Potential energy can be calculated by the equation U ( which is the potential energy) = mgh, where m is hte mass, g is gravity, and h is the height of the object above the point where h=0 (often the ground). So, as long as h does not equal zero (imagine the man sandin on a cliff above sea leve, which is h=0) then he will have potential energy.
Yes, thermal energy can possess potential energy when it is stored in a system and has the potential to do work.
Yes, a stationary body can possess potential energy. Potential energy is the energy that an object has due to its position or configuration and can be stored in various forms such as gravitational potential energy, elastic potential energy, or chemical potential energy.
It has potential energy but when it is in movement it will possess kinetic energy
Yes, every stationary body possesses potential energy due to its position within a gravitational field. This potential energy can be converted into kinetic energy when the body moves.
gravitational potential energy
object having height possess potential energy.Object having motion possess kinetic energy.
kinetic energy
No, not all objects have potential energy. Potential energy is the energy an object has due to its position or state, such as gravitational potential energy or elastic potential energy. Objects that are stationary or lack any form of potential energy do not possess it.
Air can possess potential energy when it is at a higher elevation, which gives it gravitational potential energy. This energy can be converted into kinetic energy as the air moves downward. Atmospheric pressure differences can also store potential energy within air masses.
Yes, a charged battery possesses potential energy due to the stored electrical energy within it.
At the bottom , where all potential energy has been converted to kinetic
The chemical energy that substances possess because of their composition and position is a form of potential energy. This energy is stored within the chemical bonds of molecules and can be released through chemical reactions.