AMAZON SAA-C03 DUMPS - PASS EXAM AND GET CAREER BENEFITS

Amazon SAA-C03 Dumps - Pass Exam and Get Career Benefits

Amazon SAA-C03 Dumps - Pass Exam and Get Career Benefits

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Amazon SAA-C03 Certification Exam is a valuable certification for individuals who want to advance their careers in cloud computing. Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam certification is recognized by many organizations, and individuals who hold the certification are in high demand. Additionally, the certification provides individuals with the opportunity to expand their knowledge of AWS services and become experts in cloud computing.

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Amazon SAA-C03 Exam, also known as the Amazon AWS Certified Solutions Architect - Associate (SAA-C03), is a certification exam that tests candidates' abilities to design and deploy scalable, highly available, and fault-tolerant systems on Amazon Web Services (AWS). Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam certification is essential for IT professionals who want to validate their expertise in AWS architecture and design and is highly sought-after by employers globally.

Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam Sample Questions (Q526-Q531):

NEW QUESTION # 526
A company uses on-premises servers to host its applications The company is running out of storage capacity.
The applications use both block storage and NFS storage. The company needs a high-performing solution that supports local caching without re-architecting its existing applications.
Which combination of actions should a solutions architect take to meet these requirements? (Select TWO.)

  • A. Deploy an AWS Storage Gateway file gateway to replace NFS storage.
  • B. Deploy AWS Snowball Edge to provision NFS mounts to on-premises servers.
  • C. Mount Amazon S3 as a file system to the on-premises servers.
  • D. Deploy an AWS Storage Gateway volume gateway to replace the block storage
  • E. Deploy Amazon Elastic File System (Amazon EFS) volumes and mount them to on-premises servers.

Answer: A,D

Explanation:
https://aws.amazon.com/storagegateway/file/
File Gateway provides a seamless way to connect to the cloud in order to store application data files and backup images as durable objects in Amazon S3 cloud storage. File Gateway offers SMB or NFS-based access to data in Amazon S3 with local caching. It can be used for on-premises applications, and for Amazon EC2-based applications that need file protocol access to S3 object storage.
https://aws.amazon.com/storagegateway/volume/
Volume Gateway presents cloud-backed iSCSI block storage volumes to your on-premises applications.
Volume Gateway stores and manages on-premises data in Amazon S3 on your behalf and operates in either cache mode or stored mode. In the cached Volume Gateway mode, your primary data is stored in Amazon S3, while retaining your frequently accessed data locally in the cache for low latency access.


NEW QUESTION # 527
[Design Resilient Architectures]
A company offers a food delivery service that is growing rapidly. Because of the growth, the company's order processing system is experiencing scaling problems during peak traffic hours. The current architecture includes the following:
* A group of Amazon EC2 instances that run in an Amazon EC2 Auto Scaling group to collect orders from the application
* Another group of EC2 instances that run in an Amazon EC2 Auto Scaling group to fulfill orders The order collection process occurs quickly, but the order fulfillment process can take longer. Data must not be lost because of a scaling event.
A solutions architect must ensure that the order collection process and the order fulfillment process can both scale properly during peak traffic hours. The solution must optimize utilization of the company's AWS resources.
Which solution meets these requirements?

  • A. Provision two Amazon Simple Queue Service (Amazon SQS) queues: one for order collection and another for order fulfillment. Configure the EC2 instances to poll their respective queue. Create a metric based on a backlog per instance calculation. Scale the Auto Scaling groups based on this metric.
  • B. Provision two Amazon Simple Queue Service (Amazon SQS) queues: one for order collection and another for order fulfillment. Configure the EC2 instances to poll their respective queue. Scale the Auto Scaling groups based on notifications that the queues send.
  • C. Use Amazon CloudWatch metrics to monitor the CPU of each instance in the Auto Scaling groups. Configure a CloudWatch alarm to invoke an Amazon Simple Notification Service (Amazon SNS) topic that creates additional Auto Scaling groups on demand.
  • D. Use Amazon CloudWatch metrics to monitor the CPU of each instance in the Auto Scaling groups. Configure each Auto Scaling group's minimum capacity according to peak workload values.

Answer: A

Explanation:
The number of instances in your Auto Scaling group can be driven by how long it takes to process a message and the acceptable amount of latency (queue delay). The solution is to use a backlog per instance metric with the target value being the acceptable backlog per instance to maintain.


NEW QUESTION # 528
[Design Secure Architectures]
A company has developed a non-production application that is composed of multiple microservices for each of the company's business units. A single development team maintains all the microservices.
The current architecture uses a static web frontend and a Java-based backend that contains the application logic. The architecture also uses a MySQL database that the company hosts on an Amazon EC2 instance.
The company needs to ensure that the application is secure and available globally.
Which solution will meet these requirements with the LEAST operational overhead?

  • A. Use Amazon CloudFront and AWS Amplify to host the static web frontend. Refactor the microservices to use AWS Lambda functions that the microservices access by using Amazon API Gateway. Migrate the MySQL database to an Amazon EC2 Reserved Instance.
  • B. Use Amazon CloudFront and Amazon S3 to host the static web frontend. Refactor the microservices to use AWS Lambda functions that the microservices access by using Amazon API Gateway. Migrate the MySQL database to Amazon RDS for MySQL.
  • C. Use Amazon CloudFront and Amazon S3 to host the static web frontend. Refactor the microservices to use AWS Lambda functions that are in a target group behind a Network Load Balancer. Migrate the MySQL database to Amazon RDS for MySQL.
  • D. Use Amazon S3 to host the static web frontend. Refactor the microservices to use AWS Lambda functions that are in a target group behind an Application Load Balancer. Migrate the MySQL database to an Amazon EC2 Reserved Instance.

Answer: B

Explanation:
This solution offers the least operational overhead while meeting the security and global availability requirements:
Amazon CloudFront and S3: Hosting the static frontend on S3 and serving it via CloudFront provides low-latency global distribution, high availability, and security. S3 is a cost-effective and serverless option for hosting static assets, and CloudFront ensures that the application is cached closer to the users, reducing latency globally.
AWS Lambda and API Gateway: Refactoring the microservices to use Lambda functions with API Gateway allows for a fully serverless, scalable, and highly available backend. This reduces the need for managing EC2 instances, as Lambda automatically scales to meet demand and only charges for the actual usage.
RDS for MySQL: Migrating the MySQL database from an EC2 instance to Amazon RDS significantly reduces operational overhead. RDS manages backups, patching, and scaling, and it offers high availability options (e.g., Multi-AZ).
Option AandDinvolve using EC2 Reserved Instances for the database, which requires more operational maintenance than using RDS.
Option Csuggests using a Network Load Balancer with Lambda, which adds unnecessary complexity for this use case.
AWS Reference:
Amazon S3 and CloudFront Integration
AWS Lambda with API Gateway
Amazon RDS for MySQL


NEW QUESTION # 529
[Design Secure Architectures]
The following IAM policy is attached to an IAM group. This is the only policy applied to the group.

  • A. Group members are allowed the ec2:Stoplnstances and ec2:Terminatelnstances permissions for all Regions when logged in with multi-factor authentication (MFA). Group members arepermitted any other Amazon EC2 action.
  • B. Group members are permitted any Amazon EC2 action within the us-east-1 Region. Statements after the Allow permission are not applied.
  • C. Group members are allowed the ec2:Stoplnstances and ec2:Terminatelnstances permissions for the us-east-1 Region only when logged in with multi-factor authentication (MFA). Group members are permitted any other Amazon EC2 action within the us-east-1 Region.
  • D. Group members are denied any Amazon EC2 permissions in the us-east-1 Region unless they are logged in with multi-factor authentication (MFA).

Answer: C

Explanation:
This answer is correct because it reflects the effect of the IAM policy on the group members. The policy has two statements: one with an Allow effect and one with a Deny effect. The Allow statement grants permission to perform any EC2 action on any resource within the us-east-1 Region. The Deny statement overrides the Allow statement and denies permission to perform the ec2:StopInstances and ec2:TerminateInstances actions on any resource within the us-east-1 Region, unless the group member is logged in with MFA. Therefore, the group members can perform any EC2 action except stopping or terminating instances in the us-east-1 Region, unless they use MFA.


NEW QUESTION # 530
[Design Secure Architectures]
A company stores data in Amazon S3. According to regulations, the data must not contain personally identifiable information (Pll). The company recently discovered that S3 buckets havesome objects that contain Pll. The company needs to automatically detect Pll in S3 buckets and to notify the company's security team.
Which solution will meet these requirements?

  • A. Use Amazon Macie. Create an Amazon EventBridge rule to filter the SensitiveData:S30bject/Personal event type from Macie findings and to send an Amazon Simple Queue Service (Amazon SQS) notification to the security team.
  • B. Use Amazon GuardDuty. Create an Amazon EventBridge rule to filter the CRITICAL event type from GuardDuty findings and to send an Amazon Simple Notification Service (Amazon SNS) notification to the security team.
  • C. Use Amazon Macie. Create an Amazon EventBridge rule to filter the SensitiveData event type from Macie findings and to send an Amazon Simple Notification Service (Amazon SNS) notification to the security team.
  • D. Use Amazon GuardDuty. Create an Amazon EventBridge rule to filter the CRITICAL event type from GuardDuty findings and to send an Amazon Simple Queue Service (Amazon SQS) notification to the security team.

Answer: C

Explanation:
Amazon Macie can also send its findings to Amazon EventBridge, which is a serverless event bus that makes it easy to connect applications using data from a variety of sources. You can create an EventBridge rule that filters the SensitiveData event type from Macie findings and sends an Amazon SNS notification to the security team. Amazon SNS is a fully managed messaging service that enables you to send messages to subscribers or other applications.Reference:https://docs.aws.amazon.com/macie/latest/userguide/macie-findings.html#macie-findings-eventbridge


NEW QUESTION # 531
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