BEST ACCURATE AMAZON FREE SAP-C02 EXAM QUESTIONS - SAP-C02 FREE DOWNLOAD

Best Accurate Amazon Free SAP-C02 Exam Questions - SAP-C02 Free Download

Best Accurate Amazon Free SAP-C02 Exam Questions - SAP-C02 Free Download

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Amazon SAP-C02 (AWS Certified Solutions Architect - Professional (SAP-C02)) certification exam is a highly sought-after credential for IT professionals seeking to validate their expertise in designing, deploying, and managing complex cloud solutions on AWS. SAP-C02 Exam is intended for those who have already obtained the AWS Certified Solutions Architect - Associate certification and have experience working with AWS services in a production environment.

>> Free SAP-C02 Exam Questions <<

Pass Guaranteed Quiz 2025 Amazon SAP-C02: Updated Free AWS Certified Solutions Architect - Professional (SAP-C02) Exam Questions

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To qualify for the Amazon SAP-C02 Certification Exam, candidates must have already passed the AWS Certified Solutions Architect - Associate exam and have at least two years of hands-on experience designing and deploying cloud architecture solutions on AWS. SAP-C02 exam consists of 75 multiple-choice and multiple-response questions that must be answered within 180 minutes. SAP-C02 exam is available in English, Japanese, Korean, and Simplified Chinese, and can be taken at a testing center or online with a remote proctor. Upon passing the exam, candidates will earn the AWS Certified Solutions Architect - Professional certification, which is valid for three years and can be renewed by passing a recertification exam or earning a higher-level certification.

Amazon AWS Certified Solutions Architect - Professional (SAP-C02) Sample Questions (Q171-Q176):

NEW QUESTION # 171
A company has more than 10.000 sensors that send data to an on-premises Apache Kafka server by using the Message Queuing Telemetry Transport (MQTT) protocol. The on-premises Kafka server transforms the data and then stores the results as objects in an Amazon S3 bucket.
Recently, the Kafka server crashed. The company lost sensor data while the server was being restored. A solutions architect must create a new design on AWS that is highly available and scalable to prevent a similar occurrence.
Which solution will meet these requirements?

  • A. Migrate the on-premises Kafka server to Amazon Managed Streaming for Apache Kafka (Amazon MSK). Create a Network Load Balancer (NLB) that points to the Amazon MSK broker Enable NL8 health checks. Route the sensors to send the data to the NLB.
  • B. Deploy AWS loT Core, and launch an Amazon EC2 instance to host the Kafka server. Configure AWS loT Core to send the data to the EC2 instance. Route the sensors to send the data to AWS loT Core.
  • C. Deploy AWS loT Core, and connect it to an Amazon Kinesis Data Firehose delivery stream. Use an AWS Lambda function to handle data transformation. Route the sensors to send the data to AWS loT Core.
  • D. Launch two Amazon EC2 instances to host the Kafka server in an active/standby configuration across two Availability Zones. Create a domain name in Amazon Route 53. Create a Route 53 failover policy.
    Route the sensors to send the data to the domain name.

Answer: C

Explanation:
Because MSK has Maximum number of client connections 1000 per second and the company has 10,000 sensors, the MSK likely will not be able to handle all connections https://docs.aws.amazon.com/msk/latest
/developerguide/limits.html


NEW QUESTION # 172
A company is running a compute workload by using Amazon EC2 Spot Instances that are in an Auto Scaling group. The launch template uses two placement groups and a single instance type.
Recently, a monitoring system reported Auto Scaling instance launch failures that correlated with longer wait times for system users. The company needs to improve the overall reliability of the workload.
Which solution will meet this requirement?

  • A. Create a new launch template version that uses attribute-based instance type selection. Configure the Auto Scaling group to use the new launch template version.
  • B. Update the launch template to use a larger instance type.
  • C. Replace the launch template with a launch configuration to use an Auto Scaling group that uses attribute-based instance type selection.
  • D. Update the launch template Auto Scaling group to increase the number of placement groups.

Answer: A

Explanation:
https://docs.aws.amazon.com/autoscaling/ec2/userguide/create-asg-instance-type-requirements.html#use-attribute-based-instance-type-selection-prerequisites


NEW QUESTION # 173
A company has multiple AWS accounts as part of an organization created with AWS Organizations. Each account has a VPC in the us-east-2 Region and is used for either production or development workloads. Amazon EC2 instances across production accounts need to communicate with each other, and EC2 instances across development accounts need to communicate with each other, but production and development instances should not be able to communicate with each other.
To facilitate connectivity, the company created a common network account. The company used AWS Transit Gateway to create a transit gateway in the us-east-2 Region in the network account and shared the transit gateway with the entire organization by using AWS Resource Access Manager. Network administrators then attached VPCs in each account to the transit gateway, after which the EC2 instances were able to communicate across accounts. However, production and development accounts were also able to communicate with one another.
Which set of steps should a solutions architect take to ensure production traffic and development traffic are completely isolated?

  • A. Create a tag on each VPC attachment with a value of either production or development, according to the type of account being attached. Using the Network Manager feature of AWS Transit Gateway, create policies that restrict traffic between VPCs based on the value of this tag.
  • B. Create separate route tables for production and development traffic. Delete each account's association and route propagation to the default AWS Transit Gateway route table. Attach development VPCs to the development AWS Transit Gateway route table and production VPCs to the production route table, and enable automatic route propagation on each attachment.
  • C. Modify the security groups assigned to development EC2 instances to block traffic from production EC2 instances. Modify the security groups assigned to production EC2 instances to block traffic from development EC2 instances.
  • D. Create a tag on each VPC attachment with a value of either production or development, according to the type of account being attached. Modify the AWS Transit Gateway routing table to route production tagged attachments to one another and development tagged attachments to one another.

Answer: B


NEW QUESTION # 174
A company has an on-premises monitoring solution using a PostgreSQL database for persistence of events. The database is unable to scale due to heavy ingestion and it frequently runs out of storage.
The company wants to create a hybrid solution and has already set up a VPN connection between its network and AWS. The solution should include the following attributes:
* Managed AWS services to minimize operational complexity
* A buffer that automatically scales to match the throughput of data and requires no on-going administration.
* A visualization toot to create dashboards to observe events in near-real time.
* Support for semi -structured JSON data and dynamic schemas.
Which combination of components will enabled company to create a monitoring solution that will satisfy these requirements'' (Select TWO.)

  • A. Configure Amazon Elasticsearch Service (Amazon ES) to receive events Use the Kibana endpoint deployed with Amazon ES to create near-real-time visualizations and dashboards.
  • B. Create an Amazon Kinesis data stream to buffer events Create an AWS Lambda function to process and transform evens
  • C. Configure an Amazon Aurora PostgreSQL DB cluster to receive events Use Amazon Quick Sight to read from the database and create near-real-time visualizations and dashboards
  • D. Configure an Amazon Neptune 0 DB instance to receive events Use Amazon QuickSight to read from the database and create near-real-time visualizations and dashboards
  • E. Use Amazon Kinesis Data Firehose to buffer events Create an AWS Lambda function 10 process and transform events

Answer: A,E

Explanation:
https://aws.amazon.com/kinesis/data-firehose/faqs/


NEW QUESTION # 175
A company runs a popular public-facing ecommerce website. Its user base is growing quickly from a local market to a national market. The website is hosted in an on-premises data center with web servers and a MySQL database. The company wants to migrate its workload (o AWS. A solutions architect needs to create a solution to:
* Improve security
* Improve reliability
Improve availability
* Reduce latency
* Reduce maintenance
Which combination of steps should the solutions architect take to meet these requirements? (Select THREE.)

  • A. Host static website content in Amazon S3. Use Amazon CloudFronl to reduce latency while serving webpages. Use AWS WAF to improve website security
  • B. Use Amazon EC2 instances in two Availability Zones to host a highly available MySQL database cluster.
  • C. Migrate the database to a single-AZ Amazon RDS for MySQL DB instance.
  • D. Use Amazon EC2 instances in two Availability Zones for the web servers in an Auto Scaling group behind an Application Load Balancer.
  • E. Host static website content in Amazon S3. Use S3 Transfer Acceleration to reduce latency while serving webpages. Use AWS WAF to improve website security.
  • F. Migrate the database to a Multi-AZ Amazon Aurora MySQL DB cluster.

Answer: A,D,F


NEW QUESTION # 176
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