By J. M. Smith, Hendrick Van Ness, Michael Abbott

Introduction to Chemical Engineering Thermodynamics, 7/e, offers accomplished insurance of the topic of thermodynamics from a chemical engineering standpoint. The textual content presents a radical exposition of the rules of thermodynamics and information their program to chemical procedures. The chapters are written in a transparent, logically prepared demeanour, and include an abundance of reasonable difficulties, examples, and illustrations to aid scholars comprehend complicated techniques. New rules, phrases, and emblems consistently problem the readers to imagine and inspire them to use this primary physique of information to the answer of functional difficulties.
The finished nature of this e-book makes it an invaluable reference either in graduate classes and for pro perform. The 7th variation remains to be a very good device for instructing the topic of chemical engineering thermodynamics to undergraduate scholars.

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Additional resources for Introduction to Chemical Engineering Thermodynamics (The Mcgraw-Hill Chemical Engineering Series)

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This suggests that in order to model hysteresis—the effects of undercooling and overheating with respect to TE —the thermodynamic theory must be enriched by free energy nucleation barriers f B . According to the definition of the free energy such barriers consists of an energetic part u B and an entropic part T s B in general, fB = u B − T sB . 21) For specific materials, the contributions of the energy and entropy to the free energy barrier may vary. In the classical nucleation theory of fluids, the free energy nucleation barrier is represented by tensional interface energy raised to establish phase boundaries [77].

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M. D. James, Fine phase mixtures as minimizers of energy. Archive for Rational Mechanics And Analysis 100(1), 13–52 (1987) 58. D. van der Waals, The thermodynamic theory of capillarity under the hypothesis of a continuous variation of density. J. Stat. Phys. 20(2), 200–244 (1979) Translation of the original work from 1893 59. W. E. Hilliard, Free energy of a nonuniform system, I. interfacial free energy. J. Chem. Phys. 28, 258–267 (1958) 60. J. E. Gurtin, M. Slemrod, Structured phase transition on a finite interval.

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