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Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam Sample Questions (Q533-Q538):

NEW QUESTION # 533
A company wants to restrict access to the content of one of its man web applications and to protect the content by using authorization techniques available on AWS. The company wants to implement a serverless architecture end an authentication solution for fewer tian 100 users. The solution needs to integrate with the main web application and serve web content globally. The solution must also scale as to company's user base grows while providing lowest login latency possible.

  • A. Use Amazon Cognito tor authentication. Use Lambda#Edge tor authorization Use Amazon CloudFront
    10 serve the web application globally
  • B. Usa Amazon Cognito for authentication Use AWS Lambda tor authorization Use Amazon S3 Transfer Acceleration 10 serve the web application globally.
  • C. Use AWS Directory Service for Microsoft Active Directory for authentication Use Lambda@Edge for authorization Use AWS Elastic Beanstalk to serve the web application.
  • D. Use AWS Directory Service for Microsoft Active Directory tor authentication Use AWS Lambda for authorization Use an Application Load Balancer to serve the web application globally

Answer: A

Explanation:
https://aws.amazon.com/blogs/networking-and-content-delivery/adding-http-security-headers-using-lambdaedge Amazon CloudFront is a global content delivery network (CDN) service that can securely deliver web content, videos, and APIs at scale. It integrates with Cognito for authentication and with Lambda@Edge for authorization, making it an ideal choice for serving web content globally. Lambda@Edge is a service that lets you run AWS Lambda functions globally closer to users, providing lower latency and faster response times. It can also handle authorization logic at the edge to secure content in CloudFront. For this scenario, Lambda@Edge can provide authorization for the web application while leveraging the low-latency benefit of running at the edge.


NEW QUESTION # 534
A company uses high concurrency AWS Lambda functions to process a constantly increasing number of messages in a message queue during marketing events. The Lambda functions use CPU intensive code to process the messages. The company wants to reduce the compute costs and to maintain service latency for its customers.
Which solution will meet these requirements?

  • A. Configure provisioned concurrency for the Lambda functions. Increase the memory according to AWS Compute Optimizer recommendations.
  • B. Configure reserved concurrency for the Lambda functions. Increase the memory according to AWS Compute Optimizer recommendations.
  • C. Configure reserved concurrency for the Lambda functions. Decrease the memory allocated to the Lambda functions.
  • D. Configure provisioned concurrency for the Lambda functions. Decrease the memory allocated to the Lambda functions.

Answer: A

Explanation:
The company wants to reduce the compute costs and maintain service latency for its Lambda functions that process a constantly increasing number of messages in a message queue. The Lambda functions use CPU intensive code to process the messages. To meet these requirements, a solutions architect should recommend the following solution:
* Configure provisioned concurrency for the Lambda functions. Provisioned concurrency is the number of pre-initialized execution environments that are allocated to the Lambda functions. These execution environments are prepared to respond immediately to incoming function requests, reducing the cold start latency. Configuring provisioned concurrency also helps to avoid throttling errors due to reaching the concurrency limit of the Lambda service.
* Increase the memory according to AWS Compute Optimizer recommendations. AWS Compute Optimizer is a service that provides recommendations for optimal AWS resource configurations based
* on your utilization data. By increasing the memory allocated to the Lambda functions, you can also increase the CPU power and improve the performance of your CPU intensive code. AWS Compute Optimizer can help you find the optimal memory size for your Lambda functions based on your workload characteristics and performance goals.
This solution will reduce the compute costs by avoiding unnecessary over-provisioning of memory and CPU resources, and maintain service latency by using provisioned concurrency and optimal memory size for the Lambda functions.
References:
* Provisioned Concurrency
* AWS Compute Optimizer


NEW QUESTION # 535
A company wants to host a scalable web application on AWS. The application will be accessed by users from different geographic regions of the world. Application users will be able to download and upload unique data up to gigabytes in size. The development team wants a cost-effective solution to minimize upload and download latency and maximize performance.
What should a solutions architect do to accomplish this?

  • A. Use Amazon S3 with CacheControl headers to host the application.
  • B. Use Amazon EC2 with Auto Scaling and Amazon CloudFront to host the application.
  • C. Use Amazon S3 with Transfer Acceleration to host the application.
  • D. Use Amazon EC2 with Auto Scaling and Amazon ElastiCache to host the application.

Answer: B

Explanation:
Explanation
This answer is correct because it meets the requirements of hosting a scalable web application that can handle large data transfers from different geographic regions. Amazon EC2 provides scalable compute capacity for hosting web applications. Auto Scaling can automatically adjust the number of EC2 instances based on the demand and traffic patterns. Amazon CloudFront is a content delivery network (CDN) that can cache static and dynamic content at edge locations closer to the users, reducing latency and improving performance.
CloudFront can also use S3 Transfer Acceleration to speed up the transfers between S3 buckets and CloudFront edge locations.
References:
* https://docs.aws.amazon.com/autoscaling/ec2/userguide/what-is-amazon-ec2-auto-scaling.html
* https://docs.aws.amazon.com/AmazonCloudFront/latest/DeveloperGuide/Introduction.html
* https://aws.amazon.com/s3/transfer-acceleration/


NEW QUESTION # 536
A company has a service that produces event data. The company wants to use AWS to process the event data as it is received. The data is written in a specific order that must be maintained throughout processing The company wants to implement a solution that minimizes operational overhead.
How should a solutions architect accomplish this?

  • A. Create an Amazon Simple Queue Service (Amazon SQS) standard queue to hold messages. Set up an AWS Lambda function to process messages from the queue independently
  • B. Create an Amazon Simple Notification Service (Amazon SNS) topic to deliver notifications containing payloads to process Configure an AWS Lambda function as a subscriber.
  • C. Create an Amazon Simple Notification Service (Amazon SNS) topic to deliver notifications containing payloads to process. Configure an Amazon Simple Queue Service (Amazon SQS) queue as a subscriber.
  • D. Create an Amazon Simple Queue Service (Amazon SQS) FIFO queue to hold messages Set up an AWS Lambda function to process messages from the queue

Answer: D

Explanation:
Explanation
The details are revealed in below url:
https://docs.aws.amazon.com/AWSSimpleQueueService/latest/SQSDeveloperGuide/FIFO-queues.html FIFO (First-In-First-Out) queues are designed to enhance messaging between applications when the order of operations and events is critical, or where duplicates can't be tolerated. Examples of situations where you might use FIFO queues include the following: To make sure that user-entered commands are run in the right order. To display the correct product price by sending price modifications in the right order. To prevent a student from enrolling in a course before registering for an account.


NEW QUESTION # 537
A company has several unencrypted EBS snapshots in their VPC. The Solutions Architect must ensure that all of the new EBS volumes restored from the unencrypted snapshots are automatically encrypted.
What should be done to accomplish this requirement?

  • A. Launch new EBS volumes and specify the symmetric customer master key (CMK) for encryption.
  • B. Launch new EBS volumes and encrypt them using an asymmetric customer master key (CMK).
  • C. Enable the EBS Encryption By Default feature for specific EBS volumes.
  • D. Enable the EBS Encryption By Default feature for the AWS Region.

Answer: D

Explanation:
You can configure your AWS account to enforce the encryption of the new EBS volumes and snapshot copies that you create. For example, Amazon EBS encrypts the EBS volumes created when you launch an instance and the snapshots that you copy from an unencrypted snapshot.


Encryption by default has no effect on existing EBS volumes or snapshots. The following are important considerations in EBS encryption:
- Encryption by default is a Region-specific setting. If you enable it for a Region, you cannot disable it for individual volumes or snapshots in that Region.
- When you enable encryption by default, you can launch an instance only if the instance type supports EBS encryption.
- Amazon EBS does not support asymmetric CMKs.
When migrating servers using AWS Server Migration Service (SMS), do not turn on encryption by default. If encryption by default is already on and you are experiencing delta replication failures, turn off encryption by default. Instead, enable AMI encryption when you create the replication job.
You cannot change the CMK that is associated with an existing snapshot or encrypted volume. However, you can associate a different CMK during a snapshot copy operation so that the resulting copied snapshot is encrypted by the new CMK.
Although there is no direct way to encrypt an existing unencrypted volume or snapshot, you can encrypt them by creating either a volume or a snapshot. If you enabled encryption by default, Amazon EBS encrypts the resulting new volume or snapshot using your default key for EBS encryption. Even if you have not enabled encryption by default, you can enable encryption when you create an individual volume or snapshot. Whether you enable encryption by default or in individual creation operations, you can override the default key for EBS encryption and use symmetric customer-managed CMK. Hence, the correct answer is: Enable the EBS Encryption By Default feature for the AWS Region.
The option that says: Launch new EBS volumes and encrypt them using an asymmetric customer master key (CMK) is incorrect because Amazon EBS does not support asymmetric CMKs. To encrypt an EBS snapshot, you need to use symmetric CMK.
The option that says: Launch new EBS volumes and specify the symmetric customer master key (CMK) for encryption is incorrect. Although this solution will enable data encryption, this process is manual and can potentially cause some unencrypted EBS volumes to be launched. A better solution is to enable the EBS Encryption By Default feature. It is stated in the scenario that all of the new EBS volumes restored from the unencrypted snapshots must be automatically encrypted.
The option that says: Enable the EBS Encryption By Default feature for specific EBS volumes is incorrect because the Encryption By Default feature is a Region-specific setting and thus, you can't enable it to selected EBS volumes only.
References:
https://docs.aws.amazon.com/AWSEC2/latest/UserGuide/EBSEncryption.html#encryption-by-default
https://docs.aws.amazon.com/kms/latest/developerguide/services-ebs.html Check out this Amazon EBS Cheat Sheet:
https://tutorialsdojo.com/amazon-ebs/
Comparison of Amazon S3 vs Amazon EBS vs Amazon EFS:
https://tutorialsdojo.com/amazon-s3-vs-ebs-vs-efs/


NEW QUESTION # 538
......

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