Explores Gaussian surfaces and electric fields in conductors, emphasizing the need for infinite relative permittivity to maintain a zero electric field.
Explores the magnetic force on a current-carrying wire and the derivation of the magnetic field equation, emphasizing the importance of vector fields and unit vectors.
Explores the principles and applications of dielectrophoresis, covering topics such as DEP sorting, trapping devices, and live/dead cell differentiation.
Explores small oscillations, equilibrium points, harmonic oscillators, and gravitational fields in physics, including historical perspectives on celestial movements.
Explores multipole expansion in electrostatics and magnetostatics, focusing on monopole, dipole, and higher-order moments, and their mathematical representations.