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= [[ECE438|ECE 438]]: Digital Signal Processing with Applications  =
 
 
== Professor Boutin, Spring 2017  ==
 
 
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Message area:
 
*Welcome to ECE438!
 
*Please get a copy of the course packet (from Boiler Copy Maker, room 186 of PMU) as soon as possible.
 
*You do not need to buy the textbook.
 
</div>
 
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== Course Information  ==
 
 
*Instructor: [[User:Mboutin|Prof. Mimi]]
 
**Office: MSEE 342
 
**[[Open office hours mboutin|Office hours]] are listed [[Open office hours mboutin|here]].
 
*Teaching Assistant: [[User:zhou2|Joe Zhou]]
 
**Email: zhou2 at purdue dot you know what
 
*Teaching Assistant: [[User:Jang69|Ikbeom Jang]]
 
**Email: jang69 at purdue dot you know what
 
*[[Lecture Schedule ECE438Spring 17Boutin|Course Outline]] (Approximate schedule with detailed reference list)
 
*[[Media:SyllabusECE438S17boutin.pdf|Course Syllabus]]
 
*Important Dates:
 
**Test 1: Evening exam, Tuesday March 21, 18:30-19:30, MSEEB012
 
**Test 2:  Evening Exam, Tuesday April 18, 18:30-19:30, MSEEB012
 
**Final: TBA
 
 
== Labs  ==
 
 
[[ECE438 Lab Spring 2017|Here]]
 
 
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== Resources  ==
 
 
*[[Collective Table of Formulas|Rhea's Collective Table of Formulas]]. Add your formulas now!
 
**[[CT Fourier Transform (frequency in hertz)|CTFT]]
 
**[[Table DT Fourier Transforms|DTFT]]
 
**[[Z Transform table|z-transform]]
 
*[[How to Enter Math in Rhea|Cheat Sheet for Rhea Math]]
 
 
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== Homework  ==
 
will be posted here.
 
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== A bonus point opportunity  ==
 
 
Students in [[ECE438]] Fall 2016 have the opportunity to earn up to a 3% bonus by contributing a Rhea page on a subject related to digital signal processing. To pick a subject, simply write your name next to it. Please do not simply copy the lecture notes and do not plagiarize. Read [[Rhea:Copyrights|Rhea's copyright policy]] before proceeding.
 
 
The deadline for contributing a project is at midnight on Sunday April 23, 2016.
 
 
<br>
 
 
{| border="1" class="wikitable"
 
|-
 
! Topic Number
 
! Topic Description
 
! Student Name/Nickname
 
|-
 
| 1
 
| Something related to CT or DT Fourier transform
 
| Name/Nickname
 
|-
 
| 2
 
| Something related to Z-transform
 
| Name/Nickname
 
|-
 
| 3
 
| Something related to CSFT
 
| Name/Nickname
 
|-
 
| 4
 
| Something related to Quantization
 
| Name
 
|-
 
| 5
 
| Write your topic
 
| Name/Nickname
 
|-
 
| 6
 
| [[Mock up midterm exam with solution]]
 
| Hongyu Zhong
 
|-
 
| 7
 
| Write your topic
 
| Name/Nickname
 
|-
 
|}
 
 
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[[ECE438|Back to ECE438]]
 
 
[[Category:ECE438Spring2017Boutin]] [[Category:ECE438]] [[Category:ECE]] [[Category:Signal_processing]] [[Category:Digital_signal_processing]]
 

Revision as of 16:11, 9 January 2017

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Abstract algebra continues the conceptual developments of linear algebra, on an even grander scale.

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