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(New page: Finish the integral: <math>\[ \int_(-T/2)^(T/2) e^(j2\pi (n-m)t/T) \,dx.\] </math>)
 
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Finish the integral:
'''Determine the integral:'''


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<math>\[ \int_(-T/2)^(T/2) e^(j2\pi (n-m)t/T) \,dx.\] </math>
[[Nick Christman|<b><u>Nick Christman</u></b>]]<br/>

<math>

\int_{-T/2}^{T/2}e^{j2 \pi (n-m)t/T}\,dx = \left\{ \begin{array}{rcl} T & \mbox{for}& n=m \\ 0 & \mbox{else} \end{array}\right.

</math>

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Latest revision as of 14:53, 31 October 2009

Determine the integral:


Nick Christman


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