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Previous year question hub

Ray Optics - Optics - Physics Previous Year Questions

Practice Ray Optics - Optics - Physics previous year questions organised from real papers, with year-wise coverage and clear topic navigation.

6Papers
6Years
12Questions
1Topics

Ray Optics question pattern

Every graph below is calculated only from this selection.

Questions by year

Year-wise coverage for Ray Optics. Each bar uses a separate theme-derived color.

Difficulty distribution

How the classified questions are distributed by difficulty.

Not classified 12 100%

Question type distribution

MCQ, numerical, multiple-select and other formats found in these papers.

Multiple Choices 12 100%

Subject weightage

Top subjects by unique question coverage.

Physics
12 Qs

Most asked topics

Top topics across the included previous year papers.

Optics
12 Qs

Subtopic coverage

Top subtopics inside this exact selection.

Ray Optics
12 Qs

Paper coverage

Question coverage for the most populated papers. Every active PYP paper remains listed below.

BITSAT 2025
2 Qs
BITSAT 2024
2 Qs
BITSAT 2023
2 Qs
BITSAT 2022
2 Qs
BITSAT 2021
2 Qs
BITSAT 2020
2 Qs

Included previous year papers

Newest papers appear first. Sort by year, question coverage or name.

PaperYear / sessionQuestions in this viewOpen
BITSAT 202520252View paper
BITSAT 202420242View paper
BITSAT 202320232View paper
BITSAT 202220222View paper
BITSAT 202120212View paper
BITSAT 202020202View paper

All Ray Optics previous year questions

Practice every matching question in batches of 20, with every available option.

1
2020 · Physics · Optics · Ray Optics
BITSAT 2020

A thin equi-convex lens is made of glass of refractive index 1.5 and its focal length is 0.2 m. If it acts as a concave lens of focal length 0.5 cm when dipped in a liquid, the refractive index of the liquid is

A
\({{17} \over 8}\)
B
\({{15} \over 8}\)
C
\({{13} \over 8}\)
D
\({{9} \over 8}\)
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2
2020 · Physics · Optics · Ray Optics
BITSAT 2020

A spherical lens of power \(-\)4D is placed at a distance of 15 cm from another spherical lens of power 5 D. A beam of parallel light falls on the first spherical lens. The final image formed is

A
real and at a distance of 40 cm from the lens of power 5 D
B
real and at a distance of 10 cm from the lens of power \(-\)4 D
C
virtual and at a distance of 40 cm from the lens of power \(-\)5 D
D
None of the above
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3
2021 · Physics · Optics · Ray Optics
BITSAT 2021

Two plane mirrors A and B are aligned parallel to each other as shown in the figure.

BITSAT 2021 Physics - Ray Optics Question 12 English

A ray of light is incident at an angle 30\(^\circ\) at a point just inside one end of A. The plane of incidence coincides with the plane of the figure. The maximum number of times, the ray undergoes reflection (excluding the first one) before it emerges out is

A
28
B
34
C
30
D
29
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4
2021 · Physics · Optics · Ray Optics
BITSAT 2021

The property of light used in optical fibre cables is

A
total internal reflection
B
refraction
C
interference
D
polarisation
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5
2022 · Physics · Optics · Ray Optics
BITSAT 2022

A mosquito O is sitting infront of a glass rod having spherical end of radius of curvature 40 cm. The image would be formed at

BITSAT 2022 Physics - Ray Optics Question 8 English

A
40 cm left
B
infinity
C
20 cm to the right
D
15 cm to the left
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6
2022 · Physics · Optics · Ray Optics
BITSAT 2022

An achromatic convergent doublet of two lenses in contact has a power of +5 D. The power of converging lens is +6 D. The ratio of the dispersive power of the convergent and divergent lenses is

A
3 : 7
B
2 : 3
C
1 : 6
D
5 : 3
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7
2023 · Physics · Optics · Ray Optics
BITSAT 2023

A thin plano-convex lens of focal length \(f\) is split into two halves one of the halves is shifted along the optical axis. The separation between object and image formed by one of the half-lenses is 2.4 and the magnification of same lens is 2. If \(f\) and \(d\) be the focal length of the lens and separation between the two halves respectively then

BITSAT 2023 Physics - Ray Optics Question 5 English

A
f = 0.53 m
B
f = 0.6 m
C
f = 0.5 m
D
d = 0.9 m
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8
2023 · Physics · Optics · Ray Optics
BITSAT 2023

A vessel is half filled with a liquid of refractive index \(\mu\). The other half of the vessel is filled with an immiscible liquid of refractive index \(2 \mu\). The apparent depth of the vessel is \(50 \%\) of the actual depth. Then \(\mu\) is

A
1.4
B
1.5
C
1.6
D
1.25
Open complete paper
9
2024 · Physics · Optics · Ray Optics
BITSAT 2024
Power of biconvex lens is $ P $ diopter. When it is cut into two symmetrical halves by a plane containing the principal axis. The ratio of power of two halves is
A
$1:2 $
B
$2:1 $
C
$1:4 $
D
$1:1 $
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10
2024 · Physics · Optics · Ray Optics
BITSAT 2024
The magnifying power of a telescope is 9 . When it is adjusted for parallel rays, the distance between the objective and eyepiece is 20 cm . The ratio of focal length of objective lens to focal length of eyepiece is found to be $ m $, then the value of $ m $ is
A
8
B
7
C
9
D
12
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11
2025 · Physics · Optics · Ray Optics
BITSAT 2025

In given lens combination, each lens is of focal length 10 cm .

BITSAT 2025 Physics - Ray Optics Question 1 English

Correct ray diagram for this combination is

A
BITSAT 2025 Physics - Ray Optics Question 1 English Option 1
B

BITSAT 2025 Physics - Ray Optics Question 1 English Option 2

C

BITSAT 2025 Physics - Ray Optics Question 1 English Option 3

D

BITSAT 2025 Physics - Ray Optics Question 1 English Option 4

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12
2025 · Physics · Optics · Ray Optics
BITSAT 2025

The frequency of a light wave in a material is $2 \times 10^{14} \mathrm{~Hz}$ and wavelength is $5000 \mathop {\rm{A}}\limits^{\rm{o}} $. The refractive index of material will be

A

1.40

B

1.50

C

3.00

D

1.33

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