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11/13/2017
HW 4
HW 4
Due: 11:59pm on Tuesday, October 10, 2017
To understand how points are awarded, read the Grading Policy for this assignment.
Introduction to the NodeVoltage Method
Learning Goal:
11/13/2017
HW 3
HW 3
Due: 11:59pm on Friday, September 29, 2017
To understand how points are awarded, read the Grading Policy for this assignment.
Problem 3.24
Consider the circuit shown in . Suppose
11/13/2017
Homework 1: Chapter 1
Homework 1: Chapter 1
Due: 11:59pm on Sunday, September 17, 2017
To understand how points are awarded, read the Grading Policy for this assignment.
Problem 1.35
If we
Lab 1: Introduction to Hardware
23, 2015
Date of Lab: September
Procedure:
In our first lab, Introduction to Hardware, we were assigned the task of
familiarizing ourselves with the equipment we would
Operational Amplifiers and their use
What is an Operational Amplifier? or even What is an Amplifier?
An Amplifier is a device which enhances or increases the magnitude
level of its input. If its signa
Principles of Electrical Engineering I TOOLS
Fundamental Laws: Kirchoffs current and voltage laws
Using the above fundamental laws, we have the following techniques or tools that we can
utilize to do
Principles of Electrical Engineering I
Preview of Circuit Equivalents
This
The second part of Chapter 2 develops some important circuit equivalents that
help to simplify circuit analysis. These includ
Gravitational hill
Gravitational potentials
80 feet
h2
50 feet
h1
point 2
point 1
Ground
What is the height difference
between points 1 and 2 ?
Which one is higher than which?
Suppose I do not know nu
Review of Complex Numbers
Real numbers are represented along the xaxis.
2
1
0
1

2
Real axis
0
j is an operator that rotates counterclockwise by 90 .
What is an operator ?
An operator is something
R, C, and L Elements and their v and i relationships
We deal with three essential elements in circuit analysis:
Resistance R
Capacitance C
Inductance L
Their v and i relationships are summarized be
% Lab 4  Section C2
close all; clc; clear;
% Problem 1
% Conv Method
s
t
x
h
y
=
=
=
=
=
0.01;
0:s:6;
cos(2*pi*t).*(heaviside(t)heaviside(t5);
sin(3*pi*t).*(heaviside(t)heaviside(t5);
conv(x,h)*s
ECE332:231
DIGITAL LOGIC DESIGN
Summer 2017 Lecture 6
Siamak Abbaslou
June 12, 2017
Announcements June 12, 2017
HW 1 Due
HW 2 posted in Sakai Due on June 19, 2017
Mid Term June 15, 2017
2
Topics