So this Magnetic Electricity Lecture includes a discussion of the concepts: Vector analysis, gradient, divergence, curl, Stokes‘ theorem, electric field, Coulomb‘s law, electric field, Gauss‘s law, electric potential, electric dipole, electric energy multipole, field energy density, Laplace‘s equation and Poisson‘s equation, boundary conditions, shadow method, variable separation method. dielectric materials: polarization vector, polarization charge, displacement vector D, Gauss‘s law for D. Electric Current: flow of electric charge, continuity equation. Magnetic fields: Lorentz force, Biot-Savart law, vector potential, Ampere‘s law, magnetic dipole moment, switch potential, magnetization, magnetic poles, Ampere‘s law for H, magnetic materials, hysteresis. Magnetic effects, displacement currents, Maxwell‘s equations. Learning is carried out using the case study method and carrying out activities in the laboratory (the process of collecting data, reporting and presenting the results of laboratory activities).