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Equations of membrane biophysics /

Equations of Membrane Biophysics provides an introduction to the relevant principles of thermodynamics, kinetics, electricity, surface chemistry, electrochemistry, and other mathematical theorems so that the quantitative aspects of membrane phenomena in model and biological systems could be describe...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Lakshminarayanaiah, N., 1919-
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Orlando : Academic Press, 1984.
Temas:
Acceso en línea:Texto completo

MARC

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245 1 0 |a Equations of membrane biophysics /  |c N. Lakshminarayanaiah. 
260 |a Orlando :  |b Academic Press,  |c 1984. 
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504 |a Includes bibliographical references and index. 
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588 0 |a Print version record. 
505 0 |a Front Cover; Equations of Membrane Biophysics; Copyright Page; Table of Contents; PREFACE; Chapter 1. INTRODUCTION; References; Chapter 2. BASIC PRINCIPLES; I. Thermodynamic Concepts; II. Electrostatics; III. Physical and Electrochemical Principles; References; Chapter 3. ELECTROCHEMISTRY OF SOLUTIONS AND MEMBRANES; I. The Debye-H�uckel Theory; II. Debye-H�uckel Theory and Activity Coefficients; III. Debye-H�uckel Theory and Electrolyte Conductance; IV. Distribution of Ions and Potential Differences at Interfaces; V. Electrokinetic Phenomena; VI. Donnan Equilibrium 
505 8 |a VII. Donnan Equilibrium in Charged MembranesVIII. Membrane Potential; IX. Some Applications of the Double-Layer Theory; X. Model-System Approach to Evaluation of Surface Charge Density; References; Chapter 4. ELECTRICAL POTENTIALS ACROSS MEMBRANES; I. Bi- and Multi-Ionic Potentials; II. Determination of Selectivity Coefficients Kijpot; III. Integration of Nernst-Planck Flux Equation; IV. Other Models; V. Liquid Membranes; VI. Thermodynamic Approach to Isothermal Membrane Potential; VII. Kinetic Approach to Membrane Potentials; References; Chapter 5. KINETIC MODELS OF MEMBRANE TRANSPORT 
505 8 |a I. Equations of Enzyme KineticsII. Schematic Method of Deriving Rate Equations; III. Enzyme Kinetics of Mediated Transport; IV. Eyring Model for Membrane Permeation; V. Eyring Model and Biological Membranes; VI. Model for Lipid-Soluble Ions; VII. Model for Carriers of Small Ions; VIII. Models for Channel-Forming Ionophores; References; Chapter 6. STEADY-STATE THERMODYNAMIC APPROACH TO MEMBRANE TRANSPORT; I. Basic Principles; II. Electrical Parameters; III. Electrokinetic Phenomena; IV. Transport of a Solution of Nonelectrolyte across a Simple Membrane 
505 8 |a v. Permeation of Electrolyte Solution through a MembraneVI. Nature of Water Flow across Membranes; References; Chapter 7. IMPEDANCE, CABLE THEORY, AND HODGKIN-HUXLEY EQUATIONS; I. Impedance; II. Elements of the Cable Theory; III. Models to Relate Input Impedance to Electrical Cell Constants; IV. Hodgkin-Huxley Equations; References; Chapter 8. FLUCTUATION ANALYSIS OF THE ELECTRICAL PROPERTIES OF THE MEMBRANE; I. Nonmathematical Description of Noise Analysis; II. Statistical Concepts; III. Mathematical Preliminaries; IV. Spectral Density and Rayleigh's Theorem 
505 8 |a v. Spectral Density and Source ImpedanceVI. Filters; VII. Correlation Function and Spectra; VIII. Types of Noise Sources; References; INDEX 
520 |a Equations of Membrane Biophysics provides an introduction to the relevant principles of thermodynamics, kinetics, electricity, surface chemistry, electrochemistry, and other mathematical theorems so that the quantitative aspects of membrane phenomena in model and biological systems could be described. The book begins by introducing several phenomena that arise across membranes, both artificial and biological, when different driving forces act across them. This is followed by separate chapters on thermodynamic principles related to properties of dilute aqueous electrolyte solutions along with a. 
546 |a English. 
650 0 |a Biological transport  |x Mathematics. 
650 0 |a Membranes (Biology)  |x Mathematics. 
650 0 |a Biophysics  |x Mathematics. 
650 0 |a Biological transport. 
650 0 |a Biological models. 
650 2 |a Biological Transport  |0 (DNLM)D001692 
650 2 |a Membranes  |x physiology  |0 (DNLM)D008566Q000502 
650 2 |a Models, Biological  |0 (DNLM)D008954 
650 6 |a Transport biologique  |0 (CaQQLa)201-0011115  |x Math�ematiques.  |0 (CaQQLa)201-0380112 
650 6 |a Membranes (Biologie)  |0 (CaQQLa)201-0009733  |x Math�ematiques.  |0 (CaQQLa)201-0380112 
650 6 |a Biophysique  |0 (CaQQLa)201-0003996  |x Math�ematiques.  |0 (CaQQLa)201-0380112 
650 6 |a Transport biologique.  |0 (CaQQLa)201-0011115 
650 6 |a Mod�eles biologiques.  |0 (CaQQLa)201-0051425 
650 7 |a SCIENCE  |x Life Sciences  |x Biology.  |2 bisacsh 
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650 7 |a Biophysics  |x Mathematics  |2 fast  |0 (OCoLC)fst00832659 
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650 1 7 |a Membranen.  |2 gtt 
650 1 7 |a Wiskundige modellen.  |2 gtt 
650 1 7 |a Fysiologie.  |2 gtt 
653 |a Organisms  |a Membranes  |a Transport phenomena  |a Mathematical models 
776 0 8 |i Print version:  |a Lakshminarayanaiah, N., 1919-  |t Equations of membrane biophysics.  |d Orlando : Academic Press, 1984  |w (DLC) 83003743  |w (OCoLC)9324662 
856 4 0 |u https://sciencedirect.uam.elogim.com/science/book/9780124342606  |z Texto completo