that question makes no sence
because it converts thermal energy to mechanical works
When chemical bonds are broken in a chemical reaction, the energy stored in those bonds is released as thermal energy, leading to an increase in temperature. This process involves the conversion of chemical energy into heat.
Thermal energy is the total energy of particles in a substance, while temperature is a measure of the average kinetic energy of those particles. In other words, thermal energy is the total energy present in a substance, while temperature is a measure of how hot or cold it is.
Thermal energy is the total energy of all the particles in an object, while temperature is a measure of the average kinetic energy of those particles. In simpler terms, thermal energy is the total amount of energy in an object, while temperature is a measure of how hot or cold it is.
When solar light is absorbed by a material (usually dark colored when dealing with capturing solar energy) it is converted to thermal energy (heat). This can then be transferred by air, water, or conduction. I suppose if you think of heat as the excitation level of molecules in a substance. Then the absorption of photons would increase the excitation of those molecules.
Thermal energy is the total energy of all the particles in an object, while temperature is a measure of the average kinetic energy of those particles. In simpler terms, thermal energy is the total amount of energy in an object, while temperature is a measure of how hot or cold it is.
"Thermal energy" or "heat"."Thermal energy" or "heat"."Thermal energy" or "heat"."Thermal energy" or "heat".
Conduction is the transfer of thermal energy through direct contact of molecules. Convection is the transfer of thermal energy through the movement of fluids like liquids or gases. Radiation is the transfer of thermal energy through electromagnetic waves. Together, they enable heat to be transferred from one object to another.
Thermal energy refers to the total kinetic and potential energy of particles within a substance, whereas temperature is a measure of the average kinetic energy of those particles. Thermal energy depends on the amount of matter present, while temperature is an intensive property that does not depend on the size of the system.
The thermal energy.The thermal energy.The thermal energy.The thermal energy.
thermal conductivity The term for how substances conduct thermal energy is thermal conductivity.
There is no particular difference between heat and thermal energy. Heat is a form of thermal energy. Since thermal energy is energy from heat, heat and thermal energy are basically the same thing.