Universal Law of Gravitation
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What is the value of G in force of an gravity
If the distance between the Earth and the Sun were half its present value, the approximate number of days in a year on the Earth would have been:
182.5 days
129 days
64.5 days
730 days
All the planets move around the sun in a
Circular path
Rectangular path
Elongated path
Two spheres of masses m and M are situated in air and the gravitational force between them is F. The soace around the masses are now filled with a liquid of specific gravity 3. The gravitational force will now be:
F/3
F/9
3F
F
- Nm2kg−2
- Nm−2kg2
- Nm2kg2
- Nm−2kg−2
The value of gravitational constant, G is
9.8 m s−2
6.7 N
6.7×10−11 Nm2kg−2
6.7×10−11 Nm2kg2
Define universal gravitational constant. Does the value of G change with a change in mass and distance?
A body weighs 72 N on the surface of the earth. What will be the force of gravity acting on the body at a height equal to half the radius of the earth above the earth's surface?
32 N
20 N
10 N
0
What is the magnitude of the gravitational force between the earth and a 1 kg object on its surface? (Mass of the earth is 6×1024 kg and radius of the earth is 6.4×106 m)
A solid sphere of mass and radius has a spherical cavity of radius such that the centre of the cavity is at a distance of from the centre of the sphere. A point mass is placed inside the cavity at a distance of from the centre of the sphere. The gravitational pull between the sphere and the point mass is
Write the mathematical equation for Newtons law of gravitation.
Write the formula to find the magnitude of the gravitational force between the earth and an object on the surface of the earth. [2 MARKS]
Why is the gravitational law called the universal law of gravitation?
The mass density of a planet of radius varies with the distance from its center as. Then the gravitational field is maximum at:
- Nm−2Kg−2
- Nm3Kg2
- Nm2Kg−2
- NmKg−2