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Thermodynamics. --- Gibbs' free energy. --- Bioenergetics. --- Physical biochemistry.
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General biophysics --- Bioenergetics. --- Gibbs' free energy. --- Thermodynamics. --- Bioenergetics --- Gibbs'free energy --- Physical biochemistry --- Thermodynamics
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Gibbs' free energy --- Statistical thermodynamics --- Molecular structure --- Enantiomers --- Enthalpie libre. --- Thermodynamique statistique. --- Structure moléculaire. --- Énantiomères.
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La thermodynamique fait partie de la formation de base du scientifique et de l’ingénieur parce qu’elle apprend à raisonner à partir de principes fondamentaux pour notamment rendre compte de phénomènes de transport comme la diffusion de la chaleur et de la matière, qui jouent un rôle essentiel dans de nombreux développements technologiques. De par son caractère fondamental, la thermodynamique continue à guider les chercheurs dans l’exploration de nouveaux effets. Les quatre premiers chapitres du livre énoncent les fondements de la thermodynamique, les quatre suivants illustrent leur application à la phénoménologie des processus thermiques. Ces notions de base sont consolidées par une introduction à la physique statistique. L’ouvrage se termine par une thermodynamique des milieux continus, dont le traitement des champs électromagnétiques, les équations de Navier-Stokes et l’analyse des processus irréversibles. - 4e de couverture
Thermodynamique. --- Thermodynamics --- Textbooks. --- Thermodynamics. --- Statistical thermodynamics. --- Heat. --- Gibbs' free energy. --- Power (Mechanics) --- Thermodynamique statistique. --- Chaleur. --- Enthalpie libre. --- Énergie mécanique.
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This monograph provides a general introduction to advanced computational methods for free energy calculations, from the systematic and rigorous point of view of applied mathematics. Free energy calculations in molecular dynamics have become an outstanding and increasingly broad computational field in physics, chemistry and molecular biology within the past few years, by making possible the analysis of complex molecular systems. This work proposes a new, general and rigorous presentation, intended both for practitioners interested in a mathematical treatment, and for applied mathematicians inte
Gibbs' free energy. --- Statistical physics --- Physics --- Mathematical statistics --- Free energy, Gibbs' --- Free enthalpy --- Gibbs' function --- Enthalpy --- Entropy --- Surface energy --- Thermodynamic potentials --- Mathematical models. --- Statistical methods
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This publication provides comprehensive material on the chemical and physical attributes of surfactants and new models for the understanding of structure-property relationships. Surfactants Chemistry, Interfacial Properties, Applications provides efficient instruments for the prognostication of principal physicochemical properties and the technologic applicability from the structure of a surfactant through the discussion of interrelations between the chemical structure, physicochemical properties and the efficiency of technologic application. Also included are informative overv
Surface active agents. --- Surface energy. --- Surface phenomena --- Gibbs' free energy --- Matter --- Surface chemistry --- Surface tension --- Surfactants --- Chemistry, Organic --- Wetting agents --- Properties
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Physicochemistry --- fysicochemie --- Adsorption --- Gibbs' free energy --- Surface energy --- Surface phenomena --- Matter --- Surface chemistry --- Surface tension --- Free energy, Gibbs' --- Free enthalpy --- Gibbs' function --- Enthalpy --- Entropy --- Thermodynamic potentials --- Sorption --- Separation (Technology) --- Properties
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This book deals with theoretical thermodynamics and the statistical physics of electron and particle gases. While treating the laws of thermodynamics from both classical and quantum theoretical viewpoints, it posits that the basis of the statistical theory of macroscopic properties of a system is the microcanonical distribution of isolated systems, from which all canonical distributions stem. To calculate the free energy, the Gibbs method is applied to ideal and non-ideal gases, and also to a crystalline solid. Considerable attention is paid to the Fermi-Dirac and Bose-Einstein quantum statistics and its application to different quantum gases, and electron gas in both metals and semiconductors is considered in a nonequilibrium state. A separate chapter treats the statistical theory of thermodynamic properties of an electron gas in a quantizing magnetic field.
Electron gas -- Electric properties. --- Gibbs' free energy. --- Statistical physics. --- Thermodynamics. --- Electron gas --- Gibbs' free energy --- Statistical physics --- Thermodynamics --- Physics --- Atomic Physics --- Physical Sciences & Mathematics --- Electron gas. --- Free energy, Gibbs' --- Free enthalpy --- Gibbs' function --- Fermi gas --- Statistical methods --- Physics. --- Quantum physics. --- Dynamical systems. --- Mathematical Methods in Physics. --- Quantum Physics. --- Statistical Physics, Dynamical Systems and Complexity. --- Mathematical statistics --- Chemistry, Physical and theoretical --- Dynamics --- Mechanics --- Heat --- Heat-engines --- Quantum theory --- Dynamical systems --- Kinetics --- Mathematics --- Mechanics, Analytic --- Force and energy --- Statics --- Quantum dynamics --- Quantum mechanics --- Quantum physics --- Natural philosophy --- Philosophy, Natural --- Physical sciences --- Enthalpy --- Entropy --- Surface energy --- Thermodynamic potentials --- Electrons --- Mathematical physics. --- Quantum theory. --- Complex Systems. --- Statistical Physics and Dynamical Systems. --- Physical mathematics
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Chemical structure --- fysicochemie --- Organic reaction mechanisms and kinetics --- Linear free energy relationship --- 519.233.5:54 --- Correlation analysis (Chemistry) --- Correlation equation (Chemistry) --- Free energy relationship, Linear --- Chemical reaction, Conditions and laws of --- Gibbs' free energy --- Correlation analysis. Regression analysis-:-Chemistry. Mineralogical sciences --- 519.233.5:54 Correlation analysis. Regression analysis-:-Chemistry. Mineralogical sciences
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