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EE-111: Circuits and systems
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Lectures in this course (18)
Fundamental Theorems of Circuits and Systems
Explores fundamental theorems of circuits, superposition, source substitution, and Thévenin and Norton equivalents.
Fourier Transform: Circuit Analysis
Explores the Fourier transform applied to circuit analysis and its properties.
Circuit Analysis: Thevenin and Norton Equivalents
Explores Thevenin and Norton equivalents, mesh and nodal analysis, and planar circuits.
Transient Regimes in Circuits
Covers the analysis of transient regimes in circuits, focusing on step responses of RC and RL circuits.
Phasors in Electrical Circuits
Explores phasors in electrical circuits, including impedance, admittance, and application to resistance, inductance, and capacitance.
Circuits in Sinusoidal Mode: Fundamentals and Analysis
Explores the fundamentals of circuits in sinusoidal mode and the analysis of linear circuits' response to sinusoidal excitations.
Inductance with Losses
Explores inductance with losses, quality factor in resonant circuits, and receiver response.
Circuits in Sinusoidal Mode
Explores the fear of missing out on social media and the behavior of circuits in sinusoidal mode.
Quadripoles and Frequency Response
Covers quadripoles, impedance matrices, reciprocity, and frequency response in circuits.
Electrical Circuits Basics
Introduces the basics of electrical circuits, covering elements, laws, Ohm's law, and series/parallel connections.
Symmetrical Three-Phase Systems
Explains the generation of symmetrical three-phase systems and the calculation of active, reactive, and apparent power.
Frequency Response and Bode Diagrams
Explores transfer functions, frequency response, Bode diagrams, and poles and zeros in circuits.
Step Response of RLC Circuits and Quadrupoles
Analyzes the step response of RLC circuits and introduces the concept of quadrupoles.
Three-Phase Systems: Bias in Judgment and Power Analysis
Explores bias in judgment and power analysis in three-phase systems, including symmetrical and non-symmetrical configurations, load connections, and transient circuits.
Impedance Networks: Series, Parallel, and Phasor Diagrams
Covers impedance networks, voltage dividers, and circuit theorems in AC circuits.
Impedance: RL, RC, RLC Circuits
Covers the analysis of RL, RC, and RLC circuits, focusing on impedance calculations and current determination.
Power in AC Circuits
Explains how to calculate instantaneous power in AC circuits and discusses power components for different circuit elements.
Power Factor Correction: Industrial Impedance and Power Loss
Explains power factor in AC circuits and methods for improving it, including adding capacitors in parallel.
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