elastic potential energy
Potential energy in the form of elastic potential energy increases when you compress a spring. As the spring is compressed, it stores potential energy that can be released when the spring returns to its original position.
The type of energy that increases when an object becomes warmer is thermal energy. This is the internal energy of a system due to the movement of its particles.
As a ball falls, its potential energy decreases as it converts to kinetic energy. As it moves closer to the ground, its kinetic energy increases at the expense of potential energy.
Gravitational potential energy increases as height increases. This is because the higher an object is lifted against gravity, the more potential energy it possesses due to its position in the gravitational field.
Potential energy increases height. When an object is lifted to a higher position, its potential energy increases because it has the ability to do work as it falls back down due to gravity.
Potential energy in the form of elastic potential energy increases when you compress a spring. As the spring is compressed, it stores potential energy that can be released when the spring returns to its original position.
The type of energy that increases when an object becomes warmer is thermal energy. This is the internal energy of a system due to the movement of its particles.
As a ball falls, its potential energy decreases as it converts to kinetic energy. As it moves closer to the ground, its kinetic energy increases at the expense of potential energy.
gravitational potential energy
Thermal Energy
thermal energy.
Gravitational potential energy increases as height increases. This is because the higher an object is lifted against gravity, the more potential energy it possesses due to its position in the gravitational field.
Potential energy increases height. When an object is lifted to a higher position, its potential energy increases because it has the ability to do work as it falls back down due to gravity.
Kinetic energy is the type of energy associated with movement. It is the energy an object possesses due to its motion. As an object moves, its kinetic energy increases.
True, according to the principle of conservation of energy, in an isolated system, energy can neither be created nor destroyed, only transferred or converted from one form to another. Therefore, if the amount of one type of energy increases, another type of energy in the system must decrease to maintain the total energy constant.
It is produced by converting some other type of energy into potential energy. For example, it takes an effort to lift an object up (against the force of gravitation) or to compress a spring.
The relationship between temperature and the type of energy possessed by a system is that temperature is a measure of the average kinetic energy of the particles in a system. As temperature increases, the kinetic energy of the particles also increases. This increase in kinetic energy can lead to a change in the type of energy possessed by the system, such as thermal energy (heat) or potential energy.