(New page: <math>te^{-at}u(t) ---> (\frac{1}{a+j\omega})^2 </math> where a is real and greater than 0)
 
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<math>te^{-at}u(t) ---> (\frac{1}{a+j\omega})^2 </math>  
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<math>te^{-at}u(t) \rightarrow (\frac{1}{a+j\omega})^2 </math>  
 
where a is real and greater than 0
 
where a is real and greater than 0

Revision as of 05:30, 16 October 2008

$ te^{-at}u(t) \rightarrow (\frac{1}{a+j\omega})^2 $ where a is real and greater than 0

Alumni Liaison

Correspondence Chess Grandmaster and Purdue Alumni

Prof. Dan Fleetwood