black and white bed linen

Electromagnetic

Electromagnetic Insights

Delving into Maxwell’s equations and the forces shaping our magnetic world.

A close-up of a hand drawing vector fields representing divergence and curl on a chalkboard.
A close-up of a hand drawing vector fields representing divergence and curl on a chalkboard.
A detailed illustration of magnetic field lines swirling around a conductor.
A detailed illustration of magnetic field lines swirling around a conductor.

Our Focus

Delving deep into Maxwell’s equations and magnetic forces.

A detailed illustration of magnetic field lines swirling around a conductor.
A detailed illustration of magnetic field lines swirling around a conductor.
Maxwell’s Equations

Understanding the foundation of electromagnetism.

Lorentz Forces

Exploring forces on charged particles in magnetic fields.

Magnetostatics

Studying steady magnetic fields and their effects.

Magnetostatics

Studying steady magnetic fields with Biot-Savart law.

A detailed diagram showing magnetic field lines around a steady current-carrying wire.
A detailed diagram showing magnetic field lines around a steady current-carrying wire.
Lorentz Forces

Analyzing how charged particles move under magnetic and electric fields, revealing the push and pull described by the Lorentz force equation.

Visualization of charged particles curving through a magnetic field with force vectors illustrated.
Visualization of charged particles curving through a magnetic field with force vectors illustrated.
Continuity Equation

Exploring the principle that electric charge is conserved, ensuring currents flow smoothly without sudden loss or gain.

Contact Us

A detailed illustration of magnetic field lines swirling around a conductor, highlighting the Lorentz force in action.
A detailed illustration of magnetic field lines swirling around a conductor, highlighting the Lorentz force in action.

Reach out to discuss Maxwell’s equations or magnetostatic phenomena with us.