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The gravitational force varies directly as the mass and inversely as the square of the distance.

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What affects the gravitational pull between two objects?

The mass of the first object; the mass of the second object; the distance between them.The mass of the first object; the mass of the second object; the distance between them.The mass of the first object; the mass of the second object; the distance between them.The mass of the first object; the mass of the second object; the distance between them.


What is the relationship between static acceleration and an object's position in a gravitational field?

The relationship between static acceleration and an object's position in a gravitational field is that the static acceleration of an object in a gravitational field is constant and does not change with the object's position. This means that the object will experience the same acceleration due to gravity regardless of where it is located within the gravitational field.


The amount of gravitational attraction between the earth and an object depends on the objects distance from the earth and what else?

The amount of gravitational attraction between the Earth and an object depends on the object's distance from the Earth and the masses of both the object and the Earth. The gravitational force decreases as the distance between the object and Earth increases, following the inverse square law.


What statement is true of the relationship between distance and gravity?

The force of gravity decreases with distance according to the inverse square law. This means that the force of gravity weakens as distance increases. In other words, the farther an object is from another object, the weaker the gravitational pull between them.


How is the gravitational force FG related to the distance between objects?

The gravitational force (FG) is inversely related to the square of the distance between objects. This means that as the distance between objects increases, the gravitational force decreases. Mathematically, the relationship is described by the inverse square law: FG ∝ 1/d^2, where d is the distance between the objects.

Related Questions

What affects the gravitational pull between two objects?

The mass of the first object; the mass of the second object; the distance between them.The mass of the first object; the mass of the second object; the distance between them.The mass of the first object; the mass of the second object; the distance between them.The mass of the first object; the mass of the second object; the distance between them.


What is the relationship between static acceleration and an object's position in a gravitational field?

The relationship between static acceleration and an object's position in a gravitational field is that the static acceleration of an object in a gravitational field is constant and does not change with the object's position. This means that the object will experience the same acceleration due to gravity regardless of where it is located within the gravitational field.


The amount of gravitational attraction between the earth and an object depends on the objects distance from the earth and what else?

The amount of gravitational attraction between the Earth and an object depends on the object's distance from the Earth and the masses of both the object and the Earth. The gravitational force decreases as the distance between the object and Earth increases, following the inverse square law.


Is the greater an objects velocity the stronger the gravitational force on it?

No, the strength of the gravitational force on an object depends on the masses of the objects and the distance between them, not the object's velocity. The velocity affects the object's motion in the gravitational field, but not the strength of the gravitational force acting on it.


What statement is true of the relationship between distance and gravity?

The force of gravity decreases with distance according to the inverse square law. This means that the force of gravity weakens as distance increases. In other words, the farther an object is from another object, the weaker the gravitational pull between them.


What is the result of the mass of the object and the distance that affect the amount of gravitational force between two objects in space?

mass and distance form an inverse relationship when related to gravity. The larger the mass(es) the greater the gravitational pull. The closer the distance, the greater the gravitational pull.


How is the gravitational force FG related to the distance between objects?

The gravitational force (FG) is inversely related to the square of the distance between objects. This means that as the distance between objects increases, the gravitational force decreases. Mathematically, the relationship is described by the inverse square law: FG ∝ 1/d^2, where d is the distance between the objects.


The amount of gravitational pull an object exerts depends on what?

the grvitational pull of an object depents on its mass and density for power.


Gravitational force varies inversely to square of distance from earth center?

Yes, the gravitational force between two objects decreases as the square of the distance between their centers increases. This relationship is described by Newton's law of universal gravitation. Therefore, if the distance from the Earth's center increases, the gravitational force experienced by an object decreases.


The amount of gravitational force between two objects depends on their masses and the what between them?

Gravitational force depends on the masses of both objects and the distance between them. The formula is Gravitational Force = 6.67428 * 10^-11 * Mass of First Object * Mass of Second Object / Distance^2.


What is the relationship between the distance of the object and the screen?

my sinep


What are two factors that determine an object's gravitational force on other objects?

The two factors that determine an object's gravitational force on other objects are the mass of the object and the distance between the objects. The greater the mass of an object, the stronger its gravitational force. Additionally, the closer two objects are to each other, the stronger the gravitational force between them.