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Raff, Lionel M.; Cannon, William R. – Journal of Chemical Education, 2019
For 26 years, it has been assumed by some that the thermodynamics of open-system biochemical reactions must be executed by performing Legendre transformations on the terms involving the species whose concentrations are being held fixed. In contrast, standard nontransformed thermodynamics applies to chemical processes. However, it has recently been…
Descriptors: Science Instruction, Chemistry, College Science, Scientific Concepts
Raff, Lionel M. – Journal of Chemical Education, 2014
The thermodynamic criteria for spontaneity and equilibrium in multireaction systems are developed and discussed. When N reactions are occurring simultaneously, it is shown that G and A will depend upon N independent reaction coordinates, ?a (a = 1,2, ..., N), in addition to T and p for G or T and V for A. The general criteria for spontaneity and…
Descriptors: Science Instruction, Chemistry, Thermodynamics, Scientific Principles
Raff, Lionel M. – Journal of Chemical Education, 2014
The fundamental criteria for chemical reactions to be spontaneous in a given direction are generally incorrectly stated as ?G < 0 or ?A < 0 in most introductory chemistry textbooks and even in some more advanced texts. Similarly, the criteria for equilibrium are also misstated as being ?G = 0 or ?A = 0. Following a brief review of the…
Descriptors: Chemistry, Scientific Concepts, Equations (Mathematics), Thermodynamics
Silverberg, Lee J.; Raff, Lionel M. – Journal of Chemical Education, 2015
Thermodynamic spontaneity-equilibrium criteria require that in a single-reaction system, reactions in either the forward or reverse direction at equilibrium be nonspontaneous. Conversely, the concept of dynamic equilibrium holds that forward and reverse reactions both occur at equal rates at equilibrium to the extent allowed by kinetic…
Descriptors: Science Instruction, Thermodynamics, Scientific Concepts, College Science
Raff, Lionel M. – Journal of Chemical Education, 2014
Necessary and sufficient criteria for reaction spontaneity in a given direction and for spontaneity of finite transformations in single-reaction, closed systems are developed. The criteria are general in that they hold for reactions conducted under either conditions of constant T and p or constant T and V. These results are illustrated using a…
Descriptors: Science Education History, Misconceptions, Textbook Evaluation, Textbook Standards