Line 2: Line 2:
  
  
       <math>x(t) =\e^ (-at)\ \mathit{u}(t)</math>
+
       <math>x(t) =e^(-at) \mathit{u}(t)</math>

Revision as of 11:54, 19 November 2008

                             == Fundamentals of Laplace Transform ==


     $ x(t) =e^(-at) \mathit{u}(t) $

Alumni Liaison

Ph.D. 2007, working on developing cool imaging technologies for digital cameras, camera phones, and video surveillance cameras.

Buyue Zhang