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Lecture
Magnetostatics: Cyclotron Applications
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Relativistic Motion of Charged Particles
Explores the relativistic motion of charged particles in electric fields, focusing on Lorentz covariant electrodynamics and the relativistic Larmor power.
Magnetic Fields and Forces
Explores magnetic fields, forces, Ampère's Law, and ferromagnetism, including the magnetic properties of materials and problem-solving examples.
Magnetic Force and Lorentz Force Law
Explores magnetic force on charges, trajectories in fields, cyclotron motion, and the Lorentz force law.
Magnetic Forces: Biot-Savart Law
Explores magnetic phenomena, current, charge conservation, Biot-Savart law, and Ampère's force law.
Hall Effect: Theory and Applications
Explores the Hall effect, explaining how a magnetic field can induce a voltage difference in a conductor.
Magnetic Moments and Field Lines: Equivalence and Induction
Explores magnetic dipole, field lines, and induction by moving charges.
Electric Fields and Particle Motion
Explores charged particle motion in electric fields and cyclotron operation.
Magnetostatics: Lorentz Force and Magnetic Fields
Explores Lorentz force and magnetic fields interactions with moving charges in stationary magnetic fields.
Magnetostatics: Charged Particle Motion and Mass Spectrometry
Explores charged particle motion in magnetic fields, mass spectrometry, and magnetic lenses.
Lorentz Covariant Formulation: Maxwell Equations
Covers Lorentz transformations, Maxwell equations, and charge conservation in Lorentz invariant physics.