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Lecture
Analysis and Resolution Methods
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Related lectures (32)
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.
Electric Circuits: Analysis and Applications
Covers the analysis and applications of electric circuits, focusing on circuit components and behavior.
Cascode: Output Impedance and Gain Analysis
Covers the analysis of cascode circuits, focusing on output impedance and gain calculations.
Transforming Sources: Voltage to Current
Demonstrates transforming voltage sources into current sources and simplifying circuits for efficient analysis.
Circuit Elements: Voltage and Current Sources
Covers voltage and current sources in circuits, explaining their characteristics and equivalence.
Thevenin and Norton Theorems
Covers the Thevenin and Norton theorems for simplifying complex circuits into equivalent sources and internal resistances.
Kirchhoff's Laws and DC Circuits
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Explores Kirchhoff's laws in DC circuits, resistor analysis, and capacitor behavior.
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.
Basic Concepts: Electric Circuits
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Introduces the fundamental concepts of electric circuits, including basic elements and Kirchhoff's laws.
Continuous Circuits: Fundamentals
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Covers the fundamentals of continuous circuits, including physical quantities, conductors, semiconductors, open and closed circuits, and electric power.
Fundamental Theorems: Linear Circuits
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Covers fundamental theorems in linear circuits, including superposition and source conversion.
Circuit Elements: Voltage and Current Dividers
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Explains voltage and current dividers in electrical circuits with practical examples.
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.
Circuit Analysis: Thevenin and Norton Equivalents
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Explores Thevenin and Norton equivalents, mesh and nodal analysis, and planar circuits.
Circuit Analysis: Thevenin and Norton Theorems
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Explores circuit analysis using Thevenin and Norton theorems to simplify complex circuits for analysis.
Electrical Circuits Basics
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Introduces the basics of electrical circuits, covering elements, laws, Ohm's law, and series/parallel connections.
Electric Circuits: Ideal Sources and Circuit Elements
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Explores ideal sources, circuit elements, and circuit analysis in electric circuits.
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.
Three-Phase Circuits: Power and Step Response Analysis
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Explores power in three-phase systems and step response analysis of RC and RL circuits.
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