QUIZ AMAZON - SOA-C02 - PROFESSIONAL AWS CERTIFIED SYSOPS ADMINISTRATOR - ASSOCIATE (SOA-C02) EXAM CERTIFICATION

Quiz Amazon - SOA-C02 - Professional AWS Certified SysOps Administrator - Associate (SOA-C02) Exam Certification

Quiz Amazon - SOA-C02 - Professional AWS Certified SysOps Administrator - Associate (SOA-C02) Exam Certification

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Amazon SOA-C02 Certification Exam, also known as AWS Certified SysOps Administrator - Associate, is designed to test the knowledge and skills of individuals who are seeking to become certified SysOps Administrators in the Amazon Web Services (AWS) environment. AWS Certified SysOps Administrator - Associate (SOA-C02) certification is targeted at IT professionals who have experience in deploying, managing, and operating scalable, highly available, and fault-tolerant systems on AWS.

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Amazon SOA-C02 Reliable Exam Sample | New SOA-C02 Test Tips

Achieving success in the Amazon SOA-C02 certification exam opens doors to lucrative job opportunities and career advancements. The AWS Certified SysOps Administrator - Associate (SOA-C02) (SOA-C02) credential is highly valuable in today's industry. However, many candidates face the frustration of exam failure and wasted time and resources by relying on outdated Amazon SOA-C02 Practice Questions. To save both time and money, it is crucial to prepare with the most up-to-date and reliable SOA-C02 exam questions.

Amazon AWS Certified SysOps Administrator - Associate (SOA-C02) Sample Questions (Q147-Q152):

NEW QUESTION # 147
A SysOps Administrator runs a web application that is using a microservices approach whereby different responsibilities of the application have been divided in a separate microservice running on a different Amazon EC2 instance. The administrator has been tasked with reconfiguring the infrastructure to support this approach.
How can the administrator accomplish this with the LEAST administrative overhead?

  • A. Use Amazon CloudFront to log the URL and forward the request.
  • B. Use an Application Load Balancer (ALB) and do path-based routing.
  • C. Use a Network Load Balancer (NLB) and do path-based routing.
  • D. Use Amazon CloudFront to rewrite the header based on the microservice and forward the request.

Answer: B

Explanation:
To reconfigure the infrastructure to support a microservices approach with the least administrative overhead, using an Application Load Balancer (ALB) with path-based routing is the most suitable solution.
* Application Load Balancer (ALB):
* ALBs are designed to distribute incoming application traffic across multiple targets, such as EC2 instances, in one or more Availability Zones.
* ALBs support path-based routing, which allows you to route requests to different microservices
* based on the URL path.
* Path-Based Routing:
* With path-based routing, you can configure your ALB to route requests to specific target groups based on the URL path.
* For example, requests to example.com/service1/* can be routed to one microservice, while requests to example.com/service2/* can be routed to another.
* Implementation Steps:
* Go to the EC2 console and navigate to "Load Balancers."
* Create an ALB and configure the listener.
* Define rules for path-based routing and create target groups for each microservice.
* Register the appropriate EC2 instances with each target group.
References:
* Application Load Balancers
* ALB Path-Based Routing


NEW QUESTION # 148
A company's SysOps administrator has created an Amazon EC2 instance with custom software that will be used as a template for all new EC2 instances across multiple AWS accounts. The Amazon Elastic Block Store (Amazon EBS) volumes that are attached to the EC2 instance are encrypted with AWS managed keys.
The SysOps administrator creates an Amazon Machine Image (AMI) of the custom EC2 instance and plans to share the AMI with the company's other AWS accounts. The company requires that all AMIs are encrypted with AWS Key Management Service (AWS KMS) keys and that only authorized AWS accounts can access the shared AMIs.
Which solution will securely share the AMI with the other AWS accounts?

  • A. In the account where the AMI was created, create a customer master key (CMK). Modify the key policy to provide kms:DescribeKey, kms ReEncrypf, kms:CreateGrant, and kms:Decrypt permissions to the AWS accounts that the AMI will be shared with. Modify the AMI permissions to specify the AWS account numbers that the AMI will be shared with.
  • B. In the account where the AMI was created, create a customer master key (CMK). Modify the key policy to provide kms:DescribeKey, kms:ReEncrypt*. kms:CreateGrant, and kms;Decrypt permissions to the AWS accounts that the AMI will be shared with. Create a copy of the AMI. and specify the CMK. Modify the permissions on the copied AMI to specify the AWS account numbers that the AMI will be shared with.
  • C. In the account where the AMI was created, create a customer master key (CMK). Modify the key policy to provide kms:DescrlbeKey, kms:ReEncrypt kms:CreateGrant, and kms:Decrypt permissions to the AWS accounts that the AMI will be shared with. Create a copy of the AMI. and specify the CMK. Modify the permissions on the copied AMI to make it public.
  • D. In the account where the AMI was created, modify the key policy of the AWS managed key to provide kms:DescnbeKey. kms:ReEncrypt kms:CreateGrant, and kms:Decrypt permissions to the AWS accounts that the AMI will be shared with. Modify the AMI permissions to specify the AWS account numbers that the AMI will be shared with.

Answer: B

Explanation:
https://docs.aws.amazon.com/AWSEC2/latest/UserGuide/sharingamis-explicit.html


NEW QUESTION # 149
A company is migrating its production file server to AWS. All data that is stored on the file server must remain accessible if an Availability Zone becomes unavailable or when system maintenance is performed.
Users must be able to interact with the file server through the SMB protocol. Users also must have the ability to manage file permissions by using Windows ACLs.
Which solution will net these requirements?

  • A. Deploy two Amazon FSx for Windows File Server Single-AZ 2 file systems. Configure Microsoft Distributed File System Replication (DFSR).
  • B. Create an Amazon FSx for Windows File Server Multi-AZ file system.
  • C. Create a single AWS Storage Gateway file gateway.
  • D. Deploy two AWS Storage Gateway file gateways across two Availability Zones. Configure an Application Load Balancer in front of the file gateways.

Answer: B

Explanation:
https://aws.amazon.com/fsx/windows/


NEW QUESTION # 150
A company is managing many accounts by using a single organization in AWS Organizations. The organization has all features enabled. The company wants to turn on AWS Config in all the accounts of the organization and in all AWS Regions.
What should a Sysops administrator do to meet these requirements in the MOST operationally efficient way?

  • A. Use service control policies (SCPs) to configure AWS Config in all accounts and in all Regions.
  • B. Create a script that uses the AWS CLI to turn on AWS Config in all accounts in the organization. Run the script from the organization's management account.
  • C. Use AWS CloudFormation StackSets to deploy stack policies that turn on AWS Config in all accounts and in all Regions.
  • D. Use AVVS CloudFormation StackSets to deploy stack instances that turn on AWS Config in all accounts and in all Regions.

Answer: D

Explanation:
To enable AWS Config in all accounts and all regions within an AWS Organization, the most operationally efficient method is to use AWS CloudFormation StackSets. This allows you to deploy CloudFormation stacks across multiple AWS accounts and regions from a single CloudFormation template.
* Create CloudFormation Template:
* The template should include the necessary resources to enable AWS Config, such as the AWS::
Config::ConfigurationRecorder, AWS::Config::DeliveryChannel, and AWS::Config::
ConfigurationAggregator resources.
* Create StackSet:
* Open the AWS CloudFormation console at AWS CloudFormation Console.
* Choose Create StackSet and upload your CloudFormation template.
* Configure StackSet:
* Specify the AWS accounts and regions where you want to deploy the stacks.
* Set the deployment options, including the execution role and administrator role.
* Deploy Stack Instances:
* Deploy the stack instances to all specified accounts and regions. This will automatically enable AWS Config in each account and region.
References:
* AWS CloudFormation StackSets
* Managing AWS Config Across Multiple Accounts


NEW QUESTION # 151
A company is migrating its production file server to AWS. All data that is stored on the file server must remain accessible if an Availability Zone becomes unavailable or when system maintenance is performed.
Users must be able to interact with the file server through the SMB protocol. Users also must have the ability to manage file permissions by using Windows ACLs.
Which solution will net these requirements?

  • A. Deploy two Amazon FSx for Windows File Server Single-AZ 2 file systems. Configure Microsoft Distributed File System Replication (DFSR).
  • B. Create an Amazon FSx for Windows File Server Multi-AZ file system.
  • C. Create a single AWS Storage Gateway file gateway.
  • D. Deploy two AWS Storage Gateway file gateways across two Availability Zones. Configure an Application Load Balancer in front of the file gateways.

Answer: B

Explanation:
Amazon FSx for Windows File Server provides a fully managed native Microsoft Windows file system that supports the SMB protocol and Windows ACLs, ensuring compatibility with existing applications and processes. Using a Multi-AZ deployment ensures high availability by providing automatic failover to a standby instance in a different Availability Zone.
* Create Amazon FSx for Windows File Server:
* Open the Amazon FSx console at Amazon FSx Console.
* Choose Create file system.
* Select Amazon FSx for Windows File Server, then click Next.
* Configure File System Settings:
* In the File system details section, provide the necessary details such as Deployment type, Storage capacity, and Throughput capacity.
* Select Multi-AZ deployment to ensure high availability.
* Choose the Windows authentication method, either AWS Managed Microsoft AD or Self-managed Microsoft AD.
* Network & Security Configuration:
* Select the VPC, subnet, and security groups to attach to the file system.
* Ensure subnets are in different Availability Zones for Multi-AZ configuration.
* Review and Create:
* Review the settings and click Create file system.
* Access the File System:
* Once the file system is created, you can map the network drive using the provided DNS name and manage permissions using Windows ACLs.
References:
* Amazon FSx for Windows File Server Documentation
* Creating a Multi-AZ File System


NEW QUESTION # 152
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