Syllabus
Aims
Teaching Method
Syllabus:

Electric Field :

Definition, properties of electric field, electric field lines, calculations of the electric field with some applications, motion of a charged particle in a uniform electric field. [4 hours].
Problems - Under Construction
Gauss's Law :
Electric flux, Gauss's law, applications of Gauss's law to electrostatics [3 hours ].
Problems - Under Construction
Electric Potential :
Basic definition, potential difference between two points and electric potential, potential difference in a uniform and nonuniform electric fields, electric potential energy due to point charges, applications to electrostatics [4 hours].
Problems - Under Construction
Capacitance and Dielectrics :
Definition of capacitance, calculation of capacitance, capacitors networks, energy stored in a capacitor [3 hours].
Problems - Under Construction
Current and Resistance :
Electric current, resistance and Ohm's law, resistivity of different conductors, superconductors, electrical energy and power [ 3 hours].
Problems - Under Construction
Direct current Circuits :
force, resistors networks, Kirchhoff's laws, RC circuits [4 hours]. .
Problems - Under Construction
Magnetic Field :
Introduction, definition and properties, magnetic force on a current carrying conductor, motion of a charged particles in a magnetic field, applications of the motion of a charged particle in a magnetic field [4 hours] .
Problems - Under Construction
Sources of the Magnetic Field (Optional) :
The Biot-Savart law, the magnetic force between two parallel conductors, Ampere's law, magnetic flux [3 hours].
Problems - Under Construction
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