Examples of 'energy of a system' in a sentence
Meaning of "energy of a system"
energy of a system - In physics, particularly thermodynamics, this phrase refers to the total amount of energy contained within a system, including kinetic and potential energy. It is a key concept in understanding the behavior and properties of systems
How to use "energy of a system" in a sentence
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energy of a system
The mechanical energy of a system is always conserved.
Mechanical energy is the total energy of a system.
The potential energy of a system of four particles.
The change in the internal energy of a system.
The total energy of a system can not change.
Temperature is a measure of the average internal energy of a system.
The energy of a system due to its position or condition.
Gravitational potential energy of a system of particles.
Energy of a system of charges.
The internal energy of a system.
A calorimeter is a device that measures and define the internal energy of a system.
It is the energy of a system at a temperature of zero.
E is the internal energy of a system.
The internal energy of a system is found to increase with increase in temperature.
The sum of the kinetic energy and the potential energy of a system.
See also
The kinetic energy of a system.
If the energy of a system is reduced, the total mass of the system is reduced.
The variables required to determine the internal energy of a system are obtained experimentally.
The thermal energy of a system scales with its size and is therefore an extensive property.
Law that states that the total mechanical energy of a system is constant.
The internal energy of a system can change only by work.
Explain the conditions where the assumption of total mechanical energy of a system is conserved.
Internal energy of a system is.
I have already told you multiple times that big, uppercase U is the internal energy of a system.
Regulating energy of a system.
Entropy is more a measure of the " usefulness " of the energy of a system.
The change in internal energy of a system when the pressure is constant.
We define U = the total internal energy of a system.
The total energy of a system and its surroundings is conserved by the First Law.
In the absence of any external forces, the total energy of a system remains constant.
The internal energy of a system can be decreased by,.
Internal Energy, The total energy of a system.
The internal energy of a system may change when,.
Hence, binding energy of a system of two particles separated by a distance r is equal to.
The law states that the total energy of a system plus its surroundings remains constant.
The total energy of a system and its surroundings is always constant ( The conservation of energy ).
In thermodynamics, the internal energy of a system is the total energy contained within the system.
The total energy of a system is sometimes called the Hamiltonian, after William Rowan Hamilton.
If the thermal energy of a system is increasing, the system is warming up.
Macroscopically, the thermal energy of a system at a given temperature is proportional to its heat capacity.
The internal energy of a system depends only on its temperature, pressure, and volume.
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