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  2. Aug 9, 2023 · Interference is what happens when two waves carrying energy meet up and overlap. The energy they carry gets mixed up together so, instead of two waves, you get a third wave whose shape and size depends on the patterns of the original two waves. When waves combine like this, the process is called superposition.

  3. Jun 3, 2024 · interference, in physics, the net effect of the combination of two or more wave trains moving on intersecting or coincident paths. The effect is that of the addition of the amplitudes of the individual waves at each point affected by more than one wave.

    • The Editors of Encyclopaedia Britannica
  4. Key fact. Out of phase = destructive interference. Next page. When does interference occur? For Higher Physics, learn how waves can produce interference patterns. Calculate the wavelength of...

  5. Interference is the identifying behavior of a wave. In Figure 17.2 , both the ray and wave characteristics of light can be seen. The laser beam emitted by the observatory represents ray behavior, as it travels in a straight line.

  6. Sep 12, 2022 · The term interference refers to what happens when two waves overlap. To analyze the interference of two or more waves, we use the principle of superposition. For mechanical waves, the principle of superposition states that if two or more traveling waves combine at the same point, the resulting position of the mass element of the medium, at that ...

  7. The principles of interference are easy to understand: Two or more waves interact. Add the heights and depths of the separate waves where they interact, and the result is the interference pattern. The figure at right shows two specific kinds of interference: total constructive interference and total destructive interference.

  8. What is Interference? Wave interference is the phenomenon that occurs when two waves meet while traveling along the same medium. The interference of waves causes the medium to take on a shape that results from the net effect of the two individual waves upon the particles of the medium.

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