Physics III: Vibrations and Waves | Physics | MIT OpenCourseWare

Vibrations and waves are everywhere. If you take any system and disturb it from a stable equilibrium, the resultant motion will be waves and vibrations. Think of a guitar string—pluck the string, and it vibrates. The sound waves generated make their way to our ears, and we hear the string’s sound. Our eyes see what’s happening because they receive the electromagnetic waves of the light reflected from the guitar string, so that we can recognize the beautiful sinusoidal waves on the string. In fact, without vibrations and waves, we could not recognize the universe around us at all! [![Click to get started.](/images/button_start.png)](pages/syllabus) The amazing thing is that we can describe many fascinating phenomena arising from very different physical systems with mathematics. This course will provide you with the concepts and mathematical tools necessary to understand and explain a broad range of vibrations and waves. You will learn that waves come from many interconnected (coupled) objects when they are vibrating together. We will discuss many of these phenomena, along with related topics, including mechanical vibrations and waves, sound waves, electromagnetic waves, optics, and gravitational waves.

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Toegevoegd op

18 maart 2026

Vak & domein

physics · waves-sound

Schooljaar

Klas 1 (brugklas)–Klas 4

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Course

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Course Overview: Physics III: Vibrations and Waves

  • Core Concept: Vibrations and waves are fundamental phenomena that occur when any system is disturbed from a stable equilibrium.
  • Universal Application: The course emphasizes that vibrations and waves are essential to human perception (sound and light) and our ability to understand the universe.
  • Mathematical Framework: The curriculum focuses on using mathematical tools to describe and explain diverse physical systems.
  • Key Topics Covered:
    • Mechanical vibrations and waves
    • Sound waves
    • Electromagnetic waves
    • Optics
    • Gravitational waves
    • Coupled oscillators (interconnected vibrating objects)
  • Learning Objective: Students will acquire the conceptual and mathematical proficiency required to analyze a broad range of wave-based phenomena.

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