Wave Optics MCQs With Answers – Part 3 (Class 12 Physics)
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Wave Optics MCQs with Answers – Part 3 (Class 12 Physics)

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211. Bright fringes in Young's double-slit experiment occur at screen positions satisfying
ⓐ. \(y_n=\frac{n\lambda D}{d}\)
ⓑ. \(y_n=\frac{n\lambda d}{D}\)
ⓒ. \(y_n=\frac{ndD}{\lambda}\)
ⓓ. \(y_n=\frac{\left(n+\frac{1}{2}\right)\lambda D}{d}\)
212. The central bright fringe in Young's double-slit experiment corresponds to the order
ⓐ. \(n=1\)
ⓑ. \(n=0\)
ⓒ. \(n=\frac{1}{2}\)
ⓓ. \(n=-1\)
213. A Young's double-slit experiment has \(\lambda=600\,\text{nm}\), \(D=1.5\,\text{m}\), and \(d=0.30\,\text{mm}\). The position of the second bright fringe from the centre is
ⓐ. \(4.5\,\text{mm}\)
ⓑ. \(6.0\,\text{mm}\)
ⓒ. \(9.0\,\text{mm}\)
ⓓ. \(3.0\,\text{mm}\)
214. A data table lists bright-fringe positions in a double-slit experiment.
Order \(n\)Expected position \(y_n\)
\(0\)\(0\)
\(1\)\(\frac{\lambda D}{d}\)
\(2\)\(\frac{2\lambda D}{d}\)
\(3\)\(\frac{3\lambda d}{D}\)
The entry that should be corrected is for order
ⓐ. \(0\)
ⓑ. \(1\)
ⓒ. \(3\)
ⓓ. \(2\)
215. If the wavelength used in a Young's double-slit experiment is doubled while \(D\) and \(d\) remain unchanged, the position of the \(n\)th bright fringe from the centre
ⓐ. becomes double
ⓑ. remains unchanged
ⓒ. becomes half
ⓓ. becomes four times
216. Two bright fringes of orders \(n=2\) and \(n=5\) are observed in a Young's double-slit pattern. The separation between them is
ⓐ. \(\frac{5\lambda D}{d}\)
ⓑ. \(\frac{2\lambda D}{d}\)
ⓒ. \(\frac{3\lambda D}{d}\)
ⓓ. \(\frac{7\lambda D}{d}\)
217. Bright fringes appear symmetrically on both sides of the central bright fringe because
ⓐ. only one side of the screen receives light
ⓑ. the physical slit separation changes sign
ⓒ. path difference is zero at every screen point
ⓓ. equal \(|y|\) values can satisfy the same order
218. A graph of bright-fringe position \(y_n\) versus order number \(n\) is drawn for a fixed Young's double-slit setup. The graph should be
ⓐ. a straight line through the origin with slope \(\frac{d}{\lambda D}\)
ⓑ. a parabola opening upward
ⓒ. a horizontal line
ⓓ. a straight line through the origin with slope \(\frac{\lambda D}{d}\)
219. The first bright fringe in a Young's double-slit experiment is at \(1.2\,\text{mm}\) from the centre. The fourth bright fringe on the same side is at
ⓐ. \(6.0\,\text{mm}\)
ⓑ. \(3.6\,\text{mm}\)
ⓒ. \(4.8\,\text{mm}\)
ⓓ. \(2.4\,\text{mm}\)
220. A point \(P\) in a double-slit experiment is located where \(y=\frac{3\lambda D}{d}\). The point \(P\) is
ⓐ. the zero-order bright fringe
ⓑ. the first-order dark fringe
ⓒ. the third-order bright fringe
ⓓ. the second-order dark fringe
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