LATEST SAA-C03 EXAM DISCOUNT, NEW SAA-C03 BRAINDUMPS FREE

Latest SAA-C03 Exam Discount, New SAA-C03 Braindumps Free

Latest SAA-C03 Exam Discount, New SAA-C03 Braindumps Free

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The SAA-C03 Exam consists of 65 multiple-choice and multiple-response questions that you need to complete within 130 minutes. SAA-C03 exam covers a wide range of topics, including AWS architecture, security, networking, storage, compute, and databases. You will be tested on your ability to design and deploy AWS solutions that meet specific requirements, optimize AWS services for cost and performance, and troubleshoot common issues.

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Amazon SAA-C03 exam is one of the most sought-after certifications for IT professionals who are interested in cloud computing. AWS Certified Solutions Architect - Associate certification demonstrates a thorough understanding of Amazon Web Services (AWS) and solutions architecture. It is designed to test the candidates’ proficiency in designing and deploying scalable, highly available, and fault-tolerant systems on AWS. SAA-C03 Exam is considered to be quite challenging, and requires extensive preparation and hands-on experience with AWS services.

Amazon AWS Certified Solutions Architect - Associate Sample Questions (Q662-Q667):

NEW QUESTION # 662
[Design Cost-Optimized Architectures]
A company has an on-premises data center that is running out of storage capacity. The company wants to migrate its storage infrastructure to AWS while minimizing bandwidth costs. The solution must allow for immediate retrieval of data at no additional cost.
How can these requirements be met?

  • A. Deploy AWS Storage Gateway using stored volumes to store data locally. Use Storage Gateway to asynchronously back up point-in-time snapshots of the data to Amazon S3.
  • B. Deploy AWS Storage Gateway using cached volumes. Use Storage Gateway to store data in Amazon S3 while retaining copies of frequently accessed data subsets locally.
  • C. Deploy AWS Direct Connect to connect with the on-premises data center. Configure AWS Storage Gateway to store data locally. Use Storage Gateway to asynchronously back up point-in-time snapshots of the data to Amazon S3.
  • D. Deploy Amazon S3 Glacier Vault and enable expedited retrieval. Enable provisioned retrieval capacity for the workload.

Answer: B

Explanation:
The solution that will meet the requirements is to deploy AWS Storage Gateway using cached volumes and use Storage Gateway to store data in Amazon S3 while retaining copies of frequently accessed data subsets locally. This solution will allow the company to migrate its storage infrastructure to AWS while minimizing bandwidth costs, as it will only transfer data that is not cached locally. The solution will also allow for immediate retrieval of data at no additional cost, as the cached volumes will provide low-latencyaccess to the most recently used data. The data stored in Amazon S3 will be durable, scalable, and secure.
The other solutions are not as effective as the first one because they either do not meet the requirements or introduce additional costs or complexity. Deploying Amazon S3 Glacier Vault and enabling expedited retrieval will not meet the requirements, as it will incur additional costs for both storage and retrieval. Amazon S3 Glacier is a low-cost storage service for data archivingand backup, but it has longer retrieval times than Amazon S3. Expedited retrieval is a feature that allows faster access to data, but it charges a higher fee per GB retrieved. Provisioned retrieval capacity is a feature that reserves dedicated capacity for expedited retrievals, but it also charges a monthly fee per provisioned capacity unit. Deploying AWS Storage Gateway using stored volumes to store data locally and use Storage Gateway to asynchronously back up point-in-time snapshots of the data to Amazon S3 will not meet the requirements, as it will not migrate the storage infrastructure to AWS, but only create backups. Stored volumes are volumes that store the primary data locally and back up snapshots to Amazon S3. This solution will not reduce the storage capacity needed on-premises, nor will it leverage the benefits of cloud storage. Deploying AWS Direct Connect to connect with the on-premises data center and configuring AWS Storage Gateway to store data locally and use Storage Gateway to asynchronously back up point-in-time snapshots of the data to Amazon S3 will not meet the requirements, as it will also not migrate the storage infrastructure to AWS, but only create backups. AWS Direct Connect is a service that establishes a dedicated network connection between the on-premises data center and AWS, which can reduce network costs and increase bandwidth. However, this solution will also not reduce the storage capacity needed on-premises, nor will it leverage the benefits of cloud storage.
Reference:
AWS Storage Gateway
Cached volumes - AWS Storage Gateway
Amazon S3 Glacier
Retrieving archives from Amazon S3 Glacier vaults - Amazon Simple Storage Service Stored volumes - AWS Storage Gateway AWS Direct Connect


NEW QUESTION # 663
A company's HTTP application is behind a Network Load Balancer (NLB). The NLB's target group is configured to use an Amazon EC2 Auto Scaling group with multiple EC2 instances that run the web service.
The company notices that the NLB is not detecting HTTP errors for the application. These errors require a manual restart of the EC2 instances that run the web service. The company needs to improve the application's availability without writing custom scripts or code.
What should a solutions architect do to meet these requirements?

  • A. Enable HTTP health checks on the NLB. supplying the URL of the company's application.
  • B. Create an Amazon Cloud Watch alarm that monitors the UnhealthyHostCount metric for the NLB. Configure an Auto Scaling action to replace unhealthy instances when the alarm is in the ALARM state.
  • C. Replace the NLB with an Application Load Balancer. Enable HTTP health checks by supplying the URL of the company's application. Configure an Auto Scaling action to replace unhealthy instances.
  • D. Add a cron job to the EC2 instances to check the local application's logs once each minute. If HTTP errors are detected, the application will restart.

Answer: C


NEW QUESTION # 664
A company hosts a web application on multiple Amazon EC2 instances The EC2 instances are in an Auto Scaling group that scales in response to user demand The company wants to optimize cost savings without making a long-term commitment Which EC2 instance purchasing option should a solutions architect recommend to meet these requirements'?

  • A. On-Demand Instances only
  • B. A mix of On-Demand instances and Reserved instances
  • C. Dedicated Instances only
  • D. A mix of On-Demand instances and Spot Instances

Answer: C


NEW QUESTION # 665
A company has an application that generates a large number of files, each approximately 5 MB in size. The files are stored in Amazon S3. Company policy requires the files to be stored for 4 years before they can be deleted Immediate accessibility is always required as the files contain critical business data that is not easy to reproduce. The files are frequently accessed in the first 30 days of the object creation but are rarely accessed after the first 30 days Which storage solution is MOST cost-effective?

  • A. Create an S3 bucket lifecycle policy to move Mm from S3 Standard to S3 Glacier 30 days from object creation Delete the Tiles 4 years after object creation
  • B. Create an S3 bucket lifecycle policy to move files from S3 Standard-infrequent Access (S3 Standard -lA) 30 from object creation. Delete the ties 4 years after object creation
  • C. Create an S3 bucket lifecycle policy to move tiles from S3 Standard to S3 One Zone-infrequent Access (S3 One Zone-IA] 30 days from object creation. Delete the fees 4 years after object creation
  • D. Create an S3 bucket Lifecycle policy to move files from S3 Standard to S3 Standard-Infrequent Access (S3 Standard-IA) 30 days from object creation Move the files to S3 Glacier 4 years after object carton.

Answer: C

Explanation:
https://aws.amazon.com/s3/storage-classes/?trk=66264cd8-3b73-416c-9693-ea7cf4fe846a&sc_channel=ps&s_kwcid=AL!4422!3!536452716950!p!!g!!aws%20s3%20pricing&ef_id=Cj0KCQjwnbmaBhD-ARIsAGTPcfVHUZN5_BMrzl5zBcaC8KnqpnNZvjbZzqPkH6k7q4JcYO5KFLx0YYgaAm6nEALw_wcB:G:s&s_kwcid=AL!4422!3!536452716950!p!!g!!aws%20s3%20pricing


NEW QUESTION # 666
A company runs a web application that is deployed on Amazon EC2 instances in the private subnet of a VPC.
An Application Load Balancer (ALB) that extends across the public subnets directs web traffic to the EC2 instances. The company wants to implement new security measures to restrict inbound traffic from the ALB to the EC2 instances while preventing access from any other source inside or outside the private subnet of the EC2 instances.
Which solution will meet these requirements?

  • A. Configure the security group for the ALB to allow any TCP traffic on any port.
  • B. Configure the security group for the EC2 instances to only allow traffic that comes from the security group for the ALB.
  • C. Move the EC2 instances into the public subnet. Give the EC2 instances a set of Elastic IP addresses.
  • D. Configure a route in a route table to direct traffic from the internet to the private IP addresses of the EC2 instances.

Answer: B

Explanation:
To restrict inbound traffic from the ALB to the EC2 instances, the security group for the EC2 instances should only allow traffic that comes from the security group for the ALB. This way, the EC2 instances can only receive requests from the ALB and not from any other source inside or outside the private subnet.
References:
Security Groups for Your Application Load Balancers
Security Groups for Your VPC


NEW QUESTION # 667
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