Interesting

Does frequency change in reflection?

Does frequency change in reflection?

Reflection is the change in direction of light when it falls on some medium. Therefore, wavelength and frequency of the wave does not change in case of reflection.

Does frequency depend on refraction?

The refractive index of a medium is dependent (to some extent) upon the frequency of light passing through, with the highest frequencies having the highest values of n. For example, in ordinary glass the refractive index for violet light is about one percent greater than that for red light.

Does refraction depend on wavelength and frequency of light?

Absolutely. The refractive index n is the ratio of the speed of light in the vacuum to the speed of light in the medium. Now, while the speed of light in the vacuum does NOT depend from the wavelength, the speed of light in a medium depends from the wavelength; thus the refractive index depends from the wavelength.

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Are there any differences in the frequency and wavelength of light when it passes from a rarer to a denser medium?

when a ray of light passes from rarer to denser medium , its frequency remains same but wavelength changes .

What happens to wavelength and frequency during reflection?

There are no changes to wavelength and frequency with reflection because the speed of the light is not changed .

Does frequency depend on medium?

Frequency, in physics, is the number of crests that pass a fixed point in the medium in unit time. So it should depend on the source, not on the medium.

Does the frequency of light change on refraction?

Frequency of light does not change on refraction, When a ray of light passes from one medium to another, its direction (or path) changes because of change in speed of light from one medium to another. Does frequency change when light refracted? When light travels from one medium to another, the speed changes, as does the wavelength.

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Why doesn’t the frequency of light change when a medium changes?

Frequency doesn’t change because it depends on travelling of waves across the interface. But speed and wavelength change as the material on the other side may be different, so now it might have a longer/shorter size of wave and so the number of waves per unit time changes. Here is the bookwork answer.

Does the frequency of light change when it travels from air to water?

Interestingly enough, the frequency of the waves does not change as the light moves from air to water. As we saw in the Review page, the wave’s speed v is related to both the frequency f and the wavelength l : v = l f.

What is the relationship between frequency and wavelength of light?

In general, f = c 0 n / λ, where f is frequency, c 0 is the speed of light in vacuum and λ is the wavelength. The index of refraction, n, is typically a function of frequency itself, so that the relation between frequency and wavelength becomes non-linear. This is called dispersion.