EET 3150
Wayne State University
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Lab 3: Kirchhoff's Voltage Law (KVL) and Current Law (KCL) verification
The objectives of this lab are to verify Kirchhoff's laws for voltage and current and to learn how to measure the total resistance of both series and parallel circuits..
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Network analysis HW Chapter 4
PopularThis course will cover the topics in electric network analysis and design. Techniques of electric circuit theory are studied and applied in network analysis and design, operational amplifiers, and related circuits, including the applications with NI Multisim, and MATLAB software packages. Analysis of circuits with dependent sources, basic waveforms, RL, RC, and RLC circuit transients and sinusoidal response, network functions, and power analysis
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Network Analysis Homework 1
This course will cover the topics in electric network analysis and design. Techniques of electric circuit theory are studied and applied in network analysis and design, operational amplifiers, and related circuits, including the applications with NI Multisim, and MATLAB software packages. Analysis of circuits with dependent sources, basic waveforms, RL, RC, and RLC circuit transients and sinusoidal response, network functions, and power analysis
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Network analysis HW Chapter 5
This course will cover the topics in electric network analysis and design. Techniques of electric circuit theory are studied and applied in network analysis and design, operational amplifiers, and related circuits, including the applications with NI Multisim, and MATLAB software packages. Analysis of circuits with dependent sources, basic waveforms, RL, RC, and RLC circuit transients and sinusoidal response, network functions, and power analysis
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Lab 12: Testing and Analyzing Capacitors and Inductors circuits
The goal of this exercise is to familiarize yourself with the fundamental behavior of capacitors and inductors. The goal of this lab is to experiment with and research the transient behavior of capacitors and inductors (charging and recharging capacitor/inductor networks), as well as to look at simple electrical circuits with parallel/series capacitor/inductor combinations. You should be able to examine circuit behavior when DC or AC voltages are applied to these circuits by the end of this lab....
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Lab 1 and lab 2 (EET_3150)
The objectives of this lab are to become familiar with the measurement of resistance values using a digital multimeter. A second objective is to learn the resistor color code.
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Lab 4: Nodal Voltage Analysis
The objectives of this lab are to verify the nodal analysis concept. Find the circuit node voltages with respect to the ground. In addition to the theoretical calculation of currents and powers for each circuit desig
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Lab 6: Testing and Analyzing Circuits Using Superposition Theorem
The superposition principle states that the voltage across (or current through) an element in a linear circuit is the algebraic sum of the voltages across (or currents through) that element due to each independent source acting alone. The principle of superposition helps us to analyze a linear circuit with 
more than one independent source by calculating the contribution of each independent source separately. However, to apply the superposition principle, we must keep two things in mind: 
1. We ...
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Lab 7: Testing and Analyzing Circuit Using Thévenin and Norton Theorems
Thévenin’s Theorem for DC circuits states that any two port linear network may be replaced by a single voltage source with an appropriate internal resistance. The Thévenin equivalent will produce the same load current and voltage as the original circuit to any load. Consequently, if many different loads or sub-circuits are under consideration, using a Thévenin equivalent usually proves to be a much quicker method of analysis. Any complex circuit consisting of multiple sources and components...
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Lab 8 &9: Superposition and Maximum Power Transfer
Analyze electric circuits using Superposition Theorem 
Investigate maximum power transfer and load match
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Lab 5: Mesh Analysis (EET_3150)
The study of mesh analysis is the objective of this lab, specifically its usage in multi-source DC circuits. Its application to finding circuit currents and voltages will be investigated
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Lab:11 Design and Analysis of AC Non-Inverting Amplifier and DC Differential Amplifier Circuits
In this document 
▪ Measure the gain and verify the non-inverted output waveform from non-inverting 
amplifier circuit design. 
▪ Design, simulate and test the DC differential amplifier circuit. 
▪ Measure the gain and verify the output value of DC differential amplifier circuit design 
using different resistance values.
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Lab:10 Design and Analysis of an AC Inverting Amplifier Circuit
This course will cover the topics in electric network analysis and design. Techniques of electric circuit theory are studied and applied in network analysis and design, operational amplifiers, and related circuits, including the applications with NI Multisim, and MATLAB software packages. Analysis of circuits with dependent sources, basic waveforms, RL, RC, and RLC circuit transients and sinusoidal response, network functions, and power analysis
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Circuit Elements and Laws Chapter 1
This course will cover the topics in electric network analysis and design. Techniques of electric circuit theory are studied and applied in network analysis and design, operational amplifiers, and related circuits, including the applications with NI Multisim, and MATLAB software packages. Analysis of circuits with dependent sources, basic waveforms, RL, RC, and RLC circuit transients and sinusoidal response, network functions, and power analysis
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Resistive Circuits Chapter 3 and 4
This course will cover the topics in electric network analysis and design. Techniques of electric circuit theory are studied and applied in network analysis and design, operational amplifiers, and related circuits, including the applications with NI Multisim, and MATLAB software packages. Analysis of circuits with dependent sources, basic waveforms, RL, RC, and RLC circuit transients and sinusoidal response, network functions, and power analysis
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Circuit Theorems Chapter 5
This course will cover the topics in electric network analysis and design. Techniques of electric circuit theory are studied and applied in network analysis and design, operational amplifiers, and related circuits, including the applications with NI Multisim, and MATLAB software packages. Analysis of circuits with dependent sources, basic waveforms, RL, RC, and RLC circuit transients and sinusoidal response, network functions, and power analysis
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Electrical sources And switches chapter 2
This course will cover the topics in electric network analysis and design. Techniques of electric circuit theory are studied and applied in network analysis and design, operational amplifiers, and related circuits, including the applications with NI Multisim, and MATLAB software packages. Analysis of circuits with dependent sources, basic waveforms, RL, RC, and RLC circuit transients and sinusoidal response, network functions, and power analysis .
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Methods of Analysis of Resistive Circuit Chapter 5a
This course will cover the topics in electric network analysis and design. Techniques of electric circuit theory are studied and applied in network analysis and design, operational amplifiers, and related circuits, including the applications with NI Multisim, and MATLAB software packages. Analysis of circuits with dependent sources, basic waveforms, RL, RC, and RLC circuit transients and sinusoidal response, network functions, and power analysis
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Energy Storage Chapter 7
In this docu, we will introduce two new and important passive linear circuit elements: 
 Capacitors 
 Inductors 
• Unlike resistors, which dissipate energy, capacitors and inductors do not dissipate but store energy, which can be retrieved at a later time. For this reason, capacitors and inductors are called storage elements. 
 
• We begin by introducing capacitors and describing how to combine them in series or in parallel. Later, we do the same for inductors. 
 
• Also, we will explore ...
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Resistive Circuits chapter 3
This course will cover the topics in electric network analysis and design. Techniques of electric circuit theory are studied and applied in network analysis and design, operational amplifiers, and related circuits, including the applications with NI Multisim, and MATLAB software packages. Analysis of circuits with dependent sources, basic waveforms, RL, RC, and RLC circuit transients and sinusoidal response, network functions, and power analysis