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Electric Charges and Forces
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Related lectures (40)
Electric Potential & Gauss's Law
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Explores electric potential, Gauss's law, and the relationship between field vectors and charges.
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Electrostatics: Forces, Charges, and Fields
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Introduces electrostatics, covering forces, charges, and electric fields, including Coulomb's force and the concept of electric field lines.
Electric Fields: Fundamentals
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Introduces the fundamentals of electric fields, equipotential surfaces, and electric potential calculation.
Electricity Fundamentals: Coulomb's Law and Electric Fields
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Introduces Coulomb's law, electric fields, potential, and voltage in electricity fundamentals.
Electrostatics and Magnetostatics
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Explores electrostatics, magnetostatics, charge conservation, and electric field calculations in various scenarios.
Emission of Electromagnetic Waves
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Explores the emission of electromagnetic waves by accelerated charges and the generation of ultra high frequency waves.
Electric Displacement Vector and Gauss's Law in Dielectrics
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Explores the modification of Gauss's law with dielectrics and the electric displacement vector D.
Plane Waves, Temporal Animations, and Discussions
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Covers theory of waves, vector analysis, and electromagnetic fields with animations.
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Magnetostatics: Magnetic Dipoles and Torque
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Explores magnetic potential energy, dipoles, torque, and analytical solutions for magnetic fields.
Maxwell's Equations: Polarizable Matter
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Explores Maxwell's equations in polarizable matter, including integral and differential forms, considerations for dielectric and magnetic materials, and the importance of a relativistic approach.
Magnetic Field of Plane Wave and Characteristic Impedance
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Covers the magnetic field of a plane wave and characteristic impedance.
Electromagnetism Fundamentals
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Introduces the fundamentals of electromagnetism, covering magnetic flux, inductance properties, energy transformations, and practical applications.
Circular Motion: Forces and Dynamics
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Discusses the principles of circular motion and the forces that govern it, including centripetal and gravitational forces.
Kinetic Energy and Work
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Explains kinetic energy, work, and gravitational forces in mechanics, with applications to Pluto and marble racing tracks.
Magnetic Induction: Basics and Applications
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Covers the basics of magnetic induction and its practical applications in circuits and transformers.
Radiation and Antennas: Characteristic Parameters and Directivity
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Explores characteristic parameters of antennas, directivity, radiation resistance, and power diagrams.
Force of Gravity and Mechanical Energy
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Explores force of gravity, mechanical energy conservation, and kinetic energy concepts with practical examples.
Ampère's Law and Applications
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Explores Ampère's law in magnetostatics, demonstrating its application in calculating magnetic fields from current-carrying wires and solenoids.
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