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Lecture
Calculations in Continuous Mode: Electrical Networks
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Electrical Circuits Basics
Introduces the basics of electrical circuits, covering elements, laws, Ohm's law, and series/parallel connections.
Continuous Circuits: Fundamentals
Covers the fundamentals of continuous circuits, including physical quantities, conductors, semiconductors, open and closed circuits, and electric power.
S-Domain Circuit Analysis: Part 2
Delves into s-domain circuit analysis, covering theorems, analysis methods, and stability concepts.
Economic Dispatching: Marginal Costs and Power Plants
Covers economic dispatching, marginal costs, symmetrical components, and power flow optimization in electrical networks.
Ohm's Law: Resistance and Conductance
Introduces Ohm's Law, resistance measurement, and conductance in electrical circuits.
Thevenin and Norton Theorems
Explores the Thevenin and Norton theorems in electrical engineering for circuit simplification and analysis.
Thevenin and Norton Theorems
Covers Thevenin and Norton theorems for simplifying complex circuits into equivalent ones.
Transforming Sources: Voltage to Current
Demonstrates transforming voltage sources into current sources and simplifying circuits for efficient analysis.
Energy Transfer in Capacitors: Charge and Discharge
Covers energy transfer processes in capacitors, including charging and discharging mechanisms and their associated energy calculations.
Thevenin and Norton Theorems
Covers the Thevenin and Norton theorems for simplifying complex circuits into equivalent sources and internal resistances.