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Gravitation PYQs - Last 5 Years

JEE Main / Physics / Mechanics / 112 recent questions

PhysicsMechanics2022-2026

Practice 112 JEE Main Physics questions from Gravitation. Use the year-wise and type-wise breakdown to prioritize recent PYQs, then continue into the question list below.

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Physics / Mechanics
2022-2026
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112
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2022-2026
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2017-2026

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Last 5 Years Gravitation Questions

Showing 50 of 112 filtered questions.

1Gravitation
When one moves from a point 16 km below the earth's surface to a point 16 km above the earth's surface. The change in g is approximately $\alpha \%$. The value of $\alpha$ is $\_\_\_\_$ .
(Take radius of the earth $=6400 \mathrm{~km}$.)
MCQ+4 / -12026
2Gravitation
A body of mass $m$ is taken from the surface of earth to a height equal to twice the radius of earth $\left(R_e\right)$. The increase in potential energy will be $\_\_\_\_$ .
( $g$ is acceleration due to gravity at the surface of earth)
MCQ+4 / -12026
3Gravitation
The height in terms of radius of the earth $(R)$, at which the acceleration due to gravity becomes $\frac{g}{9}$, where $g$ is acceleration due to gravity on earth's surface, is
$\_\_\_\_$ .
MCQ+4 / -12026
4Gravitation
A planet ($P_1$) is moving around the star of mass $2M$ in the orbit of radius $R$. Another planet ($P_2$) is moving around another star of mass $4M$ in a orbit of radius $2R$. Ratio of time periods of revolution of $P_2$ and $P_1$ is _____...
MCQ+4 / -12026
5Gravitation
If a body of mass 1 kg falls on the earth from infinity, it attains velocity (v) and kinetic energy (k) on reaching the surface of earth. The values of v and k respectively are __________.
(Take radius of earth to be 6400 km and g = 9.8 m/s...
MCQ+4 / -12026
6Gravitation
Three masses $200 \mathrm{~kg}, 300 \mathrm{~kg}$ and 400 kg are placed at the vertices of an equilateral triangle with sides 20 m . They are rearranged on the vertices of a bigger triangle of side 25 m and with the same centre. The work do...
MCQ+4 / -12026
7Gravitation
The escape velocity from a spherical planet $A$ is $10 \mathrm{~km} / \mathrm{s}$. The escape velocity from another planet $B$ whose density and radius are $10 \%$ of those of planet $A$, is $\_\_\_\_$ $\mathrm{m} / \mathrm{s}$.
MCQ+4 / -12026
8Gravitation
Net gravitational force at the center of a square is found to be $F_1$ when four particles having mass $M, 2 M, 3 M$ and $4 M$ are placed at the four corners of the square as shown in figure and it is $F_2$ when the positions of $3 M$ and $...
MCQ+4 / -12026
9Gravitation
Given below are two statements :
Statement I : A satellite is moving around earth in the orbit very close to the earth surface. The time period of revolution of satellite depends upon the density of earth.
Statement II : The time period of ...
MCQ+4 / -12026
10Gravitation
Initially a satellite of 100 kg is in a circular orbit of radius $1.5 \mathrm{R}_{\mathrm{E}}$. This satellite can be moved to a circular orbit of radius $3 R_E$ by supplying $\alpha \times 10^6 \mathrm{~J}$ of energy The value of $\alpha$ ...
MCQ+4 / -12026
11Gravitation
Given below are two statements: one is labelled as Assertion (A) and the other is labelled as Reason (R).Assertion (A): The radius vector from the Sun to a planet sweeps out equal areas in equal intervals of time and thus areal velocity of ...
MCQ+4 / -12025
12Gravitation
Given below are two statements : one is labelled as Assertion A and the other is labelled as Reason $\mathbf{R}$

Assertion A : The kinetic energy needed to project a body of mass $m$ from earth surface to infinity is $\frac{1}{2} \mathrm{m...
MCQ+4 / -12025
13Gravitation
An object is kept at rest at a distance of $3 R$ above the earth's surface where $R$ is earth's radius. The minimum speed with which it must be projected so that it does not return to earth is :
(Assume $\mathrm{M}=$ mass of earth, $\mathrm...
MCQ+4 / -12025
14Gravitation
Three identical spheres of mass m , are placed at the vertices of an equilateral triangle of length $a$. When released, they interact only through gravitational force and collide after a time $\mathrm{T}=4$ seconds. If the sides of the tria...
INTEGER+4 / -12025
15Gravitation
\(\text { Match the LIST-I with LIST-II }\)


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MCQ+4 / -12025
16Gravitation
A satellite of mass 1000 kg is launched to revolve around the earth in an orbit at a height of 270 km from the earth's surface. Kinetic energy of the satellite in this orbit is____________ $\times 10^{10} \mathrm{~J}$.
(Mass of earth $=6 \t...
INTEGER+4 / -12025
17Gravitation
Two planets, $A$ and $B$ are orbiting a common star in circular orbits of radii $R_A$ and $R_B$, respectively, with $R_B=2 R_A$. The planet $B$ is $4 \sqrt{2}$ times more massive than planet $A$. The ratio $\left(\frac{\mathrm{L}_{\mathrm{B...
INTEGER+4 / -12025
18Gravitation
Earth has mass 8 times and radius 2 times that of a planet. If the escape velocity from the earth is 11.2 km/s, the escape velocity in km/s from the planet will be:
MCQ+4 / -12025
19Gravitation
A satellite is launched into a circular orbit of radius ' R ' around the earth. A second satellite is launched into an orbit of radius 1.03 R . The time period of revolution of the second satellite is larger than the first one approximately...
MCQ+4 / -12025
20Gravitation
Acceleration due to gravity on the surface of earth is ' $g$ '. If the diameter of earth is reduced to one third of its original value and mass remains unchanged, then the acceleration due to gravity on the surface of the earth is ________ ...
INTEGER+4 / -12025
21Gravitation
A satellite of mass $\frac{M}{2}$ is revolving around earth in a circular orbit at a height of $\frac{R}{3}$ from earth surface. The angular momentum of the satellite is $\mathrm{M} \sqrt{\frac{\mathrm{GMR}}{x}}$. The value of $x$ is ______...
INTEGER+4 / -12025
22Gravitation
If a satellite orbiting the Earth is 9 times closer to the Earth than the Moon, what is the time period of rotation of the satellite? Given rotational time period of Moon $=27$ days and gravitational attraction between the satellite and the...
MCQ+4 / -12025
23Gravitation
A small point of mass $m$ is placed at a distance $2 R$ from the centre ' $O$ ' of a big uniform solid sphere of mass M and radius R . The gravitational force on ' m ' due to M is $\mathrm{F}_1$. A spherical part of radius $\mathrm{R} / 3$ ...
MCQ+4 / -12025
24Gravitation
An astronaut takes a ball of mass \(m\) from earth to space. He throws the ball into a circular orbit about earth at an altitude of \(318.5 \mathrm{~km}\). From earth's surface to the orbit, the change in total mechanical energy of the ball...
MCQ+4 / -12024
25Gravitation
A satellite of \(10^3 \mathrm{~kg}\) mass is revolving in circular orbit of radius \(2 R\). If \(\frac{10^4 R}{6} \mathrm{~J}\) energy is supplied to the satellite, it would revolve in a new circular orbit of radius
(use $$g=10 \mathrm{~m} ...
MCQ+4 / -12024
26Gravitation
Two planets \(A\) and \(B\) having masses \(m_1\) and \(m_2\) move around the sun in circular orbits of \(r_1\) and \(r_2\) radii respectively. If angular momentum of \(A\) is \(L\) and that of \(B\) is \(3 \mathrm{~L}\), the ratio of time ...
MCQ+4 / -12024
27Gravitation
Two satellite A and B go round a planet in circular orbits having radii 4R and R respectively. If the speed of \(\mathrm{A}\) is \(3 v\), the speed of \(\mathrm{B}\) will be :
MCQ+4 / -12024
28Gravitation
To project a body of mass \(m\) from earth's surface to infinity, the required kinetic energy is (assume, the radius of earth is \(R_E, g=\) acceleration due to gravity on the surface of earth):
MCQ+4 / -12024
29Gravitation
If the radius of earth is reduced to three-fourth of its present value without change in its mass then value of duration of the day of earth will be ________ hours 30 minutes.
INTEGER+4 / -12024
30Gravitation
Assuming the earth to be a sphere of uniform mass density, a body weighed \(300 \mathrm{~N}\) on the surface of earth. How much it would weigh at R/4 depth under surface of earth ?
MCQ+4 / -12024
31Gravitation
If \(\mathrm{G}\) be the gravitational constant and \(\mathrm{u}\) be the energy density then which of the following quantity have the dimensions as that of the \(\sqrt{\mathrm{uG}}\) :
MCQ+4 / -12024
32Gravitation
Match List I with List II :

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MCQ+4 / -12024
33Gravitation
A satellite revolving around a planet in stationary orbit has time period 6 hours. The mass of planet is one-fourth the mass of earth. The radius orbit of planet is :
(Given \(=\) Radius of geo-stationary orbit for earth is $$4.2 \times 10^...
MCQ+4 / -12024
34Gravitation
A metal wire of uniform mass density having length \(L\) and mass \(M\) is bent to form a semicircular arc and a particle of mass \(\mathrm{m}\) is placed at the centre of the arc. The gravitational force on the particle by the wire is :
MCQ+4 / -12024
35Gravitation
A \(90 \mathrm{~kg}\) body placed at \(2 \mathrm{R}\) distance from surface of earth experiences gravitational pull of :
(\(\mathrm{R}=\) Radius of earth, \(\mathrm{g}=10 \mathrm{~m} \mathrm{~s}^{-2}\))
MCQ+4 / -12024
36Gravitation
Correct formula for height of a satellite from earths surface is :
MCQ+4 / -12024
37Gravitation
Four identical particles of mass \(m\) are kept at the four corners of a square. If the gravitational force exerted on one of the masses by the other masses is \(\left(\frac{2 \sqrt{2}+1}{32}\right) \frac{\mathrm{Gm}^2}{L^2}\), the length o...
MCQ+4 / -12024
38Gravitation
The mass of the moon is \(\frac{1}{144}\) times the mass of a planet and its diameter is \(\frac{1}{16}\) times the diameter of a planet. If the escape velocity on the planet is \(v\), the escape velocity on the moon will be :
MCQ+4 / -12024
39Gravitation
The gravitational potential at a point above the surface of earth is \(-5.12 \times 10^7 \mathrm{~J} / \mathrm{kg}\) and the acceleration due to gravity at that point is \(6.4 \mathrm{~m} / \mathrm{s}^2\). Assume that the mean radius of ear...
MCQ+4 / -12024
40Gravitation
A simple pendulum is placed at a place where its distance from the earth's surface is equal to the radius of the earth. If the length of the string is \(4 m\), then the time period of small oscillations will be __________ s. [take $$g=\pi^2...
INTEGER+4 / -12024
41Gravitation
Escape velocity of a body from earth is \(11.2 \mathrm{~km} / \mathrm{s}\). If the radius of a planet be onethird the radius of earth and mass be one-sixth that of earth, the escape velocity from the planet is :
MCQ+4 / -12024
42Gravitation
At what distance above and below the surface of the earth a body will have same weight. (take radius of earth as \(R\).)
MCQ+4 / -12024
43Gravitation
A planet takes 200 days to complete one revolution around the Sun. If the distance of the planet from Sun is reduced to one fourth of the original distance, how many days will it take to complete one revolution :
MCQ+4 / -12024
44Gravitation
The acceleration due to gravity on the surface of earth is \(\mathrm{g}\). If the diameter of earth reduces to half of its original value and mass remains constant, then acceleration due to gravity on the surface of earth would be :
MCQ+4 / -12024
45Gravitation
Given below are two statements : one is labelled as Assertion (A) and the other is labelled as Reason (R).
Assertion (A) : The angular speed of the moon in its orbit about the earth is more than the angular speed of the earth in its orbit a...
MCQ+4 / -12024
46Gravitation
If $\mathrm{R}$ is the radius of the earth and the acceleration due to gravity on the surface of earth is $g=\pi^2 \mathrm{~m} / \mathrm{s}^2$, then the length of the second's pendulum at a height $\mathrm{h}=2 R$ from the surface of earth ...
MCQ+4 / -12024
47Gravitation
A light planet is revolving around a massive star in a circular orbit of radius $\mathrm{R}$ with a period of revolution T. If the force of attraction between planet and star is proportional to $\mathrm{R}^{-3 / 2}$ then choose the correct ...
MCQ+4 / -12024
48Gravitation
The weight of a body on the earth is \(400 \mathrm{~N}\). Then weight of the body when taken to a depth half of the radius of the earth will be:
MCQ+4 / -12023
49Gravitation
Given below are two statements:
Statement I: If \(\mathrm{E}\) be the total energy of a satellite moving around the earth, then its potential energy will be \(\frac{E}{2}\).
Statement II: The kinetic energy of a satellite revolving in an or...
MCQ+4 / -12023
50Gravitation
The orbital angular momentum of a satellite is L, when it is revolving in a circular orbit at height h from earth surface. If the distance of satellite from the earth centre is increased by eight times to its initial value, then the new ang...
MCQ+4 / -12023