目錄:PART 3 ELECTROMAGNETISM
CHAPTER 11 ELECTROSTATIC FIELD
11.1 Electric Charges
11.2 Electric Field and Electric Field Intensity
11.3 Coulomb's Law and Calculating Electrostatic Field
11.4 Electric Field Lines and Electric Flux
11.5 Gauss' Law
11.6 Finding Electrostatic Field Distribution by Gauss' Law
SUMMARY
QUESTIONS
PROBLEMS
CHAPTER 12 ELECTRIC POTENTIAL
12.1 Conservative Property of Electrostatic Field
12.2 Electric Potential Difference and Electric Potential
12.3 Principle of Superposition of Electric Potential
12.4 Finding Field from Potential
12.5 Electrostatic Energy of Electric Charge in External Electric Field
12.6 Energy of Electrostatic Field
SUMMARY
QUESTIONS
PROBLEMS
CHAPTER 13 ELECTROSTATIC FIELD WITH CONDUCTORS ORDIELECTRICS PRESENT
13.1 Conditions for Electrostatic Equilibrium of a Conductor
13.2 Charge Distribution on a Conductor in Electrostatic Equilibrium State
13.3 Finding Electrostatic Field When Conductors are Present
13.4 Capacitors and Capacitance
13.5 Effect on Dielectrics by Electric Field
13.6 Polarization of Dielectrics
13.7 Electric Displacement Vector D and Its Gauss' Law
13.8 Energy Storedin a Capacitor
SUMMARY
QUESTIONS
PROBLEMS
CHAPTER 14 ELECTRIC CURRENT AND MAGNETIC FIELD
14.1 Electric Current and Current Density
14.2 A Classical Microscopic View of Electric Current
14.3 Ohm's Law
14.4 Magnetic Force and Motion of Electric Charge
14.5 Magnetic Field and Magnetic Induction
14.6 Biot-Savart Law
14.7 Ampere CircuitalTheorem
14.8 Finding Distribution of the Magnetic Field with AmpereCircuital Theorem
14.9 Magnetic Field Associated with Varying Electric Field
SUMMARY
QUESTIONS
PROBLEMS
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PART 4 WAVE AND OPTICS
PART 5 FUNDAMENTALS OF QUANTUM PHYSICS