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Physical Chemistry videos from China University of Petroleum

2009-03-11View Original

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Video on Physical Chemistry at China University of Petroleum     Lecture 1: Introduction Chapter 1: Gases Lecture 2: Chapter 1 – Gases (Continued) Lecture 3: Chapter 2 – The First Law of Thermodynamics and Thermochimistry  Section 1: Theoretical Foundations and Methods of Thermodynamics  Section 2: Basic Concepts Lecture 4:  Section 2 – Basic Concepts (Continued)  Section 3: The First Law of Thermodynamics and Thermal Energy Lecture 5:  Section 4: Enthalpy, Constant Heat Capacity, and Constant-Pressure Heat  Section 5: Heat Capacity and Heat in Related Processes  Section 6: Enthalpy of Phase Change Lecture 6:  Section 7: Adiabatic Processes Lecture 7:  Section 8: Heat Effects of Chemical Reactions Lecture 8:  Section 9: Standard Heat Effects of Reactions Lecture 9:  Section 10: Relationship between Reaction Heat and Temperature – Kirchhoff’s Law Lecture 10: Chapter 3 – The Second Law of Thermodynamics and Chemical Equilibrium  Section 1: Classical Statement of the Second Law of Thermodynamics  Section 2: Carnot Cycle and Carnot’s Theorem  Section 3: Mathematical Formulation of the Second Law of Thermodynamics and Entropy Lecture 11: Chapter 3 – The Second Law of Thermodynamics and Chemical Equilibrium  Section 4: Calculation of Entropy Changes Lecture 12:  Section 6: The Third Law of Thermodynamics and Defined Entropy  Section 7: Helmholtz Free Energy and Gibbs Free Energy Lecture 13:  Section 6 – The Third Law of Thermodynamics and Defined Entropy (Continued)  Section 8: Calculation of △A and △G in Physical Change Processes Lecture 14:  Section 9: Criteria for Determining the Direction of Chemical Reactions  Section 10: Standard Gibbs Free Energy of Formation and Standard Gibbs Free Energy Change of Reactions Lecture 15:  Section 11: van’t Hoff Equation at Constant Temperature Lecture 16:  Section 11 – van’t Hoff Equation at Constant Temperature (Continued) Chapter 4: Phase Equilibrium  Section 1: Saturated Vapor Pressure and Boiling Point of Liquids  Section 2: Thermodynamics of Phase Equilibrium of Pure Substances Lecture 17:  Section 3: Phase Equilibrium Diagrams of Pure Substances  Section 4: Methods for Expressing Concentrations in Mixtures and Solutions  Section 5: Two Empirical Laws in Dilute Solutions  Section 6: Colligative Properties of Dilute Solutions Lecture 18:  Section 7: Chemical Potentials of Components in Mixtures and Solutions Lecture 19:  Section 8: Phase Equilibrium in Binary Systems Lecture 20:  Section 8 – Phase Equilibrium in Binary Systems (Continued) Lecture 21: Chapter 4 – Phase Equilibrium  Section 8 – Phase Equilibrium in Binary Systems (Continued) Lecture 22: Chapter 5: Surface Phenomena  Section 1: Specific Surface Free Energy (Surface Tension)  Section 2: Surface Phenomena of Pure Liquids Lecture 23:  Section 3: Adsorption on Solution Surfaces  Section 4: Wetting Phenomena on Solid Surfaces  Section 5: Adsorption of Gases by Solid Surfaces  Section 6: Double-Layer Structure of Solids in Solutions Lecture 24: Chapter 6: Electrochemistry  Section 1: Conductivity  Section 2: Migration of Ions in an Electric Field  Section 3: Average Activity Coefficient of Ions and Ionic Strength Lecture 25:  Section 4: Primary Cells and Reversible Cells  Section 5: Generation and Measurement of Electromotive Force  Section 6: Thermodynamics of Reversible Cells  Section 7: Electrode Potential and Types of Electrodes Lecture 26:  Section 7 – Electrode Potential and Types of Electrodes  Section 8: Concentration Cell Lecture 27: Chapter 7: Kinetics of Chemical Reactions  Section 1: Overview  Section 2: Representations of Chemical Reaction Rates  Section 3: Reaction Rate Equations, Reaction Orders, and Number of Reactant Molecules  Section 4: Integral Forms of Reaction Rate Equations and Determination of Reaction Orders Lecture 28:  Section 4 – Integral Forms of Reaction Rate Equations and Determination of Reaction Orders (Continued)  Section 5: Several Typical Complex Reactions  Section 6: Relationship between Reaction Rate and Temperature – Activation Energy Lecture 29:  Section 6 – Relationship between Reaction Rate and Temperature – Activation Energy (Continued)  Section 7: Introduction to Reaction Rate Theory  Section 8: Overview of Catalytic Reactions Lecture 30: Summary and Review*
Reply #22009-03-12
http://www.28gl.com/dx/zrkx/2008-08-09/8070.html can be downloaded for free using WEB Xunlei; there are 30 lectures in total. They are files with the .csf suffix; a player needs to be downloaded. Last edited by zhangyong6404 on 2009-3-12 23:10.]
Reply #32009-06-29
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