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- ...n for the 8-pt DFT of <math>h[n]</math>, denoted <math>H_8[k]</math>, as a function of <math>k</math>. Simplify as much as possible. Q3. Consider a causal LTI system with transfer function3 KB (462 words) - 10:42, 11 November 2011
- The transfer function of the first and second systems are Then, the transfer function of the combined system, <math>(T_1+T_2)[x[n]]</math> is1 KB (206 words) - 08:52, 4 November 2010
- Suppose the transfer function of the filter has the form Therefore, the transfer function is2 KB (279 words) - 17:23, 3 November 2010
- ..._{t}</math> be the input to a linear shift-invariant system with transfer function: Find the autocorrelation function of the input process.6 KB (1,093 words) - 08:23, 27 June 2012
- Q1. Assume we know (or can measure) a function <br/> ...he definition of the CSFT, derive an expression for F(u,0) in terms of the function p(x).3 KB (515 words) - 10:43, 11 November 2011
- ...n of the vocal tract as a sequence of tubes and the corresponding transfer function.629 B (88 words) - 05:05, 6 December 2010
- a) Compute the transfer function of this system. a) Compute the transfer function of this system.4 KB (663 words) - 15:15, 12 February 2011
- ...mboutin_Fourier_Coefficient_LTI_Transfer|Fourier coefficients and transfer function]] ...Non-Periodic Functions ECE301Fall2008mboutin|Animated example of periodic function]]6 KB (818 words) - 06:12, 16 September 2013
- b) Yes. The system could be LTI since the transfer function might be zero at this frequency and thus it will suppress it.12 KB (2,321 words) - 10:13, 3 March 2011
- ...lex exponential is the same complex exponential multiplied by the transfer function evaluated at the frequency of the complex exponential. The following is a b5 KB (793 words) - 10:28, 11 November 2011
- **Signal processing and filtering algorithms to create stethoscopes that function in high-noise environments such as helicopters and ambulances ...oys interdisciplinary engineering approaches to examine and manipulate the function and behavior of the nervous system. Concepts used include computation17 KB (2,368 words) - 10:53, 6 May 2012
- ...E438_Week11_Quiz|Describe a LTI system using Difference equation, transfer function and impulse response]] <br/>900 B (121 words) - 10:39, 11 November 2011
- From DFT transfer pair, <math>X[k]=10\delta[k-1]</math>. repeated with period 10. This corresponds to X[k] being a delta function whose argument is [k+1].4 KB (735 words) - 14:19, 21 April 2013
- ...ular, we noted how the location of the poles and the zeros of the transfer function influenced the amplitude of the frequency response.998 B (143 words) - 06:27, 11 September 2013
- ...lationship between the location of the poles and the zeros of the transfer function of this filter and the amplitude of its frequency response.953 B (132 words) - 06:27, 11 September 2013
- ...ditions to uniquely specify the system. We also observed that the transfer function of causal systems defined by constant coefficient difference equation is th [[Category:transfer function]]1 KB (142 words) - 06:27, 11 September 2013
- ...response, and indicate the location of the poles and zeros of the transfer function. Consider a causal LTI system with transfer function5 KB (916 words) - 03:56, 31 August 2013
- ...>: the values of <math>\xi</math> that correspond to poles of the transfer function (including poles at infinity) can then be transformed into the correspondin [[Category:transfer function]]1 KB (221 words) - 06:28, 11 September 2013
- Having discussed how (by specify the zeros and poles of the transfer function) one can design a causal approximation of an ideal filter, we moved on to a [[Category:transfer function]]1 KB (164 words) - 06:30, 11 September 2013
- ...g Z-transform on both sides and grouping terms, we can obtain the transfer function ...g Z-transform on both sides and grouping terms, we can obtain the transfer function11 KB (1,757 words) - 11:15, 30 October 2011