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This book contains the latest information on all aspects of the most important chemical thermodynamic properties of Gibbs energy and Helmholtz energy, as related to fluids. Both the Gibbs energy and Helmholtz energy are very important in the fields of thermodynamics and material properties as many other properties are obtained from the temperature or pressure dependence. Bringing all the information into one authoritative survey, the book is written by acknowledged world experts in their respective fields. Each of the chapters will cover theory, experimental methods and techniques and results…mehr
This book contains the latest information on all aspects of the most important chemical thermodynamic properties of Gibbs energy and Helmholtz energy, as related to fluids. Both the Gibbs energy and Helmholtz energy are very important in the fields of thermodynamics and material properties as many other properties are obtained from the temperature or pressure dependence. Bringing all the information into one authoritative survey, the book is written by acknowledged world experts in their respective fields. Each of the chapters will cover theory, experimental methods and techniques and results for all types of liquids and vapours.
This book is the fourth in the series of Thermodynamic Properties related to liquids, solutions and vapours, edited by Emmerich Wilhelm and Trevor Letcher. The previous books were: Heat Capacities (2010), Volume Properties (2015), and Enthalpy (2017). This book fills the gap in fundamental thermodynamic properties and is the last in the series.
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Inhaltsangabe
Introduction, Concepts and Selected Applications Low Pressure Solubility of Gases in Liquids Solvation of Non-polar, Hydrophobic Molecules in Water Excess Molar Gibbs Energies: Related Properties and Formalisms using DISQUAC Determination of Equilibrium Constants by Isothermal Calorimetry Solvation Free Energy by 3D-RISM-KH Theory High-accuracy Multiparameter Equations of State Based on Helmholtz Energy Thermodynamic Consistency of Experimental Phase Equilibria Data Correlative and Predictive Models for Gibbs Energy (gamma), Group Contribution Models, VTPR, COSMO and Flory-Huggins Theory for Polymers Excess Gibbs Energy of Mixing in Binary Solvent Mixtures Prediction of Solvation Free Energies Limiting Activity Coefficients Gibbs Free Energy of Protein Unfolding SAFT Theory Gibbs-Helmholtz Equation: Practical Applications in Thermochemistry Experimental Determination of Vapour Pressures Equations of State Phase Transitions in Nano-confined Fluids Gibbs Energies in Biomolecular Solutions Stability of Real Liquid Crystals Thermodynamics of the Folding and Interconversion of G-quadruplex DNA Structures
Introduction, Concepts and Selected Applications Low Pressure Solubility of Gases in Liquids Solvation of Non-polar, Hydrophobic Molecules in Water Excess Molar Gibbs Energies: Related Properties and Formalisms using DISQUAC Determination of Equilibrium Constants by Isothermal Calorimetry Solvation Free Energy by 3D-RISM-KH Theory High-accuracy Multiparameter Equations of State Based on Helmholtz Energy Thermodynamic Consistency of Experimental Phase Equilibria Data Correlative and Predictive Models for Gibbs Energy (gamma), Group Contribution Models, VTPR, COSMO and Flory-Huggins Theory for Polymers Excess Gibbs Energy of Mixing in Binary Solvent Mixtures Prediction of Solvation Free Energies Limiting Activity Coefficients Gibbs Free Energy of Protein Unfolding SAFT Theory Gibbs-Helmholtz Equation: Practical Applications in Thermochemistry Experimental Determination of Vapour Pressures Equations of State Phase Transitions in Nano-confined Fluids Gibbs Energies in Biomolecular Solutions Stability of Real Liquid Crystals Thermodynamics of the Folding and Interconversion of G-quadruplex DNA Structures
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