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The different types of waves are: mechanical, electromagnetic, and matter waves. Mechanical waves are divided into transverse and longitudinal waves. UV rays and radio waves are types of electromagnetic waves.
- Physics Numericals For Class 11
Class 11 Physics has numericals for chapters such as Units...
- S Waves
They are transverse waves, which means that the motion is...
- Physics Numericals For Class 11
Electromagnetic waves and mechanical waves are two different types of waves that propagate through different mediums. Electromagnetic waves, such as light and radio waves, do not require a medium to travel and can propagate through vacuum.
Nov 17, 2022 · What is the difference between mechanical waves and electromagnetic waves? Ans. Mechanical waves require a medium to propagate. In contrast, electromechanical waves do not require a medium and can propagate in a vacuum.
Sound and water waves are mechanical waves; meaning, they require a medium to travel through. The medium may be a solid, a liquid, or a gas, and the speed of the wave depends on the material properties of the medium through which it is traveling. However, light is not a mechanical wave; it can travel through a vacuum such as the empty parts of ...
May 26, 2023 · Light wave doesn’t require a medium for its propagation. Hence, it is a non-mechanical wave. The components (electric and magnetic fields) of a light wave oscillate perpendicular to the direction of wave propagation. Hence, it is a transverse wave. Table of Contents. What is mechanical wave in physics? What is a mechanical wave in simple terms?
The description of waves is closely related to their physical origin for each specific instance of a wave process. For example, acoustics is distinguished from optics in that sound waves are related to a mechanical rather than an electromagnetic (light) wave transfer caused by vibration.
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May 24, 2024 · We know that light is a wave based on how it behaves – it exhibits the same properties of other waves we have examined – it interferes with itself, it follows an inverse-square law for intensity (brightness), and so on.