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<center><font size= 4>21 Savage in MATLAB</font size> | <center><font size= 4>21 Savage in MATLAB</font size> | ||
− | A | + | A peoject by [[ECE]] student Kalyan Mada |
Partly based on the [[https://www.projectrhea.org/rhea/index.php/2019_Spring_ECE_301_Boutin|ECE301 Spring 2019]] lecture material of Boutin. | Partly based on the [[https://www.projectrhea.org/rhea/index.php/2019_Spring_ECE_301_Boutin|ECE301 Spring 2019]] lecture material of Boutin. |
Revision as of 13:58, 22 April 2019
A peoject by ECE student Kalyan Mada
Partly based on the [Spring 2019] lecture material of Boutin.
Introduction
I am going to compute some fourier series coefficients.
CT signals
$ \begin{align} \bar f(x) &= \oint_S g(x) dx \\ &= \int_a^b g(x) dx \\ &= \frac{\mu_0}{2 \pi a \cdot b}\\ & = \int_a^{-\infty} jzdhfbvzjhvz dt \\ & = \sum_{k=0}^{-\infty} kzdjfgdzjkfg \end{align} $
DT signals
Questions and comments
If you have any questions, comments, etc. please post them here.
[to 2019 Spring ECE 301 Boutin]