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SAA-C03 Latest Dumps Pdf & Valid SAA-C03 Vce Dumps
SAA-C03 Latest Dumps Pdf,Valid SAA-C03 Vce Dumps,SAA-C03 Free Study Material,SAA-C03 Practice Test Pdf,Pdf SAA-C03 Files, SAA-C03 Latest Dumps Pdf & Valid SAA-C03 Vce Dumps

Our primary objective is to provide you with SAA-C03 Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam actual questions to complete preparation for the test in few days. Our product includes Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam real questions, desktop practice test software, and web-based practice exam. Keep reading to find out what are the specifications of these formats.

The Amazon SAA-C03 certification is an essential certification for individuals who are interested in working with AWS. It provides a comprehensive understanding of AWS services and their best practices, and it is highly valued by employers in the IT industry.

The SAA-C03 Certification Exam comprises of 65 multiple-choice and multiple-response questions, and the candidate is given 130 minutes to complete the exam. The exam is available in multiple languages, including English, Japanese, Korean, and Simplified Chinese. The passing score for the exam is 720 out of 1000, and the certification is valid for three years.

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The Amazon SAA-C03 exam is a certification exam that validates the technical expertise of individuals in designing and deploying scalable and fault-tolerant systems on AWS. The exam tests the candidate's knowledge of AWS services and their ability to design and deploy highly available, cost-effective, and scalable systems on AWS. Candidates who pass this exam will demonstrate their ability to design and deploy robust and scalable systems on AWS, which is highly valued by employers. To prepare for the exam, candidates should enroll in AWS training courses, read AWS documentation, and practice with AWS services.

Amazon AWS Certified Solutions Architect - Associate (SAA-C03) Exam Sample Questions (Q328-Q333):

NEW QUESTION # 328
A web application requires a minimum of six Amazon Elastic Compute Cloud (EC2) instances running at all times. You are tasked to deploy the application to three availability zones in the EU Ireland region (eu-west-1a, eu-west-1b, and eu-west-1c). It is required that the system is fault-tolerant up to the loss of one Availability Zone.
Which of the following setup is the most cost-effective solution which also maintains the fault-tolerance of your system?

  • A. 2 instances in eu-west-1a, 2 instances in eu-west-1b, and 2 instances in eu-west-1c
  • B. 6 instances in eu-west-1a, 6 instances in eu-west-1b, and 6 instances in eu-west-1c
  • C. 6 instances in eu-west-1a, 6 instances in eu-west-1b, and no instances in eu-west-1c
  • D. 3 instances in eu-west-1a, 3 instances in eu-west-1b, and 3 instances in eu-west-1c

Answer: D

Explanation:
Basically, fault-tolerance is the ability of a system to remain in operation even in the event that some of its components fail, without any service degradation. In AWS, it can also refer to the minimum number of running EC2 instances or resources which should be running at all times in order for the system to properly operate and serve its consumers. Take note that this is quite different from the concept of High Availability, which is just concerned with having at least one running instance or resource in case of failure.

In this scenario, 3 instances in eu-west-1a, 3 instances in eu-west-1b, and 3 instances in eu-west-1c is the correct answer because even if there was an outage in one of the Availability Zones, the system still satisfies the requirement of having a minimum of 6 running instances. It is also the most cost-effective solution among other options.
The option that says: 6 instances in eu-west-1a, 6 instances in eu-west-1b, and 6 instances in eu-west-1 is incorrect because although this solution provides the maximum fault-tolerance for the system, it entails a significant cost to maintain a total of 18 instances across 3 AZs.
The option that says: 2 instances in eu-west-1a, 2 instances in eu-west-1b, and 2 instances in eu-west-1 is incorrect because if one Availability Zone goes down, there will only be 4 running instances available. Although this is the most cost-effective solution, it does not provide fault-tolerance.
The option that says: 6 instances in eu-west-1a, 6 instances in eu-west-1b, and no instances in eu- west-1c is incorrect because although it provides fault-tolerance, it is not the most cost-effective solution as compared with the options above. This solution has 12 running instances, unlike the correct answer which only has 9 instances.
References:
https://docs.aws.amazon.com/AWSEC2/latest/UserGuide/ec2-increase-availability.html
https://media.amazonwebservices.com/AWS_Building_Fault_Tolerant_Applications.pdf


NEW QUESTION # 329
A company hosts its web applications in the AWS Cloud. The company configures Elastic Load Balancers to use certificate that are imported into AWS Certificate Manager (ACM). The company's security team must be notified 30 days before the expiration of each certificate.
What should a solutions architect recommend to meet the requirement?

  • A. Create an Amazon EventBridge (Amazon CloudWatch Events) rule to detect any certificates that will expire within 30 days. Configure the rule to invoke an AWS Lambda function. Configure the Lambda function to send a custom alert by way of Amazon Simple Notification Service (Amazon SNS).
  • B. Use AWS trusted Advisor to check for certificates that will expire within to days. Create an Amazon CloudWatch alarm that is based on Trusted Advisor metrics for check status changes Configure the alarm to send a custom alert by way of Amazon Simple rectification Service (Amazon SNS)
  • C. Create an AWS Config rule that checks for certificates that will expire within 30 days. Configure Amazon EventBridge (Amazon CloudWatch Events) to invoke a custom alert by way of Amazon Simple Notification Service (Amazon SNS) when AWS Config reports a noncompliant resource
  • D. Add a rule m ACM to publish a custom message to an Amazon Simple Notification Service (Amazon SNS) topic every day beginning 30 days before any certificate will expire.

Answer: C

Explanation:
https://aws.amazon.com/premiumsupport/knowledge-center/acm-certificate-expiration/


NEW QUESTION # 330
A company hosts its web application on AWS using seven Amazon EC2 instances. The company requires that the IP addresses of all healthy EC2 instances be returned in response to DNS queries.
Which policy should be used to meet this requirement?

  • A. Geolocation routing policy
  • B. Latency routing policy
  • C. Simple routing policy
  • D. Multivalue routing policy

Answer: D

Explanation:
Explanation
Use a multivalue answer routing policy to help distribute DNS responses across multiple resources. For example, use multivalue answer routing when you want to associate your routing records with a Route 53 health check. For example, use multivalue answer routing when you need to return multiple values for a DNS query and route traffic to multiple IP addresses.
https://aws.amazon.com/premiumsupport/knowledge-center/multivalue-versus-simple-policies/


NEW QUESTION # 331
A company wants to experiment with individual AWS accounts for its engineer team. The company wants to be notified as soon as the Amazon EC2 instance usage for a given month exceeds a specific threshold for each account.
What should a solutions architect do to meet this requirement MOST cost-effectively?

  • A. Use Cost Explorer to create a daily report of costs by service. Filter the report by EC2 instances.
    Configure Cost Explorer to send an Amazon Simple Email Service (Amazon SES) notification when a threshold is exceeded.
  • B. Use AWS Budgets to create a cost budget for each account. Set the period to monthly. Set the scope to EC2 instances. Set an alert threshold for the budget. Configure an Amazon Simple Notification Service (Amazon SNS) topic to receive a notification when a threshold is exceeded.
  • C. Use AWS Cost and Usage Reports to create a report with hourly granularity. Integrate the report data with Amazon Athena. Use Amazon EventBridge to schedule an Athena query. Configure an Amazon Simple Notification Service (Amazon SNS) topic to receive a notification when a threshold is exceeded.
  • D. Use Cost Explorer to create a monthly report of costs by service. Filter the report by EC2 instances.
    Configure Cost Explorer to send an Amazon Simple Email Service (Amazon SES) notification when a threshold is exceeded.

Answer: B

Explanation:
Explanation
AWS Budgets allows you to create budgets for your AWS accounts and set alerts when usage exceeds a certain threshold. By creating a budget for each account, specifying the period as monthly and the scope as EC2 instances, you can effectively track the EC2 usage for each account and be notified when a threshold is exceeded. This solution is the most cost-effective option as it does not require additional resources such as Amazon Athena or Amazon EventBridge.


NEW QUESTION # 332
For data privacy, a healthcare company has been asked to comply with the Health Insurance Portability and Accountability Act (HIPAA). The company stores all its backups on an Amazon S3 bucket.
It is required that data stored on the S3 bucket must be encrypted.
What is the best option to do this? (Select TWO.)

  • A. Before sending the data to Amazon S3 over HTTPS, encrypt the data locally first using your own encryption keys.
  • B. Enable Server-Side Encryption on an S3 bucket to make use of AES-128 encryption.
  • C. Enable Server-Side Encryption on an S3 bucket to make use of AES-256 encryption.
  • D. Store the data in encrypted EBS snapshots.
  • E. Store the data on EBS volumes with encryption enabled instead of using Amazon S3.

Answer: A,C

Explanation:
Server-side encryption is about data encryption at rest-that is, Amazon S3 encrypts your data at the object level as it writes it to disks in its data centers and decrypts it for you when you access it. As long as you authenticate your request and you have access permissions, there is no difference in the way you access encrypted or unencrypted objects. For example, if you share your objects using a pre-signed URL, that URL works the same way for both encrypted and unencrypted objects.

You have three mutually exclusive options depending on how you choose to manage the encryption keys:
Use Server-Side Encryption with Amazon S3-Managed Keys (SSE-S3)
Use Server-Side Encryption with AWS KMS-Managed Keys (SSE-KMS)
Use Server-Side Encryption with Customer-Provided Keys (SSE-C)
The options that say: Before sending the data to Amazon S3 over HTTPS, encrypt the data locally first using your own encryption keys and Enable Server-Side Encryption on an S3 bucket to make use of AES-256 encryption are correct because these options are using client-side encryption and Amazon S3- Managed Keys (SSE-S3) respectively. Client-side encryption is the act of encrypting data before sending it to Amazon S3 while SSE-S3 uses AES-256 encryption.
Storing the data on EBS volumes with encryption enabled instead of using Amazon S3 and storing the data in encrypted EBS snapshots are incorrect because both options use EBS encryption and not S3.
Enabling Server-Side Encryption on an S3 bucket to make use of AES-128 encryption is incorrect as S3 doesn't provide AES-128 encryption, only AES-256. References:
http://docs.aws.amazon.com/AmazonS3/latest/dev/UsingEncryption.html
https://docs.aws.amazon.com/AmazonS3/latest/dev/UsingClientSideEncryption.html Check out this Amazon S3 Cheat Sheet:
https://tutorialsdojo.com/amazon-s3/
Tutorials Dojo's AWS Certified Solutions Architect Associate Exam Study Guide:
https://tutorialsdojo.com/aws-certified-solutions-architect-associate/


NEW QUESTION # 333
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