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Amazon Reliable SAP-C02 Exam Topics - Authorized SAP-C02 Actual Test Answers and Perfect AWS Certified Solutions Architect - Professional (SAP-C02) Vce Torrent
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The SAP-C02 exam covers a wide range of AWS services and features, including compute, storage, networking, database, security, and application integration. It also tests the candidate's ability to design and implement complex, multi-tier applications and architectures using AWS best practices and architectural patterns. SAP-C02 exam consists of multiple-choice and multiple-response questions, and candidates have 180 minutes to complete it.
To prepare for the SAP-C02 Exam, candidates can take advantage of various resources provided by AWS, including training courses, practice exams, and whitepapers. They can also join study groups and participate in online forums to exchange knowledge and experiences with other professionals. With proper preparation and experience, passing the SAP-C02 exam can be a rewarding achievement for AWS professionals.
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Amazon SAP-C02 Certification Exam is a valuable credential for professionals who specialize in cloud computing and solutions architecture. SAP-C02 exam tests the candidate's knowledge and skills in various domains related to AWS services and architecture principles. Successfully passing the exam can open up many career opportunities and demonstrate one's ability to design and deploy scalable and highly available systems on AWS.
Amazon AWS Certified Solutions Architect - Professional (SAP-C02) Sample Questions (Q389-Q394):
NEW QUESTION # 389
A company has deployed production workloads on Amazon EC2 On-Demand Instances and Amazon RDS for PostgreSQL DB instances in multiple environments. The company has the AWS Business Support plan. A solutions architect must optimize the cost of the workloads without negatively affecting the availability or compute capacity of the workloads. Which solution will meet these requirements?
- A. Use AWS Cost and Usage Reports to analyze the most expensive instances and usage patterns. Use AWS Lambda to terminate underutilized instances. Purchase Compute Savings Plans for instances for highly utilized workloads.
- B. Use AWS Cost Explorer recommendations to rightsize underutilized instances. Create billing alerts in Amazon CloudWatch. Replace the EC2 On-Demand Instances with Spot Instances for underutilized instances. Stop any instances that are not in use.
- C. Use AWS Budgets to track spending for each environment. Configure AWS Trusted Advisor cost optimization checks to rightsize instances. Create billing alerts in Amazon CloudWatch. Terminate underutilized instances. Purchase Reserved Instances for highly utilized workloads.
- D. Opt in to AWS Compute Optimizer. Use Compute Optimizer and AWS Trusted Advisor to identify underutilized instances. Implement recommendations from Compute Optimizer, modify instance types, rightsize instances, and apply Auto Scaling groups. Purchase a Compute Savings Plan.
Answer: D
Explanation:
Comprehensive and Detailed
Option C is the most comprehensive and aligns with AWS best practices for cost optimization without compromising availability or performance:
AWS Compute Optimizer provides recommendations to rightsize EC2 instances, EBS volumes, and Lambda functions based on utilization metrics. By opting in, the company can receive tailored suggestions for optimizing resource configurations.
AWS Trusted Advisor offers cost optimization checks, including identifying idle or underutilized resources, which can be rightsized or terminated to reduce costs.
Implementing recommendations from Compute Optimizer and Trusted Advisor ensures that resources are appropriately sized, leading to cost savings without affecting performance.
Auto Scaling groups help maintain application availability and allow automatic scaling of EC2 instances based on demand, ensuring that compute capacity aligns with workload requirements.
Compute Savings Plans provide flexible pricing for EC2, AWS Lambda, and AWS Fargate usage, offering significant savings over On-Demand pricing in exchange for a commitment to a consistent amount of usage.
This approach ensures cost optimization while maintaining the necessary compute capacity and availability for production workloads.
Reference:
AWS Compute Optimizer: Provides recommendations for optimizing AWS resources based on utilization metrics.
AWS Trusted Advisor: Offers real-time guidance to help provision resources following AWS best practices.
AWS Auto Scaling: Automatically adjusts capacity to maintain steady, predictable performance at the lowest possible cost.
AWS Savings Plans: Flexible pricing model offering lower prices compared to On-Demand pricing, in exchange for a commitment to a consistent amount of usage.
NEW QUESTION # 390
A company wants to send data from its on-premises systems to Amazon S3 buckets. The company created the S3 buckets in three different accounts. The company must send the data privately without the data traveling across the internet. The company has no existing dedicated connectivity to AWS Which combination of steps should a solutions architect take to meet these requirements? (Select TWO.)
- A. Establish a networking account in the AWS Cloud Create a private VPC in the networking account Set up an AWS Direct Connect connection with a private VIF between the on-premises environment and the private VPC
- B. Create an Amazon S3 interface endpoint in the networking account
- C. Establish a networking account in the AWS Cloud Create a private VPC in the networking account Set up an AWS Direct Connect connection with a public VIF between the on-premises environment and the private VPC
- D. Create an Amazon S3 gateway endpoint in the networking account
E, Establish a networking account in the AWS Cloud. Create a private VPC in the networking account Peer VPCs from the accounts that host the S3 buckets with the VPC in the network account
Answer: A,D
NEW QUESTION # 391
An AWS customer has a web application that runs on premises. The web application fetches data from a third-party API that is behind a firewall. The third party accepts only one public CIDR block in each client's allow list.
The customer wants to migrate their web application to the AWS Cloud. The application will be hosted on a set of Amazon EC2 instances behind an Application Load Balancer (ALB) in a VPC. The ALB is located in public subnets. The EC2 instances are located in private subnets. NAT gateways provide internet access to the private subnets.
How should a solutions architect ensure that the web application can continue to call the third-parly API after the migration?
- A. Register a block of customer-owned public IP addresses in the AWS account. Set up AWS Global Accelerator to use Elastic IP addresses from the address block. Set the ALB as the accelerator endpoint.
- B. Register a block of customer-owned public IP addresses in the AWS account. Create Elastic IP addresses from the address block and assign them lo the NAT gateways in the VPC.
- C. Associate a block of customer-owned public IP addresses to the VPC. Enable public IP addressing for public subnets in the VPC.
- D. Create Elastic IP addresses from the block of customer-owned IP addresses. Assign the static Elastic IP addresses to the ALB.
Answer: B
NEW QUESTION # 392
A company is deploying a third-party firewall appliance solution from AWS Marketplace to monitor and protect traffic that leaves the company's AWS environments. The company wants to deploy this appliance into a shared services VPC and route all outbound internet-bound traffic through the appliances.
A solutions architect needs to recommend a deployment method that prioritizes reliability and minimizes failover time between firewall appliances within a single AWS Region. The company has set up routing from the shared services VPC to other VPCs.
Which steps should the solutions architect recommend to meet these requirements? (Select THREE)
- A. Create a new Gateway Load Balancer in the shared services VPC. Create a new target group, and attach it to the new Gateway Load Balancer. Add each of the firewall appliance instances to the target group.
- B. Create a VPC interface endpoint. Add a route to the route table in the shared services VPC. Designate the new endpoint as the next hop for traffic that enters the shared services VPC from other VPCs.
- C. Create a new Network Load Balancer in the shared services VPC. Create a new target group, and attach it to the new Network Load Balancer. Add each of the firewall appliance instances to the target group.
- D. Deploy two firewall appliances into the shared services VPC, each in the same Availability Zone.
- E. Create a VPC Gateway Load Balancer endpoint. Add a route to the route table in the shared services VPC. Designate the new endpoint as the next hop for traffic that enters the shared services VPC from other VPCs.
- F. Deploy two firewall appliances into the shared services VPC, each in a separate Availability Zone.
Answer: A,E,F
Explanation:
Explanation
https://docs.aws.amazon.com/vpc/latest/privatelink/vpc-endpoint-services-gwlbe.html
https://docs.aws.amazon.com/vpc/latest/privatelink/vpce-gateway-load-balancer.html
NEW QUESTION # 393
A company has migrated its forms-processing application to AWS. When users interact with the application, they upload scanned forms as files through a web application. A database stores user metadata and references to files that are stored in Amazon S3. The web application runs on Amazon EC2 instances and an Amazon RDS for PostgreSQL database. When forms are uploaded, the application sends notifications to a team through Amazon Simple Notification Service (Amazon SNS). A team member then logs in and processes each form. The team member performs data validation on the form and extracts relevant data before entering the information into another system that uses an API. A solutions architect needs to automate the manual processing of the forms. The solution must provide accurate form extraction, minimize time to market, and minimize long-term operational overhead.
Which solution will meet these requirements?
- A. Extend the system with an application tier that uses AWS Step Functions and AWS Lambda.
Configure this tier to use Amazon Textract and Amazon Comprehend to perform optical character recognition (OCR) on the forms when forms are uploaded. Store the output in Amazon S3. Parse this output by extracting the data that is required within the application tier. Submit the data to the target system's API. - B. Develop custom libraries to perform optical character recognition (OCR) on the forms. Deploy the libraries to an Amazon Elastic Kubernetes Service (Amazon EKS) cluster as an application tier.
Use this tier to process the forms when forms are uploaded. Store the output in Amazon S3.
Parse this output by extracting the data into an Amazon DynamoDB table. Submit the data to the target system's API. Host the new application tier on EC2 instances. - C. Host a new application tier on EC2 instances. Use this tier to call endpoints that host artificial intelligence and machine learning (Al/ML) models that are trained and hosted in Amazon SageMaker to perform optical character recognition (OCR) on the forms. Store the output in Amazon ElastiCache. Parse this output by extracting the data that is required within the application tier. Submit the data to the target system's API.
- D. Extend the system with an application tier that uses AWS Step Functions and AWS Lambda.
Configure this tier to use artificial intelligence and machine learning (AI/ML) models that are trained and hosted on an EC2 instance to perform optical character recognition (OCR) on the forms when forms are uploaded. Store the output in Amazon S3. Parse this output by extracting the data that is required within the application tier. Submit the data to the target system's API.
Answer: B
Explanation:
Developing custom libraries and deploying them to an Amazon Elastic Kubernetes Service (Amazon EKS) cluster as an application tier allows the OCR processing to be done in real-time when forms are uploaded, and allows for more accurate form extraction. The use of Kubernetes allows for easy scaling and management of the application tier, minimizing long-term operational overhead. Storing the output in Amazon S3 and parsing the data into an Amazon DynamoDB table allows for easy access and querying of the data, minimizing time to market.
Reference:
Amazon Elastic Kubernetes Service (EKS):
https://aws.amazon.com/eks/ Amazon DynamoDB:
https://aws.amazon.com/dynamodb/
Optical Character Recognition (OCR):
https://en.wikipedia.org/wiki/Optical_character_recognition
NEW QUESTION # 394
......
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