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Lecture
Electromechanical Systems: Actuators and Permeance
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Related lectures (32)
Electromagnetic Induction: Mutual Inductance and Magnetic Circuits
Covers induction amplitude, totalized flux, inductance, mutual inductance, and magnetic circuits.
Circuits: LC Oscillator and Filters
Explores LC oscillators, filters, resonance, and energy losses in circuits with inductors and capacitors.
Inductance and Magnetic Circuits
Explores inductance, magnetic flux, and induced voltage in coils.
Mutual Inductance and Self-Inductance
Explains mutual inductance, self-inductance, magnetic energy, and 'cross-talk' in circuits.
Index Responses and Unit Jumps
MOOC: Electrical engineering II
Explains index responses, unit jumps, and step responses of inductors and capacitors.
Electric Current: Definitions and Concepts
Covers the concept of electric current and its conditions for flow.
Electromagnetic Waves: Theory & Applications
Explores electromagnetic waves, Maxwell's equations, circuits, and wave propagation through different media.
Self-Inductance: Definition and Examples
MOOC: Electromechanical conversion I
Covers the definition of self-inductance and provides illustrative examples.
Electromagnetism Exam Preparation
Provides essential guidance and clarifications on electromagnetism concepts for the upcoming exam.
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.
Magnetic Circuits: Inductances and Maxwell Equations
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Explores magnetic circuits, inductances, and Maxwell's equations in the quasi-static regime, emphasizing Faraday's law and magnetic permeance.
Energy in Inductance & Capacitance
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Explores energy storage in coils, magnetic fields, and capacitors, emphasizing the oscillation and decay of energy in circuits.
Magnetostatics: Magnetic Field and Force
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Covers magnetic fields, Ampère's law, and magnetic dipoles with examples and illustrations.
Magnetostatics: Forces, Energy, and Inductance
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Explores magnetic forces, energy, inductance, and the magnetic dipole moment in circuits.
Force Calculation Methods: Electromechanical Systems
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Covers the calculation of forces in electromechanical systems using the Maxwell tensor.
Electromagnetic Actuators
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Explores electromagnetic and reluctant polarized actuators, force concepts, and actuator classes.
Magnetic Materials and Induction
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Explores magnetic materials, induction, transformers, and force calculation in magnetic systems.
AC Circuits: Reactances and Complex Impedances
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Explores AC circuits, Ohm's law, Kirchhoff's laws, phase shifts, filters, and power consumption in AC circuits.
Electromagnetism Fundamentals
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Introduces the fundamentals of electromagnetism, covering magnetic flux, inductance properties, energy transformations, and practical applications.
Work and Energy
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Explores work, kinetic energy, forces, and energy conservation in mechanical systems.
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