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angle atoms axis boundary conditions calculated called capacitance capacitor charge density charge distribution charge q circuit coefficients components conducting conductor Consider constant coordinates Coulomb's law current density current distribution cylinder defined dependence Determine dielectric differential direction displacement distance electric dipole electric field electromagnetic electron electrostatic element Example external ferromagnetic field produced Figure filamentary flux force frequency function Gauss given by Eq gives hence incidence inductance inside integral interface Laplace's equation linear loop Lorentz Lorentz transformation macroscopic magnetic field magnitude material Maxwell's equations medium molecules normal parallel particle permittivity plane plates point charge polarization Poynting vector problem propagation radiation radius region relation respectively result RLC circuit scalar potential shown in Fig solenoid solution solved space sphere spherical Substituting surface charge density tangential components theorem total charge transformation unit vector vector potential velocity voltage volume wave equation wire zero