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  • :[[ECE438|ECE438: "Digital Signal Processing with Applications"]]
    2 KB (209 words) - 13:07, 9 September 2022
  • ...n evaluating the Region of Convergence (ROC) of the Laplace transform, the signal has a Fourier transform if:
    2 KB (268 words) - 12:14, 10 December 2008
  • *[[ECE438|ECE438: "Digital Signal Processing with Applications]], the main page for this popular senior level ...tal_signal_processing_practice_problems_list|Practice problems on "Digital Signal Processing"]]
    6 KB (877 words) - 07:22, 21 March 2013
  • ##[[Signal Energy and Power_(ECE301Summer2008asan)|Signal Energy and Power]] ...CT signal by its samples:_(ECE301Summer2008asan)| Representation of a CT signal by its samples]]
    7 KB (921 words) - 06:08, 21 October 2011
  • The sampling theorem states that for a signal x(t) to be uniquely reconstructed, its X(jw) = 0 when |w| > wm, and the sam A signal can be recovered from sampling if
    4 KB (667 words) - 11:15, 21 November 2008
  • Let x(t) be a BAND-LIMITED signal with X(w) = 0 for |w| > w_m.
    625 B (99 words) - 13:07, 8 November 2010
  • ...--[[User:Asan|Asan]] 03:42, 14 June 2008 (EDT)(It is the system... not the signal)
    3 KB (534 words) - 11:16, 30 January 2011
  • ...e. The transformation consists of a shift and time scaling. The resulting signal is shifted to the left by 5 and time scaled so the new times are divided by ...even and odd parts of a signal x[n]. x1[n] = (x[n] + x[-n])/2 is the even signal. It can be found by plotting x[n]/2 and x[-n]/2 then summing the two signa
    877 B (156 words) - 10:58, 21 November 2008
  • (a) Derive the condition for which the discrete time complex exponetial signal x[n] is periodic.
    2 KB (270 words) - 10:59, 21 November 2008
  • The unit impulse response of an LTI system is the CT signal
    1 KB (227 words) - 10:55, 30 January 2011
  • The unit impulse response of an LTI system is the CT signal
    1 KB (222 words) - 10:57, 30 January 2011
  • The unit impulse response of an LTI system is the CT signal
    409 B (61 words) - 10:59, 30 January 2011
  • (a) The FT of <math>X(j\omega)</math> of a continuous-time signal x(t) is periodic (b) The FT of <math>X(e^{j\omega})</math> of a continuous-time signal x[n] is periodic
    4 KB (777 words) - 11:49, 21 November 2008
  • .../math> of the signal x[n] is also periodic with period N. For the periodic signal x[n], find the values of <math>a_0,a_1,...,a_{N-1}.</math> Express your an 1)b)Evaluate the value of <math>(1/N)*\sum_{n=<N>}|x[n]|^2</math> for the signal x[n] given in part (a).
    4 KB (815 words) - 10:57, 21 November 2008
  • [[Category:signal processing]] =Signal Sampling=
    1 KB (176 words) - 07:04, 16 September 2013
  • *[[HKNQE_Communications_and_Signal_Processing|Communications and Signal Processing]]
    626 B (74 words) - 09:44, 3 December 2008
  • = Communication, Networking, Image and Signal Processing (CNSIP) Research in ([[ECE]])= Purdue University has a rich and long history in communications and signal processing. For example, did you know the the following facts?
    3 KB (360 words) - 07:01, 25 June 2012
  • :"A Signal-Processing Approach to Modeling Vision, and Applications" ...these results to image compression and quality assessment, as well as some signal processing problems (and their solutions) that emerged in applying the psyc
    5 KB (656 words) - 14:36, 4 May 2011
  • <b>Periodic CT Signal:</b> ...es of t. The fundamental period is the smallest period of all periods of a signal (denoted by <math> T_0\ </math>).
    1 KB (206 words) - 16:58, 23 April 2013
  • ...shift in the input signal results in an identical time shift in the output signal.
    4 KB (748 words) - 17:24, 23 April 2013

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