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Q.What is dispersion? Which colour gets relatively more dispersed?

Telangana TsbieTelangana Board of Intermediate Education 2025Subjective· 2mImportance★★★★★
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Concept understanding — Dispersion by a Prism

Dispersion by a Prism – First Principles

Imagine a glass prism — a triangular block. You shine a narrow beam of white light into one face. What comes out the other side is not white. It is a beautiful band of colours: red, orange, yellow, green, blue, indigo, violet — the rainbow. That is dispersion.

Why does this happen? The short answer: different colours of light bend by different amounts when they enter and leave the prism. But the real question is why they bend differently.


The core idea: refractive index depends on colour

When light passes from air into glass, it slows down. The ratio of the speed of light in vacuum to its speed in the material is called the refractive index (nn). For a given material, nn is not a single number — it changes with the colour (wavelength) of light.

Violet light has the shortest wavelength. It interacts more strongly with the glass molecules, so it slows down the most. That means violet has the highest refractive index in glass. Red light has the longest wavelength, slows down the least, and has the lowest refractive index.

nviolet>nred(for ordinary glass)n_{\text{violet}} > n_{\text{red}} \quad \text{(for ordinary glass)}

Now, when light enters a prism at an angle, it bends according to Snell's law:

n1sin⁡θ1=n2sin⁡θ2n_1 \sin\theta_1 = n_2 \sin\theta_2

A larger n2n_2 (for violet) means a smaller sin⁡θ2\sin\theta_2 — so violet bends more toward the normal inside the prism. Red bends less. The same thing happens again when the light exits the other face. The net effect: each colour emerges at a slightly different angle.


The precise statement

Dispersion is the phenomenon in which the refractive index of a medium depends on the wavelength of light, causing different colours to deviate by different amounts when passing through a prism. White light, being a mixture of all visible wavelengths, is thus separated into its constituent colours.

The angle of deviation δ\delta for a colour is given (for a thin prism of small angle AA) by:

δ=(n−1)A\delta = (n - 1)A

Since nn is different for each colour, δ\delta is different. Violet deviates the most, red the least.

Important

Dispersion is not the same as refraction. Refraction is the bending of light when it changes medium. Dispersion is the spreading of light into colours because the amount of bending depends on colour. Refraction is the cause; dispersion is the consequence.


A mental picture

Think of a prism as a colour-sorting machine. White light enters as a single beam. Inside the glass, each colour travels at its own speed. Violet, the slowest, takes the sharpest turn. Red, the fastest, takes the gentlest turn. When they exit, they are no longer overlapping — they spread out into a fan of colours. …

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