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Related lectures (32)
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Calculation of Short-Circuit Currents
Explores the calculation of short-circuit currents in electrical networks, emphasizing symmetrical systems and nodal impedances.
Electrostatics: Tension and Potential
Explains electric tension, potential, work done by fields, and equipotential surfaces.
Impedance: RL, RC, RLC Circuits
Covers the analysis of RL, RC, and RLC circuits, focusing on impedance calculations and current determination.
Matrix Representation: Circuit Equations
Covers the process of writing circuit equations in matrix form and solving for currents using the inversion method.
Linear Circuits in Sinusoidal Regime
Explores linear circuits in sinusoidal regime, covering phasors, impedance, power calculations, Thevenin/Norton equivalents, and frequency analysis.
Calculating Voltage and Capacitance
Covers the calculation of voltage and capacitance using superposition and electric dipoles.
Scalar Linear Higher Order ODEs
Covers scalar linear higher order ODEs, focusing on properties of solutions and the superposition principle.
Three-Phase Circuits: Fundamentals and Balanced Loads
Explores the fundamentals of three-phase circuits and balanced loads, including voltage/current relationships and impedance connections.
Superposition Principle: Circuits Analysis
Covers the superposition principle in circuit analysis, simplifying complex circuits for easier evaluation through individual component analysis and result summation.
AC Circuits: Impedances, Filters, and Power Analysis
Explores AC circuits, impedance analysis, filters, and power factors in depth.