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Electromotive force Galvani potential difference

The Galvani potential difference across the cell is called the EMF (electromotive force) and is given the symbol E. Furthermore, it is always measured as the potential of the right-hand electrode with respect to the left-hand one. Thus,... [Pg.449]

The combination of electrode compartments into an electrochemical cell makes it possible to measure the series of the Galvani potential differences as the electromotive force (emf) of the cell. [Pg.1955]

The potential difference is closely related to the difference of the electrochemical potential based on the electrochemical affinity. If we could measure A(p directly, we could organize the table of electromotive forces based on the Galvani potential difference. However, A

reference electrode to measure the half cell potential at an electrode. When a certain electrcxle is coupled with a reference electrode, then the electromotive force can be measured. Since we usually use some reference electrodes as standards, the electromotive force is defined as the equilibrium potential of the reaction. The table was made in such a way and the hydrogen reference electrode was used to measure and calculate potentials for the half cell reactions. [Pg.20]

In a fuel cell, the difference in reactant gas compositions at the two electrodes leads to the formation of a difference in Galvani potential between anode and cathode, as discussed in the section Electromotive Force. Thereby, the Gibbs energy AG of the net fuel cell reaction is transformed directly into electrical work. Under ideal operation, with no parasitic heat loss of kinetic and transport processes involved, the reaction Gibbs energy can be converted completely into electrical energy, leading to the theoretical thermodynamic efficiency of the cell. [Pg.8]


See other pages where Electromotive force Galvani potential difference is mentioned: [Pg.15]    [Pg.306]    [Pg.306]   
See also in sourсe #XX -- [ Pg.4 ]




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