Classical Thermodynamics of Non-Electrolyte Solutions
eBook - PDF

Classical Thermodynamics of Non-Electrolyte Solutions

  1. 174 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

Classical Thermodynamics of Non-Electrolyte Solutions

About this book

Classical Thermodynamics of Non-Electrolyte Solutions covers the historical development of classical thermodynamics that concerns the properties of vapor and liquid solutions of non-electrolytes. Classical thermodynamics is a network of equations, developed through the formal logic of mathematics from a very few fundamental postulates and leading to a great variety of useful deductions. This book is composed of seven chapters and begins with discussions on the fundamentals of thermodynamics and the thermodynamic properties of fluids. The succeeding chapter presents the equations of state for the calculation of the thermodynamic behavior of constant-composition fluids, both liquid and gaseous. These topics are followed by surveys of the mixing of pure materials to form a solution under conditions of constant temperature and pressure. The discussion then shifts to general equations for calculation of partial molal properties of homogeneous binary systems. The last chapter considers the approach to equilibrium of systems within which composition changes are brought about either by mass transfer between phases or by chemical reaction within a phase, or by both.

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Yes, you can access Classical Thermodynamics of Non-Electrolyte Solutions by H. C. Van Ness in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Physical & Theoretical Chemistry. We have over one million books available in our catalogue for you to explore.

Table of contents

  1. Front Cover
  2. Classical Thermodynamics of Non-Electrolyte Solutions
  3. Copyright Page
  4. Table of Contents
  5. PREFACE
  6. CHAPTER 1. FUNDAMENTAL BASIS OF THERMODYNAMICS
  7. CHAPTER 2. THERMODYNAMIC PROPERTIES OF FLUIDS
  8. CHAPTER 3. BEHAVIOR OF CONSTANT-COMPOSITION FLUIDS
  9. CHAPTER 4. PROPERTY CHANGES OF MIXING
  10. CHAPTER 5. PARTIAL MOLAL PROPERTIES
  11. CHAPTER 6. APPLICATIONS TO VAPOR–LIQUID EQUILIBRIUM
  12. CHAPTER 7. EPILOGUE
  13. INDEX