the altitude
The stored energy an object has as a result of its height above the ground is called potential energy. This energy is related to the object's position in a gravitational field and is dependent on its mass and height above a reference point.
If you double the height of an object, its gravitational potential energy will also double. Gravitational potential energy is directly proportional to the height of an object above a reference point.
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.
PE=mgh. Potential energy is the product of mass x gravity x height.
Gravitational potential energy depends on the height of an object above a reference point and the mass of the object.
On the object's weight and height above the chosen reference level (for example, above ground level).On the object's weight and height above the chosen reference level (for example, above ground level).On the object's weight and height above the chosen reference level (for example, above ground level).On the object's weight and height above the chosen reference level (for example, above ground level).
The stored energy an object has as a result of its height above the ground is called potential energy. This energy is related to the object's position in a gravitational field and is dependent on its mass and height above a reference point.
If you double the height of an object, its gravitational potential energy will also double. Gravitational potential energy is directly proportional to the height of an object above a reference point.
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.
PE=mgh. Potential energy is the product of mass x gravity x height.
Gravitational potential energy depends on the height of an object above a reference point and the mass of the object.
Potential Energy is calculated by the product of the mass of the object ( not weight! ), the gravitational acceleration ( 9.81 m/s/s ) and the height of the object above a datum. mass x 9.81 x height
Height and mass
The two factors that affect how much gravitational potential energy (GPE) an object has are its mass and its height above the reference point where GPE is defined. The higher the object is positioned above the reference point and the greater its mass, the more GPE it will possess.
Gravitational PE = mgh (mass x gravity x height)
Gravitational potential energy is the energy an object possesses due to its position in a gravitational field. It is related to the height of the object above a reference point and is defined as the work done to lift the object to that height against gravity. This energy can be converted into kinetic energy as the object falls back towards the reference point.
The form of energy that an object possesses based on its height relative to a reference point is potential energy.