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<math>1/2=0.5</math>
 
<math>1/2=0.5</math>
 
:Another way to write this is: <math>\frac{1}{2}=0.5</math>. You can also align it like this: <math class="inline">\frac{1}{2}=0.5</math>. -pm
 
:Another way to write this is: <math>\frac{1}{2}=0.5</math>. You can also align it like this: <math class="inline">\frac{1}{2}=0.5</math>. -pm
 +
:<span style="color:green">TA's comments: A easy way to start is to modifying the source code of a existed webpage. For example, [[Hw1_ECE438F11sln|homework1 solution]]. You can check out the source code of the webpage by clicking the "Edit this page" button located at the up-left corner. </span>
 +
:<span style="color:green">TA's comments: Here is another useful link from [http://meta.wikimedia.org/wiki/Help:Displaying_a_formula wiki] listing all the latex code for displaying formula. </span>
 
===Answer 4===
 
===Answer 4===
 
enter here
 
enter here
 
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[[2011_Fall_ECE_438_Boutin|Back to ECE438 Fall 2011 Prof. Boutin]]
 
[[2011_Fall_ECE_438_Boutin|Back to ECE438 Fall 2011 Prof. Boutin]]

Revision as of 17:01, 4 September 2011

Learn how to use Rhea

Write an equation below. Don't be shy, just try it out! You can find some help on this page: "How to type math equations on Rhea".



Share your answers below

You will receive feedback from your instructor and TA directly on this page. Other students are welcome to comment/discuss/point out mistakes/ask questions too!


Answer 1

$ 2+2=4 $

Answer 2

$ x(t)= e^{j t} $

Answer 3

$ 1/2=0.5 $

Another way to write this is: $ \frac{1}{2}=0.5 $. You can also align it like this: $ \frac{1}{2}=0.5 $. -pm
TA's comments: A easy way to start is to modifying the source code of a existed webpage. For example, homework1 solution. You can check out the source code of the webpage by clicking the "Edit this page" button located at the up-left corner.
TA's comments: Here is another useful link from wiki listing all the latex code for displaying formula.

Answer 4

enter here


Back to ECE438 Fall 2011 Prof. Boutin

Alumni Liaison

BSEE 2004, current Ph.D. student researching signal and image processing.

Landis Huffman