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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.

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1y ago

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The total potential and kinetic energy of all microscopic particles in an object make up its?

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.


Is it true or false that temperature is the total energy in all of the particles in an object?

nope. ther'es protons and electrons to worry about too


When particles of an object move faster its thermal energy increases?

Yes, as particles of an object move faster, their kinetic energy increases, leading to an increase in thermal energy. Thermal energy is the total kinetic energy of all the particles in an object; therefore, an increase in particle speed results in a higher thermal energy.


What the definition of The sum of the kinetic and potential energy of all the particles that make up an object?

The sum of the kinetic and potential energy of all the particles that make up an object is referred to as the total mechanical energy of the object. This energy accounts for both the motion (kinetic energy) and position (potential energy) of the particles within the object. It remains constant in the absence of external forces, according to the principle of conservation of energy.


What is the difference between thermal energy and temperature?

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.

Related Questions

The total potential and kinetic energy of all microscopic particles in an object make up its?

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.


What is the total of all particles in an object?

It is its thermodynamic energy.


What is the total energy of all the particles in object called?

potential energy


What is the total energy of the motion of all the particles of an object?

Kinetic energy


What is the total energy of the motion of all particles in an object?

Kinetic energy


What energy is the total energy of motion of all the particles in an object?

Kinetic energy


What makes up the the total potential and kinetic energy of all the microscopic particles in an object?

The sum of total energies of all microscopic particles is equal to the internal energy of that object.


Is it true or false that temperature is the total energy in all of the particles in an object?

nope. ther'es protons and electrons to worry about too


Is temperature the total energy in all the particles in an object?

yes


What is the total energy of all the particles in an object called?

potential energy


What is the total potential and kinetic energy of all microscopic particles in an object?

The total potential energy of all microscopic particles in an object is due to the interatomic forces between them, which can be significant in solid and liquid states. The total kinetic energy of the particles is associated with their random motion, which increases with temperature. Both potential and kinetic energies contribute to the overall internal energy of the object.


What energy is the total energy of all particles of an object?

kinetic