NEET Physics Practice
neet physics tutor doubt 2: 45 Carefully Selected Physics Questions by Kumar Sir for NEET Preparation
neet physics tutor doubt 2 - This focused NEET Physics practice set has been prepared by Kumar Sir to help students clear conceptual doubts, improve problem-solving speed, and build confidence for the exam.
Dear Students,
These are not ordinary Physics questions. They have been carefully selected by Kumar Sir based on more than 30 years of teaching experience, inspired by the conceptual depth of H.C. Verma, I.E. Irodov, Resnick Halliday, and important patterns observed in previous years' NEET Physics questions.
Each question is designed to improve conceptual clarity, logical thinking, analytical ability, and problem-solving skills. Many of these questions contain hidden concepts, subtle traps, and exam-oriented applications that help students develop a deeper understanding of Physics rather than relying on formula memorization alone.
Before viewing the answer or solution, attempt every question honestly on your own. Think carefully, analyse the concept involved, and then compare your approach with the provided solution. This process will significantly improve your accuracy, confidence, and ability to solve unfamiliar NEET questions under exam conditions.
These questions are not meant only for scoring marks; they are intended to help you think like a true Physics student. Take your time, stay patient, and focus on understanding the logic behind every step.
This high-quality collection has been made available free of cost by Kumar Sir for serious NEET aspirants who wish to build strong concepts and achieve excellent results in Physics.
If you are looking for a Physics tutor in Banjara Hills, Hyderabad, Mr. Kumar can help with NEET Physics, JEE Physics, CBSE Class 11 and Class 12 Physics through structured one-to-one classes.
1. The uniform additional pressure applied on a
sphere is P. How much its temperature should be
raised to maintain its original volume? (The bulk
modulus of elasticity of the sphere is β and the
coefficient of volume expansion is α)
(1) Pα/β (2) P/(3αβ)
(3) Pβ/α (4) P/(αβ)
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Answer: Option (4)
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According to Hooke's law of elasticity, if stress is
decreased, the ratio of stress to strain (in elastic
limit)
(1) Decrease (2) Increase
(3) Remains same (4) Becomes zero
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Answer: Option (3)
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Answer (3)
Stress
Strain
Modulus of elasticity (E) is material's property. I1
will remain same.
3. A metallic rod of length l and area of cross
section A is made of material having Young's modulus Y.
If the rod is elongated by an amount x and work done
is y, then which one of the following graphs is
correct?
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Answer: Option (1)
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For which of the following types of material
stress-strain curve is not a straight line within
elastic limit and strain produced is much large for
small stress applied?
(1) Brittle material
(2) Ductile material
(3) Elastomers
(4) Both (1) and (2)
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Answer: Option (3)
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Answer (3)
For elastomers stress-strain curve is not linear
within elastic limit.
5. Two wires A and B of diameter of cross section
0.5 cm each are loaded as shown in figure. The
unloaded length of wire A is 3 m and that of wire
B is 2 m. If Young's modulus of both wires is
same, then the ratio of elongation of wire A to
wire B will be
(1) 2:1 (2) 3:2
(3) 4:1 (4) 3:1
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Answer: Option (3)
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6. A metal wire 8 m long is suspended vertically.
How much does it stretch under its own weight?
(Density of material is 1600 kg/m°,
y = 4 × 108 N/m3 , g = 10 m/s2 ) (within elastic
limit)
(1) 6.4 mm (2) 1.28 mm
(3) 40 mm (4) 80 mm
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Answer: Option (2)
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7. The approximate depth of an ocean is 2000 m.
The compressibility of water is 40 × 10-11 Pa-1
and average density of water is 103 kg/m3 . The
fractional compression of water at the bottom of
the ocean will be (g = 10 m/s2 )
(1) 2 × 10-3 (2) 1 × 10-3
(3) 8 × 10-3 (4) 4 × 10-3
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Answer: Option (3)
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8. A wire of length / is hanging from a fixed support.
The length changes to l and / when masses m.
and 2m are suspended separately from its free
end. Then / is equal to
(1) 211-12 (2) 11-12
(3) 11-212 (4) 311-212
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Answer: Option (1)
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If the interatomic spacing in steel wire is 4.0 A and
Young's modulus of steel Ysteel = 20 × 1010 N/m2
then force constant is
(1) 6 × 10-3 N/A (2) 2 × 10-°N/Ä
(3) 8x 10-° N/A (4) 4 × 10-3 N/A
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Answer: Option (3)
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10. A steel wire can support a maximum load of W
before reaching its elastic limit. How much load
can another wire, made out of identical steel, but
with double the radius of cross section as that of
the first wire, support before reaching its elastic
limit
(1) 2 W (2) W
(3) 8 W (4) 4 W
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Answer: Option (4)
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10. Answer (4)
Yield point (stress) remains same.
11. The area of cross-section of the wider limb shown
in figure is 500 cm2 . If a mass of 10 kg is placed
on the piston on the wider tube, the difference in
height h in the level of water in two tubes is
(ρwater = 1000 kg/m3 )
(1) 10 cm (2) 20 cm
(3) 30 cm (4) 15 cm
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Answer: Option (2)
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12. Consider the following statements
(a) With increase in temperature, viscosity of gas
increases
(b) With decrease in temperature, viscosity of
liquids increases
Correct statements are
(1) Only (a) (2) Only (b)
(3) Both (a) and (b) (4) Neither (a) nor (b)
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Answer: Option (3)
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12. Answer (3)
With increase in temperature, viscosity of liquids
decreases and that of gas increases.
13. The terminal velocity of copper ball of radius
2 mm falling through a tank of oil at 20°C is
6.5 cm/s. If viscosity of the oil at 20°C is
9.9 × 10-1 kg m-' s-' and density of copper is
8.9 × 103 kg m-3. Then density of the oil will be
(1) 1.2 × 103 kg/m3 (2) 8.0 × 102 kg/m3
(3) 1.66 × 103 kg/m3 (4) 1.8 × 103 kg/m3
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Answer: Option (3)
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14. Figures (a) and (b) show a venturimeter tube
connected to the steady flow of a non-viscous liquid.
Which figure is correct regarding the static water
levels in the tubes?
(1) Only (a) (2) Only (b)
(3) Both (a) and (b) (4) Neither (a) nor (b)
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Answer: Option (2)
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14. Answer (2)
Where area of cross-section is small, speed is
high and pressure is low.
15. The pressure at the bottom of a tank of water is
4P where P is the atmospheric pressure. If the
water is drawn out such that the level of water is
lowered by one third, the pressure at the bottom
of the tank will now be
(1) 2P/3 (2) 3P
(3) 4P (4) 5P/3
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Answer: Option (2)
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16. The surface tension and vapour pressure of a
fluid at 20°C is 8 × 10-2 N/m and 4 × 103 Pa,
respectively. What is the radius of the smallest
spherical fluid droplet which can form without
evaporating at 20°C?
(1) 40 um (2) 4um
(3) 6.81×10-3m (4) 9x10-2m
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Answer: Option (1)
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16. Answer (1)
For drop of radius r
17. The minimum force required to separate two
glass plate of area 1000 cm with film of water
0.1 mm thick between them, is (surface tension ol
water is 70 × 10-3 N/m and angle of contact is 0°)
(1) 70 N (2) 50 N
(3) 140 N (4) 100 N
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Answer: Option (3)
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17. Answer (3)
Force required to separate the plate
18. A cylinder of height 30 m is completely filled with
water. If water coming out through a small hole
hit the ground 30 m away from the bottom of the
cylinder. Then distance of the hole from the
bottom of the cylinder will be
(1) 10 m (2) 20 m
(3) 15 m (4) 5 m
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Answer: Option (3)
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19. A viscous fluid is flowing through a cylindrical
tube. The velocity distribution of the fluid is best
represented by which diagram?
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Answer: Option (4)
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19. Answer (4)
Velocity profile of a viscous fluid is a parabola.
20. Estimate the drop in temperature when a drop of
radius R breaks into N small droplets. (T: surface
tension, ρ: density, C: specific heat capacity)
(1) 3T/(ρCR)(N - 1) (2) 2T/[ρCR(N - 1)]
(3) T/[ρRC(N - 1)] (4) 2T/(ρRC)(N - 1)
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Answer: Option (1)
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20. Answer (1)
Since volume remains the same when a liquid
drop of radius R breaks up into N3 droplets, each
of radius r,
Change in internal energy,
AU=T×AA=T[4tR? -Nº(4rr2)]
As AU = MCAT, AT =- mc
21. A vessel of volume 0.04 m' contains a mixture of
hydrogen and helium at 20°C and 2 atmospheric
pressure and the mass of mixture is 10 g. Then
the ratio of mass of hydrogen to that of helium in
the mixture is nearly (1 atm = 105 Pa)
(1) 1:3 (2) 1:2
(3) 2:3 (4) 3:2
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Answer: Option (2)
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22. The coefficient of volume expansion of an ideal
gas at constant pressure at temp T K is equal to
(1) -1/T K-1 (2) 1/T K-1
(3) T K-1 (4) 3/T K-1
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Answer: Option (1)
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23. A cylinder of fixed capacity 67.2 litre contains
helium gas at standard temperature and
pressure. The amount of heat needed to raise the
temperature of the gas in the cylinder by 20°C will
be (R = 25/3 J mol-1 K-1 )
(1) 250 J (2) 750 J
(3) 400 J (4) 900 J
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Answer: Option (2)
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24. Which of the following figures does not depict
ideal gas behaviour for a given amount of gas?
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Answer: Option (3)
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24. Answer (3)
Third graph is incorrect as PV would not remain
constant if T changes.
25. The root mean square speed of the molecules of
triatomic gas is V. When the absolute
temperature is tripled, the molecules dissociate
into three atoms, the new root mean square
speed of the atoms is
(1) V3V (2) V
(3) 3 V (4) 2 V
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Answer: Option (3)
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26. A fixed amount of an ideal monoatomic gas is
taken through the cycle ABCD as shown in the
figure. The efficiency of the cycle will be
(1) 22.2% (2) 33.33%
(3) 20% (4) 40%
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Answer: Option (1)
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27. For two mole of diatomic gas, work done at
constant pressure is W. The heat supplied at
constant volume for the same rise in temperature
of the gas is
(1) 3W/2 (2) 5W/2
(3) 2W (4) W
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Answer: Option (2)
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28. Consider the process on an ideal gas as shown
in figure. The work done by the system is
(1) First positive then negative
(2) Always positive
(3) Always negative
(4) First negative then positive
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Answer: Option (4)
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28. Answer (4)
Initially gas is being compressed and later it
expands.
29. If the heat input to a Carnot engine is four times
the work it performs, then the fraction of heat
rejected to the sink is
(1) 1/4 (2) 3/4
(3) 1/3 (4) 2/3
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Answer: Option (2)
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30. When a person jogs, he produces 15 kcal/min.
80% of this heat is removed as the sweat
evaporates. The amount of sweat evaporated per
minutes is (1 kg sweat requires approximately
580 kcal for evaporation)
(1) 1.6 g (2) 20.7 g
(3) 4g (4) 28 g
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Answer: Option (2)
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30. Answer (2)
Amount of sweat evaporated
31. When one mole of gas expands as per the
relation V = KT23, where V is volume and T is
temperature. For the temperature change of
40 K. Work done is (R is universal gas constant)
(1) 35.6 R (2) 26.6 R
(3) 30.2 R (4) 20.1 R
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Answer: Option (2)
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32. The quantities of heat required to raise the
temperatures of two solid steel spheres of r and
2r respectively through 1 K each are in the ratio
of
(1) 1:4 (2) 1:8
(3) 1:1 (4) 8:27
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Answer: Option (2)
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33. The temperature of 200 g of water is to be raised
from 20°C to 60°C by adding steam at 100°C to
it. The mass of steam required for this purpose
nearly is
(1) 10 g (2) 14g
(3) 6 g (4) 18 g
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Answer: Option (2)
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34. It is difficult to cook rice in open vessel by boiling
it at high altitudes because of
(1) High boiling point due to low pressure
(2) Low boiling point due to low pressure
(3) Low boiling point due to high pressure
(4) High boiling point due to high pressure
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Answer: Option (2)
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34. Answer (2)
At high altitudes pressure is low due to which the
boiling point reduces.
35. Consider the P-V diagram for a fixed mass of an
ideal gas shown in figure. Choose the correct
corresponding pressure-density (P-ρ) diagram.
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Answer: Option (1)
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36. The increase in moment of inertia I of a uniform
rod, having thermal coefficient of linear expansion
α, about an axis passing through its one end and
perpendicular to its length when its temperature
is slightly increased by ΔT is
(1) IαΔT (2) IαΔT/2
(3) 2IαΔT (4) 3IαΔT
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Answer: Option (3)
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37. Ends of a rod A of length / having thermal
conductivity K is maintained at temperature Ty
and T2 (T,>T2). The thermal current through the
rod is Q. Now another rod B of same length and
area of cross section as that of rod A and having
thermal conductivity 2K is welded together side
by side and common ends of the combination is
maintained at temperature T, and T2. The new
thermal current through the combination will be
(1) Q (2) 2Q
(3) (4) 3Q
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Answer: Option (4)
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37. Answer (4)
For same temperature difference, heat current
through second rod will be 2Q. So total heal
38. Choose the correct graph which represents Wien's
displacement law. Symbols have their usual meanings.
(4) Both (1) and (3)
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Answer: Option (4)
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39. If l is the distance between lower fixed point and
upper fixed point of thermometer and X is the
length of the mercury column above the lower
fixed point for temperature t°C, then value of t will
be
(1) 100X/l (2) 50X/l
(3) X/l (4) 50l/X
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Answer: Option (1)
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40. The rate of cooling of a body is
(1) Independent of the nature of the surface of
the body
(2) Independent of the area of the body
(3) Independent of the temperature of the
surrounding
(4) Depend on the excess of temperature of the
body above that of surrounding
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Answer: Option (4)
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40. Answer (4)
Rate of cooling o (T - To)
41. In which of the following phenomena, the heat
travels along straight line with speed of light
(1) Thermal radiation
(2) Thermal conduction
(3) Natural convection
(4) Forced convection
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Answer: Option (1)
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41. Answer (1)
In radiation, the heat travels with speed of light.
42. Answer (1)
CHEI
42. Hot water cools from 60°C to 50°C in the first 10
minutes and to 42°C in next 10 minutes. Then the
temperature of the surrounding is
(1) 10°C
(2) 30°C
(3) 20°C
(4) 15°C
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Answer: Option (1)
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_43. Two spherical black bodies have radii r and 9r.
Their surface temperature are T, and T2. If they
- radiates same power then value of T1 is
(1) 1:9 (2) 3:1
(3) 4:1 (4) 1:8
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Answer: Option (2)
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43. Answer (2)
(4) - 4T(r)
44. According to Stefan's law, the power radiated by a black body at absolute temperature T is P.
If its absolute temperature is doubled to 2T, then the power radiated will become
(1) 2P (2) 4P
(3) 8P (4) 16P
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Answer: Option (4)
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Stefan-Boltzmann law: P ∝ T4 .
When T becomes 2T, P' = P(2)4 = 16P.
So the correct option is (4) 16P.
45. The power radiated by a black body is P and it
radiates maximum energy around the wavelength
λ0 . If the temperature of the black body is now
changed so that it radiates maximum energy
around the wavelength 3λ0 /4, the power radiated
by it will increase by factor of
(1) 256/81 (2) 64/27
(3) 16/9 (4) 4/3
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Answer: Option (1)
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