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Q.Does the principle of the conservation of energy hold for interference and diffraction phenomena? Explain briefly.

Andhra Pradesh BieapBIEAP Intermediate Board 2025Subjective· 4mImportance★★★★★
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Interference and diffraction only redistribute energy in space between bright and dark regions — they never create or destroy it, so the conservation of energy always holds.

At first glance, interference seems to violate energy conservation: at a point of destructive interference (a dark fringe), the intensity is less than what either wave alone would give — sometimes even zero — so it looks as if energy has disappeared.

However, this is not the case. Interference and diffraction redistribute the energy in space; they do not destroy or create it. At points of constructive interference (bright fringes), the intensity is greater than the sum of the individual intensities. The extra energy appearing at the bright regions exactly compensates for the energy 'missing' at the dark regions.

Mathematically, for two coherent waves of intensities I1I_1 and I2I_2, the intensity at any point is

I=I1+I2+2I1I2cos⁡ϕI = I_1 + I_2 + 2\sqrt{I_1 I_2}\cos\phi

If this expression is averaged over a full interference/diffraction pattern (i.e., over all values of the phase difference ϕ\phi, or equivalently over one full fringe spacing), the cross term averages to zero, leaving

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