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Lecture
Electromagnetic Fields in Medium
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Related lectures (56)
Capacitance and Dielectrics: Understanding Maxwell's Equations
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Explores the significance of mastering Maxwell's equations in modern technologies through a Q&A session on dielectrics and electric fields.
Maxwell's Equations and Displacement Current
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Explores Maxwell's equations, displacement current, and constituent equations in electromagnetism problem-solving.
Maxwell Equations: Lecture 12
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Covers Maxwell's equations and the relationship between magnetic induction and electric field.
Charged Particle Trajectory in Electric Field
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Explores the Lorentz covariant formulation of electrodynamics and the trajectory of a charged particle in an electric field.
Curl of Vector Field and Path Integrals
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Explores the curl of a vector field and the calculation of path integrals in Cartesian coordinates.
Electromagnetic Duality
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Explores electromagnetic duality, a theorem establishing symmetry in Maxwell's equations for electric and magnetic quantities.
Emission of Electromagnetic Waves: Accelerated Charges and Dipole Antennas
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Explores the emission of electromagnetic waves by accelerated charges and dipole antennas.
Polarisation: Reminders, Animations, and Vector Analysis
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Explores the theory and animations of linear, circular, and elliptical polarisations in electromagnetic waves.
Electrostatics and Coulomb Force
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Covers electrostatics, Coulomb force, and image charge method in electromagnetism.
Maxwell's Equations and Displacement Current
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Discusses Maxwell's equations, Ampère's law inconsistencies, displacement current, and constituent equations for nonmagnetic materials.
Magnetic Circuits: Understanding Inductance and Maxwell's Equations
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Explains magnetic circuits, focusing on inductance and Maxwell's equations in electromechanical systems.
Electromagnetism: Exam Preparation
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Covers exam preparation for electromagnetism, focusing on key concepts and practical tips for success in the written exam.
Magnetic Fields: Circulation and Solenoids
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Explores the circulation of magnetic fields in solenoids and the application of Ampère's law.
Introduction to Magnetic Materials: Applications in Modern Technologies
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Introduces magnetic materials and their critical applications in modern technologies, focusing on engineering and optimizing these materials for various uses.
E-M Waves Interacting with Matter
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Electromagnetism: Fundamentals and Applications
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Covers electromagnetism fundamentals, practical applications, and transversal skills for challenges in the field.
Lorentz Covariant Formulation: Maxwell Equations
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Covers Lorentz transformations, Maxwell equations, and charge conservation in Lorentz invariant physics.
Maxwell's Equations and Displacement Current
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Explores Maxwell's equations and displacement current for a better understanding of electrodynamics.
Electromagnetism Survey
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Presents the outcomes of an electromagnetism survey and emphasizes the value of student feedback.
Circuits: Localized or Distributed
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Explores the theory of distributed circuits in electromagnetism and the importance of considering time delays in various engineering applications.
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