Portable learning
coursePublished source available

What learners can expect

  1. Compute electric forces, fields, flux, potential, conductor behaviour, capacitance, and field energy from charge distributions.
  2. Solve DC networks and RC/RL/RLC dynamics using conservation laws, differential equations, phasors, and power/energy checks.
  3. Compute Lorentz forces and magnetic fields from currents using Biot-Savart, Ampere, and dipole reasoning.
  4. Apply Faraday-Lenz induction, inductance, and magnetic-energy relations to changing-field systems.
  5. Use Maxwell equations, displacement current, wave relations, and the Poynting vector to connect lumped circuits with field dynamics.
  6. Cross-check electromagnetic calculations using dimensions, symmetry, limits, conservation laws, energy, and independent field/circuit formulations.

Version history

  1. 0.2.0course · MCF 1.1 · 722.4 KiB

0 stars · 0 forks

This repository is an original publication.

No public direct forks yet.