(Energy)
(Energy)
Line 2: Line 2:
  
 
<math> E = \int_{T2}^{T1} |x(t)|^2\ dt \!</math>
 
<math> E = \int_{T2}^{T1} |x(t)|^2\ dt \!</math>
<br><br><br><math> E = \int_{1}^{2} |x/3|^2\ dt \!</math>
+
<br><br><br><math> E = \int_{1}^{2} |3x|^2\ dt \!</math>

Revision as of 20:38, 4 September 2008

Energy

$ E = \int_{T2}^{T1} |x(t)|^2\ dt \! $


$ E = \int_{1}^{2} |3x|^2\ dt \! $

Alumni Liaison

Correspondence Chess Grandmaster and Purdue Alumni

Prof. Dan Fleetwood