MHT CET 2023 Physics question papers are available for various exam dates and shifts. The question papers also comprise answers and solutions to the questions for students’ reference.
MHT CET 2023 Physics question paper with solutions PDF is available for download. The MHT CET Physics questions are based on topics such as the Kinetic Theory Of Gases And Radiation, Oscillations, Atoms, Molecules, Nuclei, Rotational Motion, Electrostatics and more.
Practising questions in preparation for the MHT CET exam helps candidates understand the exam pattern and the syllabus well.
Table of Contents
- MHT CET 2023 Physics Question Paper with Solutions PDF
- MHT CET 2023 Physics Questions: Top 20 MHT CET Physics Questions
MHT CET 2023 Physics Question Paper with Solutions PDF
The MHT CET 2023 Physics Question Paper with Solutions PDF is available for various MHT CET exam dates and shifts.
The PDFs comprise answer keys and solutions for the overall MHT CET 2023 questions.
MHT CET Exam Date and Shift | MHT CET 2023 Question Paper with Solutions PDF |
May 9, 2023 Shift 1 | Download Now |
May 9, 2023 Shift 2 | Download Now |
May 10, 2023 Shift 1 | Download Now |
May 10, 2023 Shift 2 | Download Now |
May 11, 2023 Shift 1 | Download Now |
May 11, 2023 Shift 2 | Download Now |
May 12, 2023 Shift 1 | Download Now |
May 12, 2023 Shift 2 | Download Now |
May 13, 2023 Shift 1 | Download Now |
May 13, 2023 Shift 2 | Download Now |
May 15, 2023 Shift 1 | Download Now |
May 15, 2023 Shift 2 | Download Now |
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MHT CET 2023 Physics Questions: Top 20 MHT CET Physics Questions
Apart from going through the MHT CET 2023 Physics question papers, students can also check out the top MHT CET Physics questions asked in the exam to ace their preparation level for the exam.
1. The path length of oscillation of simple pendulum of length 1 metre is 16 cm. Its maximum velocity is (g = 2 m/s2)
А) 2π cm/s
В) 4π cm/s
С) 8π cm/s
D) 16π cm/s
2. A vessel completely filled with water has holes 'A' and 'B' at depths 'h' and '3h' from the top respectively. Hole 'A' is a square of side 'L' and 'B' is circle of radius 'r'. The water flowing out per second from both the holes is same. Then 'L' is equal to
A) г2 (π)2 (3)2
B) r.(n)4 (3)4
C) г.(π)2 (3)4
D) r2 (n)3 (3)2
3. A transistor is used as a common emitter amplifier with a load resistance 2 KQ. The input resistance is 150 Q. Base current is changed by 20 μA which results in a change in collector current by 1.5 mA. The voltage gain of the amplifier is
A) 900
B) 1000
C) 1100
D) 1200
4. A disc has mass 'M' and radius 'R'. How much tangential force should be applied to the rim of the disc so as to rotate with angular velocity 'o' in time 't'?
A) MRO 4t
B) MRO 2t
C) MRO t
D) MR ot
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5. A circular coil carrying current 'I' has radius 'R' and magnetic field at the centre is 'B'. At what distance from the centre along the axis of the same coil, the magnetic field will be B?
A) R√2
B) R√3
C) 2R
D) 3R
6. Two light waves of intensities 'I' and 'I' having same frequency pass through same medium at a time in same direction and interfere. The sum of the minimum and maximum intensities is
A) (I1 + I2)
B) 2 (1, +12)
C) c) (√I1 + √I2)
D) (√T-√2)
7. An alternating voltage e = 200 √2 sin (100 t) volt is connected to 1 uF capacitor through a.c. ammeter. The reading of ammeter is
A) 5 mA
B) 10 mA
C) 15 mA
D) 20 mA
8. In the following network, the current flowing through 150 resistance is B 15Ω. 302 A C 62(G 2.1 A 202 492 D -
A) 0.8 A
B) 1.0 A
C) 1.2 A
D) 1.4 A
9. The angle made by incident ray of light with the reflecting surface is called
A) glancing angle
C) angle of deviation
B) angle of incidence
D) angle of refraction
10. In non uniform circular motion, the ratio of tangential to radial acceleration is (r = radius of circle, v = speed of the particle, a = angular acceleration) a2r2
A) V a2r
B) 2 ar2
C) v2
D) a 2 Γα
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11. If numerical aperture of a microscope is increased then its
A) resolving power remains constant
B) resolving power becomes zero
C) limit of resolution is decreased
D) limit of resolution is increased
12. In amplitude modulation
A) amplitude remains constant but frequency changes
B) both amplitude and frequency do not change
C) both amplitude and frequency change
D) amplitude of the carrier wave changes according to information signal
13. If M2 = magnetization of a paramagnetic sample, B = external magnetic field, T = absolute temperature, C=curie constant then according to Curie's law in magnetism, the correct relation is T
A) M2 =
B) M2 = CB CB T
C) C-M2B T T2
D) C-. M2B
14. An electron of stationary hydrogen atom jumps from 4th energy level to ground level. The velocity that the photon acquired as a result of electron transition will be (h = Planck's constant, R = Rydberg's constant, m = mass of photon)
A) 9 Rh 16m
B) 11hR 16m
C) 13hR 16m 15hR
D) 16m surface tension of water,
15. A metal wire of density 'p' floats on water surface horizontally. If it is NOT to sink in water then maximum radius of wire is proportional to (T g= gravitational acceleration)
A) T
B) προ VT
C) προ προ προ
D) T προ
16. A sphere of mass 'm' moving with velocity 'v' collides head-on on another sphere of same mass which is at rest. The ratio of final velocity of second sphere to the initial velocity of the first sphere is (e is coefficient of restitution and collision is inelastic) e-1
A) 2 e
B) 2
C) e+1 2
D) e
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17. For a particle performing linear S.H.M., its average speed over one oscillation is (a = amplitude of S.H.M., n = frequency of oscillation)
A) 2 an
B) 4 an
C) 6 an
D) 8 an
18. An ideal transformer converts 220 V a.c. to 3.3 kV a.c. to transmit a power of 4.4 kW. If primary coil has 600 turns, then alternating current in secondary coil is
A) A
B) -A
C) A
D) A
19. A conducting wire has length 'L,' and diameter 'd,'. After stretching the same wire length becomes 'L2' and diameter 'd2'. The ratio of resistances before and after stretching is
A) d2: d
B) d:d2
c) d2:d2
D) d2:d2
20. The molar specific heat of an ideal gas at constant pressure and constant volume is 'C' and 'C' respectively. If 'R' is the universal gas constant and the ratio of 'C' to 'C' is 'y' then C11 = P 1-Y
A) 1+Y 1+Y
B) 1-Y
C) Y-1
D) R Y-1
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