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NEW QUESTION 22
A company wants to manage Amazon Machine Images (AMIs). The company currently copies AMIs to the same AWS Region where the AMIs were created. The company needs to design an application that captures AWS API calls and sends alerts whenever the Amazon EC2 Createlmage API operation is called within the company's account.
Which solution will meet these requirements with the LEAST operational overhead?

  • A. Create an AWS Lambda function to query AWS CloudTrail logs and to send an alert when a Createlmage API call is detected.
  • B. Create an Amazon EventBridge (Amazon CloudWatch Events) rule for the Createlmage API call. Configure the target as an Amazon Simple Notification Service (Amazon SNS) topic to send an alert when a Createlmage API call is detected.
  • C. Configure AWS CloudTrail with an Amazon Simple Notification Service {Amazon SNS) notification that occurs when updated logs are sent to Amazon S3. Use Amazon Athena to create a new table and to query on Createlmage when an API call is detected.
  • D. Configure an Amazon Simple Queue Service (Amazon SQS) FIFO queue as a target for AWS CloudTrail logs. Create an AWS Lambda function to send an alert to an Amazon Simple Notification Service (Amazon SNS) topic when a Createlmage API call is detected.

Answer: C

 

NEW QUESTION 23
A company has an automobile sales website that stores its listings in a database on Amazon RDS When an automobile is sold the listing needs to be removed from the website and the data must be sent to multiple target systems.
Which design should a solutions architect recommend?

  • A. Subscribe to an RDS event notification and send an Amazon Simple Notification Service (Amazon SNS) topic fanned out to multiple Amazon Simple Queue Service (Amazon SQS) queues Use AWS Lambda functions to update the targets
  • B. Create an AWS Lambda function triggered when the database on Amazon RDS is updated to send the information to an Amazon Simple Queue Service (Amazon SQS) FIFO queue for the targets to consume
  • C. Subscribe to an RDS event notification and send an Amazon Simple Queue Service (Amazon SQS) queue fanned out to multiple Amazon Simple Notification Service (Amazon SNS) topics Use AWS Lambda functions to update the targets
  • D. Create an AWS Lambda function triggered when the database on Amazon RDS is updated to send the information to an Amazon Simple Queue Service (Amazon SQS> queue for the targets to consume

Answer: A

Explanation:
https://docs.aws.amazon.com/lambda/latest/dg/services-rds.html https://docs.aws.amazon.com/lambda/latest/dg/with-sns.html

 

NEW QUESTION 24
A company runs its Infrastructure on AWS and has a registered base of 700.000 users for res document management application The company intends to create a product that converts large pdf files to jpg Imago files. The .pdf files average 5 MB in size. The company needs to store the original files and the converted files. A solutions architect must design a scalable solution to accommodate demand that will grow rapidly over lime.
Which solution meets these requirements MOST cost-effectively?

  • A. Save the pdf files to Amazon S3 Configure an S3 PUT event to invoke an AWS Lambda function to convert the files to jpg format and store them back in Amazon S3
  • B. Upload the pdf files to an AWS Elastic Beanstalk application that includes Amazon EC2 instances. Amazon Elastic Block Store (Amazon EBS) storage and an Auto Scaling group. Use a program In the EC2 instances to convert the files to jpg format Save the .pdf files and the .jpg files In the EBS store.
  • C. Upload the .pdf files to an AWS Elastic Beanstalk application that includes Amazon EC2 instances, Amazon Elastic File System (Amazon EPS) storage, and an Auto Scaling group. Use a program in the EC2 instances to convert the file to jpg format Save the pdf files and the jpg files in the EBS store.
  • D. Save the pdf files to Amazon DynamoDB. Use the DynamoDB Streams feature to invoke an AWS Lambda function to convert the files to jpg format and store them hack in DynamoDB

Answer: C

 

NEW QUESTION 25
An organization plans to run an application in a dedicated physical server that doesn't use virtualization.
The application data will be stored in a storage solution that uses an NFS protocol. To prevent data loss, you need to use a durable cloud storage service to store a copy of your data.
Which of the following is the most suitable solution to meet the requirement?

  • A. Use an AWS Storage Gateway hardware appliance for your compute resources. Configure Volume Gateway to store the application data and create an Amazon S3 bucket to store a backup of your data.
  • B. Use an AWS Storage Gateway hardware appliance for your compute resources. Configure File Gateway to store the application data and create an Amazon S3 bucket to store a backup of your data.
  • C. Use an AWS Storage Gateway hardware appliance for your compute resources. Configure Volume Gateway to store the application data and backup data.
  • D. Use AWS Storage Gateway with a gateway VM appliance for your compute resources. Configure File Gateway to store the application data and backup data.

Answer: B

Explanation:
AWS Storage Gateway is a hybrid cloud storage service that gives you on-premises access to virtually unlimited cloud storage by linking it to S3. Storage Gateway provides 3 types of storage solutions for your on-premises applications: file, volume, and tape gateways. The AWS Storage Gateway Hardware Appliance is a physical, standalone, validated server configuration for on-premises deployments.
SAA-C03-02f01d70b4a315d823a6230ed5d85f5c.jpg
The AWS Storage Gateway Hardware Appliance is a physical hardware appliance with the Storage Gateway software preinstalled on a validated server configuration. The hardware appliance is a high- performance 1U server that you can deploy in your data center, or on-premises inside your corporate firewall. When you buy and activate your hardware appliance, the activation process associates your hardware appliance with your AWS account. After activation, your hardware appliance appears in the console as a gateway on the Hardware page. You can configure your hardware appliance as a file gateway, tape gateway, or volume gateway type. The procedure that you use to deploy and activate these gateway types on a hardware appliance is the same as on a virtual platform.
Since the company needs to run a dedicated physical appliance, you can use an AWS Storage Gateway Hardware Appliance. It comes pre-loaded with Storage Gateway software, and provides all the required resources to create a file gateway. A file gateway can be configured to store and retrieve objects in Amazon S3 using the protocols NFS and SMB.
Hence, the correct answer in this scenario is: Use an AWS Storage Gateway hardware appliance for your compute resources. Configure File Gateway to store the application data and create an Amazon S3 bucket to store a backup of your data.
The option that says: Use AWS Storage Gateway with a gateway VM appliance for your compute resources. Configure File Gateway to store the application data and backup data is incorrect because as per the scenario, the company needs to use an on-premises hardware appliance and not just a Virtual Machine (VM).
The options that say: Use an AWS Storage Gateway hardware appliance for your compute resources.
Configure Volume Gateway to store the application data and backup data and Use an AWS Storage Gateway hardware appliance for your compute resources. Configure Volume Gateway to store the application data and create an Amazon S3 bucket to store a backup of your data are both incorrect. As per the scenario, the requirement is a file system that uses an NFS protocol and not iSCSI devices.
Among the AWS Storage Gateway storage solutions, only file gateway can store and retrieve objects in Amazon S3 using the protocols NFS and SMB.
References:
https://docs.aws.amazon.com/storagegateway/latest/userguide/hardware-appliance.html
https://docs.aws.amazon.com/storagegateway/latest/userguide/WhatIsStorageGateway.html AWS Storage Gateway Overview:
https://www.youtube.com/watch?v=pNb7xOBJjHE
Check out this AWS Storage Gateway Cheat Sheet:
https://tutorialsdojo.com/aws-storage-gateway/

 

NEW QUESTION 26
An online trading platform with thousands of clients across the globe is hosted in AWS. To reduce latency, you have to direct user traffic to the nearest application endpoint to the client. The traffic should be routed to the closest edge location via an Anycast static IP address. AWS Shield should also be integrated into the solution for DDoS protection.
Which of the following is the MOST suitable service that the Solutions Architect should use to satisfy the above requirements?

  • A. Amazon CloudFront
  • B. AWS Global Accelerator
  • C. AWS WAF
  • D. AWS PrivateLink

Answer: B

Explanation:
AWS Global Accelerator is a service that improves the availability and performance of your applications with local or global users. It provides static IP addresses that act as a fixed entry point to your application endpoints in a single or multiple AWS Regions, such as your Application Load Balancers, Network Load Balancers or Amazon EC2 instances.
AWS Global Accelerator uses the AWS global network to optimize the path from your users to your applications, improving the performance of your TCP and UDP traffic. AWS Global Accelerator continually monitors the health of your application endpoints and will detect an unhealthy endpoint and redirect traffic to healthy endpoints in less than 1 minute.
SAA-C03-373a3a8b90bf7a087889ea28ce3d4aa5.jpg
Many applications, such as gaming, media, mobile applications, and financial applications, need very low latency for a great user experience. To improve the user experience, AWS Global Accelerator directs user traffic to the nearest application endpoint to the client, thus reducing internet latency and jitter. It routes the traffic to the closest edge location via Anycast, then by routing it to the closest regional endpoint over the AWS global network. AWS Global Accelerator quickly reacts to changes in network performance to improve your users' application performance.
AWS Global Accelerator and Amazon CloudFront are separate services that use the AWS global network and its edge locations around the world. CloudFront improves performance for both cacheable content (such as images and videos) and dynamic content (such as API acceleration and dynamic site delivery).
Global Accelerator improves performance for a wide range of applications over TCP or UDP by proxying packets at the edge to applications running in one or more AWS Regions. Global Accelerator is a good fit for non-HTTP use cases, such as gaming (UDP), IoT (MQTT), or Voice over IP, as well as for HTTP use cases that specifically require static IP addresses or deterministic, fast regional failover. Both services integrate with AWS Shield for DDoS protection. Hence, the correct answer is AWS Global Accelerator.
Amazon CloudFront is incorrect because although this service uses edge locations, it doesn't have the capability to route the traffic to the closest edge location via an Anycast static IP address.
AWS WAF is incorrect because the this service is just a web application firewall that helps protect your web applications or APIs against common web exploits that may affect availability, compromise security, or consume excessive resources AWS PrivateLink is incorrect because this service simply provides private connectivity between VPCs, AWS services, and on-premises applications, securely on the Amazon network. It doesn't route traffic to the closest edge location via an Anycast static IP address. References:
https://aws.amazon.com/global-accelerator/
https://aws.amazon.com/global-accelerator/faqs/
Check out this AWS Global Accelerator Cheat Sheet:
https://tutorialsdojo.com/aws-global-accelerator/

 

NEW QUESTION 27
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