Portable learning
publiccourseMCF 1.1

Electricity, Magnetism and Circuits 0.2.0

Published by @apv on August 12, 2026.

Source checksum
d6fbe6f258eef23cd1dea73d3fd454549895306a52e85b15080adb05822a3b66
Package size
722.4 KiB
Validation
valid · 0 diagnostics
Manifest ID
courses.theoria.polytechnical.electromagnetism-circuits
Manifest version
0.2.0
Entry
undefined
Language
en-CA
License
CC-BY-4.0
Authors
APV, Theoria
Subjects
physics, electromagnetism, electric circuits, Maxwell equations, electromagnetic waves
Level
intermediate
Structure
33 lessons · 57 activities · 168 questions

Learning outcomes

  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.

Release notes

No release notes were provided.

Canonical source is immutable

This release points to the validated source `.mcf.zip`. Browser-compiled learner output is derived and is not treated as repository source.