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But the "chemical potential" of the ice remains the same.
Here, the chemical potential has been defined as the energy per molecule.
There is discontinuity in the chemical potential at each such point.
The chemical potential is like a force which pushes an increase in particle number.
At 0 C. this "chemical potential" of the ice and the water are equal to each other.
Each of these can have an associated chemical potential.
As described above, when describing chemical potential, one has to say "relative to what".
Remember, I said that "chemical potential" increases with increasing temperature.
The generalized force component of this pair is the chemical potential.
Chemical potential plays an especially important role in semiconductor physics.
However, some systems contain important variables that are equivalent to the chemical potential.
He proved that at the triple point all 3 phases have the same chemical potential.
As a result, the chemical potential of the black body photon gas is zero.
Most of them, however, can be safely interpreted as chemical potentials.
Therefore the chemical potential of photons is always and everywhere zero.
This definition can also be written in terms of the chemical potential:
The driving force of moisture movement is chemical potential.
Accordingly a current is produced even if the reservoirs have the same temperature and chemical potential.
Food that we eat has chemical potential energy.
Additionally, the quantity is identified as a chemical potential.
The former is related to the chemical potential, .
This leads to a change in its chemical potential, and for fluids:
For this purpose, let us the representation of the activity through the chemical potential:
It follows that the sum of chemical potentials is also zero.
In these cases, it is necessary to state the law in terms of chemical potentials.