AWS-DevOps-Engineer-Professional再テスト 資格取得

我々Shobhadoshiは一番行き届いたアフタサービスを提供します。Amazon AWS-DevOps-Engineer-Professional再テスト試験問題集を購買してから、一年間の無料更新を楽しみにしています。あなたにAmazon AWS-DevOps-Engineer-Professional再テスト試験に関する最新かつ最完備の資料を勉強させ、試験に合格させることだと信じます。 我々Shobhadoshiの提供するAmazonのAWS-DevOps-Engineer-Professional再テストの復習資料はあなたを助けて一番短い時間であなたに試験に合格させることができます。我々は権威的な試験資料と豊富な経験と責任感のあるチームを持っています。 我々社サイトのAmazon AWS-DevOps-Engineer-Professional再テスト問題庫は最新かつ最完備な勉強資料を有して、あなたに高品質のサービスを提供するのはAWS-DevOps-Engineer-Professional再テスト資格認定試験の成功にとって唯一の選択です。

AWS Certified DevOps Engineer AWS-DevOps-Engineer-Professional でも、成功へのショートカットがを見つけました。

AWS Certified DevOps Engineer AWS-DevOps-Engineer-Professional再テスト - AWS Certified DevOps Engineer - Professional しかし必ずしも大量の時間とエネルギーで復習しなくて、弊社が丹精にできあがった問題集を使って、試験なんて問題ではありません。 さて、はやく試験を申し込みましょう。Shobhadoshiはあなたを助けることができますから、心配する必要がないですよ。

弊社が提供した問題集がほかのインターネットに比べて問題のカーバ範囲がもっと広くて対応性が強い長所があります。Shobhadoshiが持つべきなIT問題集を提供するサイトでございます。

Amazon AWS-DevOps-Engineer-Professional再テスト問題集を利用して試験に合格できます。

AWS-DevOps-Engineer-Professional再テスト問題集の品質を確かめ、この問題集はあなたに合うかどうかを確認することができるように、ShobhadoshiはAWS-DevOps-Engineer-Professional再テスト問題集の一部のダウンロードを無料で提供します。二つのバージョンのどちらでもダウンロードできますから、Shobhadoshiのサイトで検索してダウンロードすることができます。体験してから購入するかどうかを決めてください。そうすると、AWS-DevOps-Engineer-Professional再テスト問題集の品質を知らないままに問題集を購入してから後悔になることを避けることができます。

ShobhadoshiにたくさんのIT専門人士がいって、弊社の問題集に社会のITエリートが認定されて、弊社の問題集は試験の大幅カーバして、合格率が100%にまで達します。弊社のみたいなウエブサイトが多くても、彼たちは君の学習についてガイドやオンラインサービスを提供するかもしれないが、弊社はそちらにより勝ちます。

AWS-DevOps-Engineer-Professional PDF DEMO:

QUESTION NO: 1
A web application for healthcare services runs on Amazon EC2 instances behind an ELB
Application Load Balancer. The instances run in an Amazon EC2 Auto Scaling group across multiple
Availability Zones. A DevOps Engineer must create a mechanism in which an EC2 instance can be taken out of production so its system logs can be analyzed for issues to quickly troubleshot problems on the web tier.
How can the Engineer accomplish this task while ensuring availability and minimizing downtime?
A. Terminate the EC2 instances manually. The Auto Scaling service will upload all log information to
CloudWatch Logs for analysis prior to instance termination.
B. Implement EC2 Auto Scaling groups cooldown periods. Use EC2 instance metadata to determine the instance state, and an AWS Lambda function to snapshot Amazon EBS volumes to preserve system logs.
C. Implement Amazon CloudWatch Events rules. Create an AWS Lambda function that can react to an instance termination to deploy the CloudWatch Logs agent to upload the system and access logs to
Amazon S3 for analysis.
D. Implement EC2 Auto Scaling groups with lifecycle hooks. Create an AWS Lambda function that can modify an EC2 instance lifecycle hook into a standby state, extract logs from the instance through a remote script execution, and place them in an Amazon S3 bucket for analysis.
Answer: B

QUESTION NO: 2
A company is hosting a web application in an AWS Region. For disaster recovery purposes, a second region is being used as a standby. Disaster recovery requirements state that session data must be replicated between regions in near-real time and 1% of requests should route to the secondary region to continuously verify system functionality. Additionally, if there is a disruption in service in the main region, traffic should be automatically routed to the secondary region, and the secondary region must be able to scale up to handle all traffic.
How should a DevOps Engineer meet these requirements?
A. In both regions, deploy the application on AWS Elastic Beanstalk and use Amazon DynamoDB global tables for session data. Use an Amazon Route 53 weighted routing policy with health checks to distribute the traffic across the regions.
B. In both regions, launch the application in Auto Scaling groups and use DynamoDB for session data.
Use a Route 53 failover routing policy with health checks to distribute the traffic across the regions.
C. In both regions, deploy the application in AWS Lambda, exposed by Amazon API Gateway, and use
Amazon RDS PostgreSQL with cross-region replication for session data. Deploy the web application with client-side logic to call the API Gateway directly.
D. In both regions, launch the application in Auto Scaling groups and use DynamoDB global tables for session data. Enable an Amazon CloudFront weighted distribution across regions. Point the Amazon
Route 53 DNS record at the CloudFront distribution.
Answer: C

QUESTION NO: 3
A defect was discovered in production and a new sprint item has been created for deploying a hotfix.
However, any code change must go through the following steps before going into production:
*Scan the code for security breaches, such as password and access key leaks.
Run the code through extensive, long running unit tests.
Which source control strategy should a DevOps Engineer use in combination with AWS CodePipeline to complete this process?
A. Create a hotfix branch from the master branch. Triger the development pipeline from the hotfix branch.
Use AWS Lambda to do a content scan and run unit tests. Add a manual approval stage that merges the hotfix branch into the master branch.
B. Create a hotfix branch from the master branch. Create a separate source stage for the hotfix branch in the production pipeline. Trigger the pipeline from the hotfix branch. Use AWS Lambda to do a content scan and use AWS CodeBuild to run unit tests. Add a manual approval stage that merges the hotfix branch into the master branch.
C. Create a hotfix branch from the master branch. Triger the development pipeline from the hotfix branch.
Use AWS CodeBuild to do a content scan and run unit tests. Add a manual approval stage that merges the hotfix branch into the master branch.
D. Create a hotfix tag on the last commit of the master branch. Trigger the development pipeline from the hotfix tag. Use AWS CodeDeploy with Amazon ECS to do a content scan and run unit tests.
Add a manual approval stage that merges the hotfix tag into the master branch.
Answer: D

QUESTION NO: 4
A government agency has multiple AWS accounts, many of which store sensitive citizen information. A Security team wants to detect anomalous account and network activities (such as SSH brute force attacks) in any account and centralize that information in a dedicated security account.
Event information should be stored in an Amazon S3 bucket in the security account, which is monitored by the department's Security Information and Even Manager (SIEM) system.
How can this be accomplished?
A. Enable Amazon Macie in the security account only. Configure the security account as the Macie
Administrator for every member account using invitation/ acceptance. Create an Amazon
CloudWatch Events rule in the security account to send all findings to Amazon Kinesis Data Streams.
Write and application using KCL to read data from the Kinesis Data Streams and write to the S3 bucket.
B. Enable Amazon GuardDuty in every account. Configure the security account as the GuardDuty
Administrator for every member account using invitation/ acceptance. Create an Amazon
CloudWatch rule in the security account to send all findings to Amazon Kinesis Data Firehouse, which will push the findings to the S3 bucket.
C. Enable Amazon GuardDuty in the security account only. Configure the security account as the
GuardDuty Administrator for every member account using invitation/acceptance. Create an Amazon
CloudWatch rule in the security account to send all findings to Amazon Kinesis Data Streams. Write and application using KCL to read data from Kinesis Data Streams and write to the S3 bucket.
D. Enable Amazon Macie in every account. Configure the security account as the Macie
Administrator for every member account using invitation/acceptance. Create an Amazon CloudWatch
Events rule in the security account to send all findings to Amazon Kinesis Data Firehouse, which should push the findings to the S3 bucket.
Answer: C

QUESTION NO: 5
A DevOps Engineer administers an application that manages video files for a video production company. The application runs on Amazon EC2 instances behind an ELB Application Load Balancer.
The instances run in an Auto Scaling group across multiple Availability Zones. Data is stored in an
Amazon RDS PostgreSQL Multi-AZ DB instance, and the video files are stored in an Amazon S3 bucket.
On a typical day, 50 GB of new video are added to the S3 bucket. The Engineer must implement a multi-region disaster recovery plan with the least data loss and the lowest recovery times. The current application infrastructure is already described using AWS CloudFormation.
Which deployment option should the Engineer choose to meet the uptime and recovery objectives for the system?
A. Launch the application from the CloudFormation template in the second region, which sets the capacity of the Auto Scaling group to 1. Create a scheduled task to take daily Amazon RDS cross- region snapshots to the second region. In the second region, enable cross-region replication between the original S3 bucket and Amazon Glacier. In a disaster, launch a new application stack in the second region and restore the database from the most recent snapshot.
B. Use Amazon CloudWatch Events to schedule a nightly task to take a snapshot of the database and copy the snapshot to the second region. Create an AWS Lambda function that copies each object to a new S3 bucket in the second region in response to S3 event notifications. In the second region, launch the application from the CloudFormation template and restore the database from the most recent snapshot.
C. Launch the application from the CloudFormation template in the second region, which sets the capacity of the Auto Scaling group to 1. Create an Amazon RDS read replica in the second region. In the second region, enable cross-region replication between the original S3 bucket and a new S3 bucket. To fail over, promote the read replica as master. Update the CloudFormation stack and increase the capacity of the Auto Scaling group.
D. Launch the application from the CloudFormation template in the second region which sets the capacity of the Auto Scaling group to 1. Use Amazon CloudWatch Events to schedule a nightly task to take a snapshot of the database, copy the snapshot to the second region, and replace the DB instance in the second region from the snapshot. In the second region, enable cross-region replication between the original S3 bucket and a new S3 bucket. To fail over, increase the capacity of the Auto Scaling group.
Answer: D

Python Institute PCET-30-01 - しかし、資料の品質が保証されることができません。 AmazonのAmazon SCS-C02-KR試験に合格することは容易なことではなくて、良い訓練ツールは成功の保証でShobhadoshiは君の試験の問題を準備してしまいました。 CompTIA XK0-005 - もし学習教材は問題があれば、或いは試験に不合格になる場合は、全額返金することを保証いたします。 ITの専門者はAmazonのMicrosoft GH-100認定試験があなたの願望を助けって実現できるのがよく分かります。 ShobhadoshiのAmazonのAmazon SAP-C02-JPN試験トレーニング資料は高度に認証されたIT領域の専門家の経験と創造を含めているものです。

Updated: May 28, 2022

AWS-DevOps-Engineer-Professional 再テスト - AWS-DevOps-Engineer-Professional トレーリングサンプル & AWS Certified DevOps Engineer Professional

PDF問題と解答

試験コード:AWS-DevOps-Engineer-Professional
試験名称:AWS Certified DevOps Engineer - Professional
最近更新時間:2025-06-09
問題と解答:全 575
Amazon AWS-DevOps-Engineer-Professional 日本語版対策ガイド

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模擬試験

試験コード:AWS-DevOps-Engineer-Professional
試験名称:AWS Certified DevOps Engineer - Professional
最近更新時間:2025-06-09
問題と解答:全 575
Amazon AWS-DevOps-Engineer-Professional 試験解説

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オンライン版

試験コード:AWS-DevOps-Engineer-Professional
試験名称:AWS Certified DevOps Engineer - Professional
最近更新時間:2025-06-09
問題と解答:全 575
Amazon AWS-DevOps-Engineer-Professional 資格認定

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