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Exclusive AWS-DevOps-Engineer-Professional Exam Questions And AWS-DevOps-Engineer-Professional Dumps For The 2025 Exam

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Posted on: 02/11/25

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The DOP-C01 exam covers a broad range of topics, including continuous delivery and deployment, infrastructure as code, monitoring and logging, security, and automation. AWS-DevOps-Engineer-Professional exam is designed to test the candidate's understanding of how to use AWS services to implement DevOps practices, as well as their ability to troubleshoot and optimize those practices. AWS-DevOps-Engineer-Professional Exam consists of 75 multiple-choice and multiple-response questions and must be completed within 180 minutes.

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To take the AWS-DevOps-Engineer-Professional Certification Exam, candidates must have a strong understanding of AWS services and architecture, as well as experience with DevOps tools and practices. Candidates should also have experience with infrastructure as code (IaC) tools, such as AWS CloudFormation and Terraform, and knowledge of configuration management tools like Chef and Puppet.

Amazon AWS Certified DevOps Engineer - Professional Sample Questions (Q83-Q88):

NEW QUESTION # 83
Your company develops a variety of web applications using many platforms and programming languages with
different application dependencies. Each application must be developed and deployed quickly and be highly
available to satisfy your business requirements. Which of the following methods should you use to deploy
these applications rapidly?

  • A. Develop the applications in Docker containers, and then deploy them to Elastic Beanstalk environments
    with Auto Scaling and Elastic Load Balancing.
  • B. Store each application's code in a Git repository, develop custom package repository managers for each
    application's dependencies, and deploy to AWS OpsWorks in multiple Availability Zones.
  • C. Use the AWS CloudFormation Docker import service to build and deploy the applications with high
    availability in multiple Availability Zones.
    C- Develop each application's code in DynamoDB, and then use hooks to deploy it to Elastic Beanstalk
    environments with Auto Scaling and Elastic Load Balancing.

Answer: A

Explanation:
Explanation
Elastic Beanstalk supports the deployment of web applications from Docker containers. With Docker
containers, you can define your own runtime environment. You
can choose your own platform, programming language, and any application dependencies (such as package
managers or tools), that aren't supported by other
platforms. Docker containers are self-contained and include all the configuration information and software
your web application requires to run.
By using Docker with Elastic Beanstalk, you have an infrastructure that automatically handles the details of
capacity provisioning, load balancing, scaling, and
application health monitoring.
For more information on Dockers and Elastic beanstalk please refer to the below link:
* http://docs.aws.amazon.com/elasticbeanstalk/latest/dg/create_deploy_docker.html


NEW QUESTION # 84
The Development team at an online retailer has moved to Business support and want to take advantage of the AWS Health Dashboard and the AWS Health API to automate remediation actions for issues with the health of AWS resources. The first use case is to respond to AWS detecting an IAM access key that is listed on a public code repository site. The automated response will be to delete the IAM access key and send a notification to the Security team.
How should this be achieved?

  • A. Create an AWS Lambda function to delete the IAM access key. Send AWS CloudTrail logs to AWS CloudWatch logs. Create a CloudWatch Logs metric filter for the AWS_RISK_CREDENTIALS_EXPOSED event with two actions: first, run the Lambda function; second, use Amazon SNS to send a notification to the Security team.
  • B. Use AWS Step Functions to create a function to delete the IAM access key, and then use Amazon SNS to send a notification to the Security team. Create an AWS Personal Health Dashboard rule for the AWS_RISK_CREDENTIALS_EXPOSED event; set the target of the Personal Health Dashboard rule to Step Functions.
  • C. Use AWS Step Functions to create a function to delete the IAM access key, and then use Amazon SNS to send a notification to the Security team. Create an Amazon CloudWatch Events rule with an aws.health event source and the AWS_RISK_CREDENTIALS_EXPOSED event, set the target of the CloudWatch Events rule to Step Functions.
  • D. Create an AWS Lambda function to delete the IAM access key. Create an AWS Config rule for changes to aws.health and the AWS_RISK_CREDENTIALS_EXPOSED event with two actions:
    first, run the Lambda function; second, use Amazon SNS to send a notification to the Security team.

Answer: C


NEW QUESTION # 85
You are building a deployment system on AWS. You will deploy new code by bootstrapping instances in a
private subnet in a VPC at runtime using UserData scripts pointing to an S3 zip file object, where your
code is stored. An ELB in a public subnet has network interfaces and connectivity to the instances.
Requests from users of the system are routed to the ELB via a Route53 A Record Alias. You do not use
any VPC endpoints. Which is a risk of using this approach?

  • A. Route53 Alias records do not always update dynamically with ELB network changes after deploys.
  • B. If the NAT routing for the private subnet fails, deployments fail.
  • C. The instances cannot be in a private subnet if the ELB is in a public one.
  • D. Kernel changes to the base AMI may render the code inoperable.

Answer: B

Explanation:
Since you are not using VPC endpoints, outbound requests for the code sitting in S3 are routed though
the NAT for the VPC's private subnets. If this networking fails, runtime bootstrapping through code
download will fail due to network unavailability and lack of access to the Internet, and thus Amazon S3.
Reference: http://docs.aws.amazon.com/AmazonVPC/latest/UserGuide/VPC_NAT_Instance.html


NEW QUESTION # 86
Your API requires the ability to stay online during AWS regional failures. Your API does not store any state, it only aggregates data from other sources - you do not have a database. What is a simple but effective way to achieve this uptime goal?

  • A. Create a Route53 Latency Based Routing Record with Failover and point it to two identical deployments of your stateless API in two different regions. Make sure both regions use Auto Scaling Groups behind ELBs.
  • B. Create a Route53 Weighted Round Robin record, and if one region goes down, have that region redirect to the other region.
  • C. Use a CloudFront distribution to serve up your API. Even if the region your API is in goes down, the edge locations CloudFront uses will be fine.
  • D. Use an ELB and a cross-zone ELB deployment to create redundancy across datacenters. Even if a region fails, the other AZ will stay online.

Answer: A

Explanation:
Latency Based Records allow request distribution when all is well with both regions, and the Failover component enables fallbacks between regions. By adding in the ELB and ASG, your system in the surviving region can expand to meet 100% of demand instead of the original fraction, whenever failover occurs.
Reference:
http://docs.aws.amazon.com/Route53/latest/DeveloperGuide/dns-failover.html


NEW QUESTION # 87
Which of the following tools is available to send logdatafrom EC2 Instances.

  • A. LogsStream
  • B. Logsconsole.
  • C. CloudWatchAgent
  • D. CloudWatch LogsAgent

Answer: D

Explanation:
Explanation
The AWS Documentation mentions the following
The CloudWatch Logs agent provides an automated way to send log data to Cloud Watch Logs from Amazon L~C2 instances. The agent is comprised of the following components:
* A plug-in to the AWS CLI that pushes log data to CloudWatch Logs.
* A script (daemon) that initiates the process to push data to CloudWatch Logs.
* Acron job that ensures that the daemon is always running. For more information on Cloudwatch logs Agent, please see the below link:
* http://docs.aws.amazon.com/AmazonCloudWatch/latest/logs/AgentReferenee.htmI


NEW QUESTION # 88
......

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