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NEW QUESTION: 1
솔루션 아키텍트가 AWS Fargate에서 실행될 컨테이너화 된 NET Core 애플리케이션을 구축하고 있습니다. 애플리케이션의 백엔드에는 고 가용성을 갖춘 Microsoft SQL Server가 필요합니다 애플리케이션의 모든 계층은 고 가용성이어야 합니다. SQL Server에 대한 연결 문자열에 사용되는 자격 증명은 .NET Core 프런트 엔드 컨테이너 내의 디스크에 저장됩니다.
Solutions Architect는 이러한 요구 사항을 충족하기 위해 어떤 전략을 사용해야 합니까?
A. Fargate에서 Service Auto Scaling을 실행하도록 SQL Server를 설정합니다. Fargate 작업 정의가 Fargate에서 실행중인 SQL Server에 대한 자격 증명에 대한 비밀 값을 가져 오도록 허용하는 Amazon ECS 작업 실행 역할 생성 Fargate 작업 정의의 비밀 섹션에서 AWS Secrets Manager의 비밀 ARN을 지정하여 민감한 데이터 연결 문자열을 구성하기 위해 응용 프로그램에서 읽기 위해 시작시 환경 변수로 컨테이너에 주입 될 수 있습니다. 여러 가용 영역에서 Application Load Balancer 뒤의 Service Auto Scaling을 사용하여 NET Core 서비스를 설정합니다.
B. Amazon EC2에서 SQL Server를 실행하기 위한 Auto Scaling 그룹 생성 EC2에서 실행되는 SQL Server에 대한 자격 증명을 위해 AWS Secrets Manager에서 암호를 생성합니다. Fargate 작업 정의가 암호 값을 가져올 수 있도록 하는 Amazon ECS 작업 실행 역할을 생성합니다. EC2의 SQL Server에 대한 자격 증명 Fargate 작업 정의의 secrets 섹션에서 Secrets Manager의 ARN을 지정합니다. 그러면 시작시 민감한 데이터를 환경 변수로 컨테이너에 주입하여 애플리케이션에서 연결 문자열을 구성 할 수 있습니다. 여러 가용 영역에서 Application Load Balancer 뒤의 Service Auto Scaling을 사용하여 NET Core 서비스를 설정합니다.
C. Amazon RDS에서 SQL Server의 다중 AZ 배포 생성 RDS 데이터베이스에 대한 자격 증명을 위해 AWS Secrets Manager에서 암호 생성 Fargate 작업 정의에서 NET Core 컨테이너에 대한 비 영구적 빈 스토리지를 생성하여 민감한 정보를 저장합니다. Fargate 작업 정의가 Secrets Manager의 RDS 데이터베이스에 대한 자격 증명에 대한 비밀 값을 가져 오도록 허용하는 Amazon ECS 작업 실행 역할 Fargate 작업 정의의 secrets 섹션에서 Secrets Manager의 비밀 ARN을 지정하여 민감한 데이터가 연결 문자열을 구성하기 위해 애플리케이션을 읽기 위해 시작시 비 영구 빈 스토리지에 기록됩니다. 여러 가용 영역에서 Application Load Balancer 뒤의 서비스 자동 조정을 사용하여 NET Core 서비스를 설정합니다.
D. Amazon RDS에서 SQL Server의 다중 AZ 배포 생성 RDS 데이터베이스에 대한 자격 증명을 위해 AWS Secrets Manager에서 암호를 생성합니다. Amazon을 생성합니다.
Fargate 작업 정의가 Secrets Manager의 RDS 데이터베이스에 대한 자격 증명에 대한 비밀 값을 가져 오도록 허용하는 ECS 작업 실행 역할 Fargate 작업 정의의 secrets 섹션에서 Secrets Manager의 비밀 ARN을 지정하여 민감한 데이터를 삽입 할 수 있도록합니다. 연결 문자열을 구성하기 위해 애플리케이션을 읽기 위해 시작시 환경 변수로 컨테이너에 여러 가용 영역의 Application Load Balancer 뒤에서 서비스 자동 조정을 사용하여 Fargate에서 NET Core 서비스를 설정합니다.
Answer: D
Explanation:
Explanation
https://aws.amazon.com/premiumsupport/knowledge-center/ecs-data-security-container-task/

NEW QUESTION: 2
To centrally deploy and upgrade eSpace IP phones in DHCP Option 246 mode, set Option246 of the DHCP server to ().
A. Configuration file URL
B. Policy file URL
C. IP address segment
D. HTTP Server IP address
Answer: B

NEW QUESTION: 3
開発チームは、企業内でサーバーレスアプリケーションとして新しいAPIを展開しています。チームは現在、AWSマネジメントコンソールを使用して、Amazon API Gateway、AWS Lambda、およびAmazonDynamoDBリソースをプロビジョニングしています。ソリューションアーキテクトは、これらのサーバーレスAPIの将来の展開を自動化する任務を負っています。
これはどのように達成できますか?
A. Commit the application code to the AWS CodeCommit code repository. Use AWS CodePipeline and connect to the CodeCommit code repository. Use AWS CodeBuild to build and deploy the Lambda functions using AWS CodeDeploy. Specify the deployment preference type in CodeDeploy to gradually shift traffic over to the new version.
B. Use AWS CloudFormation with a Lambda-backed custom resource to provision API Gateway. Use the AWS::DynamoDB::Table and AWS::Lambda::Function resources to create the Amazon DynamoDB table and Lambda functions. Write a script to automate the deployment of the CloudFormation template.
C. Use the AWS Serverless Application Model to define the resources. Upload a YAML template and application files to the code repository. Use AWS CodePipeline to connect to the code repository and to create an action to build using AWS CodeBuild. Use the AWS CloudFormation deployment provider in CodePipeline to deploy the solution.
D. Use AWS CloudFormation to define the serverless application. Implement versioning on the Lambda functions and create aliases to point to the versions. When deploying, configure weights to implement shifting traffic to the newest version, and gradually update the weights as traffic moves over.
Answer: C
Explanation:
https://aws-quickstart.s3.amazonaws.com/quickstart-trek10-serverless-enterprise-cicd/doc/serverless-cicd-for-the-enterprise-on-the-aws-cloud.pdf
https://aws.amazon.com/quickstart/architecture/serverless-cicd-for-enterprise/

NEW QUESTION: 4
You are designing a shared storage solution for your company in Oracle Cloud Infrastructure. The proposed storage solution should allow users to create a hierarchical structure (similar to the directory structure in Linux or Windows based systems). The solution should provide data encryption and a large amount of storage space.
Which would be the best implementation strategy?
A. Use object storage. Create multiple namespaces with one bucket each. Make the buckets publicly accessible.
B. Use object storage. Create a single namespace and multiple buckets to create the hierarchical directory structure.
C. Use block storage. Create and attach a large block storage volume to one compute instance. Assign a public IP to the compute instance. Store data on the block storage and access it by connecting to the compute instance.
D. Use file storage service. Create a file system and a mount target. Share the private IP of the mount target.
Answer: D