AWS-SOLUTIONS-ARCHITECT-PROFESSIONAL EXAM SAMPLE - AWS-SOLUTIONS-ARCHITECT-PROFESSIONAL EXAM REVISION PLAN

AWS-Solutions-Architect-Professional Exam Sample - AWS-Solutions-Architect-Professional Exam Revision Plan

AWS-Solutions-Architect-Professional Exam Sample - AWS-Solutions-Architect-Professional Exam Revision Plan

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The Amazon AWS-Solutions-Architect-Professional certification exam syllabus is changing with the passage of time. As a AWS-Solutions-Architect-Professional exam candidate you have to be aware of these Amazon AWS-Solutions-Architect-Professional exam changes. To give you complete knowledge about the Amazon AWS-Solutions-Architect-Professional Exam Topics, the itPass4sure has hired a team of experts that consistently work on these changes and add these changes in Amazon AWS-Solutions-Architect-Professional exam practice test questions.

The AWS-Solutions-Architect-Professional Exam is an essential certification for IT professionals who work with AWS. It is a challenging exam that requires a deep understanding of AWS services and the ability to design and deploy complex systems in the cloud. Earning this certification can open up new career opportunities and is widely recognized as a mark of expertise in AWS architecture and design.

The AWS-Solutions-Architect-Professional certification is a valuable credential for individuals who are interested in designing and deploying complex systems on AWS. AWS Certified Solutions Architect - Professional certification demonstrates an individual’s advanced technical skills and knowledge of AWS best practices. Passing this certification exam is a significant achievement for professionals who want to advance their career in the field of cloud computing.

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The AWS-Solutions-Architect-Professional Certification is a valuable credential for cloud solution architects who want to demonstrate their expertise in designing and deploying complex AWS solutions. Earning this certification can help individuals advance their careers and increase their earning potential in the rapidly growing field of cloud computing.

Amazon AWS Certified Solutions Architect - Professional Sample Questions (Q365-Q370):

NEW QUESTION # 365
A large global company wants to migrate a stateless mission-critical application to AWS. The application is based on IBM WebSphere (application and integration middleware), IBM MQ (messaging middleware), and IBM DB2 (database software) on a z/OS operating system.
How should the Solutions Architect migrate the application to AWS?

  • A. Re-host WebSphere-based applications on Amazon EC2 behind a load balancer with Auto Scaling.
    Re-platform the IBM MQ to an Amazon EC2-based MQ. Re-platform the z/OS-based DB2 to Amazon RDS DB2.
  • B. Orchestrate and deploy the application by using AWS Elastic Beanstalk. Re-platform the IBM MQ to Amazon SQS. Re-platform z/OS-based DB2 to Amazon RDS DB2.
  • C. Re-host WebSphere-based applications on Amazon EC2 behind a load balancer with Auto Scaling.
    Re-platform the IBM MQ to an Amazon MQ. Re-platform z/OS-based DB2 to Amazon EC2-based DB2.
  • D. Use the AWS Server Migration Service to migrate the IBM WebSphere and IBM DB2 to an Amazon EC2-based solution. Re-platform the IBM MQ to an Amazon MQ.

Answer: A


NEW QUESTION # 366
When does an AWS Data Pipeline terminate the AWS Data Pipeline-managed compute resources?

  • A. AWS Data Pipeline terminates AWS Data Pipeline-managed compute resources every 2 hours.
  • B. When the final activity that uses the resources has completed successfully or failed
  • C. AWS Data Pipeline terminates AWS Data Pipeline-managed compute resources every 12 hours.
  • D. When the final activity that uses the resources is running

Answer: B

Explanation:
Compute resources will be provisioned by AWS Data Pipeline when the first activity for a scheduled time
that uses those resources is ready to run, and those instances will be terminated when the final activity
that uses the resources has completed successfully or failed.
Reference: https://aws.amazon.com/datapipeline/faqs/


NEW QUESTION # 367
A company's solutions architect needs to provide secure Remote Desktop connectivity to users for Amazon EC2 Windows instances that are hosted in a VPC. The solution must integrate centralized user management with the company's on-premises Active Directory. Connectivity to the VPC is through the internet. The company has hardware that can be used to establish an AWS Site-to-Site VPN connection.
Which solution will meet these requirements MOST cost-effectively?

  • A. Deploy a managed Active Directory by using AWS Directory Service for Microsoft Active Directory.
    Establish a trust with the on-premises Active Directory. Deploy an EC2 instance as a bastion host in the VPC. Ensure that the EC2 instance is joined to the domain. Use the bastion host to access the target instances through RDP.
  • B. Deploy a managed Active Directory by using AWS Directory Service for Microsoft Active Directory.
    Establish a trust with the on-premises Active Directory. Deploy a Remote Desktop Gateway on AWS by using an AWS Quick Start. Ensure that the Remote Desktop Gateway is joined to the domain. Use the Remote Desktop Gateway to access the target instances through RDP.
  • C. Implement a VPN between the on-premises environment and the target VPC. Ensure that the target instances are joined to the on-premises Active Directory domain over the VPN connection. Configure RDP access through the VPN. Connect from the company's network to the target instances.
  • D. Configure AWS IAM Identity Center (AWS Single Sign-On) to integrate with the on-premises Active Directory by using the AWS Directory Service for Microsoft Active Directory AD Connector.
    Configure permission sets against user groups for access to AWS Systems Manager. Use Systems Manager Fleet Manager to access the target instances through RDP.

Answer: B


NEW QUESTION # 368
A company hosts a popular web application. The web application connects to a database running in a
private VPC subnet. The web servers must be accessible only to customers on an SSL connection. The
RDS MySQL database server must be accessible only from the web servers.
How should the Architect design a solution to meet the requirements without impacting running
applications?

  • A. Create a network ACL on the web server's subnet, and allow HTTPS inbound, and specify the source
    as 0.0.0.0/0. Create a network ACL on a database subnet, allow MySQL port inbound for web servers,
    and deny all outbound traffic.
  • B. Create a network ACL on the web server's subnet, and allow HTTPS inbound and MySQL outbound.
    Place both database and web servers on the same subnet.
  • C. Open the MySQL port on the security group for web servers and set the source to 0.0.0.0/0. Open the
    HTTPS port on the database security group and attach it to the MySQL instance. Set the source to
    Web Server Security Group.
  • D. Open an HTTPS port on the security group for web servers and set the source to 0.0.0.0/0. Open the
    MySQL port on the database security group and attach it to the MySQL instance. Set the source to
    Web Server Security Group.

Answer: D


NEW QUESTION # 369
A North American company with headquarters on the East Coast is deploying a new web application running on Amazon EC2 in the us-east-1 Region. The application should dynamically scale to meet user demand and maintain resiliency. Additionally, the application must have disaster recovery capabilities in an active-passive configuration with the us-west-1 Region.
Which steps should a solutions architect take after creating a VPC in the us-east-1 Region?

  • A. Create a VPC in the us-west-1 Region. Use inter-Region VPC peering to connect both VPCs Deploy an Application Load Balancer (ALB) that spans both VPCs Deploy EC2 instances across multiple Availability Zones as part of an Auto Scaling group in each VPC served by the ALB. Create an Amazon Route 53 record that points to the ALB.
  • B. Create a VPC in the us-west-1 Region. Use inter-Region VPC peering to connect both VPCs. Deploy an Application Load Balancer (ALB) spanning multiple Availability Zones (AZs) to the VPC in the us-east-1 Region. Deploy EC2 instances across multiple AZs in each Region as part of an Auto Scaling group spanning both VPCs and served by the ALB.
  • C. Deploy an Application Load Balancer (ALB) spanning multiple Availability Zones (AZs) to the VPC in the us-east-1 Region. Deploy EC2 instances across multiple AZs as part of an Auto Scaling group served by the ALB. Deploy the same solution to the us-west-1 Region Create an Amazon Route 53 record set with a failover routing policy and health checks enabled to provide high availability across both Regions.
  • D. Deploy an Application Load Balancer (ALB) spanning multiple Availability Zones (AZs) to the VPC in the us-east-1 Region. Deploy EC2 instances across multiple AZs as part of an Auto Scaling group served by the ALB. Deploy the same solution to the us-west-1 Region. Create separate Amazon Route
    53 records in each Region that point to the ALB in the Region. Use Route 53 health checks to provide high availability across both Regions.

Answer: C


NEW QUESTION # 370
......

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