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Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State Book

Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State
Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State, Wallace (Los Alamos National Laboratory) constructs the complete Hamiltonian for crystals, amorphous solid, and liquid elements, representing the ground-state energy with static nuclei, the motion of nuclei, excitation of electrons from their ground-state, Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State has a rating of 3 stars
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Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State, Wallace (Los Alamos National Laboratory) constructs the complete Hamiltonian for crystals, amorphous solid, and liquid elements, representing the ground-state energy with static nuclei, the motion of nuclei, excitation of electrons from their ground-state, Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State
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  • Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State
  • Written by author Duane C. Wallace
  • Published by World Scientific Publishing Company, Incorporated, November 2002
  • Wallace (Los Alamos National Laboratory) constructs the complete Hamiltonian for crystals, amorphous solid, and liquid elements, representing the ground-state energy with static nuclei, the motion of nuclei, excitation of electrons from their ground-state
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Preface
Ch. 1Condensed Matter Hamiltonian1
1Nature of Condensed Matter1
2Density Functional Theory10
3Electronic Excited States in Metals19
4Total Hamiltonian25
5Nearly-Free-Electron Metals31
Ch. 2Statistical Mechanics49
6Averaging Techniques49
7Quantum Statistical Mechanics60
8Thermoelasticity74
9Classical Statistics: Derivation84
10Classical Statistics: Applications94
11Interpretation of Statistical Mechanics108
Ch. 3Lattice Dynamics115
12Lattice Statics115
13Quasiharmonic Phonons125
14Theory and Experiment134
15Experimental Phonon Data145
Ch. 4Statistical Mechanics of Crystals155
16Quantum Nuclear Motion155
17Classical Nuclear Motion167
18Electronic Excitations175
19Learning from Thermodynamic Data190
20Crystal Equation of State207
Ch. 5Liquid Dynamics and Statistical Mechanics219
21Configurational Correlations in a Monatomic Liquid219
22Melting of Elements230
23Liquid Dynamics Theory242
24Verification from Computer Simulations256
25Liquid Equation of State267
Ch. 6Phase Transitions and Nonequilibrium Processes275
26Theoretical Analysis of Phase Transitions275
27Nonequilibrium Processes288
Bibliography297
Index303


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Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State, Wallace (Los Alamos National Laboratory) constructs the complete Hamiltonian for crystals, amorphous solid, and liquid elements, representing the ground-state energy with static nuclei, the motion of nuclei, excitation of electrons from their ground-state, Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State

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Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State, Wallace (Los Alamos National Laboratory) constructs the complete Hamiltonian for crystals, amorphous solid, and liquid elements, representing the ground-state energy with static nuclei, the motion of nuclei, excitation of electrons from their ground-state, Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State

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Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State, Wallace (Los Alamos National Laboratory) constructs the complete Hamiltonian for crystals, amorphous solid, and liquid elements, representing the ground-state energy with static nuclei, the motion of nuclei, excitation of electrons from their ground-state, Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State

Statistical Physics of Crystals and Liquids: A Guide to Highly Accurate Equations of State

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