Electricity and Magnetism: An Introduction to the Theory of Electric and Magnetic Fields |
Contents
Physical Quantities and Properties of Physical Equations | 3 |
Vector Analysis | 18 |
Quantitative Investigation of Electric | 65 |
Copyright | |
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axis boundary conditions calculation capacitance capacitor carrying a current cavity charge density charge distribution charge q coil component conducting sphere coordinates curl current density current distribution current-carrying conductors cylinder dielectric constant dipole direction disk displacement distance electret electric and magnetic electric field electric field vector electrodes electromagnetic wave electrostatic field electrostatic potential equal Example expression external field inside flux force acting formula inductance interface Laplace's equation length liquid loop magnetic field magnetostatic field measured medium multipole normal obtain P₂ parallel plane plates point charge point of observation polarization problem produced quantities region of space ring satisfies scalar Section shell Show shown in Fig spherical stationary surface charge surface charge density surface integral symmetry theorem uniformly charged vector field vector identity velocity voltage wire zero Απερ μο Мо