Free AWS-SOLUTIONS-ARCHITECT-PROFESSIONAL Exam Braindumps (page: 58)

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A company has an on-premises Microsoft SQL Server database that writes a nightly 200 GB export to a local drive. The company wants to move the backups to more robust cloud storage on Amazon S3. The company has set up a 10 Gbps AWS Direct Connect connection between the on-premises data center and AWS.

Which solution meets these requirements MOST cost-effectively?

  1. Create a new S3 bucket. Deploy an AWS Storage Gateway file gateway within the VPC that is connected to the Direct Connect connection. Create a new SMB file share. Write nightly database exports to the new SMB file share.
  2. Create an Amazon FSx for Windows File Server Single-AZ file system within the VPC that is connected to the Direct Connect connection. Create a new SMB file share. Write nightly database exports to an SMB file share on the Amazon FSx file system. Enable nightly backups.
  3. Create an Amazon FSx for Windows File Server Multi-AZ file system within the VPC that is connected to the Direct Connect connection. Create a new SMB file share. Write nightly database exports to an SMB file share on the Amazon FSx file system. Enable nightly backups.
  4. Create a new S3 bucket. Deploy an AWS Storage Gateway volume gateway within the VPC that is connected to the Direct Connect connection. Create a new SMB file share. Write nightly database exports to the new SMB file share on the volume gateway, and automate copies of this data to an S3 bucket.

Answer(s): A

Explanation:

A) Deploying an AWS Storage Gateway file gateway is a cost-effective solution that enables on-premises applications to write to Amazon S3 via an SMB file share. This setup provides a simple and direct way to store the 200 GB nightly database exports in S3. It leverages the existing Direct Connect connection for faster transfers and does not require the higher cost and complexity of using Amazon FSx. The file gateway provides a seamless way to manage backups while utilizing cost-efficient S3 storage.



A company needs to establish a connection from its on-premises data center to AWS. The company needs to connect all of its VPCs that are located in different AWS Regions with transitive routing capabilities between VPC networks. The company also must reduce network outbound traffic costs, increase bandwidth throughput, and provide a consistent network experience for end users.

Which solution will meet these requirements?

  1. Create an AWS Site-to-Site VPN connection between the on-premises data center and a new central VPC. Create VPC peering connections that initiate from the central VPC to all other VPCs.
  2. Create an AWS Direct Connect connection between the on-premises data center and AWS. Provision a transit VIF, and connect it to a Direct Connect gateway. Connect the Direct Connect gateway to all the other VPCs by using a transit gateway in each Region.
  3. Create an AWS Site-to-Site VPN connection between the on-premises data center and a new central VPUse a transit gateway with dynamic routing. Connect the transit gateway to all other VPCs.
  4. Create an AWS Direct Connect connection between the on-premises data center and AWS. Establish an AWS Site-to-Site VPN connection between all VPCs in each Region. Create VPC peering connections that initiate from the central VPC to all other VPCs.

Answer(s): B

Explanation:

B) Using AWS Direct Connect with a transit VIF connected to a Direct Connect gateway provides a high-bandwidth, low-latency connection between the on-premises data center and AWS, while reducing outbound traffic costs. The Direct Connect gateway allows transitive routing between multiple VPCs across Regions by connecting to transit gateways in each Region. This setup meets the requirements for transitive routing, reduced network costs, increased bandwidth, and a consistent user experience.



A company is migrating its development and production workloads to a new organization in AWS Organizations. The company has created a separate member account for development and a separate member account for production. Consolidated billing is linked to the management account. In the management account, a solutions architect needs to create an IAM user that can stop or terminate resources in both member accounts.

Which solution will meet this requirement?

  1. Create an IAM user and a cross-account role in the management account. Configure the cross-account role with least privilege access to the member accounts.
  2. Create an IAM user in each member account. In the management account, create a cross-account role that has least privilege access. Grant the IAM users access to the cross-account role by using a trust policy.
  3. Create an IAM user in the management account. In the member accounts, create an IAM group that has least privilege access. Add the IAM user from the management account to each IAM group in the member accounts.
  4. Create an IAM user in the management account. In the member accounts, create cross-account roles that have least privilege access. Grant the IAM user access to the roles by using a trust policy.

Answer(s): D

Explanation:

D) Creating an IAM user in the management account and cross-account roles in the member accounts with least privilege access ensures that the user in the management account can assume roles in both the development and production accounts to stop or terminate resources. The trust policy in the member account roles grants the management account user access, meeting the cross-account access requirement in a secure and manageable way.



A company wants to use AWS for disaster recovery for an on-premises application. The company has hundreds of Windows-based servers that run the application. All the servers mount a common share.

The company has an RTO of 15 minutes and an RPO of 5 minutes. The solution must support native failover and fallback capabilities.

Which solution will meet these requirements MOST cost-effectively?

  1. Create an AWS Storage Gateway File Gateway. Schedule daily Windows server backups. Save the data to Amazon S3. During a disaster, recover the on-premises servers from the backup. During tailback, run the on-premises servers on Amazon EC2 instances.
  2. Create a set of AWS CloudFormation templates to create infrastructure. Replicate all data to Amazon Elastic File System (Amazon EFS) by using AWS DataSync. During a disaster, use AWS CodePipeline to deploy the templates to restore the on-premises servers. Fail back the data by using DataSync.
  3. Create an AWS Cloud Development Kit (AWS CDK) pipeline to stand up a multi-site active-active environment on AWS. Replicate data into Amazon S3 by using the s3 sync command. During a disaster, swap DNS endpoints to point to AWS. Fail back the data by using the s3 sync command.
  4. Use AWS Elastic Disaster Recovery to replicate the on-premises servers. Replicate data to an Amazon FSx for Windows File Server file system by using AWS DataSync. Mount the file system to AWS servers. During a disaster, fail over the on-premises servers to AWS. Fail back to new or existing servers by using Elastic Disaster Recovery.

Answer(s): D

Explanation:

D) Using AWS Elastic Disaster Recovery to replicate on-premises servers and AWS DataSync to replicate data to an Amazon FSx for Windows File Server provides a cost-effective and reliable disaster recovery solution. This approach ensures that the RTO of 15 minutes and the RPO of 5 minutes are met by offering near real-time replication of servers and data. Elastic Disaster Recovery supports native failover and fallback capabilities, making it a suitable choice for seamless recovery and minimizing downtime during disasters.



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