Understanding Maxwell’s Legacy

Dive into the heart of electromagnetic theory with Maxwell’s equations, exploring magnetic forces, continuity, and the elegant dance of divergence and curl.

A detailed illustration of magnetic field lines swirling around a conductor, highlighting the Biot-Savart law in action.
A detailed illustration of magnetic field lines swirling around a conductor, highlighting the Biot-Savart law in action.

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Projects

Diving into Maxwell’s equations and magnetic forces.

A detailed diagram illustrating the magnetic field lines around a current-carrying wire.
A detailed diagram illustrating the magnetic field lines around a current-carrying wire.
Lorentz Force

Visualizing charged particles moving under magnetic fields.

Simulation of charged particle trajectories influenced by Lorentz forces.
Simulation of charged particle trajectories influenced by Lorentz forces.
Continuity

Equation of continuity in fluid and charge flow.

Graphical representation of charge density changes over time in a circuit.
Graphical representation of charge density changes over time in a circuit.
Magnetostatic field lines around permanent magnets shown with vector arrows.
Magnetostatic field lines around permanent magnets shown with vector arrows.
Biot-Savart

Calculating magnetic fields from current elements.

Divergence

Exploring divergence and curl in vector fields.

Gallery

Visualizing Maxwell’s equations and magnetic fields

A colorful vector field illustrating magnetic flux lines around a current-carrying wire.
A colorful vector field illustrating magnetic flux lines around a current-carrying wire.
Diagram showing the Lorentz force acting on a charged particle moving through electric and magnetic fields.
Diagram showing the Lorentz force acting on a charged particle moving through electric and magnetic fields.
Visualization of the equation of continuity depicting charge conservation in a dynamic system.
Visualization of the equation of continuity depicting charge conservation in a dynamic system.
Magnetostatic field lines around a bar magnet demonstrating the Biot-Savart law in action.
Magnetostatic field lines around a bar magnet demonstrating the Biot-Savart law in action.
A 3D rendering of divergence and curl operators applied to electromagnetic fields, highlighting their spatial behavior.
A 3D rendering of divergence and curl operators applied to electromagnetic fields, highlighting their spatial behavior.

Get in Touch

Questions about Maxwell’s equations? Reach out anytime.

A close-up of a hand sketching Maxwell’s equations on a chalkboard filled with magnetic field diagrams.
A close-up of a hand sketching Maxwell’s equations on a chalkboard filled with magnetic field diagrams.