Q.Derive the laws of refraction of light on the basis of 'Huygens' wave theory of light.
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Start your 14-day free trial to unlock the full solution →By comparing how far a wavefront's secondary wavelets travel in medium 1 versus medium 2 during the same time, Huygens' principle directly gives Snell's law.
Setup: Let PP' be a plane interface separating medium 1 (speed ) from medium 2 (speed ). A plane wavefront AB is incident on the surface, making angle with the normal, with A touching the surface first while B is still travelling in medium 1.
Huygens' construction: Let be the time taken for the point B (still in medium 1) to travel to point C on the surface, i.e. . In this same time , the secondary wavelet from A (already at the surface, now travelling into medium 2) spreads out a distance into medium 2. The new refracted wavefront is the tangent line CD, drawn from C to the wavelet of radius centred at A. The refracted ray is normal to CD, making angle with the normal at A.
Deriving Snell's law: In right triangle ABC (right angle at B), .
In right triangle ACD (right angle at D), .
Dividing:
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