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Preface | p. vii |
Introduction | p. 1 |
Classical Physics | p. 7 |
Newton's Laws | p. 7 |
Discrete Mechanics | p. 9 |
Continuum Mechanics | p. 13 |
Some Mathematics | p. 23 |
Statistical Physics | p. 25 |
Classical Statistical Mechanics | p. 26 |
Equipartition Theorem | p. 29 |
Electrodynamics | p. 31 |
Basic Principles | p. 32 |
Some Applications | p. 33 |
Maxwell's Equations | p. 36 |
Electromagnetic Radiation | p. 37 |
Source of Radiation | p. 39 |
Some Contradictions | p. 41 |
Specific Heat of Solids | p. 41 |
Black-Body Radiation | p. 46 |
Planck's Hypothesis | p. 48 |
Specific Heat - Revisited | p. 51 |
Einstein Model | p. 51 |
Debye Model | p. 51 |
Photoelectric Effect | p. 52 |
Einstein's Analysis | p. 54 |
Compton Scattering | p. 55 |
Atomic Spectra | p. 57 |
Rutherford Atom | p. 58 |
Bohr Atom | p. 59 |
Quantum Mechanics | p. 63 |
Matter Waves | p. 63 |
Davisson-Germer Experiment | p. 65 |
Schrodinger Equation | p. 65 |
One-Dimensional Wave Equation | p. 66 |
Phase Velocity | p. 68 |
Group Velocity | p. 69 |
Interpretation | p. 70 |
Differential Equation | p. 71 |
More Mathematics | p. 72 |
Continuity Equation | p. 74 |
General Solution for Free Particle | p. 76 |
Interpretation (Continued) | p. 77 |
Include Forces | p. 79 |
Boundary Conditions | p. 80 |
Stationary States | p. 81 |
Solution to Some One-Dimensional Problems | p. 82 |
Particle in a One-Dimensional Box | p. 82 |
Potential Barrier in One-Dimension | p. 84 |
Scattering State | p. 85 |
Reflection and Transmission Coefficients | p. 87 |
Boundary Condition at a Wall | p. 90 |
Simple Harmonic Oscillator | p. 91 |
Three Dimensions | p. 92 |
Classical Continuum Mechanics | p. 93 |
Schrodinger Equation | p. 95 |
Particle in a Three-Dimensional Box | p. 96 |
Free Particle - Periodic Boundary Conditions | p. 97 |
Comments on the Structure of Quantum Mechanics | p. 98 |
Angular Momentum | p. 99 |
Point Coulomb Potential | p. 104 |
Spin | p. 106 |
Identical Particles | p. 109 |
Connection Between Spin and Statistics | p. 109 |
Non-interacting, Spin-1/2 Fermions ("Fermi Gas") | p. 109 |
Non-Interacting Bosons ("Bose Gas") | p. 114 |
Quantum Statistics (T [not equal] 0) | p. 114 |
Wave Functions | p. 116 |
Atomic Physics | p. 117 |
Vector Model for Addition of Angular Momenta | p. 117 |
Larmor's Theorem | p. 120 |
Effective Magnetic Moment | p. 121 |
Zeeman Effect | p. 122 |
Spin-Orbit Interaction | p. 123 |
Thomas-Fermi Theory | p. 125 |
Thomas-Fermi Equation | p. 125 |
Binding Energy of Atom | p. 131 |
Numerical Results | p. 133 |
Periodic System of the Elements | p. 136 |
Shielded Coulomb Potential | p. 136 |
Hartree Approximation | p. 137 |
Structure of the Single-Particle Levels | p. 138 |
Chemical Properties of the Elements | p. 141 |
Nuclear Physics | p. 145 |
Baryons | p. 145 |
[Beta]-decay | p. 147 |
Mean Life | p. 147 |
Deuteron | p. 148 |
Atomic Masses | p. 154 |
Light Nuclei | p. 156 |
Semi-Empirical Mass Formula | p. 157 |
Bulk Properties | p. 158 |
Surface Energy | p. 158 |
Coulomb Energy | p. 159 |
Symmetry Energy | p. 159 |
Pairing Energy | p. 159 |
Empirical Fit | p. 160 |
Electron Scattering | p. 162 |
Single-Slit Diffraction | p. 162 |
Electron Scattering from a Charge Distribution | p. 164 |
Nuclear Charge Distribution | p. 166 |
Nuclear Matter | p. 166 |
Shell Model | p. 168 |
A Simple Model | p. 169 |
More Realistic Model | p. 171 |
Spin-Orbit Interaction | p. 173 |
Nuclear Spins and Parities | p. 174 |
Schmidt Lines | p. 175 |
[gamma]-Decay | p. 177 |
Particle Physics | p. 181 |
Forces | p. 181 |
Particles | p. 182 |
Electric Charge | p. 182 |
Hadrons | p. 182 |
Baryon Number | p. 182 |
Strangeness | p. 182 |
Isospin | p. 183 |
Charm | p. 187 |
Yukawa Interaction | p. 188 |
Leptons | p. 191 |
Antiparticles | p. 193 |
Feynman Diagrams | p. 194 |
S-matrix | p. 194 |
Transition Rate | p. 195 |
Cross Section | p. 197 |
Feynman Diagrams (Continued) | p. 198 |
Quantum Electrodynamics (QED) | p. 199 |
[mu]-e Scattering | p. 199 |
Anomalous Magnetic Moment of Electron | p. 200 |
Quarks | p. 201 |
Nuclear Domain | p. 204 |
Some Applications | p. 206 |
Quantum Chromodynamics (QCD) | p. 208 |
Standard Model of Electroweak Interactions | p. 211 |
Special Relativity | p. 213 |
Michelson-Morley Experiment | p. 213 |
Lorentz Transformation | p. 217 |
Einstein's Theory | p. 218 |
Time Dilation | p. 221 |
Lorentz Contraction | p. 222 |
Transverse Dimension | p. 223 |
Minkowski Space | p. 225 |
Four-Vectors | p. 230 |
Some Applications | p. 233 |
Relativistic Kinematics | p. 233 |
White Dwarf Stars | p. 239 |
Relativistic Quantum Mechanics | p. 245 |
The Dirac Equation | p. 245 |
Non-Relativistic Reduction | p. 250 |
Electromagnetic Current | p. 252 |
Covariant Form | p. 252 |
Dirac Hole Theory | p. 253 |
Electromagnetic Interactions | p. 254 |
Quantum Electrodynamics (QED) | p. 255 |
Weak Interactions | p. 259 |
Quantum Chromodynamics (QCD) | p. 262 |
General Relativity | p. 265 |
Motion on a Two-Dimensional Surface | p. 265 |
Equivalence Principle | p. 268 |
Local Freely Falling Frame (LF[superscript 3]) | p. 271 |
Special Relativity | p. 272 |
Einstein's Theory of General Relativity | p. 272 |
Schwarzschild Solution | p. 274 |
Interpretation | p. 274 |
Some Applications | p. 276 |
Schwarzschild Radius | p. 277 |
Motion of a Point Mass | p. 279 |
Cosmology | p. 281 |
Robertson-Walker Metric (k = 0) | p. 281 |
Interpretation | p. 283 |
Horizon | p. 285 |
Quantum Fluids | p. 287 |
Superfluid [superscript 4]He | p. 287 |
Hartree Approximation | p. 289 |
Velocity Field | p. 290 |
Quantized Circulation | p. 291 |
Gross-Pitaevskii Equation | p. 292 |
Vortex | p. 293 |
Superfluidity | p. 296 |
Superconductivity | p. 298 |
Experimental Properties | p. 299 |
Some Observations | p. 300 |
Cooper Pairs | p. 301 |
Flux Quantization | p. 308 |
Quantum Fields | p. 311 |
String | p. 311 |
Energy | p. 311 |
Normal Modes | p. 312 |
Quantization | p. 315 |
The Quantum Field | p. 317 |
Electromagnetic Field | p. 318 |
Normal Modes | p. 318 |
Quantization | p. 321 |
Stimulated Emission | p. 321 |
Dirac Field | p. 322 |
Anticommutation Relations | p. 322 |
Dirac Field | p. 323 |
Some Applications | p. 323 |
Many-Particle Systems | p. 325 |
Problems | p. 327 |
Complex Variables-A Primer | p. 391 |
Matrices | p. 395 |
Fourier Series and Fourier Integrals | p. 401 |
Some Thermodynamics | p. 405 |
Some Statistical Mechanics | p. 409 |
Some Vector Calculus | p. 419 |
Black-Body Flux | p. 423 |
Wave Functions for Identical Particles | p. 425 |
Bosons | p. 426 |
Fermions | p. 427 |
Some Applications | p. 431 |
Transition Rate | p. 435 |
Neutrino Mixing | p. 443 |
Units | p. 447 |
Standard International (SI) | p. 447 |
Heaviside-Lorentz (rationalized cgs) | p. 448 |
cgs | p. 449 |
Fundamental Constants | p. 451 |
Conversion Factors | p. 452 |
Some Significant Names for Theoretical Physics | p. 453 |
Bibliography | p. 455 |
Index | p. 461 |
Table of Contents provided by Ingram. All Rights Reserved. |
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