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- 08:41, 17 November 2008 (diff | hist) . . (+844) . . N Ryan Scott: A Laplace example from class ECE301Fall2008mboutin (New page: == The problem == Find the Laplace Transform of the following: <math>x(t)=e^{-2t}u(t)</math> == Solution == Now, from other classes we have become used to simply looking up a simple prob...) (current)
- 08:09, 17 November 2008 (diff | hist) . . (+69) . . Homework 9 ECE301Fall2008mboutin (→HW#9)
- 16:07, 10 November 2008 (diff | hist) . . (+1,356) . . N Ryan Scott: Aliasing and how to avoid it ECE301Fall2008mboutin (New page: ==Aliasing== Aliasing is the effect that results when a signal is sampled at too slow a rate. When this occurs the signal may not be able to be reproduced accurately. ==How do we define ...) (current)
- 15:24, 10 November 2008 (diff | hist) . . (+69) . . Homework 8 ECE301Fall2008mboutin
- 07:19, 15 October 2008 (diff | hist) . . (+448) . . N HW6.3 Ryan Scott ECE301Fall2008mboutin (New page: == The question == Is the signal <math>x(t) = \sum_{k = -\infty}^\infty \frac{1}{(t+2k)^{2}+1}</math> periodic? <br> <math>x(t+2) = \sum_{k = -\infty}^\infty \frac{1}{(t+2+2k)^2+1}\,</ma...) (current)
- 07:16, 15 October 2008 (diff | hist) . . (+45) . . m Homework 6 ECE301Fall2008mboutin (→Test Answers/Corrections)
- 07:07, 15 October 2008 (diff | hist) . . (+56) . . N CT Time Reversal ECE301Fall2008mboutin (New page: <math>x(-t) \leftarrow \rightarrow X(-j\omega )\,</math>) (current)
- 07:05, 15 October 2008 (diff | hist) . . (+65) . . Table of Formulas and Properties ECE301Fall2008mboutin (→CT Fourier Transform Properties)
- 10:34, 8 October 2008 (diff | hist) . . (+108) . . N HW5.4 Ryan Scott ECE301Fall2008mboutin (New page: Like a few others, I think summation series are tough, especially doing the variable replacements correctly.) (current)
- 10:33, 8 October 2008 (diff | hist) . . (+45) . . Homework 5 ECE301Fall2008mboutin (→Difficult Concepts)
- 10:27, 8 October 2008 (diff | hist) . . (+404) . . N HW5.3 Ryan Scott ECE301Fall2008mboutin (New page: == Fourier transform == We are going to use the following: <math>X(\omega)=\frac{1}{(1+j\omega)(2+j\omega)}</math> == The inverse == <math>X(\omega)=\frac{1}{(1+j\omega)(2+j\omega)} = ...)
- 10:05, 8 October 2008 (diff | hist) . . (+45) . . Homework 5 ECE301Fall2008mboutin (→Inverse Fourier Transform)
- 10:00, 8 October 2008 (diff | hist) . . (+679) . . N HW5.2 Ryan Scott ECE301Fall2008mboutin (New page: == Chosen Signal to Transform == The signal we will transform here will be <math>x(t)=e^{2jt}*(u(t+4)-u(t-4))</math> ==Transform by integral== <math> = \int_{-\infty}^{\infty}e^{2jt}*(u...)
- 09:43, 8 October 2008 (diff | hist) . . (+45) . . Homework 5 ECE301Fall2008mboutin (→Fourier Transform)
- 10:57, 24 September 2008 (diff | hist) . . (+448) . . N HW4.1 Ryan Scott ECE301Fall2008mboutin (New page: == The signal used == In this example, I am using the signal <math>x(t)=cos(2t) + 2sin(2t)\!</math>. == Coefficient Breakdown == To get the coefficients of a simple signal like this, we ...)
- 10:36, 24 September 2008 (diff | hist) . . (+45) . . Homework 4 ECE301Fall2008mboutin (→Periodic CT Signal, Fourier Series Coefficients)
- 06:30, 19 September 2008 (diff | hist) . . (+1,427) . . N HW3.C Ryan Scott ECE301Fall2008mboutin (New page: == How can Bob decrypt the message? == All Bob has to do to decrypt the message is make a matrix out of encrypted vector and multiply by the inverse of the secret matrix. The result will b...) (current)
- 06:01, 19 September 2008 (diff | hist) . . (+45) . . Homework 3 ECE301Fall2008mboutin (→Application of linearity)
- 10:40, 17 September 2008 (diff | hist) . . (+166) . . Talk:3.B Nicholas Gentry ECE301Fall2008mboutin (current)
- 10:39, 17 September 2008 (diff | hist) . . (+127) . . N Talk:HW3.B Tyler Johnson ECE301Fall2008mboutin (New page: Thanks for your help with the correction of my first attempt at the solution. I updated the page and hopefully it's better now.)
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