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Geometrical Optics PYQs - Last 10 Years

AIIMS / Physics / Optics / 9 recent questions

PhysicsOptics2010-2019

Practice 9 AIIMS Physics questions from Geometrical Optics. Use the year-wise and type-wise breakdown to prioritize recent PYQs, then continue into the question list below.

9
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Physics / Optics
2017-2019
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9
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2015-2019
9
Last 10 Years
2010-2019

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Last 10 Years Geometrical Optics Questions

Showing 9 of 9 filtered questions.

1Geometrical Optics
Calculate the focal length of given lens if the
magnification is \(-\)0 5.
MCQ+1 / -0.332019
2Geometrical Optics
If focal length of objective and eye lenses are \(10 \mathrm{~cm}\) and \(10 \mathrm{~mm}\) respectively and tube length is \(11 \mathrm{~cm}\) then angular magnification of telescope is
MCQ+1 / -0.332019
3Geometrical Optics
Assertion A convex mirror always make a
virtual image.
Reason The ray always diverge after
reflection from the convex mirror.
MCQ+1 / -0.332018
4Geometrical Optics
Assertion : Angle of deviation depends on the angle of prism.
Reason : For thin prism \(\delta=(\mu-1) A\)
Where \(\delta=\) angle of deviation,
\(\mu=\) refractive index, \(A=\) angle of prism
MCQ+1 / -0.332017
5Geometrical Optics
Assertion : The mirror used in search lights are parabolic and not concave spherical.
Reason : In concave spherical mirror, the image formed is always virtual.
MCQ+1 / -0.332017
6Geometrical Optics
A simple telescope, consisting of an objective of focal length \(60 \mathrm{~cm}\) and a single eye lens of focal length \(5 \mathrm{~cm}\) is focused on a distant object in such a way that parallel rays emerge from the eye lens. If the obj...
MCQ+1 / -0.332017
7Geometrical Optics
A thin prism \(P_1\) of angle \(4^{\circ}\) and refractive index 1.54 is combined with another prism \(P_2\) of refractive index 1.72 produce dispersion without deviation, the angle of \(P_2\) is
MCQ+1 / -0.332017
8Geometrical Optics
In the given figure, the angle of reflection is
MCQ+1 / -0.332017
9Geometrical Optics
A lens of refractive index \(\mu\) is put in a liquid of refractive index \(\mu^{\prime}\). If the focal length of lens in air is \(f\), then its focal length in liquid will be
MCQ+1 / -0.332017