Revision as of 18:45, 25 September 2008 by Park1 (Talk)

Unit Impulse

$ h(t) = u(t-1) \, $

$ H(s) = \int^{\infty}_{-\infty} u(t-1)e^{-jw_0 t} dt\, $

$ H(s) = \int^{\infty}_{1}e^{-jw_0 t} dt\, $

$ H(s) = \frac{1}{jw_0} $


Repsonse of the CT system

$ x(t) = cos({\frac{2\pi t}{3}})+ 4sin({\frac{5\pi t}{3}})\, $

$ y(t) = H(s)x(t)\, $

$ y(t) = \frac{1}{j2}\frac{1}{2}e^{\frac{2j2\pi t}{6}} + \frac{1}{-j2}\frac{1}{2}e^{\frac{-2j2\pi t}{6}} \frac{1}{j5}-2je^{\frac{2j5\pi t}{6}} + \frac{1}{-j5}2je^{\frac{-2j5\pi t}{6}} $

Alumni Liaison

Ph.D. on Applied Mathematics in Aug 2007. Involved on applications of image super-resolution to electron microscopy

Francisco Blanco-Silva