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NCERT Exemplar · Q32

Q.An EM wave of intensity II falls on a surface kept in vacuum and exerts radiation pressure pp on it. Which of the following are true?

(a) Radiation pressure is I/cI/c if the wave is totally absorbed.
(b) Radiation pressure is I/cI/c if the wave is totally reflected.
(c) Radiation pressure is 2I/c2I/c if the wave is totally reflected.
(d) Radiation pressure is in the range I/c<p<2I/cI/c < p < 2I/c for real surfaces.
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Radiation pressure depends on how the surface responds to the incident wave: p=I/cp=I/c for total absorption, p=2I/cp=2I/c for total reflection, and p=(1+r)I/cp=(1+r)I/c for a real, partially-reflecting surface (reflectivity rr), which always lies between I/cI/c and 2I/c2I/c. Of the four statements, (a), (c), and (d) are correct; only (b) is false.

Momentum carried by an EM wave

An electromagnetic wave of intensity II (power per unit area) carries momentum at the rate

momentum flux=Ic\text{momentum flux} = \frac{I}{c}

per unit area per unit time, since the wave's momentum density equals its energy density divided by cc. When this momentum is transferred to a surface, the rate of transfer per unit area is the radiation pressure.

Case 1 — total absorption

If the surface absorbs the wave completely, all of its incident momentum (I/cI/c per unit area per unit time) is delivered to the surface and none is returned. The radiation pressure is therefore

p=Ic(perfect absorber)p=\frac{I}{c}\quad\text{(perfect absorber)}

Statement (a) matches this exactly. True.

Case 2 — total reflection

If the surface reflects the wave straight back, the incident momentum I/cI/c (towards the surface) must first be brought to zero, and then an equal momentum I/cI/c must be imparted to send the wave back out. The total momentum transferred to the surface is twice the incident value:

p=2Ic(perfect reflector)p=\frac{2I}{c}\quad\text{(perfect reflector)}

Statement (b), which claims p=I/cp=I/c for total reflection, uses the absorption value for a reflecting surface — this understates the pressure by a factor of 2. False.

Statement (c), which correctly gives p=2I/cp=2I/c for total reflection, matches the derivation above exactly. True.

Case 3 — a real (partially reflecting) surface …

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