it will become three time,
as potential energy=mgh
substitude, h'=3h
than potential energy=mgh'
=mg(3h)
=3(mgh)
=three times original potential energy
The formula for PE = m•g•h, where mis mass in kg, g is acceleration due to gravity, 9.81m/s2, and h is height in meters. If the height of an object is tripled, the PE will triple.ExampleHeight of 2.00 meters:PE = 2.00kg x 9.81m/s2 x 2.00m = 39.2 JoulesTriple the height to 6.00 meters:PE = 2.00kg x 9.81m/s2 x 6.00m = 118 JoulesPE is tripled:39.2 Joules x 3 = 118 Joules
Gravitational potential energy depends on the difference of height. If the length of the ramp is changed, but the endpoints have the same difference in height, there won't be any change in gravitational potential energy. If, on the other hand, the change is done in a way that the height does change, then gravitational potential energy will also change.
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.
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.
You can change the gravitational potential energy of an object by altering its height or the strength of the gravitational field it is in. Increasing the height or the strength of the gravitational field will increase the gravitational potential energy, while decreasing either will decrease the gravitational potential energy.
The formula for PE = m•g•h, where mis mass in kg, g is acceleration due to gravity, 9.81m/s2, and h is height in meters. If the height of an object is tripled, the PE will triple.ExampleHeight of 2.00 meters:PE = 2.00kg x 9.81m/s2 x 2.00m = 39.2 JoulesTriple the height to 6.00 meters:PE = 2.00kg x 9.81m/s2 x 6.00m = 118 JoulesPE is tripled:39.2 Joules x 3 = 118 Joules
The change in potential energy is equal to mass*gravity*change in height
Gravitational potential energy depends on the difference of height. If the length of the ramp is changed, but the endpoints have the same difference in height, there won't be any change in gravitational potential energy. If, on the other hand, the change is done in a way that the height does change, then gravitational potential energy will also change.
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.
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.
You can change the gravitational potential energy of an object by altering its height or the strength of the gravitational field it is in. Increasing the height or the strength of the gravitational field will increase the gravitational potential energy, while decreasing either will decrease the gravitational potential energy.
when the position of the BALL is changed WITH RESPECT TO HEIGHT then P.E change in to K.E
more often than not, potential energy is calculated, not measured, based on which means of energy conversion you are looking for. Potential energy released by falling is not the same as potential energy of a nuclear reaction, although the same object can do both
The formula for potential energy is: G.P.E. (gravitational potential energy) = Weight x Height
Not sure what you mean by "this height". An object's potential energy is equal to:gravitational potential energy = mass x gravity x height
Doubling the mass of an object would double its potential energy as long as the height or position of the object remains constant. Potential energy is directly proportional to mass when height is a constant factor.
No.