What will be the gravitational force between two bodies if the masses of both are tripled keeping the distance between them constant?

What will be the gravitational force between two bodies if the masses of both are tripled keeping the distance between them constant?

Thus, the gravitational constant ‘G’ is numerically equal to the gravitational force ‘F’ when two masses of 1kg are separated by 1meter. Value of G on other planets: The value of G anywhere in the universe is 6.67 x 10-11. It is because G is universal constant and its value remains same everywhere in the universe.

What happens to the gravitational force between two objects if the mass between them is doubled?

When the mass of an object is doubled then the force between them is doubled. When the masses of both objects are doubled then the force between them is four times.

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How does distance affect gravitational attraction?

Since gravitational force is inversely proportional to the square of the separation distance between the two interacting objects, more separation distance will result in weaker gravitational forces. So as two objects are separated from each other, the force of gravitational attraction between them also decreases.

How does mass affect the gravitational attraction between objects?

His law of universal gravitation says that the force (F) of gravitational attraction between two objects with Mass1 and Mass2 at distance D is: F = G(mass1*mass2)/D squared. (G is the gravitational constant, which has the same value throughout our universe.) Einstein’s theory of relativity adds to this.

What happens to the gravitational force between two objects if?

What happens if distance is triple the force of gravity?

If distance is tripled, the new equat The force of gravitational attraction between two bodies is directly proportional to the product of their masses and is inversely proportional to the square of the distance between them. The constant of proportionality is called the “Universal Gravitational Constant”, and is denoted by ‘G’.

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What is the force of attraction between two objects?

As per the universal law of gravitation, every object in the universe attracts every other object by the force of attraction which is directly proportional to the product of masses of the objects and is inversely proportional to the square of the distance between them. This is mathematically given as: F = G (mM/d 2)

What happens when the distance between two objects is doubled?

So if the distance between two objects is doubled then the gravitational force of attraction between them is reduced to one fourth of its original value. Similarly f the distance between two objects is tripled , then the gravitational force of attraction becomes one ninth of its original value.

What happens to the force when mass is doubled?

According to the universal law of gravitation, the force between 2 objects (m1 and m2) is proportional to their plenty and reciprocally proportional to the sq. of the distance (R) between them. If the mass is doubled for one object. F = 2F, so the force is also doubled. Force thus becomes one-fourth of its initial force.

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