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Introduction to Modern Physics : Theoretical Foundations

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  • ÃâÆÇ»ç : World Scientific
  • ¹ßÇà : 2009³â 07¿ù 06ÀÏ
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  • ISBN : 9789812812254
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Prefacep. vii
Introductionp. 1
Classical Physicsp. 7
Newton's Lawsp. 7
Discrete Mechanicsp. 9
Continuum Mechanicsp. 13
Some Mathematicsp. 23
Statistical Physicsp. 25
Classical Statistical Mechanicsp. 26
Equipartition Theoremp. 29
Electrodynamicsp. 31
Basic Principlesp. 32
Some Applicationsp. 33
Maxwell's Equationsp. 36
Electromagnetic Radiationp. 37
Source of Radiationp. 39
Some Contradictionsp. 41
Specific Heat of Solidsp. 41
Black-Body Radiationp. 46
Planck's Hypothesisp. 48
Specific Heat - Revisitedp. 51
Einstein Modelp. 51
Debye Modelp. 51
Photoelectric Effectp. 52
Einstein's Analysisp. 54
Compton Scatteringp. 55
Atomic Spectrap. 57
Rutherford Atomp. 58
Bohr Atomp. 59
Quantum Mechanicsp. 63
Matter Wavesp. 63
Davisson-Germer Experimentp. 65
Schrodinger Equationp. 65
One-Dimensional Wave Equationp. 66
Phase Velocityp. 68
Group Velocityp. 69
Interpretationp. 70
Differential Equationp. 71
More Mathematicsp. 72
Continuity Equationp. 74
General Solution for Free Particlep. 76
Interpretation (Continued)p. 77
Include Forcesp. 79
Boundary Conditionsp. 80
Stationary Statesp. 81
Solution to Some One-Dimensional Problemsp. 82
Particle in a One-Dimensional Boxp. 82
Potential Barrier in One-Dimensionp. 84
Scattering Statep. 85
Reflection and Transmission Coefficientsp. 87
Boundary Condition at a Wallp. 90
Simple Harmonic Oscillatorp. 91
Three Dimensionsp. 92
Classical Continuum Mechanicsp. 93
Schrodinger Equationp. 95
Particle in a Three-Dimensional Boxp. 96
Free Particle - Periodic Boundary Conditionsp. 97
Comments on the Structure of Quantum Mechanicsp. 98
Angular Momentump. 99
Point Coulomb Potentialp. 104
Spinp. 106
Identical Particlesp. 109
Connection Between Spin and Statisticsp. 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 Functionsp. 116
Atomic Physicsp. 117
Vector Model for Addition of Angular Momentap. 117
Larmor's Theoremp. 120
Effective Magnetic Momentp. 121
Zeeman Effectp. 122
Spin-Orbit Interactionp. 123
Thomas-Fermi Theoryp. 125
Thomas-Fermi Equationp. 125
Binding Energy of Atomp. 131
Numerical Resultsp. 133
Periodic System of the Elementsp. 136
Shielded Coulomb Potentialp. 136
Hartree Approximationp. 137
Structure of the Single-Particle Levelsp. 138
Chemical Properties of the Elementsp. 141
Nuclear Physicsp. 145
Baryonsp. 145
[Beta]-decayp. 147
Mean Lifep. 147
Deuteronp. 148
Atomic Massesp. 154
Light Nucleip. 156
Semi-Empirical Mass Formulap. 157
Bulk Propertiesp. 158
Surface Energyp. 158
Coulomb Energyp. 159
Symmetry Energyp. 159
Pairing Energyp. 159
Empirical Fitp. 160
Electron Scatteringp. 162
Single-Slit Diffractionp. 162
Electron Scattering from a Charge Distributionp. 164
Nuclear Charge Distributionp. 166
Nuclear Matterp. 166
Shell Modelp. 168
A Simple Modelp. 169
More Realistic Modelp. 171
Spin-Orbit Interactionp. 173
Nuclear Spins and Paritiesp. 174
Schmidt Linesp. 175
[gamma]-Decayp. 177
Particle Physicsp. 181
Forcesp. 181
Particlesp. 182
Electric Chargep. 182
Hadronsp. 182
Baryon Numberp. 182
Strangenessp. 182
Isospinp. 183
Charmp. 187
Yukawa Interactionp. 188
Leptonsp. 191
Antiparticlesp. 193
Feynman Diagramsp. 194
S-matrixp. 194
Transition Ratep. 195
Cross Sectionp. 197
Feynman Diagrams (Continued)p. 198
Quantum Electrodynamics (QED)p. 199
[mu]-e Scatteringp. 199
Anomalous Magnetic Moment of Electronp. 200
Quarksp. 201
Nuclear Domainp. 204
Some Applicationsp. 206
Quantum Chromodynamics (QCD)p. 208
Standard Model of Electroweak Interactionsp. 211
Special Relativityp. 213
Michelson-Morley Experimentp. 213
Lorentz Transformationp. 217
Einstein's Theoryp. 218
Time Dilationp. 221
Lorentz Contractionp. 222
Transverse Dimensionp. 223
Minkowski Spacep. 225
Four-Vectorsp. 230
Some Applicationsp. 233
Relativistic Kinematicsp. 233
White Dwarf Starsp. 239
Relativistic Quantum Mechanicsp. 245
The Dirac Equationp. 245
Non-Relativistic Reductionp. 250
Electromagnetic Currentp. 252
Covariant Formp. 252
Dirac Hole Theoryp. 253
Electromagnetic Interactionsp. 254
Quantum Electrodynamics (QED)p. 255
Weak Interactionsp. 259
Quantum Chromodynamics (QCD)p. 262
General Relativityp. 265
Motion on a Two-Dimensional Surfacep. 265
Equivalence Principlep. 268
Local Freely Falling Frame (LF[superscript 3])p. 271
Special Relativityp. 272
Einstein's Theory of General Relativityp. 272
Schwarzschild Solutionp. 274
Interpretationp. 274
Some Applicationsp. 276
Schwarzschild Radiusp. 277
Motion of a Point Massp. 279
Cosmologyp. 281
Robertson-Walker Metric (k = 0)p. 281
Interpretationp. 283
Horizonp. 285
Quantum Fluidsp. 287
Superfluid [superscript 4]Hep. 287
Hartree Approximationp. 289
Velocity Fieldp. 290
Quantized Circulationp. 291
Gross-Pitaevskii Equationp. 292
Vortexp. 293
Superfluidityp. 296
Superconductivityp. 298
Experimental Propertiesp. 299
Some Observationsp. 300
Cooper Pairsp. 301
Flux Quantizationp. 308
Quantum Fieldsp. 311
Stringp. 311
Energyp. 311
Normal Modesp. 312
Quantizationp. 315
The Quantum Fieldp. 317
Electromagnetic Fieldp. 318
Normal Modesp. 318
Quantizationp. 321
Stimulated Emissionp. 321
Dirac Fieldp. 322
Anticommutation Relationsp. 322
Dirac Fieldp. 323
Some Applicationsp. 323
Many-Particle Systemsp. 325
Problemsp. 327
Complex Variables-A Primerp. 391
Matricesp. 395
Fourier Series and Fourier Integralsp. 401
Some Thermodynamicsp. 405
Some Statistical Mechanicsp. 409
Some Vector Calculusp. 419
Black-Body Fluxp. 423
Wave Functions for Identical Particlesp. 425
Bosonsp. 426
Fermionsp. 427
Some Applicationsp. 431
Transition Ratep. 435
Neutrino Mixingp. 443
Unitsp. 447
Standard International (SI)p. 447
Heaviside-Lorentz (rationalized cgs)p. 448
cgsp. 449
Fundamental Constantsp. 451
Conversion Factorsp. 452
Some Significant Names for Theoretical Physicsp. 453
Bibliographyp. 455
Indexp. 461
Table of Contents provided by Ingram. All Rights Reserved.

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