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NEW QUESTION 22
A company has two On-Demand EC2 instances inside the Virtual Private Cloud in the same Availability Zone but are deployed to different subnets. One EC2 instance is running a database and the other EC2 instance a web application that connects with the database. You need to ensure that these two instances can communicate with each other for the system to work properly.
What are the things you have to check so that these EC2 instances can communicate inside the VPC?
(Select TWO.)

A. Check if both instances are the same instance class.B. Check if the default route is set to a NAT instance or Internet Gateway (IGW) for them to communicate.C. Ensure that the EC2 instances are in the same Placement Group.D. Check the Network ACL if it allows communication between the two subnets.E. Check if all security groups are set to allow the application host to communicate to the database on the right port and protocol.

Answer: D,E

Explanation:
First, the Network ACL should be properly set to allow communication between the two subnets. The security group should also be properly configured so that your web server can communicate with the database server.

Hence, these are the correct answers:
Check if all security groups are set to allow the application host to communicate to the database on the right port and protocol.
Check the Network ACL if it allows communication between the two subnets.
The option that says: Check if both instances are the same instance class is incorrect because the EC2 instances do not need to be of the same class in order to communicate with each other.
The option that says: Check if the default route is set to a NAT instance or Internet Gateway (IGW) for them to communicate is incorrect because an Internet gateway is primarily used to communicate to the Internet.
The option that says: Ensure that the EC2 instances are in the same Placement Group is incorrect because Placement Group is mainly used to provide low-latency network performance necessary for tightly-coupled node-to-node communication.
Explanation:
Reference:
http://docs.aws.amazon.com/AmazonVPC/latest/UserGuide/VPC_Subnets.html Check out this Amazon VPC Cheat Sheet: https://tutorialsdojo.com/amazon-vpc/ Tutorials Dojo's AWS Certified Solutions Architect Associate Exam Study Guide:
https://tutorialsdojo.com/aws-certified-solutions-architect-associate/

 

NEW QUESTION 23
A hospital wants to create digital copies for its large collection of historical written records. The hospital will continue to add hundreds of new documents each day. The hospital's data team will scan the documents and will upload the documents to the AWS Cloud.
A solutions architect must implement a solution to analyze the documents, extract the medical information, and store the documents so that an application can run SQL queries on the dat a. The solution must maximize scalability and operational efficiency.
Which combination of steps should the solutions architect take to meet these requirements? (Select TWO.)

A. Create an AWS Lambda function that runs when new documents are uploaded. Use Amazon Textract to convert the documents to raw text. Use Amazon Comprehend Medical to detect and extract relevant medical information from the text.B. Write the document information to an Amazon EC2 instance that runs a MySQL database.C. Create an AWS Lambda function that runs when new documents are uploaded. Use Amazon Rekognition to convert the documents to raw text. Use Amazon Transcribe Medical to detect and extract relevant medical information from the text.D. Write the document information to an Amazon S3 bucket. Use Amazon Athena to query the data.E. Create an Auto Scaling group of Amazon EC2 instances to run a custom application that processes the scanned files and extracts the medical information.

Answer: A,C

 

NEW QUESTION 24
A company provides a Voice over Internet Protocol (VoIP) service that uses UDP connections. The service consists of Amazon EC2 instances that run in an Auto Scaling group. The company has deployments across multiple AWS Regions.
The company needs to route users to the Region with the lowest latency. The company also needs automated failover between Regions.
Which solution will meet these requirements?

A. Deploy an Application Load Balancer (ALB) and an associated target group. Associate the target group with the Auto Scaling group. Create an Amazon Route 53 weighted record that points to aliases for each ALB. Deploy an Amazon CloudFront distribution that uses the weighted record as an origin.B. Deploy a Network Load Balancer (NLB) and an associated target group. Associate the target group with the Auto Scaling group. Create an Amazon Route 53 latency record that points to aliases for each NLB.
Create an Amazon CloudFront distribution that uses the latency record as an origin.C. Deploy a Network Load Balancer (NLB) and an associated target group. Associate the target group with the Auto Scaling group. Use the NLB as an AWS Global Accelerator endpoint in each Region.D. Deploy an Application Load Balancer (ALB) and an associated target group. Associate the target group with the Auto Scaling group. Use the ALB as an AWS Global Accelerator endpoint in each Region.

Answer: B

 

NEW QUESTION 25
All objects uploaded to an Amazon S3 bucket must be encrypted for security compliance. The bucket will use server-side encryption with Amazon S3-Managed encryption keys (SSE-S3) to encrypt data using 256-bit Advanced Encryption Standard (AES-256) block cipher.
Which of the following request headers must be used?

A. x-amz-server-side-encryptionB. x-amz-server-side-encryption-customer-keyC. x-amz-server-side-encryption-customer-algorithmD. x-amz-server-side-encryption-customer-key-MD5

Answer: A

Explanation:
Server-side encryption protects data at rest. If you use Server-Side Encryption with Amazon S3- Managed Encryption Keys (SSE-S3), Amazon S3 will encrypt each object with a unique key and as an additional safeguard, it encrypts the key itself with a master key that it rotates regularly. Amazon S3 server-side encryption uses one of the strongest block ciphers available, 256-bit Advanced Encryption Standard (AES-256), to encrypt your data.

If you need server-side encryption for all of the objects that are stored in a bucket, use a bucket policy.
For example, the following bucket policy denies permissions to upload an object unless the request includes the x-amz-server-side-encryption header to request server-side encryption:
However, if you chose to use server-side encryption with customer-provided encryption keys (SSE-C), you must provide encryption key information using the following request headers:
x-amz-server-side?-encryption?-customer-algorithm
x-amz-server-side?-encryption?-customer-key
x-amz-server-side?-encryption?-customer-key-MD5
Hence, using the x-amz-server-side-encryption header is correct as this is the one being used for Amazon S3-Managed Encryption Keys (SSE-S3).
All other options are incorrect since they are used for SSE-C.
References:
https://docs.aws.amazon.com/AmazonS3/latest/dev/serv-side-encryption.html
https://docs.aws.amazon.com/AmazonS3/latest/dev/UsingServerSideEncryption.html
https://docs.aws.amazon.com/AmazonS3/latest/dev/ServerSideEncryptionCustomerKeys.html Check out this Amazon S3 Cheat Sheet:
https://tutorialsdojo.com/amazon-s3/

 

NEW QUESTION 26
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