LATEST AMAZON SAA-C03 EXAM PREPARATION | SAA-C03 TEST QUESTIONS FEE

Latest Amazon SAA-C03 Exam Preparation | SAA-C03 Test Questions Fee

Latest Amazon SAA-C03 Exam Preparation | SAA-C03 Test Questions Fee

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Amazon SAA-C03 (Amazon AWS Certified Solutions Architect - Associate (SAA-C03)) certification exam is a highly sought-after credential for IT professionals who want to demonstrate their expertise in designing and deploying scalable, fault-tolerant, and highly available systems on Amazon Web Services (AWS) platform. Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam certification exam is designed to test candidates' knowledge of AWS services, architectural principles, and best practices for building secure and reliable applications on the cloud.

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Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam Sample Questions (Q22-Q27):

NEW QUESTION # 22
A company recently announced the deployment of its retail website to a global audience. The website runs on multiple Amazon EC2 instances behind an Elastic Load Balancer. The instances run in an Auto Scaling group across multiple Availability Zones.
The company wants to provide its customers with different versions of content based on the devices that the customers use to access the website.
Which combination of actions should a solutions architect take to meet these requirements? (Choose two.)

  • A. Configure Amazon CloudFront to cache multiple versions of the content.
  • B. Configure a host header in a Network Load Balancer to forward traffic to different instances.
  • C. Configure a Lambda@Edge function to send specific objects to users based on the User-Agent header.
  • D. Configure AWS Global Accelerator. Forward requests to a Network Load Balancer (NLB). Configure the NLB to set up path-based routing to different EC2 instances.
  • E. Configure AWS Global Accelerator. Forward requests to a Network Load Balancer (NLB). Configure the NLB to set up host-based routing to different EC2 instances.

Answer: A,C

Explanation:
For C: IMPROVED USER EXPERIENCE Lambda@Edge can help improve your users' experience with your websites and web applications across the world, by letting you personalize content for them without sacrificing performance. Real-time Image Transformation You can customize your users' experience by transforming images on the fly based on the user characteristics. For example, you can resize images based on the viewer's device type-mobile, desktop, or tablet. You can also cache the transformed images at CloudFront Edge locations to further improve performance when delivering images. https://aws.amazon.com/lambda/edge/


NEW QUESTION # 23
A company is building an application in the AWS Cloud. The application is hosted on Amazon EC2 instances behind an Application Load Balancer (ALB). The company uses Amazon Route 53 for the DNS.
The company needs a managed solution with proactive engagement to detect against DDoS attacks.
Which solution will meet these requirements?

  • A. Enable AWS Config. Configure an AWS Config managed rule that detects DDoS attacks.
  • B. Store the ALB access logs in an Amazon S3 bucket. Configure Amazon GuardDuty to detect and take automated preventative actions for DDoS attacks.
  • C. Enable AWS WAF on the ALB Create an AWS WAF web ACL with rules to detect and prevent DDoS attacks. Associate the web ACL with the ALB.
  • D. Subscribe to AWS Shield Advanced. Configure hosted zones in Route 53 Add ALB resources as protected resources.

Answer: D

Explanation:
AWS Shield Advanced is designed to provide enhanced protection against DDoS attacks with proactive engagement and response capabilities, making it the best solution for this scenario.
AWS Shield Advanced: This service provides advanced protection against DDoS attacks. It includes detailed attack diagnostics, 24/7 access to the AWS DDoS Response Team (DRT), and financial protection against DDoS-related scaling charges. Shield Advanced also integrates with Route 53 and the Application Load Balancer (ALB) to ensure comprehensive protection for your web applications.
Route 53 and ALB Protection: By adding your Route 53 hosted zones and ALB resources to AWS Shield Advanced, you ensure that these components are covered under the enhanced protection plan. Shield Advanced actively monitors traffic and provides real-time attack mitigation, minimizing the impact of DDoS attacks on your application.
Why Not Other Options?:
Option A (AWS Config): AWS Config is a configuration management service and does not provide DDoS protection or detection capabilities.
Option B (AWS WAF): While AWS WAF can help mitigate some types of attacks, it does not provide the comprehensive DDoS protection and proactive engagement offered by Shield Advanced.
Option C (GuardDuty): GuardDuty is a threat detection service that identifies potentially malicious activity within your AWS environment, but it is not specifically designed to provide DDoS protection.
AWS Reference:
AWS Shield Advanced - Overview of AWS Shield Advanced and its DDoS protection capabilities.
Integrating AWS Shield Advanced with Route 53 and ALB - Detailed guidance on how to protect Route 53 and ALB with AWS Shield Advanced.


NEW QUESTION # 24
A company has a web application that includes an embedded NoSQL database. The application runs on Amazon EC2 instances behind an Application Load Balancer (ALB). The instances run in an Amazon EC2 Auto Scaling group in a single Availability Zone.
A recent increase in traffic requires the application to be highly available and for the database to be eventually consistent Which solution will meet these requirements with the LEAST operational overhead?

  • A. Replace the ALB with a Network Load Balancer Migrate the embedded NoSQL database to Amazon DynamoDB by using AWS Database Migration Service (AWS DMS).
  • B. Modify the Auto Scaling group to use EC2 instances across three Availability Zones. Maintain the embedded NoSQL database with its replication service on the EC2 instances.
  • C. Modify the Auto Scaling group to use EC2 instances across three Availability Zones. Migrate the embedded NoSQL database to Amazon DynamoDB by using AWS Database Migration Service (AWS DMS).
  • D. Replace the ALB with a Network Load Balancer Maintain the embedded NoSQL database with its replication service on the EC2 instances.

Answer: C

Explanation:
This solution will meet the requirements of high availability and eventual consistency with the least operational overhead. By modifying the Auto Scaling group to use EC2 instances across three Availability Zones, the web application can handle the increase in traffic and tolerate the failure of one or two Availability Zones. By migrating the embedded NoSQL database to Amazon DynamoDB, the company can benefit from a fully managed, scalable, and reliable NoSQL database service that supports eventual consistency. AWS Database Migration Service (AWS DMS) is a cloud service that makes it easy to migrate relational databases, data warehouses, NoSQL databases, and other types of data stores. AWS DMS can migrate the embedded NoSQL database to Amazon DynamoDB with minimal downtime and zero data loss.
References: AWS Database Migration Service (AWS DMS), Amazon DynamoDB Features, Amazon EC2 Auto Scaling


NEW QUESTION # 25
At part of budget planning. management wants a report of AWS billed dams listed by user. The data will be used to create department budgets. A solution architect needs to determine the most efficient way to obtain this report Information Which solution meets these requirement?

  • A. Create a report in Cost Explorer and download the report
  • B. Modify a cost budget in AWS Budgets to alert with Amazon Simple Email Service (Amazon SES).
  • C. Access the bill details from the running dashboard and download Via bill.
  • D. Run a query with Amazon Athena to generate the report.

Answer: A

Explanation:
This option is the most efficient because it uses Cost Explorer, which is a tool that allows you to visualize, understand, and manage your AWS costs and usage over time1. You can create a report in Cost Explorer that lists AWS billed items by user, using the user name tag as a filter2. You can then download the report as a CSV file and use it for budget planning. Option A is less efficient because it uses Amazon Athena, which is a serverless interactive query service that allows you to analyze data in Amazon S3 using standard SQL3. You would need to set up an Athena table that points to your AWS Cost and Usage Report data in S3, and then run a query to generate the report. This would incur additional costs and complexity. Option C is less efficient because it uses the billing dashboard, which provides a high-level summary of your AWS costs and usage. You can access the bill details from the billing dashboard and download them via bill, but this would not list the billed items by user. You would need to use tags to group your costs by user name, which would require additional steps. Option D is less efficient because it uses AWS Budgets, which is a tool that allows you to plan your service usage, service costs, and instance reservations. You can modify a cost budget in AWS Budgets to alert with Amazon Simple Email Service (Amazon SES), but this would not generate a report of AWS billed items by user. This would only notify you when your actual or forecasted costs exceed or are expected to exceed your budgeted amount.


NEW QUESTION # 26
A company is building a three-tier application on AWS. The presentation tier will serve a static website. The logic tier is a containerized application. This application will store data in a relational database. The company wants to simplify deployment and to reduce operational costs.
Which solution will meet these requirements?

  • A. Use Amazon S3 to host static content. Use Amazon Elastic Kubernetes Service (Amazon EKS) with AWS Fargate for compute power. Use a managed Amazon RDS cluster for the database.
  • B. Use Amazon EC2 Reserved Instances to host static content. Use Amazon Elastic Kubernetes Service (Amazon EKS) with Amazon EC2 for compute power. Use a managed Amazon RDS cluster for the database.
  • C. Use Amazon S3 to host static content. Use Amazon Elastic Container Service (Amazon ECS) with AWS Fargate for compute power. Use a managed Amazon RDS cluster for the database.
  • D. Use Amazon CloudFront to host static content. Use Amazon Elastic Container Service (Amazon ECS) with Amazon EC2 for compute power. Use a managed Amazon RDS cluster for the database.

Answer: C

Explanation:
Amazon S3 is an object storage service that offers industry-leading scalability, data availability, security, and performance. You can use Amazon S3 to host static content for your website, such as HTML files, images, videos, etc. Amazon Elastic Container Service (Amazon ECS) is a fully managed container orchestration service that allows you to run and scale containerized applications on AWS. AWS Fargate is a serverless compute engine for containers that works with both Amazon ECS and Amazon EKS. Fargate makes it easy for you to focus on building your applications by removing the need to provision and manage servers. You can use Amazon ECS with AWS Fargate for compute power for your containerized application logic tier.
Amazon RDS is a managed relational database service that makes it easy to set up, operate, and scale a relational database in the cloud. You can use a managed Amazon RDS cluster for the database tier of your application. This solution will simplify deployment and reduce operational costs for your three-tier application. References: https://docs.aws.amazon.com/AmazonS3/latest/userguide/WebsiteHosting.html
https://docs.aws.amazon.com/AmazonECS/latest/developerguide/Welcome.html https://docs.aws.amazon.com
/AmazonRDS/latest/UserGuide/Welcome.html


NEW QUESTION # 27
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