The total energy of an object depends mainly on the mass of the particular object and the bond formation, and conditions such as temperature, pressure etc.
The thermal energy of an object is the total kinetic energy of its particles due to their motion and the temperature of the object. It is a measure of the object's internal energy and is directly related to its temperature.
The total penitential energy of the particles in an object is the sum of the gravitational potential energy of each particle. The kinetic energy of the particles in an object is the sum of the kinetic energy of each particle. The total energy of the particles is the sum of the penitential and kinetic energy.
Internal energy.
The total energy in all the particles of an object is the sum of their kinetic energy (energy of motion) and potential energy (stored energy due to position or state). This total energy is known as the internal energy of the object.
In microscopic particles it's called internal energy. In macroscopic particles it's called thermodynamic energy.
The total energy of how quickly the particles that make up an object are moving is called kinetic energy. It is directly related to the speed of the particles and their mass, and it is a component of the object's total mechanical energy.
The total potential and kinetic energy of all microscopic particles in an object make up its internal energy. This includes the energy associated with the motion and interactions of the particles within the object.
Internal energy.
Thermal energy
Kinetic energy
It is its thermodynamic energy.
Yes.