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The electrochemical potential of electrons in a solid is called the Fermi level.
In practice, the electrochemical potential of electrons is even more important than the chemical potential.
Also, the electrochemical potentials of the electrons within the two metals will be the same.
Electrochemical potential is measured in the laboratory and field using reference electrodes.
As such, in most cases, the spontaneous potential measured is only related to the electrochemical potential.
The electrochemical potential is used as energy storage.
The equality of the electrochemical potential between the two different phases in contact can be written as:
A similar ambiguity exists between the terms "chemical potential" and "electrochemical potential".
Electrochemical potential is expressed in the unit of J/mol.
The difference of electrochemical potentials can be interpreted as a type of potential energy available for work in a cell.
(In electrochemistry terminology, "the electrochemical potential of electrons is the same at all points".
Replies: Batteries are driven by electrochemical potential.
The driving force for the cathodic protection current is the difference in electrochemical potential between the anode and the cathode.
Electrochemical potential is measured with reference electrodes.
Electrical equilibrium corresponds to the situation where the electrochemical potentials (Fermi levels) have become equal.
Electrochemical potential is important in electroanalytical chemistry and industrial applications such as batteries and fuel cells.
This suggested that the driving force behind counterclockwise flagellar rotation was the proton electrochemical potential.
In cell membranes, the electrochemical potential is the sum of the chemical potential and the membrane potential.
Therefore it makes sense to combine them into a single "potential", the electrochemical potential, which can directly give the net redistribution taking both into account.
A measured electrode potential does not equal the change of the electrochemical potential (see Galvani potential).
The electrochemical potential completely characterizes all of the influences on an ion's motion, while the chemical potential includes everything except the electric force.
With an electrochemical potential of 0.7618 volts, zinc makes a good material for the negative terminus or anode in Battery (electricity).
The most useful SP component is the electrochemical potential, since it can cause a significant deflection opposite permeable beds.
However, the water pores are completely impermeable to charged species, such as protons, a property critical for the conservation of the membrane's electrochemical potential.
This stabilizes the electrochemical potential of cardiac myocytes, thereby preventing the development of fatal arrhythmias.