Latest SAP-C02 Exam Discount | 100% Free Useful AWS Certified Solutions Architect - Professional (SAP-C02) Testking Exam Questions

Latest SAP-C02 Exam Discount | 100% Free Useful AWS Certified Solutions Architect - Professional (SAP-C02) Testking Exam Questions
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Amazon SAP-C02 exam is a certification exam offered by Amazon Web Services (AWS) for IT professionals who want to demonstrate their advanced skills in designing and deploying scalable, highly available, and fault-tolerant systems on AWS. SAP-C02 exam is intended for individuals who have already earned the AWS Certified Solutions Architect - Associate certification and have experience working in a professional capacity as a solutions architect.

The SAP-C02 exam consists of 75 multiple-choice and multiple-answer questions that must be answered within 180 minutes. SAP-C02 exam covers a broad range of topics, including AWS services for designing and deploying scalable, highly available, and fault-tolerant systems, data storage, security, networking, and disaster recovery. To pass the exam, candidates must score at least 750 out of a possible 1000 points.

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Amazon AWS Certified Solutions Architect - Professional (SAP-C02) Sample Questions (Q14-Q19):

NEW QUESTION # 14
A solutions architect is designing a solution to connect a company's on-premises network with all the company's current and future VPCs on AWS. The company is running VPCs in five different AWS Regions and has at least 15 VPCs in each Region.
The company's AWS usage is constantly increasing and will continue to grow Additionally, all the VPCs throughout all five Regions must be able to communicate with each other
The solution must maximize scalability and ease of management
Which solution meets these requirements'?

  • A. Set up a transit gateway in each Region Establish a redundant AWS Site-to-Site VPN connection between the on-premises firewalls and each transit gateway Route traffic between the different Regions through the company's on-premises firewalls Connect all the VPCs to the transit gateway in their Region
  • B. Create an AWS CloudFormation template for a redundant AWS Site-to-Site VPN tunnel to the on-premises network Deploy the CloudFormation template for each VPC Set up VPC peering between all the VPCs for VPC-to-VPC communication
  • C. Set up a transit gateway in each Region Establish a redundant AWS Site-to-Site VPN connection between the on-premises firewalls and the transit gateway in the Region that is closest to the on-premises network Peer all the transit gateways with each other Connect all the VPCs to the transit gateway in their Region
  • D. Create an AWS CloudFormation template for a redundant AWS Site-to-Site VPN tunnel to the on-premises network Deploy the CloudFormation template for each VPC Route traffic between the different Regions through the company's on-premises firewalls

Answer: C


NEW QUESTION # 15
A company runs an loT platform on AWS loT sensors in various locations send data to the company's Node js API servers on Amazon EC2 instances running behind an Application Load Balancer The data is stored in an Amazon RDS MySQL DB instance that uses a 4 TB General Purpose SSD volume The number of sensors the company has deployed in the field has increased over time and is expected to grow significantly The API servers are consistently overloaded and RDS metrics show high write latency Which of the following steps together will resolve the issues permanently and enable growth as new sensors are provisioned, while keeping this platform cost-efficient? {Select TWO.)

  • A. Re-architect the database tier to use Amazon DynamoDB instead of an RDS MySQL DB instance
  • B. Leverage Amazon Kinesis Data Streams and AWS Lambda to ingest and process the raw data
  • C. Resize the MySQL General Purpose SSD storage to 6 TB to improve the volume's IOPS
  • D. Re-architect the database tier to use Amazon Aurora instead of an RDS MySQL DB instance and add read replicas
  • E. Use AWS X-Ray to analyze and debug application issues and add more API servers to match the load

Answer: A,B


NEW QUESTION # 16
A solutions architect has implemented a SAML 2.0 federated identity solution with their company's on-premises identity provider (IdP) to authenticate users' access to the AWS environment. When the solutions architect tests authentication through the federated identity web portal access to the AWS environment is granted However, when test users attempt to authenticate through the federated identity web portal, they are not able to access the AWS environment.
Which items should the solutions architect check to ensure identity federation is property configured? (Select THREE j

  • A. Test users are not in the AWSFederatedUsers group in the company's IdP
  • B. The IAM roles created for the federated users' or federated groups' trust policy have set the SAML provider as the principle.
  • C. The IAM user's permissions pokey has allowed the use of SAML federation for that user
  • D. The company's IdP defines SAML assertions that property map users or groups m the company to IAM roles with appropriate permissions
  • E. The on-premises IdP's DNS hostname is reachable from the AWS environment VPCs.
  • F. The web portal calls the AWS STS AssumeRoleWithSAML API with the ARN of the SAML provider the ARN of the IAM role, and the SAML assertion from IdP

Answer: A,B,D


NEW QUESTION # 17
A company needs to architect a hybrid DNS solution. This solution will use an Amazon Route 53 private hosted zone for the domain cloud.example.com for the resources stored within VPCs.
The company has the following DNS resolution requirements:
* On-premises systems should be able to resolve and connect to cloud.example.com.
* All VPCs should be able to resolve cloud.example.com.
There is already an AWS Direct Connect connection between the on-premises corporate network and AWS Transit Gateway. Which architecture should the company use to meet these requirements with the HIGHEST performance?

  • A. Associate the private hosted zone to the shared services VPC. Create a Route 53 inbound resolver in the shared services VPC. Attach the shared services VPC to the transit gateway and create forwarding rules in the on-premises DNS server for cloud.example.com that point to the inbound resolver.
  • B. Associate the private hosted zone to the shared services VPC. Create a Route 53 outbound resolver in the shared services VPC. Attach all VPCs to the transit gateway and create forwarding rules in the on-premises DNS server for cloud.example.com that point to the outbound resolver.
  • C. Associate the private hosted zone to all the VPCs. Deploy an Amazon EC2 conditional forwarder in the shared services VPC. Attach all VPCs to the transit gateway and create forwarding rules in the on-premises DNS server for cloud.example.com that point to the conditional forwarder.
  • D. Associate the private hosted zone to all the VPCs. Create a Route 53 inbound resolver in the shared services VPC. Attach all VPCs to the transit gateway and create forwarding rules in the on-premises DNS server for cloud.example.com that point to the inbound resolver.

Answer: A

Explanation:
https://aws.amazon.com/blogs/networking-and-content-delivery/centralized-dns-management-of-hybrid-cloud-with-amazon-route-53-and-aws-transit-gateway/


NEW QUESTION # 18
A company is running an event ticketing platform on AWS and wants to optimize the platform's cost-effectiveness. The platform is deployed on Amazon Elastic Kubernetes Service (Amazon EKS) with Amazon EC2 and is backed by an Amazon RDS for MySQL DB instance. The company is developing new application features to run on Amazon EKS with AWS Fargate.
The platform experiences infrequent high peaks in demand. The surges in demand depend on event dates.
Which solution will provide the MOST cost-effective setup for the platform?

  • A. Purchase Standard Reserved Instances for the EC2 instances that the EKS cluster uses in its baseline load. Scale the cluster with Spot Instances to handle peaks. Purchase 1-year All Upfront Reserved Instances for the database to meet predicted peak load for the year.
  • B. Purchase Compute Savings Plans for the predicted base load of the EKS cluster. Scale the cluster with Spot Instances to handle peaks. Purchase 1-year All Upfront Reserved Instances for the database to meet the predicted base load. Temporarily scale up the DB instance manually during peaks.
  • C. Purchase Compute Savings Plans for the predicted medium load of the EKS cluster. Scale the cluster with On-Demand Capacity Reservations based on event dates for peaks. Purchase 1-year No Upfront Reserved Instances for the database to meet the predicted base load. Temporarily scale out database read replicas during peaks.
  • D. Purchase EC2 Instance Savings Plans for the predicted base load of the EKS cluster. Scale the cluster with Spot Instances to handle peaks. Purchase 1-year All Upfront Reserved Instances for the database to meet the predicted base load. Temporarily scale up the DB instance manually during peaks.

Answer: C


NEW QUESTION # 19
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