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Lecture
Electric Circuits: DC Circuits
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Related lectures (52)
Synchronous Motors: Permanent Magnet Applications and Characteristics
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Discusses the principles and applications of synchronous motors with permanent magnets, focusing on their operation and performance characteristics.
Three-Phase Circuits: Power and Step Response Analysis
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Explores power in three-phase systems and step response analysis of RC and RL circuits.
Resistance in Conductors
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Explains the concept of resistance in conductors and its relationship with current and voltage.
Laws of Kirchhoff: Reminder and Examples
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Covers the laws of Kirchhoff, current and voltage dividers, and circuit simplifications.
Electric Power and Circuits
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Covers electric power calculations, resistors in series and parallel, Kirchhoff's rules, and circuits with resistors and capacitors.
Maxwell's Equations and Induction Phenomenon
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Explores Maxwell's equations, induction in moving conductors, electromotive force, and electrical fields.
Motor Characteristics
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Discusses motor characteristics such as torque, speed, current, and thermal resistances, and their impact on performance.
Energy Transfer in Capacitors: Charge and Discharge
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Covers energy transfer processes in capacitors, including charging and discharging mechanisms and their associated energy calculations.
Apparent and True Power: Transformer
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Explains apparent and true power in circuits, power factor, transformers without load resistors, and transformers with load resistors.
Kirchhoff's Rules: Circuits & Power
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Discusses Kirchhoff's rules in circuits, power, resistivity measurement, and resistor grouping.
Understanding Ohmic Contacts: Schottky and Avalanche Effects
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Covers the principles of ohmic contacts and their significance in semiconductor devices.
DC Circuits: Current Origin and Conductors
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Explores the origin of current in conductors, the creation of electric fields, and the concept of current flow.
Circuit Analysis: Thevenin and Norton Equivalents
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Explores Thevenin and Norton equivalents, mesh and nodal analysis, and planar circuits.
Electrotechnique I: Complex Apparent Power
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Covers active, reactive, and apparent powers, as well as complex impedance properties.
Current and Charge Movement
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Explores the historical context of electric power distribution and fundamental concepts of currents and circuits.
AC Circuits Analysis: Maxwell's Equations to Impedance
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Explores AC circuits analysis, from Maxwell's equations to impedance and experimental phase shifts verification.
BJT vs FET Operation
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Compares BJT and FET operation in logic systems, discusses TTL vs CMOS technologies, and explores Set-Reset Latch functionality.
RC Circuits and Magnetism
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Covers RC circuits and magnetism, exploring discharging capacitors and magnetic forces on charges and currents.
Feedback and Stability
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Explores negative feedback in analog circuits, focusing on desensitizing gain, reducing distortion, controlling noise, and extending bandwidth.
Harmonic Oscillator: LC Resonator Analysis
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Analyzes an LC resonator as a harmonic oscillator, discussing transient behavior, oscillations in charge and current, and the interplay between electrical and magnetic energy.
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