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NEW QUESTION # 34
A Solutions Architect is designing an architecture for a mobile gaming application. The application is
expected to be very popular. The Architect needs to prevent the Amazon RDS MySQL database from
becoming a bottleneck due to frequently accessed queries.
Which service or feature should the Architect add to prevent a bottleneck?

A. ELB Classic Load Balancer in front of the web application tierB. Amazon ElastiCache in front of the RDS MySQL DatabaseC. Multi-AZ feature on the RDS MySQL DatabaseD. Amazon SQS in front of RDS MySQL Database

Answer: B


NEW QUESTION # 35
A company's web application will be migrated to AWS. The application is designed so that there is no server-side code required. As part of the migration, the company would like to improve the security of the application by adding HTTP response headers, following the Open Web Application Security Project (OWASP) secure headers recommendations.
How can this solution be implemented to meet the security requirements using best practices?

A. set an Amazon S3 bucket configured for website hosting. Create an Amazon CloudFront distribution that refers to this S3 bucket. Set "Cache Based on Selected Request Headers" to
"Whitelist," and add the security headers into the whitelist.B. Use an Amazon S3 bucket configured for website hosting, then set up server access logging on the S3 bucket to track user activity. Configure the static website hosting to return the required security headers.C. Use an Amazon S3 bucket configured for website hosting, then set up server access logging on the S3 bucket to track user activity. Then configure the static website hosting and execute a scheduled AWS Lambda function to verify, and if missing, add security headers to the metadata.D. Use an Amazon S3 bucket configured for website hosting. Create an Amazon CloudFront distribution that refers to this S3 bucket, with the origin response event set to trigger a Lambda@Edge Node.js function to add in the security headers.

Answer: D

Explanation:
https://aws.amazon.com/blogs/networking-and-content-delivery/adding-http-security-headers- using-lambdaedge-and-amazon-cloudfront/


NEW QUESTION # 36
A company is creating a software solution that executes a specific parallel-processing mechanism. The software can scale to tens of servers in some special scenarios. This solution uses a proprietary library that is license-based, requiring that each individual server have a single, dedicated license installed. The company has
200 licenses and is planning to run 200 server nodes concurrently at most.
The company has requested the following features:
" A mechanism to automate the use of the licenses at scale. " Creation of a dashboard to use in the future to verify which licenses are available at any moment.
What is the MOST effective way to accomplish these requirements?

A. Upload the licenses to an Amazon DynamoDB table. Create an AWS CloudFormation template that uses an Auto Scaling group to launch the servers. In the user data script, acquire an available license from the DynamoDB table. Create an Auto Scaling lifecycle hook, then use it to update the mapping after the instance is terminated.B. Upload the licenses to a private Amazon S3 bucket. Create an AWS CloudFormation template with a Mappings section for the licenses. In the template, create an Auto Scaling group to launch the servers. In the user data script, acquire an available license from the Mappings section. Create an Auto Scaling lifecycle hook, then use it to update the mapping after the instance is terminated.C. Upload the licenses to an Amazon DynamoDB table. Create an AWS CLI script to launch the servers by using the parameter --count, with min:max instances to launch. In the user data script, acquire an available license from the DynamoDB table. Monitor each instance and, in case of failure, replace the instance, then manually update the DynamoDB table.D. Upload the licenses to a private Amazon S3 bucket. Populate an Amazon SQS queue with the list of licenses stored in S3. Create an AWS CloudFormation template that uses an Auto Scaling group to launch the servers. In the user data script acquire an available license from SQS. Create an Auto Scaling lifecycle hook, then use it to put the license back in SQS after the instance is terminated.

Answer: C


NEW QUESTION # 37
You are using a configuration management system to manage your Amazon EC2 instances.
On your Amazon EC2 Instances, you want to store credentials for connecting to an Amazon RDS DB instance.
How should you securely store these credentials?

A. Give the Amazon EC2 instances an IAM role that allows read access to a private Amazon S3 bucket.
Store a file with database credentials in the Amazon S3 bucket.
Have your configuration management system pull the file from the bucket when it is needed.B. Assign an IAM role to your Amazon RDS instance, and use this IAM role to access the Amazon RDS DB from your Amazon EC2 instances.C. Store your credentials in your version control system, in plaintext.
Check out a copy of your credentials from the version control system on boot.
Use Amazon EBS encryption on the volume storing the Amazon RDS DB credentials.D. Store the Amazon RDS DB credentials in Amazon EC2 user data.
Import the credentials into the Instance on boot.E. Launch an Amazon EC2 instance and use the configuration management system to bootstrap the instance with the Amazon RDS DB credentials.
Create an AMI from this instance.

Answer: A


NEW QUESTION # 38
You currently run your infrastructure on Amazon EC2 instances behind an Auto Scaling group> All logs for you application are currently written to ephemeral storage.
Recently your company experienced a major bug in code that made it through testing and was ultimately deployed to your fleet.
This bug triggered your Auto Scaling group to scale up and back down before you could successfully retrieve the logs off your server to better assist you in troubleshooting the bug.
Which technique should you use to make sure you are able to review your logs after your instances have shut down?

A. Configure the ephemeral policies on your Auto Scaling group to back up on terminate.B. Configure your Auto Scaling policies to create a snapshot of all ephemeral storage on terminate.C. Install the CloudWatch monitoring agent on your AMI, and set up new SNS alert for CloudWatch metrics that triggers the CloudWatch monitoring agent to backup all logs on the ephemeral drive.D. Install the CloudWatch Logs Agent on your AMI, and configure CloudWatch Logs Agent to stream your logs.E. Install the CloudWatch monitoring agent on your AMI, Update your Auto Scaling policy to enable automated CloudWatch Log copy.

Answer: D


NEW QUESTION # 39
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