Principles of Thermodynamics

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A01=Myron Kaufman
Absolute Entropies
advanced material science
Author_Myron Kaufman
Bet Isotherm
Boiling Point Elevation
capacity
Carnot Cycle
Category=PHH
chemical
Chemical Potential
Debye Huckel Theory
energy
Entropy Change
Entropy Generation
eq_bestseller
eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
eq_non-fiction
eq_science
free
gas
gibbs
Gibbs Free Energy
heat
Heat Reservoir
helmholtz
ideal
Ideal Gas
Ideally Dilute Solution
Ionic Activity
Joule Thomson Expansion
kinetic theory equations
Ln aA
Material Equilibrium
Molar Volume
multivariable calculus methods
Partial Molar
phase equilibrium analysis
physical chemistry textbook
potential
Redlich Kwong Equation
Reversible Adiabatic Expansion
Rt Ln
statistical thermodynamics
Steady State Systems
Step Iii
Surface Excess Concentration
thermodynamic problem solving for researchers
Van Der Waals Equation

Product details

  • ISBN 9780824706920
  • Weight: 910g
  • Dimensions: 156 x 234mm
  • Publication Date: 27 Aug 2002
  • Publisher: Taylor & Francis Inc
  • Publication City/Country: US
  • Product Form: Hardback
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Ideal for one- or two-semester courses that assume elementary knowledge of calculus, This text presents the fundamental concepts of thermodynamics and applies these to problems dealing with properties of materials, phase transformations, chemical reactions, solutions and surfaces. The author utilizes principles of statistical mechanics to illustrate key concepts from a microscopic perspective, as well as develop equations of kinetic theory. The book provides end-of-chapter question and problem sets, some using Mathcad™ and Mathematica™; a useful glossary containing important symbols, definitions, and units; and appendices covering multivariable calculus and valuable numerical methods.
Kaufman, Myron

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