Electricity and Magnetism
Electricity and Magnetism: Overview
Electricity and Magnetism covers chapters such as Current Electricity, Electromagnetic Induction, Electric Charges and Fields, Electrostatic Potential and Capacitance, Alternating Current, Moving Charges and Magnetism and, Magnetism and Matter
Practice Other Chapters from Electricity and Magnetism
This chapter covers topics such as Different Methods of Charging, Electric Charge, Conductors, Insulators and Semiconductors, Dipole in a Uniform External Field, Superposition Principle, Electric Field, Electric Flux, etc.

This chapter covers topics such as Effect of Dielectric on Capacitance, Relation between Field and Potential, Potential Energy in an External Field, Potential Due to a Electric Dipole, Parallel and Spherical Plate Capacitor, etc.

This chapter covers topics such as Electric Current, Cells, EMF, Internal Resistance, Combination of Resistors—Series and Parallel, Temperature Dependence of Resistivity, Electric Currents in Conductors, Kirchhoff's Laws and their Applications, etc.

This chapter covers topics such as Cyclotron, Magnetic Field due to Current in a Straight Wire, Magnetic Field on the Axis of a Circular Current Loop, Force between Current Carrying Wires, Magnetic Field due to a Current Element, and Biot-Savart Law.

This chapter covers topics such as Magnetic Properties of Materials, Magnetization and Magnetic Intensity, Magnetism and Gauss's Law, The Bar Magnet, The Earth's Magnetism, and Permanent Magnets and Electromagnets.

This chapter covers topics such as AC Generator, Magnetic Flux, Motional Electromotive Force, Eddy Currents, Faraday's Laws of Induction, Lenz's Laws and Conservation of Energy, Inductance, Experiments of Faraday and Henry, etc.

This chapter covers topics such as Resonance, Power in AC Circuits, AC Voltage Applied to a Series LCR Circuit, Representation of AC Current and Voltage By Rotating Vectors-Phasors, Transformer, AC Voltage Applied to a Resistor, etc.
