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Free PDF Fantastic Amazon - SAA-C03 Pass Test Guide
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It is a universally accepted fact that the SAA-C03 exam is a tough nut to crack for the majority of candidates, but there are still a lot of people in this field who long to gain the related certification so that a lot of people want to try their best to meet the challenge of the SAA-C03 Exam. A growing number of people know that if they have the chance to pass the exam, they will change their present situation and get a more decent job in the near future.
The Amazon SAA-C03 exam tests the candidate's knowledge of AWS services such as EC2, S3, RDS, VPC, and IAM, among others. It also assesses their ability to design and deploy highly available, cost-effective, and scalable systems on AWS. SAA-C03 exam consists of 65 multiple-choice and multiple-response questions, and the duration is 130 minutes.
Amazon SAA-C03 exam is a certification exam that is designed to test the candidate's knowledge and understanding of Amazon Web Services (AWS) solutions. SAA-C03 Exam is an industry-recognized certification that is highly valued by employers and individuals who want to demonstrate their expertise in AWS solutions. SAA-C03 exam is designed for individuals who have experience in designing, deploying, and managing AWS solutions.
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Amazon AWS Certified Solutions Architect - Associate Sample Questions (Q838-Q843):
NEW QUESTION # 838
Each developer at the company uses their own development environment, which includes a PostgreSQL database. On average, each development environment is used for an 8-hour workday. The test environments will be used for load testing that can take up to 2 hours each day.
Which solution will meet these requirements MOST cost-effectively?
Answer: D
Explanation:
Amazon Aurora Serverless v2 provides cost-effective, on-demand, and auto-scaling database capacity. You pay only for actual usage, making it ideal for development and test environments that are not used continuously. It supports PostgreSQL and is suitable for variable and short-duration workloads, minimizing costs when databases are idle.
AWS Documentation Extract:
"Amazon Aurora Serverless v2 automatically adjusts database capacity based on application needs, ideal for development and test environments with intermittent usage." (Source: Aurora Serverless v2 documentation)
* B: RDS instances run and accrue charges even when idle.
* C, D: Aurora clusters/global databases are overkill and incur higher costs for dev/test.
Reference: AWS Certified Solutions Architect - Official Study Guide, Aurora Serverless for Cost Optimization.
NEW QUESTION # 839
[Design High-Performing Architectures]
A company has applications that run on Amazon EC2 instances in a VPC. One of the applications needs to call the Amazon S3 API to store and read objects. According to the company's security regulations, no traffic from the applications is allowed to travel across the internet.
Which solution will meet these requirements?
Answer: C
Explanation:
https://docs.aws.amazon.com/AmazonS3/latest/userguide/privatelink-interface-endpoints.html#types-of-vpc-endpoints-for-s3
https://docs.aws.amazon.com/vpc/latest/userguide/vpc-endpoints-s3.html
NEW QUESTION # 840
[Design Secure Architectures]
A solutions architect needs to review a company's Amazon S3 buckets to discover personally identifiable information (Pll). The company stores the Pll data in the us-east-I Region and us-west-2 Region.
Which solution will meet these requirements with the LEAST operational overhead?
Answer: A
Explanation:
it allows the solutions architect to review the S3 buckets to discover personally identifiable information (Pll) with the least operational overhead. Amazon Macie is a fully managed data security and data privacy service that uses machine learning and pattern matching to discover and protect sensitive data in AWS. Amazon Macie can analyze data in S3 buckets across multiple regions and provide insights into the type, location, and level of sensitivity of the data. Reference:
Amazon Macie
Analyzing data with Amazon Macie
NEW QUESTION # 841
One member of your DevOps team consulted you about a connectivity problem in one of your Amazon EC2 instances. The application architecture is initially set up with four EC2 instances, each with an EIP address that all belong to a public non-default subnet. You launched another instance to handle the increasing workload of your application. The EC2 instances also belong to the same security group.
Everything works well as expected except for one of the EC2 instances which is not able to send nor receive traffic over the Internet.
Which of the following is the MOST likely reason for this issue?
Answer: D
Explanation:
IP addresses enable resources in your VPC to communicate with each other and with resources over the Internet. Amazon EC2 and Amazon VPC support the IPv4 and IPv6 addressing protocols.
By default, Amazon EC2 and Amazon VPC use the IPv4 addressing protocol. When you create a VPC, you must assign it an IPv4 CIDR block (a range of private IPv4 addresses). Private IPv4 addresses are not reachable over the Internet. To connect to your instance over the Internet or to enable communication between your instances and other AWS services that have public endpoints, you can assign a globally-unique public IPv4 address to your instance.
You can optionally associate an IPv6 CIDR block with your VPC and subnets and assign IPv6 addresses from that block to the resources in your VPC. IPv6 addresses are public and reachable over the Internet.
All subnets have a modifiable attribute that determines whether a network interface created in that subnet is assigned a public IPv4 address and, if applicable, an IPv6 address. This includes the primary network interface (eth0) that's created for an instance when you launch an instance in that subnet.
Regardless of the subnet attribute, you can still override this setting for a specific instance during launch.
By default, nondefault subnets have the IPv4 public addressing attribute set to false, and default subnets have this attribute set to true. An exception is a nondefault subnet created by the Amazon EC2 launch instance wizard - the wizard sets the attribute to true. You can modify this attribute using the Amazon VPC console.
In this scenario, there are 5 EC2 instances that belong to the same security group that should be able to connect to the Internet. The main route table is properly configured but there is a problem connecting to one instance. Since the other four instances are working fine, we can assume that the security group and the route table are correctly configured. One possible reason for this issue is that the problematic instance does not have a public or an EIP address.
Take note as well that the four EC2 instances all belong to a public non-default subnet. This means that a new EC2 instance will not have a public IP address by default since the since IPv4 public addressing attribute is initially set to false.
Hence, the correct answer is the option that says: The EC2 instance does not have a public IP address associated with it.
The option that says: The route table is not properly configured to allow traffic to and from the Internet through the Internet gateway is incorrect because the other three instances, which are associated with the same route table and security group, do not have any issues.
The option that says: The EC2 instance is running in an Availability Zone that is not connected to an Internet gateway is incorrect because there is no relationship between the Availability Zone and the Internet Gateway (IGW) that may have caused the issue. References:
http://docs.aws.amazon.com/AmazonVPC/latest/UserGuide/VPC_Scenario1.html
https://docs.aws.amazon.com/vpc/latest/userguide/vpc-ip-addressing.html#vpc-ip-addressing-subnet Check out this Amazon VPC Cheat Sheet:
https://tutorialsdojo.com/amazon-vpc/
NEW QUESTION # 842
A company's solutions architect is designing an AWS multi-account solution that uses AWS Organizations. The solutions architect has organized the company's accounts into organizational units (OUs).
The solutions architect needs a solution that will identify any changes to the OU hierarchy. The solution also needs to notify the company's operations team of any changes.
Which solution will meet these requirements with the LEAST operational overhead?
Answer: A
Explanation:
hierarchy.
Explanation:
Understanding the Requirement: The company needs to monitor and notify changes to the OU hierarchy with minimal operational overhead.
Analysis of Options:
AWS Control Tower with Account Drift Notifications: AWS Control Tower provides automated account provisioning and governance, including drift detection and notifications for changes in the OU hierarchy.
AWS Control Tower with AWS Config: AWS Config provides resource configuration tracking but is more complex compared to drift notifications directly available in Control Tower.
AWS Service Catalog with CloudTrail: While CloudTrail tracks changes, setting up notification mechanisms involves more operational overhead.
AWS CloudFormation with Drift Detection: Suitable for tracking configuration changes but less efficient for monitoring OU hierarchy changes compared to Control Tower's built-in features.
Best Solution:
AWS Control Tower with Account Drift Notifications: Provides a streamlined and efficient way to detect and notify changes in the OU hierarchy with minimal operational overhead.
Reference:
AWS Control Tower
AWS Control Tower Drift Detection
NEW QUESTION # 843
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