What happens to the force between two objects if the mass of one object is tripled and the other is half?

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.
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What happens to the force between two objects If I mass of one object is tripled II distance between the objects is doubled III masses of both objects are doubled?

(i) Force is directly proportional to the masses of the objects. If the mass of one object is doubled, then the gravitational force will also get doubled. (ii) Force is inversely proportional to the square of the distances between the objects. If the distance is doubled, then the gravitational force becomes one-fourth.
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What happens to the force between two objects if the mass of one object is tripled?

1) As Force is directly proportional to the mass of each object, the force will be doubled. 2) d is doubled, Force will become 1/4th as Force is inversely proportional to the square of distance. d is tripled.
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What happens to the force between two objects if I the mass of one object is doubled II the distance between the objects is doubled?

Solution : As gravitational force between two object, `F prop (m_(1)m_(2))/r^(2)` thereforce, <br> (i) when mass of one object is doubled, the force become twice. (ii) when distance between the objects is doubled, force become `(1//4)` of its previous value.
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What happens to the force between two objects if the mass of one object is halved?

Explanation: Gravitational force between two objects varies directly as their masses and inversely as the square of the distance between them. So, when the masses of both objects are halved without changing the distance, the gravitational force between them would become one-fourth of the original value.
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What happens to the force between two objects if (i) the mass of one object is doubled?



What happens to the force between two objects if the mass of one object is doubled Brainly?

If the mass of one object is doubled, the force of gravitation will also increase as the gravitational force is directly proportional to the mass of the object.
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What will be the change in gravitational force between two bodies if the mass of one body is doubled and other is tripled?

Thus gravitational force becomes 4 times.
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What will happen to the gravitational force between two bodies if the masses of one body is doubled Class 9?

Answer: From the relationship, (i) If the mass of one object (say body 1) is doubled, then Thus, the gravitational force between the two objects gets doubled. (ii) If the distance between the two objects is doubled, then Thus, the gravitational force between the two objects becomes one-fourth.
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What will happen to the gravitational force if the mass of an object increases?

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. So as the mass of either object increases, the force of gravitational attraction between them also increases.
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How does the gravitational force change between two objects when the mass of each is reduced to half?

So, Force of gravitation increases by 4 times when distance reduced by half.
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What is the gravitational force between two 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.
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How does the gravitational force between two bodies change if the distance between them is tripled?

If the separation distance between any two objects is tripled (increased by a factor of 3), then the force of gravitational attraction is decreased by a factor of 9 (3 raised to the second power).
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What will happen to the gravitational force if the masses are doubled and the distance between them is halved?

if the masses of two objects are doubled and the distance between them is halved the gravitational force acting between them becomes 16 times as before.
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How is the gravitational force between two masses affected if the separation between them is doubled?

If the separation distance between two objects isdoubled (increased by a factor of 2), then the force of gravitational attraction is decreased by a factor of 4 (2 raised to the second power). I am assuming you are asking gravitational force of attraction.
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How does gravitational force between two given objects change when distance between them is a doubled and B reduced to one half of its original value?

Ans. The force of gravitation between two objects is inversely proportional to the square of the distance between them therefore the gravity will become four times if distance between them is reduced to half.
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Will there be any change in force if we reduce one of the masses to half?

Thus, force becomes one-fourth as we reduce the masses to half without altering the distances.
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How does the gravitational force between two objects change when the distance between them is reduced to one-fourth?

Distance between the two masses is reduced to one-fourth of the initial value, force of gravitation between them increases to of the initial value.
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What happens to the gravitational force between two objects of their masses do not change but the distance between them becomes four times as much?

Gravitational force is inversely proportional to square of distance. Therefore 4 times further, which means 16times less gravitational force or pull between the bodies. Force decreases by 16 times.
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What happens to the force of attraction between two objects when distance between them is increased to 4 times it's previous value?

2)if distance between them is increased 4 times them force will decrease by 1/16times.
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When two objects are near each other how would increasing one object mass affect it?

Moving the objects closer together will decrease the distance between their centers and increase the gravity between them. Increasing the mass of one or both objects will increase the gravity between them.
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What happens to force when mass is halved?

Explanation: The gravitational force is directly proportional to the product of mass. hence when one of the mass is halved, it is halved as well.
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How does gravity depend on the mass of the two objects?

The force of gravity depends directly upon the masses of the two objects, and inversely on the square of the distance between them. This means that the force of gravity increases with mass, but decreases with increasing distance between objects.
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How does the separation of the masses affect the force between them?

The more separation two objects have, the more the force between them decreases. When mass 1 increases the force between the objects increases. If Mass 2 decreases, the force between the objects decreases.
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What is the relationship between the mass of the objects and the force exerted?

It is summarized by the equation: Force (N) = mass (kg) × acceleration (m/s²). Thus, an object of constant mass accelerates in proportion to the force applied. If the same force is applied to two objects of differ- ent mass, the heavier object has less acceleration than the lighter object (Figure 1).
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What happens to the gravitational force between two objects as they move farther apart?

This force of gravitational attraction is directly dependent upon the masses of both objects and inversely proportional to the square of the distance that separates their centers. This means that as you move away from an object the gravitational force decreases.
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