Question:

White light may be considered to be a mixture of wave with $\lambda$ ranging between $3000 \,?$ and $7800\,?$. An oil film of thickness $10,000\,?$ is examined normally by the reflected light. If $\mu=1.4$, then the film appears bright for

Updated On: Jun 20, 2022
  • $ 4308\,?, 5091 \,?, 6222 \,?$
  • $4000 \,?, 5091 \,?, 5600 \,? $
  • $ 4667 \,?, 6222 \,?, 7000 \,?$
  • $ 4000 \,?, 4667 \,?, 5600 \,? ,7000\,?$
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The Correct Option is A

Solution and Explanation

The film appears bright if the path difference is
$2 \mu t \cos r=(2 n-1) \frac{\lambda}{2}$
$ n=1,2,3, \ldots$
$\therefore \lambda=\frac{4 \mu t \cos r}{(2 n-1)}$
$\lambda=\frac{4 \times 1.4 \times 10000 \times 10^{-10} \cos 0^{\circ}}{(2 n-1)}$
$=\frac{56000}{(2 n-1)} \,?$
$\therefore \lambda=56000 \,?, 18666 \,?, 11200 \,?, 8000 \,?$
$6222 \,?, 5091 \,?, 4308 \,?, 3733 \,?$
The wavelengths which are not within specified ranges are to be rejected.
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Concepts Used:

Wave Optics

  • Wave optics are also known as Physical optics which deal with the study of various phenomena such as polarization, interference, diffraction, and other occurrences where ray approximation of geometric optics cannot be done. Thus, the section of optics that deals with the behavior of light and its wave characteristics is known to be wave optics.
  • In wave optics, the approximation is carried out by utilizing ray optics for the estimation of the field on a surface. Further, it includes integrating a ray-estimated field over a mirror, lens, or aperture for the calculation of the transmitted or scattered field.
  • Wave optics stands as a witness to a famous standoff between two great scientific communities who devoted their lives to understanding the nature of light. Overall, one supports the particle nature of light; the other supports the wave nature.
  • Sir Isaac Newton stood as a pre-eminent figure that supported the voice of particle nature of light, he proposed a corpuscular theory which states that “light consists of extremely light and tiny particles, called corpuscles which travel with very high speeds from the source of light to create a sensation of vision by reflecting on the retina of the eye”.