2.4: Dispersion
- Page ID
- 128449
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In general, is a function of , usually increasing with decreasing , So, different colours refract differently, producing dispersion. This makes the focal length of a lens shorter for blue than for red light. This leads to chromatic aberration in lenses and some optical instruments. Dispersive refraction in raindrops also produces rainbows. Scattering of light also increases with decreasing , which gives blue skies during a sunny day and red skies of sunrise and sunset.
- Refractive index n is a function of , hence dispersion.
- Scattering of light also increases with small .
- Examples include blue and red skies.















