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Lecture
Circuit Simplification
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Related lectures (34)
Electrical Resistance and Ohm's Law
Covers electrical resistance, Ohm's Law, conductor types, and power calculation in circuits.
Analysis and Resolution Methods
MOOC: Electrical engineering I
Covers the analysis of circuits, real voltage and current sources, and circuit processing.
Electric Circuits: Analysis and Applications
Covers the analysis and applications of electric circuits, focusing on circuit components and behavior.
Circuit Elements: Voltage and Current Sources
Covers voltage and current sources in circuits, explaining their characteristics and equivalence.
Electronics: Transistors
Explores the basics of transistors, resistors, and their applications in microcontrollers.
Electric Circuits: Fundamentals
Introduces the fundamentals of electric circuits, including voltage, resistance, Ohm's law, energy dissipation, and circuit configurations.
Superposition Principle: Circuits Analysis
MOOC: Electrical engineering I
Covers the superposition principle in circuit analysis, simplifying complex circuits for easier evaluation through individual component analysis and result summation.
Resistance in Conductors
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Explains the concept of resistance in conductors and its relationship with current and voltage.
Kirchhoff's Laws and DC Circuits
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Explores Kirchhoff's laws in DC circuits, resistor analysis, and capacitor behavior.
Basic Concepts: Electric Circuits
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Introduces the fundamental concepts of electric circuits, including basic elements and Kirchhoff's laws.
Circuit Elements: Voltage and Current Dividers
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Explains voltage and current dividers in electrical circuits with practical examples.
Laws of Kirchhoff: Reminder and Examples
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Covers the laws of Kirchhoff, current and voltage dividers, and circuit simplifications.
Electrical Circuits Basics
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Introduces the basics of electrical circuits, covering elements, laws, Ohm's law, and series/parallel connections.
Fundamental Theorems: Linear Circuits
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Covers fundamental theorems in linear circuits, including superposition and source conversion.
Electric Circuits: Ideal Sources and Circuit Elements
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Explores ideal sources, circuit elements, and circuit analysis in electric circuits.
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.
Circuit Analysis: Thevenin and Norton Equivalents
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Explores Thevenin and Norton equivalents, mesh and nodal analysis, and planar circuits.
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.
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.
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