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Introduction to Amazon SAA-C02 Exam

The AWS Solutions Architect Associate SAA-C02 certification validates the ability to develop and implement well-architected AWS solutions that meet client requirements. This new exam version SAA-C02 provides updated content across all domains, as well as new targets in categories such as databases, cost optimization, and security, aligned with AWS platform innovations. To reflect the rapid speed of innovation on the AWS platform and the latest best practices for architecture on the AWS Cloud, AWS Certification regularly updates this examination.

The certification of the AWS Solutions Architect Associate SAA-C02 gives you a comprehensive review of AWS and develops a valuable framework from which you can build any little thing you'll find going on. For four years running, there is an explanation of why it is the number one cloud certification.

Amazon SAA-C02 Certification Path

Although having no official prerequisites, AWS recommends candidates to have prior knowledge and experience as listed below:

The exam requires:

  • Ability to assess which AWS services fulfill a particular technical requirement.
  • Knowledge of network innovations as they correspond to AWS.
  • 1 year of hands-on experience developing distributed systems on AWS that are available, cost-effective, fault-tolerant, and scalable.
  • Awareness of the recommended best practices on the AWS framework for developing safe and reliable applications.
  • An awareness of the worldwide infrastructure of AWS.
  • Ability for an AWS-based framework to recognize and define technical specifications.
  • An awareness of the fundamental building architectural concepts in the AWS Cloud.

Resources to supplement your experience and help you prepare for AWS Solutions Architect Associate (SAA-C02) Exam are available at the Amazon Web Services official website, under the “Prepare for your exam” section. Several other online learning websites and platforms like Udemy provide full-fledged courses and materials to assist the practice of the exam.

How to Prepare For Amazon SAA-C02 Exam

Preparation Guide for Amazon SAA-C02 Exam

Introduction

Amazon Web Services (AWS) is an Amazon subsidiary that, on a metered pay-as-you-go basis, offers on-demand cloud computing platforms and APIs to individuals, enterprises, and governments. AWS certification is a degree of cloud experience in Amazon Web Services that an IT specialist obtains after completing one or more AWS examinations.

To demonstrate and verify technical cloud expertise and skills, IT pros obtain AWS certifications. For cloud developers, managers, and architects, AWS offers various qualification exams. AWS certification lasts for two years, and after it expires, IT pros can recertify their particular certification. Around the world, there are hundreds of examination centers in which to take the exams.

Many organizations have adopted AWS and they lack individuals who can interact through this platform. However, having the requisite skills is the only way to land one of these job positions. You will get the skills needed to work with AWS with this associate-level badge, which will help you open up new job opportunities and receive a much higher salary.

This guide provides a detailed overview of the AWS Solutions Architect Associate SAA-C02 certification including all sorts of prerequisites for the exam, the exam format, topics covered, exam difficulty and preparation methods, and the target audience profile.

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Amazon AWS Certified Solutions Architect - Associate (SAA-C02) Exam Sample Questions (Q151-Q156):

NEW QUESTION # 151
A company has created a multi-tier application for its ecommerce website The website uses an Application Load Balancer that resides in the public subnets, a web tier in the public subnets, and a MySQL cluster hosted on Amazon EC2 instances in the private subnets. The MySQL database needs to retrieve product catalog and pricing information that is hosted on the internet by a third-party provider A solutions architect must devise a strategy that maximizes security without increasing operational overhead What should the solutions architect do to meet these requirements?

  • A. Configure a virtual private gateway and attach it to the VPC Modify the private subnet route table to direct internet-bound traffic to the virtual private gateway.
  • B. Deploy a NAT gateway in the public subnets. Modify the private subnet route table to direct all internet-bound traffic to the NAT gateway.
  • C. Configure an internet gateway and attach it to the VPC Modify the private subnet route table to direct internet-bound traffic to the internet gateway
  • D. Deploy a NAT instance in the VPC Route all the internet-based traffic through the NAT instance

Answer: B


NEW QUESTION # 152
A company is using a third-party vendor to manage its marketplace analytics. The vendor needs limited programmatic access to resources in the company's account. All the needed policies have been created to grant appropriate access.
Which additional component will provide the vendor with the MOST secure access to the account?

  • A. Use a cross-account role with an external ID.
  • B. Configure a single sign-on (SSO) identity provider.
  • C. Create an 1AM user.
  • D. Implement a service control policy (SCP)

Answer: A


NEW QUESTION # 153
A company recently expanded globally and wants to make its application accessible to users in those geographic locations. The application is deploying on Amazon EC2 instances behind an Application Load balancer in an Auto Scaling group. The company needs the ability shift traffic from resources in one region to another.
What should a solutions architect recommend?

  • A. Configure an Amazon Route 53 multivalue answer routing policy
  • B. Configure an Amazon Route 53 geoproximity routing policy.
  • C. Configure an Amazon Route 53 geolocation routing policy
  • D. Configure an Amazon Route 53 latency routing policy

Answer: B

Explanation:
Keyword: Users in those Geographic Locations
Condition: Ability Shift traffic from resources in One Region to Another Region The following table highlights the key function of each type of routing policy:

Geo-location:
* Caters to different users in different countries and different languages.
* Contains users within a particular geography and offers them a customized version of the workload based on their specific needs.
* Geolocation can be used for localizing content and presenting some or all of your website in the language of your users.
* Can also protect distribution rights.
* Can be used for spreading load evenly between regions.
* If you have multiple records for overlapping regions, Route 53 will route to the smallest geographic region.
* You can create a default record for IP addresses that do not map to a geographic location.
The following diagram depicts an Amazon Route 53 Geolocation routing policy configuration:

Reference:
https://docs.aws.amazon.com/Route53/latest/DeveloperGuide/routing-policy.html
https://aws.amazon.com/route53/?nc2=h_ql_prod_nt_r53


NEW QUESTION # 154
Company is designing a website that uses an Amazon S3 bucket to store static images. The company wants ail future requests have taster response times while reducing both latency and cost.
Which service configuration should a solutions architect recommend?

  • A. Deploy Amazon CloudFront in front of Amazon S3.
  • B. Deploy a NAT server in front of Amazon S3.
  • C. Configure Auto Scaling to automatically adjust the capacity of the website.
  • D. Deploy a Network Load Balancer in front of Amazon S3.

Answer: C


NEW QUESTION # 155
A company is planning to use Amazon S3 lo store images uploaded by its users The images must be encrypted at rest in Amazon S3 The company does not want to spend time managing and rotating the keys, but it does want to control who can access those keys What should a solutions architect use to accomplish this?

  • A. Server-Side Encryption with keys stored in an S3 bucket
  • B. Server-Side Encryption with Amazon S3-Managed Keys (SSE-S3)
  • C. Server-Side Encryption with AWS KMS-Managed Keys (SSE-KMS)
  • D. Server-Side Encryption with Customer-Provided Keys (SSE-C)

Answer: C

Explanation:
Link: https://docs.aws.amazon.com/AmazonS3/latest/dev/serv-side-encryption.html
"Server-Side Encryption with Customer Master Keys (CMKs) Stored in AWS Key Management Service (SSE-KMS) is similar to SSE-S3, but with some additional benefits and charges for using this service. There are separate permissions for the use of a CMK that provides added protection against unauthorized access of your objects in Amazon S3. SSE-KMS also provides you with an audit trail that shows when your CMK was used and by whom." Server-Side Encryption: Using SSE-KMS You can protect data at rest in Amazon S3 by using three different modes of server-side encryption: SSE-S3, SSE-C, or SSE-KMS.
SSE-S3 requires that Amazon S3 manage the data and master encryption keys. For more information about SSE-S3, see Protecting Data Using Server-Side Encryption with Amazon S3-Managed Encryption Keys (SSE-S3).
SSE-C requires that you manage the encryption key. For more information about SSE-C, see Protecting Data Using Server-Side Encryption with Customer-Provided Encryption Keys (SSE-C).
SSE-KMS requires that AWS manage the data key but you manage the customer master key (CMK) in AWS KMS.
The remainder of this topic discusses how to protect data by using server-side encryption with AWS KMS-managed keys (SSE-KMS).
You can request encryption and select a CMK by using the Amazon S3 console or API. In the console, check the appropriate box to perform encryption and select your CMK from the list. For the Amazon S3 API, specify encryption and choose your CMK by setting the appropriate headers in a GET or PUT request.
https://docs.aws.amazon.com/kms/latest/developerguide/services-s3.html#sse


NEW QUESTION # 156
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