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Weight x Height = Potential energy

The units and the calculation are the same as for work. Work is force through a distance. Get the weight in the SI by multiplying the mass in kilograms by the acceleration due to gravity on earth like so:
1.00 Kg x 9.81 m/s2 = 9.81 Newton


The gravitational potential energy of a 1.00 Kg mass lifted 1.00 meter on earth will be:

1.00 Kg x 9.81 m/s2 x 1.00 m = 9.81 J

In the SI, you will give the answer in Newton meters or Joules

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14y ago
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14y ago

PE = mgh, that is, mass x gravitation x height. Or simply weight times height, since weight is already equal to mass times gravitation.

On Earth, you would usually use 9.8 (meters per second square) for gravitation.

If mass is in kg., gravitation in meters per second square, and height in meters, then the result will be in Joule.

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Q: What is the formula you use to determine the gravitational potential energy of an object?
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Related questions

What determine the gravitational potential enerygy of an object?

Look at the formula for gravitational potential energy. The clues are all there.


What formula do you use to determine the Gravitational potential energy of an object?

Gravitational potential energy = (weight of the object) x (height) or Potential energy = (mass) x (acceleration of gravity) x (height)


How can you determine a objects potential energery?

If you mean gravitational potential energy, you use the formula PE = mgh (potential energy = mass x gravity x height).


How do you find the gravitational potential energy?

Gravitational Potential Energy is equal to Potential Energy therefore the formula for GPE (Gravitational Potential Energy) is PE=mass x gravity x height therefore the formula is PE=mgh


What are the three quantities that determine gravitational potential energy?

The three quantities that determine gravitational potential energy are the object's mass (m), the acceleration due to gravity (g), and the object's height above a reference point (h). Gravitational potential energy (U) is given by the formula U = mgh.


What is the formula use to determine the gravitation potential energy of an object?

The formula to determine the gravitational potential energy of an object is PE = mgh, where m is the mass of the object, g is the acceleration due to gravity, and h is the height of the object above a reference point.


What do factors determine gravitational potential energy?

The factors that determine gravitational potential energy are the object's mass, the acceleration due to gravity, and the height the object is raised to. Gravitational potential energy is directly proportional to the mass of the object and the height it is raised, and is also affected by the strength of the gravitational field.


What two factors determine potential gravitational energy?

Weight and height


What properties of an object determine its gravitational potential energy?

The two main properties that determine an object's gravitational potential energy are its mass and its height above a reference point, such as the ground. The gravitational potential energy of an object increases with its mass and how high it is raised above the reference point.


How is the height of an object related to its potential energy?

The formula for potential energy is: G.P.E. (gravitational potential energy) = Weight x Height


How do I calculate the gravitational potential energy gain?

Gravitational potential energy gain can be calculated using the formula: PE = mgh, where m is the mass of the object, g is the acceleration due to gravity (approximately 9.81 m/s^2 on Earth), and h is the height the object is lifted to. Simply multiply the mass, gravitational acceleration, and height to determine the gravitational potential energy gain.


Which two variables determine the gravitational potential energy of an object?

The gravitational potential energy of an object is determined by its height above a reference point and the acceleration due to gravity. The formula for gravitational potential energy is PE = mgh, where m is the mass of the object, g is the acceleration due to gravity, and h is the height of the object above the reference point.