newten force
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.
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.
the grvitational pull of an object depents on its mass and density for power.
No, an object's mass does not change when it is on the moon. Mass is a measure of the amount of matter in an object and does not depend on the gravitational field. However, an object's weight will be less on the moon due to the moon's weaker gravitational pull.
The gravitational forces associated with an object depend on the object's mass, but they don't depend at all on the substance the object is made of.
Mass is the amount of matter in an object. Weight is is the gravitational force on that matter.
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.
The measure that describes the amount of gravitational force of an object is its mass. Mass is a fundamental property of matter that determines the amount of gravitational force it exerts on other objects. The greater the mass of an object, the stronger its gravitational force.
Mass to the object.
scale
Mass is the amount of 'stuff' in an object. Weight is the amount of gravitational pull needed to pull the object towards the Earth. The mass of something never changes where the weight of something does, depending on the amount of gravitational pull a planet has. I hope this was helpful :)
The mass of an object doesn't depend on the gravitational force on the object.