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Thermal
Thermal Energy: Substance that has energy from the movement of its particles.
For the most part, the movement of particles is the thermal energy of a substance. However, some of the thermal energy has other forms. This is especially noticeable at very low temperatures.
i think the thermal energy increases because thermal energy is the energy which is due to the movement of particles, so when the the particles are released there is more thermal energy(they against each other).
Movement of particles (iron or molecules) from an area of higher concentration to an area.
Thermal
Movement of particles
Thermal Energy: Substance that has energy from the movement of its particles.
For the most part, the movement of particles is the thermal energy of a substance. However, some of the thermal energy has other forms. This is especially noticeable at very low temperatures.
thermal energy is the total energy the body has due to movement of inner molecules, and bonds between them, and heat is the change in thermal energy, when energy goes from body with higher temperature to the one with lower temperature
Movement of particles
i think the thermal energy increases because thermal energy is the energy which is due to the movement of particles, so when the the particles are released there is more thermal energy(they against each other).
Movement of particles (iron or molecules) from an area of higher concentration to an area.
Thermal Energy is the energy that comes from the random motion of the particles the make up a substance. The greater the movement of particles the greater the temperature. Movement. > TemperatureAnswerThe terms, 'thermal energy' and 'heat energy' are obsolete. The modern term for what used to be called 'thermal energy' or 'heat energy' is 'internal energy'. These days, 'heat' is considered not to be a 'form of energy', but energy in transit between a higher temperature to a lower temperature.
Thermodynamics is the study of the relationship between thermal energy and heat and work.
Thermal energy is roughly proportional to temperature.
thermal expansion between particles