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<math>= \int_{-N}^{N} \left | \frac{x}{1} \right |\, dx
+
<math>= \int_{-N}^{N} \left | \frac{x}{1} \right |\ ^2, dx
  
 
f(x) \,\!</math>
 
f(x) \,\!</math>

Revision as of 18:50, 5 September 2008

$ = \int_{-N}^{N} \left | \frac{x}{1} \right |\ ^2, dx f(x) \,\! $ $ = \sum_{n=0}^\inf a_n x^n $

$ = \left | \frac{a}{b} \right | $

Alumni Liaison

Correspondence Chess Grandmaster and Purdue Alumni

Prof. Dan Fleetwood