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To pass the SAP-C01 exam, candidates must demonstrate a deep understanding of AWS services and their integration with enterprise-level applications, as well as the ability to design and deploy highly available, scalable, and fault-tolerant systems. They must also be proficient in the use of AWS services to automate and optimize cloud infrastructure and applications, and have a solid understanding of security and compliance requirements for cloud-based systems.

What is Amazon Elastic Load Balancing?

Amazon Elastic Load Balancing (ELB) is an AWS service that balances requests across multiple application servers for your web applications. Answers the growing need for a highly scalable global load-balancing service. Amazon Elastic Load Balancing (ELB) is an AWS service that balances requests across multiple application servers for your web applications. Relevant changes to your DNS can be made in a few minutes. The ELB service itself is highly scalable and supports millions of simultaneously users. A cost effective load-balancing solution is available in the cloud. Load-balancing capabilities are available for applications hosted on AWS. Amazon SAP-C01 exam dumps are available for purchase. Amazon Elastic Load Balancing (ELB) is an AWS service that balances requests across multiple application servers for your web applications. You can use Amazon Elastic Load Balancing (ELB) to improve the performance of your web applications. Traffic is distributed to multiple application servers.

AWS-SAP Exam Syllabus Topics:

SectionObjectives

Design for Organizational Complexity - 12.5%

Determine cross-account authentication and access strategy for complex organizations.- Analyze the organizational structure
- Evaluate the current authentication infrastructure
- Analyze the AWS resources at an account level
- Determine an auditing strategy for authentication and accessDetermine how to design networks for complex organizations.- Outline an IP addressing strategy for VPCs
- Determine DNS strategy
- Classify network traffic and security
- Determine connectivity needs for hybrid environments
- Determine a way to audit network trafficDetermine how to design a multi-account AWS environment for complex organizations.- Determine how to use AWS Organizations
- Implement the most appropriate account structure for proper cost allocation, agility, and security
- Recommend a central audit and event notification strategy
- Decide on an access strategy

Design for New Solutions - 31%

Determine security requirements and controls when designing and implementing a solution.- Implement infrastructure as code
- Determine prevention controls for large-scale web applications
- Determine roles and responsibilities of applications
- Determine a secure method to manage credentials for the solutions/applications
- Enable detection controls and security services for large-scale applications
- Enforce host and network security boundaries
- Enable encryption in transit and at restDetermine a solution design and implementation strategy to meet reliability requirements.- Design a highly available application environment
- Determine advanced techniques to detect for failure and service recoverability
- Determine processes and components to monitor and recover from regional service disruptions with regional failoverDetermine a solution design to ensure business continuity.- Architect an automated, cost-effective back-up solution that supports business continuity across multiple AWS Regions
-Determine an architecture that provides application and infrastructure availability in the event of a service disruptionDetermine a solution design to meet performance objectives.- Design internet-scale application architectures
- Design an architecture for performance according to business objectives
- Apply design patterns to meet business objectives with caches, buffering, and replicasDetermine a deployment strategy to meet business requirements when designing and implementing a solution.- Determine resource provisioning strategy to meet business objectives
- Determine a migration process to change the version of a service
- Determine services to meet deployment strategy
- Determine patch management strategy

Migration Planning - 15%

Select existing workloads and processes for potential migration to the cloud.- Complete an application migration assessment
- Classify applications according to the six Rs (re-host, re-platform, re-purchase, refactor, retire, and retain)Select migration tools and/or services for new and migrated solutions based on detailed AWS knowledge.- Select an appropriate database transfer mechanism
- Select an appropriate data transfer service
- Select an appropriate data transfer target
- Select an appropriate server migration mechanism
- Apply the appropriate security methods to the migration toolsDetermine a new cloud architecture for an existing solution.- Evaluate business applications and determine the target cloud architecture
- Break down the functionality of applications into services
- Determine target database platforms

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Amazon AWS Certified Solutions Architect - Professional Sample Questions (Q20-Q25):

NEW QUESTION # 20
A customer has a 10 GB AWS Direct Connect connection to an AWS region where they have a web application hosted on Amazon Elastic Computer Cloud (EC2). The application has dependencies on an on-premises mainframe database that uses a BASE (Basic Available. Sort stale Eventual consistency) rather than an ACID (Atomicity. Consistency isolation. Durability) consistency model. The application is exhibiting undesirable behavior because the database is not able to handle the volume of writes.
How can you reduce the load on your on-premises database resources in the most cost-effective way?

  • A. Provision an RDS read-replica database on AWS to handle the writes and synchronize the two databases using Data Pipeline.
  • B. Modify the application to use DynamoDB to feed an EMR cluster which uses a map function to write to the on-premises database.
  • C. Modify the application to write to an Amazon SQS queue and develop a worker process to flush the queue to the on-premises database.
  • D. Use an Amazon Elastic Map Reduce (EMR) S3DistCp as a synchronization mechanism between the on-premises database and a Hadoop cluster on AWS.

Answer: D


NEW QUESTION # 21
A company has a requirement that only allows specially hardened AMIs to be launched into public subnets in a VPC, and for the AMIs to be associated with a specific security group. Allowing non-compliant instances to launch into the public subnet could present a significant security risk if they are allowed to operate.
A mapping of approved AMIs to subnets to security groups exists in an Amazon DynamoDB table in the same AWS account. The company created an AWS Lambda function that, when invoked, will terminate a given Amazon EC2 instance if the combination of AMI, subnet, and security group are not approved in the DynamoDB table.
What should the Solutions Architect do to MOST quickly mitigate the risk of compliance deviations?

  • A. Enable AWS CloudTrail and configure it to stream to an Amazon CloudWatch Logs group. Create a metric filter in CloudWatch to match when the ec2:RunInstances action occurs, and trigger the Lambda function when the metric is greater than 0.
  • B. Create an Amazon CloudWatch Events rule that matches each time an EC2 instance is launched, and associate it with the Lambda function as the target.
  • C. For the Amazon S3 bucket receiving the Aws CloudTrail logs, create an S3 event notification configuration with a filter to match when logs contain the ec2:RunInstances action, and associate it with the Lambda function as the target.
  • D. Create an Amazon CloudWatch Events rule that matches each time an EC2 instance is launched using one of the allowed AMIs, and associate it with the Lambda function as the target.

Answer: C


NEW QUESTION # 22
A company is building an image service on the web that will allow users to upload and search random photos.
At peak usage, up to 10.000 users worldwide will upload their images. The service will then overlay text on the uploaded images, which will then be published on the company website.
Which design should a solutions architect implement?

  • A. Store Ihe uploaded images in Amazon Elastic File System (Amazon EFS). Send application log information about each image to Amazon CloudWatch Logs. Create a fleet of Amazon EC2 instances that use CloudWatch Logs to determine which images need to be processed. Place processed images in anolher directory in Amazon EFS. Enable Amazon CloudFront and configure the origin to be Ihe one of the EC2 instances in the fleet.
  • B. Store the uploaded images on a shared Amazon Elastic Block Store (Amazon EBS) volume mounted to a fleet of Amazon EC2 Spot instances. Create an Amazon DynamoDB table that contains information about each uploaded image and whether it has been processed. Use an Amazon EventBridge (Amazon CloudWatch Events) rule lo scale out EC2 instances. Enable Amazon CloudFront and configure the origin to reference an Elastic Load Balancer in front of the fleet of EC2 instances.
  • C. Store Ihe uploaded images in an Amazon S3 bucket and configure an S3 bucket event notification to send a message to Amazon Simple Notification Service (Amazon SNS). Create a fleet of Amazon EC2 instances behind an Application Load Balancer (ALB) to pull messages from Amazon SNS to process the images and place them in Amazon Elastic File System (Amazon EFS). Use Amazon CloudWatch metrics for the SNS message volume to scale out EC2 instances. Enable Amazon CloudFront and configure the origin lo be the ALB in front of the EC2 instances.
  • D. Store the uploaded images in an Amazon S3 bucket and configure an S3 bucket event notification to send a message to the Amazon Simple Queue Service (Amazon SOS) queue. Create a fleet of Amazon EC2 instances to pull messages from Ihe SOS queue to process the images and place them in another S3 bucket. Use Amazon CloudWatch metrics for queue depth to scale out EC2 instances. Enable Amazon CloudFront and configure the origin to be the S3 bucket that contains the processed images.

Answer: D


NEW QUESTION # 23
An internal security audit of AWS resources within a company found that a number of Amazon EC2 instances running Microsoft Windows workloads were missing several important operating system-level patches. A Solutions Architect has been asked to fix existing patch deficiencies, and to develop a workflow to ensure that future patching requirements are identified and taken care of quickly. The Solutions Architect has decided to use AWS Systems Manager. It is important that EC2 instance reboots do not occur at the same time on all Windows workloads to meet organizational uptime requirements.
Which workflow will meet these requirements in an automated manner?

  • A. Add a Patch Group tag a value of Windows Servers to all existing EC2 instances. Ensure that all Windows EC2 instances are assigned this tag. Associate the AWS-WindowsPatchBaseline document as a task associated with the Windows Servers patch group. Create an Amazon CloudWatch Events rule configured to use a cron expression to schedule the execution of patching using the AWS Systems Manager run command. Create an AWS Systems Manager State Manager document to define commands to be executed during patch execution.
  • B. Add a Patch Group tag with a value of either Windows Servers1 or Windows Server2 to all existing EC2 instances. Ensure that all Windows EC2 instances are assigned this tag. Associate the AWS-DefaultPatchBaseline with both Windows Servers patch groups. Define two non-overlapping AWS Systems Manager maintenance windows, conduct patching within them, and associate each with a different patch group. Register targets with specific maintenance windows using the Patch Group tags.
    Assign the AWS-RunPatchBaseline document as a task within each maintenance window.
  • C. Add a Patch Group tag with a value of either Windows servers1 or Windows Server2 to all existing EC2 instances. Ensure that all Windows EC2 instances are assigned this tag. Associate the AWS-WindowsPatchBaseline with both Windows Servers patch groups. Define two non-overlapping AWS Systems Manager maintenance windows, conduct patching within them, and associate each with a different patch group. Assign the AWS-RunWindowsPatchBaseline document as a task within each maintenance window. Create an AWS Systems Manager State Manager document to define commands to be executed during patch execution.
  • D. Add a Patch Group tag with a value of Windows Servers to all existing EC2 instances. Ensure that all Windows EC2 instances are assigned this tag. Associate the AWS-DefaultPatchBaseline to the Windows servers patch group. Define an AWS Systems Manager maintenance window, conduct patching within it, and associate it with the Windows Servers patch group. Register instances with the maintenance window using associated subnet IDs. Assign the AWS-RunPatchBaseline document as a task within each maintenance window.

Answer: D


NEW QUESTION # 24
A large company recently experienced an unexpected increase in Amazon RDS and Amazon DynamoDB costs The company needs to increase visibility into details of AWS Billing and Cost Management There are various accounts associated with AWS Organizations, including many development and production accounts.
There is no consistent tagging strategy across the organization, but there are guidelines in place that require all infrastructure to be deployed using AWS Cloud Formation with consistent tagging Management requires cost center numbers and project ID numbers for all existing and future DynamoDB tables and RDS instances Which strategy should the solutions architect provide to meet these requirements?

  • A. Create cost allocation tags to define the cost center and project ID and allow 24 hours for tags to propagate to existing resources Update existing federated roles to restrict privileges to provision resources that do not include the cost center and project ID on the resource
  • B. Use Tag Editor to tag existing resources Create cost allocation tags to define the cost center and project ID Use SCPs to restrict resource creation that do not have the cost center and project ID on the resource.
  • C. Use Tag Editor to tag existing resources Create cost allocation tags to define the cost center and project ID and allow 24 hours for tags to propagate to existing resources
  • D. Use an AWS Config rule to alert the finance team of untagged resources Create a centralized AWS Lambda based solution to tag untagged RDS databases and DynamoDB resources every hour using a cross-account rote.

Answer: B


NEW QUESTION # 25
......

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