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Understanding functional and technical aspects of AWS Solutions Architect Professional Exam Design for Organizational Complexity
The following will be discussed in AWS SOLUTIONS ARCHITECT PROFESSIONAL exam dumps:
- Determine cross-account authentication and access strategy for complex organizations (for example, an organization with varying compliance requirements, multiple business units, and varying scalability requirements)
- Determine how to design networks for complex organizations (for example, an organization with varying compliance requirements, multiple business units, and varying scalability requirements)
- Determine how to design a multi-account AWS environment for complex organizations (for example, an organization with varying compliance requirements, multiple business units, and varying scalability requirements)
Amazon AWS Certified Solutions Architect – Professional Sample Questions (Q50-Q55):
NEW QUESTION # 50
A company runs a processing engine in the AWS Cloud The engine processes environmental data from logistics centers to calculate a sustainability index The company has millions of devices in logistics centers that are spread across Europe The devices send information to the processing engine through a RESTful API The API experiences unpredictable bursts of traffic The company must implement a solution to process all data that the devices send to the processing engine Data loss is unacceptable Which solution will meet these requirements?
- A. Create an Amazon CloudFront distribution for the RESTful API Create a data stream in Amazon Kinesis Data Streams Set the data stream as the origin for the distribution Create an AWS Lambda function to consume and process data in the data stream
- B. Create an Application Load Balancer (ALB) for the RESTful API Create an Amazon Simple Queue Service (Amazon SQS) queue Create a listener and a target group for the ALB Add the SQS queue as the target Use a container that runs in Amazon Elastic Container Service (Amazon ECS) with the Fargate launch type to process messages in the queue
- C. Create an Amazon API Gateway HTTP API that implements the RESTful API Create an Amazon Simple Queue Service (Amazon SQS) queue Create an API Gateway service integration with the SQS queue Create an AWS Lambda function to process messages in the SQS queue
- D. Create an Amazon API Gateway REST API that implements the RESTful API Create a fleet of Amazon EC2 instances in an Auto Scaling group Create an API Gateway Auto Scaling group proxy integration Use the EC2 instances to process incoming data
it will use the ALB to handle the unpredictable bursts of traffic and route it to the SQS queue. The SQS queue will act as a buffer to store incoming data temporarily and the container running in Amazon ECS with the Fargate launch type will process messages in the queue. This approach will ensure that all data is processed and prevent data loss.
NEW QUESTION # 51
Mike is appointed as Cloud Consultant in ExamKiller.com. ExamKiller has the following VPCs set-up in
the US East Region:
A VPC with CIDR block 10.10.0.0/16, a subnet in that VPC with CIDR block 10.10.1.0/24
A VPC with CIDR block 10.40.0.0/16, a subnet in that VPC with CIDR block 10.40.1.0/24
ExamKiller.com is trying to establish network connection between two subnets, a subnet with CIDR block
1 0.10.1.0/24 and another subnet with CIDR block 10.40.1.0/24. Which one of the following solutions
should Mike recommend to ExamKiller.com?
- A. Create a VPC Peering connection between both VPCs.
- B. Create one EC2 instance in each subnet, assign Elastic IPs to both instances, and configure a set up
Site-to-Site VPN connection between both EC2 instances.
- C. Create 2 Virtual Private Gateways and configure one with each VPC.
- D. Create 2 Internet Gateways, and attach one to each VPC.
A VPC peering connection is a networking connection between two VPCs that enables you to route traffic
between them using private IP addresses. EC2 instances in either VPC can communicate with each other
as if they are within the same network. You can create a VPC peering connection between your own
VPCs, or with a VPC in another AWS account within a single region.
AWS uses the existing infrastructure of a VPC to create a VPC peering connection; it is neither a gateway
nor a VPN connection, and does not rely on a separate piece of physical hardware.
NEW QUESTION # 52
A company has an asynchronous HTTP application that is hosted as an AWS Lambda function. A public Amazon API Gateway endpoint invokes the Lambda function. The Lambda function and the API Gateway endpoint reside in the us-east-1 Region. A solutions architect needs to redesign the application to support failover to another AWS Region.
Which solution will meet these requirements?
- A. Deploy the Lambda function and an API Gateway endpoint to the us-west-2 Region. Configure Amazon Route 53 to use a failover routing policy to route traffic for the two API Gateway endpoints.
- B. Deploy the Lambda function to the us-west-2 Region. Create an API Gateway endpoint in us-west-2 to direct traffic to the Lambda function in us-west-2. Configure AWS Global Accelerator and an Application Load Balancer to manage traffic across the two API Gateway endpoints.
- C. Create an Amazon Simple Queue Service (Amazon SQS) queue. Configure API Gateway to direct traffic to the SQS queue instead of to the Lambda function. Configure the Lambda function to pull messages from the queue for processing.
- D. Create an API Gateway endpoint in the us-west-2 Region to direct traffic to the Lambda function in us-east-1. Configure Amazon Route 53 to use a failover routing policy to route traffic for the two API Gateway endpoints.
This solution allows for deploying the Lambda function and API Gateway endpoint to another region, providing a failover option in case of any issues in the primary region. Using Route 53’s failover routing policy allows for automatic routing of traffic to the healthy endpoint, ensuring that the application is available even in case of issues in one region. This solution provides a cost-effective and simple way to implement failover while minimizing operational overhead.
NEW QUESTION # 53
One of your AWS Data Pipeline activities has failed consequently and has entered a hard failure state after retrying thrice.
You want to try it again. Is it possible to increase the number of automatic retries to more than thrice?
- A. Yes, you can increase the number of automatic retries to 6.
- B. No, you cannot increase the number of automatic retries.
- C. Yes, you can increase the number of automatic retries to 10.
- D. Yes, you can increase the number of automatic retries to indefinite number.
In AWS Data Pipeline, an activity fails if all of its activity attempts return with a failed state. By default, an activity retries three times before entering a hard failure state. You can increase the number of automatic retries to 10. However, the system does not allow indefinite retries.
NEW QUESTION # 54
A company is running a tone-of-business (LOB) application on AWS to support its users The application runs in one VPC. with a backup copy in a second VPC in a different AWS Region for disaster recovery The company has a single AWS Direct Connect connection between its on-premises network and AWS The connection terminates at a Direct Connect gateway All access to the application must originate from the company’s on-premises network, and traffic must be encrypted in transit through the use of Psec. The company is routing traffic through a VPN tunnel over the Direct Connect connection to provide the required encryption.
A business continuity audit determines that the Direct Connect connection represents a potential single point of failure for access to the application The company needs to remediate this issue as quickly as possible.
Which approach will meet these requirements?
- A. Order a second Direct Connect connection to a different Direct Connect location. Terminate the second Direct Connect connection at the same Direct Connect gateway.
- B. Create a transit gateway. Attach the VPCs to the transit gateway, and connect the transit gateway to the Direct Connect gateway. Order a second Direct Connect connection, and terminate it at the transit gateway.
- C. Configure an AWS Site-to-Site VPN connection over the internet Terminate the VPN connection at a virtual private gateway in the secondary Region
- D. Create a transit gateway Attach the VPCs to the transit gateway, and connect the transit gateway to the Direct Connect gateway Configure an AWS Site-to-Site VPN connection, and terminate it at the transit gateway
Create a transit gateway. Attach the VPCs to the transit gateway, and connect the transit gateway to the Direct Connect gateway. Configure an AWS Site-to- Site VPN connection, and terminate it at the transit gateway
https://aws.amazon.com/premiumsupport/knowledge-center/dx-configure-dx-and-vpn-failover-tgw/ All access to the application must originate from the company’s on-premises network and traffic must be encrypted in transit through the use of IPsec. = need to use VPN.
NEW QUESTION # 55
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