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There is no distance from Earth where the force of gravitational attraction toward it is 'inactive'.

The formula for the forces of gravity gives the magnitude of the force at any distance.

Note: Any distance.

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12y ago

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At what height in kilometers above the surface of the Earth is there a 4 percent difference between the approximate gravitational force mg and the actual gravitational force on an object?

At what height in kilometers above the surface of the Earth is there a 4% difference between the approximate gravitational force mg and the actual gravitational force on an object


How can you change the gravitational potential energy of an object?

You can change the gravitational potential energy of an object by changing its height relative to the surface of the Earth. Increasing the height will increase the gravitational potential energy, while decreasing the height will decrease it.


What is potential energy called that depends on height?

Gravitational potential energy - it depends on the distance from the centre of gravity, so on Earth it depends on the height above the Earth's surface


How do the mass and height of an object affect the gravitational potental energy?

The gravitational potential energy of an object increases with both its mass and height. As the mass of an object increases, so does its gravitational attraction to the Earth, resulting in higher potential energy. Similarly, as the height of an object increases, it has more gravitational potential energy due to being further from the Earth's surface.


On earth the weight an height of an object give an object what type of potential energy?

The weight and height of an object on Earth give it gravitational potential energy. This type of potential energy is based on the object's position in a gravitational field relative to the surface of the Earth.


What variables affect Gravitational potential energy?

The variables that affect gravitational potential energy are the object's mass, the height at which the object is lifted, and the strength of the gravitational field (usually constant near the surface of the Earth).


Why is the gravitational potential energy of an object 1 meter above the Moon's surface less than its potential energy 1 meter above Earth's surface?

The gravitational potential energy of an object is determined by the mass of the object, the acceleration due to gravity, and the height. The Moon has a lower mass and weaker gravitational pull compared to Earth, resulting in less gravitational potential energy for an object at the same height above their surfaces.


What two factors determine an object's gravitational potential enetgy?

Gravitational potential energy = mgh, where m is mass, g is the acceleration due to gravity, and h is the height above earth's surface. For objects far away from the surface, GPE = GMm/r, where G is a constant, M is the mass of one body, m is the mass of the other, and r is the distance between their centers of mass.


The amount of gravitational potential energy that an object has depends on its weight and?

Weight, height above the ground level (or other reference level), the strength of the gravitational field.Weight, height above the ground level (or other reference level), the strength of the gravitational field.Weight, height above the ground level (or other reference level), the strength of the gravitational field.Weight, height above the ground level (or other reference level), the strength of the gravitational field.


Energy at a height is called what?

Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.Energy related to the height of an object is gravitational potential energy.


What are the two factors that determine gravitational potential energy?

The two variables that determine gravitational potential energy are height above earths surface mass (also air resistance may come into play but in physics friction and air resistance are usually ignored and)


What two variables does gravitational energy depend on?

Gravitational energy depends on the masses involved and their distances. For a small (relative to planet-sized masses) mass in a gravitational field, the gravitational potential energy is equal to mgh, where m is the mass of the small mass, g is the gravitational acceleration in the gravitational field, and h is the height of the small mass above the reference surface. This is exactly analogous to the above situation except that the distance has been changed to height above a reference surface in the large (planetary) mass' gravitational field.