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Revision notes with simplified explanations to understand Principle of Superposition of waves and formation of stationary waves quickly and effectively.
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The principle of superposition states that when two or more waves overlap, their displacements combine to produce a resultant displacement. This resultant displacement is the vector sum of each wave's individual displacement. There are two types of interference that can occur due to superposition:
A stationary wave is formed when two progressive waves of the same frequency, wavelength, and amplitude travel in opposite directions and superpose. Unlike progressive waves, stationary waves do not transfer energy through the medium.
In a stationary wave:
Example of Formation:
Frequency of Stationary Waves: The frequency of the first harmonic can be calculated using:
where:
Examples of Stationary Waves
In these examples, the distance between nodes corresponds to half a wavelength , which can help determine the wavelength and frequency of the wave.
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