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Ingénierie Informatique (Academic Year 2018/2019) - Ingegneria Informatica (ad esaurimento)

Basic circuit theory



Leçon vidéo

Leçon n. 1: Circuit Variables
   Definitions

   The Concept of Electric Charge

   The Voltage and the Current

   Power and Energy

   Classification of Circuit Elements

   Independent Voltage and Current Sources

   Dependent Voltage and Current Sources
Go to this lesson Kamel Al Tallaq
Leçon n. 2: Circuit Analysis
   The Purpose of Circuit Analysis

   Resistance

   Ohm’s Law

   Energy Dissipated

   Instantaneous Power

   Power Rating

   Conductance

   Alternative Forms of Ohm’s Law and Power

   Short circuit and open circuit
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Leçon n. 3: Kirchhoff s Current and Voltage Laws
   Definitions

   Kirchhoff’s Current Law

   Kirchhoff’s Voltage Law

   Series Connection

   Parallel Connection
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Leçon n. 4: Resistive Circuits
   Illustrative Examples

   Measuring Instruments

   Physical Resistor
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Leçon n. 5: Simultaneous Equations
   Terminology

   Simultaneous Equations
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Leçon n. 6: Node-Voltage Tecnique
   Node - Voltage Equations

   Example
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Leçon n. 7: Node-Voltage Method
   Circuits Containing Dependent Sources

   Special Cases Independent VS Between two nodes

   The Concept of a super node
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Leçon n. 8: Mesh Current Analysis
   Mesh-Current Analysis

   Y and DELTA Networks
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Leçon n. 9: Source Transformation Theorem
   Practical Voltage Source

   Practical Current Source

   Source Transformation Steps
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Leçon n. 10: Thevenin s and Norton s Theorems
   Thevenin’s Theorem

   Determination of Thevenin equivalent

   Norton Equivalent

   Illustration
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Leçon n. 11: Thevenin Equivalent and Maximum Power Transfer
   Finding Thevenin Equivalent

   Maximum Power Transfer
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Leçon n. 12: Millman s and Superposition Theorems
   Millman’s Theorem

   Superposition Theorem
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Leçon n. 13: Indipendence of Equations
   Graph of a Network

   Trees and Co-trees

   Independent Voltage Equations

   Illustrative Example
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Leçon n. 14: Link Current Method
   Application of the Tree Branch Voltage Method

   The Link Current Method
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Leçon n. 15: Energy Storage Elements
   Introduction

   Capacitors

   Inductors
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Leçon n. 16: Transient Analysis
   Introduction To Transient Analysis

   The Natural Response of an RL Circuit
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Leçon n. 17: Natural and Step Responses of RL and RC Circuits
   The Natural Response of RC Circuits

   The Step Response of RL Circuits
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Leçon n. 18: The Step Responses of RC Circuits
   The Step Response of an RC Circuit

   General Solution for Step and Natural Responses

   Summary
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Leçon n. 19: Sinusoidal Source and Sinusoidal Response
   Introduction

   Sinusoidal Sources

   Properties of Sinusoids

   Sinusoidal Response
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Leçon n. 20: The Phasor and V-I Relationships for Circuit Elements
   The Phasor

   Inverse Phasor Transform

   V-I Relationship for Circuit Elements

   The Impedance and The Admittance

   Kirchhoff’s Laws in The Frequency Domain
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Leçon n. 21: Techniques of Circuit Analysis
   Series, Parallel, Wye, and DELTA-Y Simplifications

   Parallel Simplification

   Source Transformation

   Thevenin-Norton Equivalent Circuits
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Leçon n. 22: Techniques of Circuit Analysis - part II
   Thevenin-Norton Equivalent

   The Node-Voltage Method

   The Mesh-Current Method

   The Phasor Diagrams
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Leçon n. 23: Sinusoidal Steady-State Power Calculation
   Instantaneous Power

   Instantaneous power Properties

   Average and Reactive Power
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Leçon n. 24: Complex Power
   The RMS Value and Power Calculation

   Complex Power Calculation

   Additional Forms For Power
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Leçon n. 25: Maximum Power Transfer
   Example on Power Calculation

   Maximum Power Transfer
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Leçon n. 26: Basic concepts of circuit theory Go to this lesson Luciano De Menna
Leçon n. 27: Circuits' properties Go to this lesson Luciano De Menna
Leçon n. 28: N-Ports Go to this lesson Luciano De Menna
Leçon n. 29: Power in circuits Go to this lesson Luciano De Menna
Leçon n. 30: Resonance Go to this lesson Luciano De Menna
Leçon n. 31: Transients Go to this lesson Luciano De Menna