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Lecture
Introduction to Transformers and Gyrators
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Related lectures (31)
Transforming Sources: Voltage to Current
Demonstrates transforming voltage sources into current sources and simplifying circuits for efficient analysis.
Transformation: Tripole Equivalence
MOOC: Electrical engineering I
Covers the transformation of electrical circuits between different configurations and the importance for three-phase systems.
Jarzynski Equation and Quantum Circuits
Explores the Jarzynski equation and the quantization of electrical circuits in quantum harmonic oscillators.
Series RL Circuit: Voltage Jump Analysis
MOOC: Electrical engineering II
Covers the analysis of voltage jumps across a series RL circuit when switching on a sinusoidal voltage source.
Electrical Circuit: Fixed Point Methods
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Explores applying fixed point methods to solve electrical circuit equations and find diode voltage.
Circuit Analysis: Thevenin and Norton Theorems
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Explores circuit analysis using Thevenin and Norton theorems to simplify complex circuits for analysis.
S-Domain Circuit Analysis: Part 2
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Delves into s-domain circuit analysis, covering theorems, analysis methods, and stability concepts.
Signal Processing Fundamentals
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Covers signal processing, electric circuits, Fourier Transform, Kirchhoff's laws, and practical applications in various fields.
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.
Basic Concepts: Electric Circuits
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Introduces the fundamental concepts of electric circuits, including basic elements and Kirchhoff's laws.
Kirchhoff's Laws and DC Circuits
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Explores Kirchhoff's laws in DC circuits, resistor analysis, and capacitor behavior.
Electrical Circuits Basics
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Introduces the basics of electrical circuits, covering elements, laws, Ohm's law, and series/parallel connections.
Circuit Analysis: Thevenin's Theorem
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Explores circuit analysis using Thevenin's theorem to simplify complex circuits into equivalent ones with a single source and resistor.
Short-Circuit Currents Calculation
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Covers the calculation of short-circuit currents in electrical networks and the equivalent models of components.
Inductance Coil and Accumulated Energy
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Explores inductance coil, accumulated energy, coils in series, and RL circuits.
Maximum Power Transfer Theorem and Analysis Methods
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Explores the Maximum Power Transfer Theorem and Analysis Methods in linear circuits with practical examples.
Charging Capacitors: Time-Dependent Current and Circuits Analysis
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Delves into charging capacitors, analyzing circuits with time-dependent current and exploring parallel and series configurations.
Electrical Circuits and Systems Fundamentals
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Introduces the fundamentals of electrical circuits and systems, covering signal processing, Fourier Transform, and circuit analysis methods.
Analysis of Circuits with Dependent Sources
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Explores the analysis of circuits with dependent sources, node-voltage analysis, Thévenin equivalent circuits, and OPAMP fundamentals.
Signal Processing Fundamentals
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Covers the basics of signal processing and electric circuits.
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