kenetic energy
Potential energy is stored energy capable of doing work. Since energy is general comes from the food we eat, so does potential energy.
Its a transformation of kinetic energy to potential energy.
One form of energy that comes from chemical bonds is chemical energy. This energy is stored in the bonds of molecules and is released when these bonds are broken during a chemical reaction. It is a common form of energy found in fuels like gasoline, food, and batteries.
The potential energy in a stretched rubber band comes from the work or force applied to stretch it. When the rubber band is stretched, it stores potential energy in the form of elastic potential energy, which can be released when the band is allowed to snap back to its original shape.
when a car drive up a hill it gains potential energy and when it comes down the hill it gains kinetic energy.
The bowling ball has both kinetic and potential energy as it rolls towards the pins. The kinetic energy comes from its motion, while the potential energy comes from its position relative to the ground.
When climbing up a rope ladder, the potential energy of the person increases as they gain height. This increase in potential energy comes from the conversion of the person's muscle energy into gravitational potential energy.
The sun has both kinetic and potential energy. The kinetic energy comes from the constant nuclear reactions happening within its core, while the potential energy is derived from the gravitational forces holding the sun's mass together.
Think about a battery-powered motor. (Granted, the energy is originally chemical potential, but it is transferred to electrical potential when it comes out of the battery.)
Potential chemical energy is released as electrical energy when the external circuit is connected.
a spring possesses elastic potential energy when compressed or stretched.
The energy of a ball rolling down a hill is a combination of its kinetic energy, which comes from its motion, and potential energy, which comes from its position in the gravitational field. As the ball rolls down the hill, its potential energy decreases and is converted into kinetic energy, resulting in an increase in its speed.