Agrégation chimie Montrouge

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Titre de l'ouvrage : Intermolecular and Surface Forces (J. Israelachvili, 2011)

Table des chapitres

 Num. Chap.  Titre du chapitre  Page 
1  Historical Perspective  3
2  Thermodynamic and Statistical Aspects of Intermolecular Forces  23
3  Strong Intermolecular Forces: Covalent and Coulomb Interactions  53
4  Interactions Involving Polar Molecules  71
5  Interactions Involving the Polarization of Molecules  91
6  Van der Waals Forces  107
7  Repulsive Steric Forces, Total Intermolecular Pair Potentials, and Liquid Structure  133
8  Special Interactions: Hydrogen-Bonding and Hydrophobic and Hydrophilic Interactions  151
9  Nonequilibrium and Time-Dependent Interactions  169
10  Unifying Concepts in Intermolecular and Interparticle Forces  191
11  Contrasts between Intermolecular, Interparticle, and Intersurface Forces  205
12  Force-Measuring Techniques  223
13  Van der Waals Forces between Particles and Surfaces  253
14  Electrostatic Forces between Surfaces in Liquids  291
15  Solvation, Structural, and Hydration Forces  341
16  Steric (Polymer-Mediated) and Thermal Fluctuation Forces  381
17  Adhesion and Wetting Phenomena  415
18  Friction and Lubrication Forces  469
19  Thermodynamic Principles of Self-Assembly  503
20  Soft and Biological Structures  535
21  Interactions of Biological Membranes and Structures  577
22  Dynamic Biointeractions  617
 
 Chapitre 2 : Thermodynamic and Statistical Aspects of Intermolecular Forces   Page 
 The Interaction of Molecules in Free Space and in a Medium  23
 Self-Energy and Pair Potential  25
 The Boltzmann Distribution and the Chemical Potential  26
 The Distribution of Molecules and Particles in Systems at Equilibrium  27
 The Van der Waals Equation of State (EOS)  30
 The Criterion of the Thermal Energy kT for Gauging the Strength of an Interaction  31
 Classification of Forces and Pair Potentials  34
 Theoretical Analyses of Multimolecular Systems: Continuum and Molecular Approaches  35
 Molecular Approaches via Computer Simulations: Monte Carlo (MC) and Molecular Dynamics (MD)  37
 Newton’s Laws Applied to Two-Body Collisions  39
 Kinetic and Statistical Aspects of Multiple Collisions: the Boltzmann Distribution  43
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