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== Energy ==
 
== Energy ==
<math> E_\infty = frac{1}{t_2-t_1}\int_{t_1}^{t_2}[x(t)]^2 dt</math>
+
<math> E_\infty = \frac{1}{t_2-t_1}\int_{t_1}^{t_2}[x(t)]^2 dt</math>
  
  

Revision as of 10:21, 7 September 2008

Energy

$ E_\infty = \frac{1}{t_2-t_1}\int_{t_1}^{t_2}[x(t)]^2 dt $




Power

$ P_\infty = \frac{1}{t_2-t_1}\int_{t_1}^{t_2}[x(t)]^2 dt $

Alumni Liaison

Abstract algebra continues the conceptual developments of linear algebra, on an even grander scale.

Dr. Paul Garrett