucket Use the endpoint when generating the presigned URL Have the browser interface upload the objects to this URL using the S3 multipart upload API
  • D. Set up an Amazon API Gateway with an edge-optimized API endpoint that has a resource as an S3 service proxy Configure the PUT method for this resource to expose the S3 Putobject operation Secure the API Gateway using a cognito_user_pools authonzer Have the browser interface use API Gateway instead of the presigned URL to upload objects

Answer: A



NEW QUESTION # 29

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