Waves

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Oscillators and Waves (Coursera) Coursera
Rice University

Oscillators and Waves (Coursera)

Dive into the fascinating world of physics with our introductory course on Oscillators and Waves. Explore how waves propagate, the nature of light, and the underlying principles that dictate their behavior. Gain a deep understanding of both geometrical and physical optics through engaging content and practical problem-solving techniques.

Jun 22nd 2026
4 Weeks
Light and Materials (Coursera) Coursera
Rice University

Light and Materials (Coursera)

Embark on an enlightening journey through Light and Materials, a course designed to introduce you to the fundamental principles of physics related to waves and light. This engaging program will equip you with a deep understanding of how mathematical laws and conservation principles describe wave propagation and light in both geometrical and physical optics. By the end of this course, you'll be adept at applying various problem-solving techniques such as graphical analysis, algebra, vector analysis, and calculus.

Jun 22nd 2026
3 Weeks
Fundamentals of waves and vibrations (Coursera) Coursera
École Polytechnique

Fundamentals of waves and vibrations (Coursera)

Explore the fascinating world of waves and vibrations with this introductory course. Delve into the underlying principles that explain everything from ripples on a pond to the tremors of an earthquake, and how these concepts apply in various fields such as acoustics and seismology. Perfect for beginners and enthusiasts alike.

Jun 8th 2026
5-12 Weeks
Intro to Acoustics (Part 1) (Coursera) Coursera
Korea Advanced Institute of Science and Technology - KAIST

Intro to Acoustics (Part 1) (Coursera)

Embark on a journey into the science of sound with 'Intro to Acoustics (Part 1)'. This foundational course explores the principles of vibration, wave propagation, and the concept of impedance. Perfect for beginners looking to understand the basics of acoustics or professionals seeking to expand their knowledge.

Jun 1st 2026
5-12 Weeks
Mathematics of Waves: Visualized with Neural Networks (edX) EdX
Purdue University,PurdueX

Mathematics of Waves: Visualized with Neural Networks (edX)

Dive into the intriguing realm of wave phenomena with 'Mathematics of Waves: Visualized with Neural Networks'. This course offers an enlightening journey through various types of waves – from sound and light to gravity and quantum mechanics. By employing neural networks, you'll gain a deeper understanding of how these complex systems can be visualized mathematically.

Mar 18th 2024
2 Weeks
Mastering Web3 with Waves (Coursera) Coursera
E-Learning Development Fund

Mastering Web3 with Waves (Coursera)

Embark on a journey into the future of the internet with 'Mastering Web3 with Waves'. This course is designed for those eager to dive into the world of decentralized applications (dApps) and leverage the transformative potential of Web 3.0. By the end, you'll have built your own dApp using Ride programming language and the secure Waves blockchain.

Aug 1st 2022
5-12 Weeks
AP® Physics 1 - Part 4: Exam Prep (edX) EdX
Rice University,RiceX

AP® Physics 1 - Part 4: Exam Prep (edX)

Embark on an exciting journey through AP Physics 1 with this fourth course in a series designed to equip you thoroughly for the AP Exam. This part of our comprehensive series offers a blend of video lectures, interactive labs, and unique learning tools like Concept Trailers™ to deepen your understanding and sharpen your exam readiness. With free textbooks included, you'll be well-prepared to tackle the complexities of introductory physics.

No sessions available
4 Weeks
Water Surface Waves: Small-amplitude waves (edX) EdX
Seoul National University,SNUx

Water Surface Waves: Small-amplitude waves (edX)

Dive into the world of water surface waves with our 'Water Surface Waves: Small-amplitude waves' course on edX. This course is designed for those interested in marine engineering, oceanography, or fluid dynamics, providing a solid foundation in linear wave theories and their practical applications. Explore how to formulate small amplitude wave equations and understand their properties as you solve potential flow problems with linearized boundary conditions.

Self Paced
Self-Paced
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