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Amazon SOA-C02 Exam is a valuable certification for professionals working in the sysops administrator role on the AWS platform. It demonstrates their knowledge and skills in managing and operating applications on AWS, and can help them advance their careers in the cloud computing industry.
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NEW QUESTION # 194
The security team is concerned because the number of AWS Identity and Access Management (IAM) policies being used in the environment is increasing. The team tasked a SysOps administrator to report on the current number of IAM policies in use and the total available IAM policies.
Which AWS service should the administrator use to check how current IAM policy usage compares to current service limits?
Answer: D
Explanation:
Step-by-Step
Understand the Problem:
The security team is concerned about the increasing number of IAM policies.
The task is to report on the current number of IAM policies and compare them to the service limits.
Analyze the Requirements:
The solution should help in checking the usage of IAM policies against the service limits.
Evaluate the Options:
Option A: AWS Trusted Advisor
AWS Trusted Advisor provides real-time guidance to help you provision your resources following AWS best practices.
It includes a service limits check that alerts you when you are approaching the limits of your AWS service usage, including IAM policies.
Option B: Amazon Inspector
Amazon Inspector is an automated security assessment service that helps improve the security and compliance of applications deployed on AWS. It does not report on IAM policy usage.
Option C: AWS Config
AWS Config is a service that enables you to assess, audit, and evaluate the configurations of your AWS resources. While useful for compliance, it does not provide a comparison against service limits.
Option D: AWS Organizations
AWS Organizations helps you centrally manage and govern your environment as you grow and scale your AWS resources. It does not provide insights into IAM policy limits.
Select the Best Solution:
Option A: AWS Trusted Advisor is the correct answer because it includes a service limits check that can report on the current number of IAM policies in use and compare them to the service limits.
Reference:
AWS Trusted Advisor Documentation
IAM Service Limits
AWS Trusted Advisor is the appropriate tool for monitoring IAM policy usage and comparing it against service limits, providing the necessary insights to manage and optimize IAM policies effectively.
NEW QUESTION # 195
A company has a web application with a database tier that consists of an Amazon EC2 instance that runs MySQL. A SysOps administrator needs to minimize potential data loss and the time that is required to recover in the event of a database failure.
What is the MOST operationally efficient solution that meets these requirements?
Answer: C
Explanation:
Step-by-Step
Understand the Problem:
Minimize potential data loss and recovery time for a MySQL database running on an Amazon EC2 instance.
Analyze the Requirements:
Reduce the risk of data loss.
Ensure quick recovery in the event of a database failure.
Aim for operational efficiency.
Evaluate the Options:
Option A: Create a CloudWatch alarm to invoke a Lambda function that stops and starts the EC2 instance.
This addresses system failures but does not help with minimizing data loss or ensuring database redundancy.
Option B: Create an Amazon RDS for MySQL Multi-AZ DB instance and use a MySQL native backup stored in Amazon S3.
RDS Multi-AZ deployments provide high availability and durability by automatically replicating data to a standby instance in a different Availability Zone.
Using a MySQL native backup stored in Amazon S3 ensures data can be restored efficiently.
Option C: Create an RDS for MySQL Single-AZ DB instance with a read replica.
This provides read scalability but does not ensure high availability or failover capabilities.
Option D: Use Amazon DLM to take hourly snapshots of the EBS volume.
This helps with backups but does not provide immediate failover capabilities or minimize downtime effectively.
Select the Best Solution:
Option B: Using Amazon RDS for MySQL Multi-AZ ensures high availability and automated backups, significantly minimizing data loss and recovery time.
Reference:
Amazon RDS Multi-AZ Deployments
Backing Up and Restoring an Amazon RDS DB Instance
Using Amazon RDS for MySQL Multi-AZ provides a highly available and durable solution with automated backups, ensuring minimal data loss and quick recovery.
NEW QUESTION # 196
Application A runs on Amazon EC2 instances behind a Network Load Balancer (NLB). The EC2 instances are in an Auto Scaling group and are in the same subnet that is associated with the NLB. Other applications from an on-premises environment cannot communicate with Application A on port 8080.
To troubleshoot the issue, a SysOps administrator analyzes the flow logs. The flow logs include the following records:
What is the reason for the rejected traffic?
Answer: C
Explanation:
The network ACL that is associated with the subnet does not allow outbound traffic for the ephemeral port range.
https://docs.aws.amazon.com/vpc/latest/userguide/flow-logs-records-examples.html
NEW QUESTION # 197
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?
Answer: C
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.
Reference:
Amazon FSx for Windows File Server Documentation
Creating a Multi-AZ File System
NEW QUESTION # 198
A company runs a high performance computing (HPC) application on an Amazon EC2 instance.
The company needs to scale this architecture to two or more EC2 instances. The EC2 instances will need to communicate with each other at high speeds with low latency to support the application.
The company wants to ensure that the network performance can support the required communication between the EC2 instances What should a SysOps administrator do to meet these requirements?
Answer: C
NEW QUESTION # 199
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