the heat will just be absorbed by the environment. It may be converted into electricity. It may be absorbed by heavy run machines. etc.
Thermal energy
When energy is released back into the environment, it can take various forms such as heat, light, sound, or motion energy. This can happen through processes like combustion, radiation, or mechanical work, depending on the source of energy and how it is being used. The type of energy released will depend on the specific context and mechanisms involved.
it is transfered or turned into waste thermal energy
A substance gains thermal energy when it absorbs heat from its surroundings. This can happen through various processes, such as conduction, convection, or radiation. The thermal energy causes the particles in the substance to move faster, increasing its temperature.
the particles in a gas lose enough thermal energy to form a liquid.
A decrease in thermal energy can occur when heat is transferred from an object to its surroundings, causing a loss in temperature. This could happen through conduction, convection or radiation as the object releases heat energy to its cooler surroundings, resulting in a decrease in thermal energy.
You have to have two objects at different temperatures near each other, when two or more objects have the same temperature.
The movement of energy from a warmer object to a cooler object is called heat transfer. This process occurs until both objects reach a thermal equilibrium where their temperatures are equal. Heat transfer can happen through conduction, convection, or radiation.
If an object gains thermal energy, its temperature will increase. This is because thermal energy is directly related to the average kinetic energy of the particles that make up the object. As the particles move faster and vibrate more vigorously, the temperature of the object will rise.
Thermal energy transfers from the warmer object.
Thermal velocity occurs in situations where particles have random kinetic energy due to their temperature. This can happen in gases, liquids, or solids when the particles are vibrating or moving randomly. Thermal velocity is a measure of the average speed of the particles in a substance due to their thermal energy.
In a car engine, the chemical energy stored in the gasoline is converted to thermal energy through combustion. The thermal energy is then converted to mechanical energy as the pistons move and drive the vehicle. Finally, the mechanical energy is transferred to the wheels to propel the car forward.