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  • 1
    Online-Ressource
    Online-Ressource
    Amsterdam ; : Elsevier,
    UID:
    almahu_9948025778702882
    Umfang: 1 online resource (357 p.)
    ISBN: 1-281-03449-5 , 9786611034498 , 0-08-055180-7
    Inhalt: The book presents a critical and comprehensive account of Non-equilibrium Physical Chemistry from theoretical and experimental angle. It covers a wide spectrum of non-equilibrium phenomena from steady state close to equilibrium to non-linear region involving transition to bistability, temporal oscillations, spatio-temporal oscillations and finally to far from equilibrium phenomena such as complex pattern formation, dynamic instability at interfaces, Chaos and complex growth phenomena (fractals) in Physico-chemical systems. Part I of the book deals with theory and experimental studies conce
    Anmerkung: Description based upon print version of record. , Front Cover; Introduction to Non-equilibrium Physical Chemistry; Copyright Page; Table of Contents; PREFACE; ACKNOWLEDGEMENTS; COLOUR PLATE SECTION; CHAPTER 1 INTRODUCTION; 1.1. Real systems; 1.2. Equilibrium and non-equilibrium states; 1.3. Open systems; 1.4. Approach to equilibrium; 1.5. Non-equilibrium states; 1.6. Complex non-equilibrium phenomena; 1.7. Scope; References; PART ONE NON-EQUILIBRIUM STEADY STATES CLOSE TO EQUILIBRIUM; CHAPTER 2 BASIC PRINCIPLES OF NON-EQUILIBRIUM THERMODYNAMICS; 2.1. Introduction; 2.2. Second law of thermodynamics for open systems , 2.3. Law of conservation of mass, charge and energy2.4. Gibbs equation; 2.5. Phenomenological equations for single flows; 2.6. Phenomenological equations for coupled flows; 2.7. Onsager reciprocity relation; 2.8. Entropy production in multi-variable systems; 2.9. Basic postulates of non-equilibrium thermodynamics close to equilibrium; 2.10. Experimental test of LNT; 2.11. Application to other disciplines: sociology, economics and finance; 2.12. Concluding remarks; References; CHAPTER 3 APPLICATIONS TO TYPICAL STEADY-STATES PHENOMENA; 3.1. Introduction , 3.2. Thermodynamic theory of thermo-osmosis3.3. Thermodynamic theory of thermo-osmosis of gaseous non-reacting mixtures; 3.4. Experimental studies; 3.5. Thermo-osmosis of gases and gaseous mixtures; 3.6. Thermo-osmosis in biological systems; References; CHAPTER 4 ELECTRO-OSMOTIC PHENOMENA; 4.1. Introduction; 4.2. Non-equilibrium thermodynamics of electro-osmotic phenomena; 4.3. Theories based on models of membranes; 4.4. Experimental test of thermodynamic theory; 4.5. Concluding remarks; References; CHAPTER 5 NON-EQUILIBRIUM PHENOMENA IN CONTINUOUS SYSTEMS; 5.1. Introduction , 5.2. Theory: thermodynamic considerations5.3. Experimental studies in gaseous systems; 5.4. Dufour effect in liquid mixtures; 5.5. Thermal diffusion potential; 5.6. Electric potentials generated at crystal interface; References; CHAPTER 6 ELECTROPHORESIS AND SEDIMENTATION POTENTIAL; 6.1. Introduction; 6.2. Thermodynamic theory; 6.3. Comparison with Helmholtz double layer theory; 6.4. Test of theory: experimental studies; References; PART TWO NON-LINEAR STEADY STATES - DISSIPATIVE STRUCTURE (TIME ORDER AND SPACE ORDER); CHAPTER 7 NON-LINEAR STEADY STATES; 7.1. Introduction , 7.2. Non-linear flux equations in electro-kinetic phenomena7.3. Non-linear steady states; 7.4. Interpretation of second-order coefficients in the light of double layer theory; 7.5. Non-linear transport equations in gaseous medium; 7.6. Non-linear flux equations and non-linear steady states in chemical reactions; 7.7. General remarks; References; CHAPTER 8 BIFURCATION PHENOMENON AND MULTI-STABILITY; 8.1. Introduction; 8.2. Dynamical non-linear systems; 8.3. Typical types of bifurcation; 8.4. Bifurcation from steady state to bistability; 8.5. Bifurcation from steady state to oscillatory state , 8.6. Multi-stability , English
    Weitere Ausg.: ISBN 0-444-52188-7
    Sprache: Englisch
    Fachgebiete: Chemie/Pharmazie
    RVK:
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