TEST SAA-C03 DUMPS DEMO | SAA-C03 DUMPS FREE

Test SAA-C03 Dumps Demo | SAA-C03 Dumps Free

Test SAA-C03 Dumps Demo | SAA-C03 Dumps Free

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Amazon AWS Certified Solutions Architect - Associate (SAA-C03) exam is a certification that validates an individual's expertise in designing and deploying scalable, highly available, and fault-tolerant systems on the Amazon Web Services (AWS) platform. Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam certification is intended for professionals who have a solid understanding of AWS services and can design and implement solutions that meet business requirements. The SAA-C03 Exam measures the knowledge and skills necessary to design and deploy AWS services that are secure, cost-effective, and highly available.

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According to our investigation, the test syllabus of the SAA-C03 exam is changing every year. Some new knowledge will be added into the annual real exam. Some old knowledge will be deleted. So you must have a clear understanding of the test syllabus of the SAA-C03 study materials. Now, you can directly refer to our study materials. Our experts have carefully researched each part of the test syllabus of the SAA-C03 Study Materials. Then they compile new questions and answers of the study materials according to the new knowledge parts.

Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam Sample Questions (Q710-Q715):

NEW QUESTION # 710
A company runs container applications by using Amazon Elastic Kubernetes Service (Amazon EKS) and the Kubernetes Horizontal Pod Autoscaler. The workload is not consistent throughout the day. A solutions architect notices that the number of nodes does not automatically scale out when the existing nodes have reached maximum capacity in the cluster, which causes performance issues Which solution will resolve this issue with the LEAST administrative overhead?

  • A. Use the Kubernetes Cluster Autoscaler to manage the number of nodes in the cluster.
  • B. Scale out the nodes by tracking the memory usage
  • C. Use an Amazon EC2 Auto Scaling group to distribute the workload.
  • D. Use an AWS Lambda function to resize the EKS cluster automatically.

Answer: A

Explanation:
Explanation
The Kubernetes Cluster Autoscaler is a component that automatically adjusts the number of nodes in your cluster when pods fail or are rescheduled onto other nodes. It uses Auto Scaling groups to scale up or down the nodes according to the demand and capacity of your cluster1.
By using the Kubernetes Cluster Autoscaler in your Amazon EKS cluster, you can achieve the following benefits:
* You can improve the performance and availability of your container applications by ensuring that there are enough nodes to run your pods and that there are no idle nodes wasting resources.
* You can reduce the administrative overhead of managing your cluster size manually or using custom scripts. The Cluster Autoscaler handles the scaling decisions and actions for you based on the metrics and events from your cluster.
* You can leverage the integration of Amazon EKS and AWS Auto Scaling to optimize the cost and efficiency of your cluster. You can use features such as launch templates, mixed instances policies, and spot instances to customize your node configuration and save up to 90% on compute costs2


NEW QUESTION # 711
A solutions architect is creating a new Amazon CloudFront distribution for an application. Some of the information submitted by users is sensitive. The application uses HTTPS but needs another layer of security. The sensitive information should be protected throughout the entire application stack, and access to the information should be restricted to certain applications.
Which action should the solutions architect take?

  • A. Configure a CloudFront signed cookie.
  • B. Configure a CloudFront signed URL.
  • C. Configure a CloudFront field-level encryption profile.
  • D. Configure CloudFront and set the Origin Protocol Policy setting to HTTPS Only for the Viewer Protocol Policy.

Answer: C

Explanation:
https://docs.aws.amazon.com/AmazonCloudFront/latest/DeveloperGuide/field-level-encryption.html
"With Amazon CloudFront, you can enforce secure end-to-end connections to origin servers by using HTTPS. Field-level encryption adds an additional layer of security that lets you protect specific data throughout system processing so that only certain applications can see it."


NEW QUESTION # 712
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 have some 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 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.
  • 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 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.

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 # 713
An ecommerce company wants a disaster recovery solution for its Amazon RDS DB instances that run Microsoft SQL Server Enterprise Edition. The company's current recovery point objective (RPO) and recovery time objective (RTO) are 24 hours.
Which solution will meet these requirements MOST cost-effectively?

  • A. Use AWS Database Migration Service (AWS DMS) to create RDS cross-Region replication.
  • B. Create a cross-Region read replica and promote the read replica to the primary instance
  • C. Copy automatic snapshots to another Region every 24 hours.
  • D. Use cross-Region replication every 24 hours to copy native backups to an Amazon S3 bucket

Answer: C

Explanation:
This solution is the most cost-effective and meets the RPO and RTO requirements of 24 hours.
Automatic Snapshots: Amazon RDS automatically creates snapshots of your DB instance at regular intervals. By copying these snapshots to another AWS Region every 24 hours, you ensure that you have a backup available in a different geographic location, providing disaster recovery capability.
RPO and RTO: Since the company's RPO and RTO are both 24 hours, copying snapshots daily to another Region is sufficient. In the event of a disaster, you can restore the DB instance from the most recent snapshot in the target Region.
Why Not Other Options?:
Option A (Cross-Region Read Replica): This could provide a faster recovery time but is more costly due to the ongoing replication and resource usage in another Region.
Option B (DMS Cross-Region Replication): While effective for continuous replication, it introduces complexity and cost that isn't necessary given the 24-hour RPO/RTO.
Option C (Cross-Region Native Backup Copy): This involves more manual steps and doesn't offer as straightforward a solution as automated snapshot copying.
AWS Reference:
Amazon RDS Automated Backups and Snapshots - Details on automated backups and snapshots in RDS.
Copying an Amazon RDS DB Snapshot - How to copy DB snapshots to another Region.


NEW QUESTION # 714
A company wants to migrate its three-tier application from on premises to AWS. The web tier and the application tier are running on third-party virtual machines (VMs). The database tier is running on MySQL.
The company needs to migrate the application by making the fewest possible changes to the architecture. The company also needs a database solution that can restore data to a specific point in time.
Which solution will meet these requirements with the LEAST operational overhead?

  • A. Migrate the web tier and the application tier to Amazon EC2 instances in public subnets. Migrate the database tier to Amazon Aurora MySQL in public subnets.
  • B. Migrate the web tier to Amazon EC2 instances in public subnets. Migrate the application tier to EC2 instances in private subnets. Migrate the database tier to Amazon Aurora MySQL in private subnets.
  • C. Migrate the web tier and the application tier to Amazon EC2 instances in private subnets. Migrate the database tier to Amazon RDS for MySQL in private subnets.
  • D. Migrate the web tier to Amazon EC2 instances in public subnets. Migrate the application tier to EC2 instances in private subnets. Migrate the database tier to Amazon RDS for MySQL in private subnets.

Answer: D

Explanation:
The solution that meets the requirements with the least operational overhead is to migrate the web tier to Amazon EC2 instances in public subnets, migrate the application tier to EC2 instances in private subnets, and migrate the database tier to Amazon RDS for MySQL in private subnets. This solution allows the company to migrate its three-tier application to AWS by making minimal changes to the architecture, as it preserves the same web, application, and database tiers and uses the same MySQL database engine. The solution also provides a database solution that can restore data to a specific point in time, as Amazon RDS for MySQL supports automated backups and point-in-time recovery. This solution also reduces the operational overhead by using managed services such as Amazon EC2 and Amazon RDS, which handle tasks such as provisioning, patching, scaling, and monitoring.
The other solutions do not meet the requirements as well as the first one because they either involve more changes to the architecture, do not provide point-in-time recovery, or do not follow best practices for security and availability. Migrating the database tier to Amazon Aurora MySQL would require changing the database engine and potentially modifying the application code to ensure compatibility. Migrating the web tier and the application tier to public subnets would expose them to more security risks and reduce their availability in case of a subnet failure. Migrating the database tier to public subnets would also compromise its security and performance. References:
Migrate Your Application Database to Amazon RDS
Amazon RDS for MySQL
Amazon Aurora MySQL
Amazon VPC


NEW QUESTION # 715
......

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