Università telematica internazionale UNINETTUNO

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

Basic circuit theory


Exercices

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Leçon n.1: Circuit Variables
Leçon n.2: Circuit Analysis
The Purpose of Circuit Analysis
n. 2.1 -
Exercises for lesson 2   (A.Y. 2011/2012)
Leçon n.3: Kirchhoff s Current and Voltage Laws
Leçon n.4: Resistive Circuits
Leçon n.5: Simultaneous Equations
Leçon n.6: Node-Voltage Tecnique
Leçon n.7: Node-Voltage Method
Leçon n.8: Mesh Current Analysis
Leçon n.9: Source Transformation Theorem
Leçon n.10: Thevenin s and Norton s Theorems
Leçon n.11: Thevenin Equivalent and Maximum Power Transfer
Leçon n.12: Millman s and Superposition Theorems
Leçon n.13: Indipendence of Equations
Leçon n.14: Link Current Method
Leçon n.15: Energy Storage Elements
Leçon n.16: Transient Analysis
Leçon n.17: Natural and Step Responses of RL and RC Circuits
Leçon n.18: The Step Responses of RC Circuits
Leçon n.19: Sinusoidal Source and Sinusoidal Response
Leçon n.20: The Phasor and V-I Relationships for Circuit Elements
Leçon n.21: Techniques of Circuit Analysis
Leçon n.22: Techniques of Circuit Analysis - part II
Leçon n.23: Sinusoidal Steady-State Power Calculation
Leçon n.24: Complex Power
Leçon n.25: Maximum Power Transfer
Leçon n.26: Basic concepts of circuit theory
Leçon n.27: Circuits' properties
Leçon n.28: N-Ports
Leçon n.29: Power in circuits
Leçon n.30: Resonance
Leçon n.31: Transients

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