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What happens to the magnitude of the force of gravitation between two objects if mass of both object is doubled?

What happens to the magnitude of the force of gravitation between two objects if mass of both object is doubled?

Since the gravitational force is directly proportional to the mass of both interacting objects, more massive objects will attract each other with a greater gravitational force. If the mass of both of the objects is doubled, then the force of gravity between them is quadrupled; and so on.

What happens to the magnitude of the force of gravitation between two objects if mass of both the objects is tripled?

Explanation: Answer: Explanation: a) if the mass of one object is tripled, then the gravitational force between them is tripled.

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What happens to the magnitude of the force of gravitation between two objects if a distance between the objects is tripled B mass of both object is doubled?

When the distance between the objects is tripled then force between them is one ninth. When the masses of both objects are doubled then the force between them is four times.

What happens to the magnitude of the force of gravitation between two objects if a distance between the object is halved?

When distance between objects is halved, gravitational force becomes four times.

What happens to the magnitude of the force between the objects?

Gravitational force -an attractive force that exists between all objects with mass; an object with mass attracts another object with mass; the magnitude of the force is directly proportional to the masses of the two objects and inversely proportional to the square of the distance between the two objects.

What happens to the magnitude of force of gravitation between two objects when?

Ans: (i) When the mass of either body is doubled, the force is also doubled as per the following equation: (ii) When the distance between the objects is doubled, the force becomes one fourth of the original force as per the following equation: Similarly it can be shown that when the distance between the objects is …

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What happens to the magnitude of the gravitational force as the distance between two bodies increase?

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.

What is the magnitude of gravitational force?

The body will exert an equal force of attraction of 9.8 N on the Earth.

What is the relationship between force of gravity and distance?

The inverse relationship between the force of gravity and the distance between two objects is based on the square of that distance. This means that if the distance is Tripled, the gravitational force is decreased by a factor of 9. This is because the square of 3 is 3 x 3, which equals 9.

What happens when the distance between two objects is doubled?

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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 gravitational force if R is triple?

According to Newton’s law of universal gravitation the gravitational force between two particles ( or objects which in given situation can be regarded as particles) of masses m andM separated by distance r is given by F=GmM/r^2. G is universal constant of gravitation. Keeping m and M constant if r is tripled then force will reduce nine times.

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.