PART TWO. THERMODYNAMICS AND MOLECULAR PHYSICS

  • 2.1. Equation of the Gas State. Processes
  • 2.2. The First Law of Thermodynamics. Heat Capacity
  • 2.3. Kinetic Theory of Gases. Boltzmann's Law and Maxwell's Distribution
  • 2.4. The Second Law of Thermodynamics. Entropy
  • 2.5. Liquids. Capillary Effects
  • 2.6. Phase Transformations
  • 2.7. Transport Phenomena

PART THREE. ELECTRODYNAMICS

  • 3.1. Constant Electric Field in Vacuum . . . . .
  • 3.2. Conductors and Dielectrics in an Electric Field
  • 3.3. Electric Capacitance. Energy of an Electric Field
  • 3.4. Electric Current
  • 3.5. Constant Magnetic Field. Magnetics . . . . .
  • 3.6. Electromagnetic Induction. Maxwell's Equations . . . . . .
  • 3.7. Motion of Charged Particles in Electric and Magnetic Fields

PART FOUR. OSCILLATIONS AND WAVES

  • 4.1. Mechanical Oscillations
  • 4.2. Electric Oscillations
  • 4.3. Elastic Waves. Acoustics
  • 4.4. Electromagnetic Waves. Radiation

PART FIVE. OPTICS

  • 5.1. Photometry and Geometrical Optics
  • 5.2. Interference of Light
  • 5.3. Diffraction of Light
  • 5.4. Polarization of Light
  • 5.5. Dispersion and Absorption of Light ... .
  • 5.6. Optics of Moving Sources . . . . . . . .
  • 5. 7. Thermal Radiation. Quantum Nature of Light

PART SIX. ATOMIC AND NUCLEAR PHYSICS ...

  • 6.1. Scattering of Particles. Rutherford-Bohr Atom.
  • 6.2. Wave Properties of Particles. Schriidinger Equation.
  • 6.3. Properties of Atoms. Spectra.
  • 6.4. Molecules and Crystals
  • 6.5. Radioactivity . . . .
  • 6.6. Nuclear Reactions
  • 6. 7. Elementary Particles