A universal form of representing concentration in thermodynamic and kinetic relations / Rudoi V.M., Murashova I.B. // Russian Journal of Physical Chemistry A. - 1998. - V. 72, l. 2. - P. 168-172.

ISSN:
00360244
Type:
Article
Abstract:
The standard activity value equal to the concentration of a substance in the selected standard state is suggested for use in thermodynamic and kinetic relations. This approach is shown to be universal; using it makes it possible to obtain consistent results when passing from one concentration scale to another or between different systems of units. The use of this approach is of special importance for computer simulations and calculations.
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Affiliations Ural State Technical University, ul. Mira 19, Yekaterinburg, 620002, Russian Federation
References Bulatov, N.K., Lundin, A.B., (1984) Termodinamika Neobratimykh Fiziko-khimicheskikh Protsessov (Thermodynamics of Irreversible Physicochemical Processes), , Moscow: Khimiya; Damaskin, B.B., Petrii, O.A., (1987) Elektrokhimiya (Electrochemistry), , Moscow: Vysshaya Shkola; Damaskin, B.B., Petrii, O.A., (1983) Vvedenie V Elektrokhimicheskuyu Kinetiku (Introduction to Electrochemical Kinetics), , Moscow: Vysshaya Shkola; Rotinyan, A.L., Tikhonov, K.I., Shoshina, I.A., (1981) Teoreticheskaya Elektrokhimiya (Theoretical Electrochemistry), , Leningrad: Khimiya; Vetter, K.J., (1967) Electrochemical Kinetics: Theoretical and Experimental Aspects, , New York: Academic; (1967) Elektrokhimicheskaya Kinetika, , Moscow: Mir; Tur'yan, Ya.I., (1989) Okislitel'no-vosstanovitel'nye Reaktsii I Potentsialy V Analiticheskoi Khimii (Redox Reactions and Potentials in Analytical Chemistry), , Moscow: Khimiya; Kravtsov, V.I., (1969) Elektrodnye Protsessy V Rastvorakh Kompleksov Metallov (Electrode Processes in Solutions of Metal Complexes), , Leningrad: Leningr. Gos. Univ
Correspondence Address Rudoi, V.M.; Ural State Technical University, ul. Mira 19, Yekaterinburg, 620002, Russian Federation
Language of Original Document English
Abbreviated Source Title Russ. J. Phys. Chem. A
Source Scopus