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[×ÊÔ´] ÖØ°õÎïÀíÊé¼®µÚÁùÌû£¡·ÑÂüÎïÀíѧ½²Òå The Feynman Lectures on Physics,Vol. I ÍêÕû°æ

ÊéÃû£ºThe Feynman Lectures on Physics, Vol. I: The New Millennium Edition: Mainly Mechanics, Radiation, and Heat
×÷ÕߣºRichard P. Feynman, Robert B. Leighton, Matthew Sands
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Introduction......Page 34
Matter is made of atoms......Page 36
Atomic processes......Page 41
Chemical reactions......Page 45
Introduction......Page 51
Physics before 1920......Page 54
Quantum physics......Page 59
Nuclei and particles......Page 62
Chemistry......Page 69
Biology......Page 71
Astronomy......Page 78
Geology......Page 80
Psychology......Page 81
How did it get that way?......Page 82
What is energy?......Page 85
Gravitational potential energy......Page 87
Kinetic energy......Page 94
Other forms of energy......Page 95
Motion......Page 100
Time......Page 101
Short times......Page 102
Long times......Page 105
Units and standards of time......Page 108
Large distances......Page 109
Short distances......Page 113
Chance and likelihood......Page 119
Fluctuations......Page 122
The random walk......Page 126
A probability distribution......Page 131
The uncertainty principle......Page 135
Planetary motions......Page 139
Kepler's laws......Page 140
Development of dynamics......Page 142
Newton's law of gravitation......Page 143
Universal gravitation......Page 147
Cavendish's experiment......Page 153
What is gravity?......Page 155
Gravity and relativity......Page 158
Description of motion......Page 160
Speed......Page 163
Speed as a derivative......Page 168
Distance as an integral......Page 170
Acceleration......Page 172
Momentum and force......Page 177
Speed and velocity......Page 179
Components of velocity, acceleration, and force......Page 180
What is the force?......Page 182
Meaning of the dynamical equations......Page 184
Numerical solution of the equations......Page 185
Planetary motions......Page 187
Newton's Third Law......Page 195
Conservation of momentum......Page 197
Momentum is conserved!......Page 201
Momentum and energy......Page 206
Relativistic momentum......Page 208
Symmetry in physics......Page 212
Translations......Page 213
Rotations......Page 215
Vectors......Page 219
Vector algebra......Page 221
Newton's laws in vector notation......Page 224
Scalar product of vectors......Page 226
What is a force?......Page 230
Friction......Page 233
Molecular forces......Page 238
Fundamental forces. Fields......Page 240
Pseudo forces......Page 246
Nuclear forces......Page 249
Energy of a falling body......Page 251
Work done by gravity......Page 255
Summation of energy......Page 260
Gravitational field of large objects......Page 263
Work......Page 267
Constrained motion......Page 270
Conservative forces......Page 271
Nonconservative forces......Page 276
Potentials and fields......Page 278
The principle of relativity......Page 284
The Lorentz transformation......Page 287
The Michelson-Morley experiment......Page 288
Transformation of time......Page 292
Simultaneity......Page 296
Four-vectors......Page 297
Relativistic dynamics......Page 298
Equivalence of mass and energy......Page 300
Relativity and the philosophers......Page 303
The twin paradox......Page 306
Transformation of velocities......Page 307
Relativistic mass......Page 311
Relativistic energy......Page 315
The geometry of space-time......Page 319
Space-time intervals......Page 322
Past, present, and future......Page 324
More about four-vectors......Page 326
Four-vector algebra......Page 330
The center of mass......Page 333
Rotation of a rigid body......Page 336
Angular momentum......Page 340
Conservation of angular momentum......Page 343
Properties of the center of mass......Page 346
Locating the center of mass......Page 351
Finding the moment of inertia......Page 353
Rotational kinetic energy......Page 357
Torques in three dimensions......Page 362
The rotation equations using cross products......Page 368
The gyroscope......Page 370
Angular momentum of a solid body......Page 375
Linear differential equations......Page 378
The harmonic oscillator......Page 379
Harmonic motion and circular motion......Page 383
Initial conditions......Page 385
Forced oscillations......Page 386
Addition and multiplication......Page 389
The inverse operations......Page 391
Abstraction and generalization......Page 392
Approximating irrational numbers......Page 394
Complex numbers......Page 399
Imaginary exponents......Page 402
Complex numbers and harmonic motion......Page 406
The forced oscillator with damping......Page 409
Electrical resonance......Page 413
Resonance in nature......Page 417
The energy of an oscillator......Page 425
Damped oscillations......Page 428
Electrical transients......Page 431
Linear differential equations......Page 436
Superposition of solutions......Page 438
Oscillations in linear systems......Page 444
Analogs in physics......Page 447
Series and parallel impedances......Page 450
Light......Page 452
Reflection and refraction......Page 454
Fermat's principle of least time......Page 456
Applications of Fermat's principle......Page 460
A more precise statement of Fermat's principle......Page 466
How it works......Page 468
Introduction......Page 470
The focal length of a spherical surface......Page 471
The focal length of a lens......Page 476
Magnification......Page 479
Compound lenses......Page 480
Aberrations......Page 481
Resolving power......Page 483
Electromagnetism......Page 485
Radiation......Page 489
The dipole radiator......Page 491
Interference......Page 494
Electromagnetic waves......Page 497
Energy of radiation......Page 499
Sinusoidal waves......Page 500
Two dipole radiators......Page 502
The mathematics of interference......Page 507
The resultant amplitude due to n equal oscillators......Page 512
The diffraction grating......Page 517
Resolving power of a grating......Page 521
The parabolic antenna......Page 523
Colored films; crystals......Page 524
Diffraction by opaque screens......Page 525
The field of a plane of oscillating charges......Page 529
The index of refraction......Page 535
The field due to the material......Page 541
Dispersion......Page 544
Absorption......Page 548
The energy carried by an electric wave......Page 549
Diffraction of light by a screen......Page 551
Radiation resistance......Page 554
The rate of radiation of energy......Page 556
Radiation damping......Page 558
Independent sources......Page 560
Scattering of light......Page 563
The electric vector of light......Page 569
Birefringence......Page 572
Polarizers......Page 576
Optical activity......Page 578
The intensity of reflected light......Page 580
Anomalous refraction......Page 583
Moving sources......Page 588
Finding the ``apparent'' motion......Page 591
Synchrotron radiation......Page 593
Cosmic synchrotron radiation......Page 597
Bremsstrahlung......Page 599
The Doppler effect......Page 600
The , bold0mu mumu kk29kkkk four-vector......Page 603
Aberration......Page 605
The momentum of light......Page 607
The human eye......Page 610
Color depends on intensity......Page 612
Measuring the color sensation......Page 615
The chromaticity diagram......Page 620
The mechanism of color vision......Page 622
Physiochemistry of color vision......Page 624
The sensation of color......Page 629
The physiology of the eye......Page 633
The rod cells......Page 638
The compound (insect) eye......Page 640
Other eyes......Page 645
Neurology of vision......Page 647
Atomic mechanics......Page 654
An experiment with bullets......Page 655
An experiment with waves......Page 657
An experiment with electrons......Page 660
The interference of electron waves......Page 662
Watching the electrons......Page 664
First principles of quantum mechanics......Page 669
The uncertainty principle......Page 671
Probability wave amplitudes......Page 674
Measurement of position and momentum......Page 676
Crystal diffraction......Page 681
The size of an atom......Page 684
Energy levels......Page 686
Philosophical implications......Page 688
Properties of matter......Page 692
The pressure of a gas......Page 694
Compressibility of radiation......Page 700
Temperature and kinetic energy......Page 701
The ideal gas law......Page 707
The exponential atmosphere......Page 711
The Boltzmann law......Page 714
Evaporation of a liquid......Page 715
The distribution of molecular speeds......Page 717
The specific heats of gases......Page 723
The failure of classical physics......Page 726
Equipartition of energy......Page 730
Thermal equilibrium of radiation......Page 734
Equipartition and the quantum oscillator......Page 740
The random walk......Page 743
Evaporation......Page 748
Thermionic emission......Page 753
Thermal ionization......Page 755
Chemical kinetics......Page 758
Einstein's laws of radiation......Page 760
Collisions between molecules......Page 766
The mean free path......Page 769
The drift speed......Page 772
Ionic conductivity......Page 774
Molecular diffusion......Page 776
Thermal conductivity......Page 781
Heat engines; the first law......Page 783
The second law......Page 787
Reversible engines......Page 789
The efficiency of an ideal engine......Page 795
The thermodynamic temperature......Page 798
Entropy......Page 801
Internal energy......Page 807
Applications......Page 812
The Clausius-Clapeyron equation......Page 816
How a ratchet works......Page 823
The ratchet as an engine......Page 825
Reversibility in mechanics......Page 829
Irreversibility......Page 831
Order and entropy......Page 833
Waves......Page 837
The propagation of sound......Page 841
The wave equation......Page 842
Solutions of the wave equation......Page 846
The speed of sound......Page 848
Adding two waves......Page 850
Beat notes and modulation......Page 853
Side bands......Page 856
Localized wave trains......Page 858
Probability amplitudes for particles......Page 862
Waves in three dimensions......Page 864
Normal modes......Page 866
The reflection of waves......Page 868
Confined waves, with natural frequencies......Page 870
Modes in two dimensions......Page 873
Coupled pendulums......Page 877
Linear systems......Page 880
Musical tones......Page 882
The Fourier series......Page 884
Quality and consonance......Page 887
The Fourier coefficients......Page 889
Nonlinear responses......Page 894
Bow waves......Page 899
Shock waves......Page 901
Waves in solids......Page 906
Surface waves......Page 911
Symmetry operations......Page 917
Symmetry in space and time......Page 918
Symmetry and conservation laws......Page 921
Mirror reflections......Page 922
Polar and axial vectors......Page 926
Which hand is right?......Page 929
Parity is not conserved!......Page 930
Antimatter......Page 933
Broken symmetries......Page 935
Index......Page 937
Name Index......Page 959
List of Symbols......Page 963ÖØ°õÎïÀíÊé¼®µÚÁùÌû£¡·ÑÂüÎïÀíѧ½²Òå The Feynman Lectures on Physics,Vol. I ÍêÕû°æ
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