Course Overview

Organizations are recognizing that traditional synchronous applications are not able to scale consistently and adjust to the massive amounts of data from customers while still meeting customers’ expectations of immediate results. With event-driven applications using Kafka and AMQ Streams, organizations can expect to be able to globally scale their applications, store and stream process data, and provide feedback to customers with extremely low latency.

Course description
Develop, scale, and troubleshoot event-driven microservice applications.

Learn to use Kafka and AMQ Streams to design, develop, and test event-driven applications. Event-driven microservices scale globally, store and stream process data, and provide low-latency feedback to customers. This course is for application developers. The Red Hat Certified Specialist in Event-Driven Development with Kafka exam (EX482) is included in this offering.

What you’ll learn

As a result of attending this course, students will understand the architecture of Kafka and AMQ Streams and will be able to identify proper use cases for event-driven applications. In addition to learning the fundamental principles and features of Kafka and AMQ Streams, Students will learn how to design, develop, and test event-driven applications. Students should be able to demonstrate the following skills:

  • Design, build, and use event-driven applications for relevant scenarios with standard patterns.
  • Detect and react to data changes with Debezium to improve application performance.
  • Troubleshoot common problems with event-driven applications.

Course summary

  • Describe the basics of Kafka and its architecture.
  • Develop applications with the Kafka Streams API.
  • Integrate applications with Kafka Connect.
  • Capture data change with Debezium.
  • Troubleshoot common application streaming issues.

Requirements

  • Experience with microservice application development and design, such as DO378 or equivalent experience.
  • OpenShift experience is recommended, but not required.
  • Technology considerations
  • BYOD classroom environment with access to the shared cluster.
  • A cloud-based classroom environment will also be made available.

Target audiences

  • Application developers with microservice development experience.

Instructor

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