Q.Using Huygens' principle, discuss either the phenomenon of reflection or the phenomenon of refraction.
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Start your 14-day free trial to unlock the full solution →Every wavefront point emits secondary wavelets; the envelope is the new wavefront. Applying this at an interface gives sin i/sin r = v₁/v₂ = n₂₁ (Snell's law).
Huygens' principle:
- Every point on a given wavefront acts as a source of secondary wavelets, which spread out in all forward directions with the speed of the wave in that medium.
- The new position of the wavefront after time t is the forward tangential envelope (common tangent) of all these secondary wavelets.
Refraction of a plane wave at a plane surface (Huygens' construction):
Let a plane wavefront AB in medium 1 (speed v₁) be incident on the plane interface XY at angle of incidence i, separating medium 1 from a denser medium 2 (speed v₂ < v₁). While the wavelet from B travels the distance BC = v₁ t to reach the surface at C, the wavelet from A enters medium 2 and travels a shorter distance AD = v₂ t (a sphere of radius v₂ t). The refracted wavefront is the tangent CD from C to this secondary wavelet.
Let the angle of refraction be r. In the two right triangles on the base AC:
sin i = BC/AC = v₁ t / AC, and sin r = AD/AC = v₂ t / AC.
Dividing: …
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