Physical Chemistry for Chemists and Chemical Engineers 1st edition by Alexander Vakhrushev, Reza Haghi, de Julian Ortiz – Ebook PDF Instant Download/Delivery: 1774631407, 978-1774631409
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Product details:
ISBN 10: 1774631407
ISBN 13: 978-1774631409
Author: Alexander Vakhrushev, Reza Haghi, de Julian Ortiz
This volume is based on different aspects of chemical technology that are associated with research and the development of theories for chemical engineers, helping to bridge the gap between classical analysis and modern, real-life applications. Taking an interdisciplinary approach, the authors present the current state-of-the-art technology in key materials with an emphasis on the rapidly growing technologies.
Physical Chemistry for Chemists and Chemical Engineers 1st Table of contents:
Part 1: Introduction to Physical Chemistry
- Introduction to Physical Chemistry
- The Role of Physical Chemistry in Science and Engineering
- Overview of Key Concepts in Physical Chemistry
- Units, Dimensions, and Conversion Factors
Part 2: Thermodynamics 2. Basic Concepts of Thermodynamics
- Systems and Surroundings
- State Functions and Thermodynamic Variables
- Laws of Thermodynamics
-
The First Law of Thermodynamics
- Internal Energy and Work
- Heat and Heat Capacities
- Enthalpy and Its Applications
-
The Second Law of Thermodynamics
- Entropy and Its Significance
- The Clausius Inequality
- Reversible and Irreversible Processes
-
The Third Law of Thermodynamics
- Absolute Zero and Entropy at Low Temperatures
- Implications for Chemical Systems
-
Thermodynamics of Solutions
- Ideal Solutions and Colligative Properties
- Raoult’s Law and Deviations from Ideal Behavior
- Free Energy and Chemical Potential
Part 3: Kinetics 7. Chemical Kinetics
- Reaction Rates and Rate Laws
- The Arrhenius Equation and Temperature Dependence
- Catalysis and Reaction Mechanisms
- Advanced Kinetics
- Reaction Orders and Rate Constants
- Theories of Chemical Reactions (Collision Theory, Transition State Theory)
- Complex Reactions and Rate Determining Steps
Part 4: Quantum Chemistry 9. Introduction to Quantum Chemistry
- The Wavefunction and Schrödinger Equation
- Operators, Eigenvalues, and Eigenfunctions
- The Hydrogen Atom and Quantum Numbers
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Molecular Orbitals and Bonding
- Atomic Orbitals and Molecular Orbitals
- The Hückel Method for π-electrons
- Valence Bond and Molecular Orbital Theories
-
Statistical Mechanics
- Microstates, Macrostates, and the Boltzmann Distribution
- Partition Functions and Thermodynamic Properties
- Applications of Statistical Mechanics to Chemical Systems
Part 5: Chemical Equilibrium 12. Equilibrium in Chemical Reactions – The Equilibrium Constant and Le Chatelier’s Principle – Calculating Equilibrium Concentrations – Temperature and Pressure Effects on Equilibrium
- Electrochemistry
- Galvanic Cells and Electrochemical Potentials
- Nernst Equation and Applications
- Electrochemical Thermodynamics and Reactions
Part 6: Advanced Topics 14. Surface Chemistry – Adsorption, Surface Tension, and Capillarity – Catalysis and Surface Reactions – Colloidal Systems and Interfacial Phenomena
- Polymer Chemistry
- Molecular Weight Distributions and Polymerization Mechanisms
- Kinetics of Polymerization
- Thermodynamics of Polymers
Part 7: Applications in Chemical Engineering 16. Transport Phenomena – Diffusion, Convection, and Viscosity – Mass Transfer and Heat Transfer in Chemical Engineering – Applications to Reactor Design and Separation Processes
- Phase Diagrams and Materials Science
- Binary Phase Diagrams and Phase Transitions
- Crystallography and Material Properties
- Phase Equilibria in Chemical Engineering
Appendices
- Mathematical Tools for Physical Chemistry
- Useful Tables and Constants
References
Index
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Alexander Vakhrushev,Reza Haghi,de Julian Ortiz,Physical Chemistry,Chemical Engineers


