Re: Tipler vs.Halliday



Fis wrote:

Was für Themen behandeln die 'Feynman Lectures' eigentlich genau?

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V1 Ch 00 Feynman's Preface Foreword Contents
V1 Ch 01 Atoms in Motion
V1 Ch 02 Basic Physics
V1 Ch 03 Relation of Physics to Other
V1 Ch 04 Conservation of Energy
V1 Ch 05 Time and Distance
V1 Ch 06 Probability
V1 Ch 07 The Theory of Gravitation
V1 Ch 08 Motion
V1 Ch 09 Newton's Law of Dynamics
V1 Ch 10 Conservation of Momentum
V1 Ch 11 Vectors
V1 Ch 12 Characteristics of Force
V1 Ch 13 Work and Potential Energy
V1 Ch 14 Work and Potential Energy Continued
V1 Ch 15 Special Theory of Relativity
V1 Ch 16 Relativistic Energy and Motion
V1 Ch 17 Space - Time
V1 Ch 18 Rotation in Two Dimensions
V1 Ch 19 Center of Mass-Moment of Inertia
V1 Ch 20 Rotation in Space
V1 Ch 21 Harmonic Oscillator
V1 Ch 22 Algebra
V1 Ch 23 Resonance
V1 Ch 24 Transients
V1 Ch 25 Linear Systems and Review
V1 Ch 26 Optics
V1 Ch 27 Geometrical Optics
V1 Ch 28 Electromagnetic Radiation
V1 Ch 29 Interferance
V1 Ch 30 Diffraction
V1 Ch 31 Origin of the Refractive Index
V1 Ch 32 Radiation Damping-Light Scattering
V1 Ch 33 Polarization
V1 Ch 34 Relativistics Events in Radiation
V1 Ch 35 Colour Vision
V1 Ch 36 Mechanisms of Seeing
V1 Ch 37 Quantum Behavior
V1 Ch 38 Wave and Particle Viewpoints
V1 Ch 39 Kinetic Theory of Gases
V1 Ch 40 Principles of Statistical Mechanics
V1 Ch 41 Brownian Movement
V1 Ch 42 Applications of Kinetic Theory
V1 Ch 43 Diffusion
V1 Ch 44 Laws of Thermodynamics
V1 Ch 45 Illustrations of Thermodynamics
V1 Ch 46 Ratchet and Paw
V1 Ch 47 Sound & The Wave Equation
V1 Ch 48 Beats
V1 Ch 49 Modes
V1 Ch 50 Harmonics
V1 Ch 51 Waves
V1 Ch 52 Symmetry in Physical Laws
V1 Ch 53 Index

V2 Ch 00 Title Preface Forward
V2 Ch 01 Electromagnetism
V2 Ch 02 Differential Calculus of Vector Fields
V2 Ch 03 Integral Calculus of Vector Fields
V2 Ch 04 Electrostatics
V2 Ch 05 Application of Gauss' Law
V2 Ch 06 Electric Field in Var Circumstances
V2 Ch 07 Electric Field in VC contd
V2 Ch 08 Electrostatic Energy
V2 Ch 09 Electricity in the Atmosphere
V2 Ch 10 Dielectrics
V2 Ch 11 Inside Dielectrics
V2 Ch 12 Electro Static Analogues
V2 Ch 13 Magnetostatics
V2 Ch 14 Magnetic Field in Various Situations
V2 Ch 15 Vector Potential
V2 Ch 16 Induced Currents
V2 Ch 17 Laws of Induction
V2 Ch 18 Maxwells Equations
V2 Ch 19 Principle of Least Action
V2 Ch 20 Solutions Maxwells Eqns Free Space
V2 Ch 21 Solutions Maxwells Eqns Currents Charges
V2 Ch 22 AC Circuits
V2 Ch 23 Cavity Resonators
V2 Ch 24 Waveguides
V2 Ch 25 Magnetism of Matter
V2 Ch 26 Lorentz Transformations of the Fields
V2 Ch 27 Field Energy and Momentum
V2 Ch 28 Electromagnetic Mass
V2 Ch 29 Charge Motion in E-M Fields
V2 Ch 30 Internal Crystal Geometry
V2 Ch 31 Tensors
V2 Ch 32 Refractive Index Dense Materials
V2 Ch 33 Surface Reflection
V2 Ch 34 Magnetism of Matter
V2 Ch 35 Paramagnetism and Magnetic Resonance
V2 Ch 36 FerroMagenetism
V2 Ch 37 Magnetic Materials
V2 Ch 38 Elasticity
V2 Ch 39 Elastic Materials
V2 Ch 40 Invicid Flow
V2 Ch 41 Viscous Flow
V2 Ch 42 Curved Space
V2 Ch 43 Index

V3 Ch 00 Title Preface Forward
V3 Ch 01 Quantum Behavior
V3 Ch 02 Relation Of Wave & Particle Viewpoints
V3 Ch 03 Probability Amplitudes
V3 Ch 04 Identical Particles
V3 Ch 05 Spin One
V3 Ch 06 Spin One-Half
V3 Ch 07 The Dependence Of Amplitude On Time
V3 Ch 08 The Hamiltonian Matrix
V3 Ch 09 The ammonia maser
V3 Ch 10 Other Two State Systems
V3 Ch 11 More Two State Systems
V3 Ch 12 Hyperfine Slitting
V3 Ch 13 Propagation in a Crystal Lattice
V3 Ch 14 Semiconductors
V3 Ch 15 Independent Particle Approximation
V3 Ch 16 Dependence of Amplitudes on Position
V3 Ch 17 Symetry in conservation laws
V3 Ch 18 Angular Momentum
V3 Ch 19 Hydrogen Atom & Periodic Table
V3 Ch 20 Operators
V3 Ch 21 Schrodinger Equation in a Classical Context
V3 Ch 22 Index Epilogue
V3 Ch 23 Motion of Planets (Feynman's Lost Lecture)
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