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Consider the following running average filter. Create a MAT-file called prob=_48.mat that contains fs = 300, a, and b for this filter.

Consider the following running average filter. Create a MAT-file called prob=_48.mat that contains...-1

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Use the GUI module g_filters and import this filter. (a) Plot the magnitude response. (b) Plot the phase response. (c) Plot the pole-zero plot. (d) Plot the impulse response. Is this a linear-phase filter? If so, what type?

Q17=:

The derivative of an analog signal xa(t) can be approximated numerically by taking differences between the samples of the signal using the following first-order backward Euler differentiator.

Consider the following running average filter. Create a MAT-file called prob=_48.mat that contains...-2

Create a MAT-file called prob=_49.mat that contains fs = 10, a and b for this filter. Then use GUI module g_ filters and import this filter.

 (a) Plot the magnitude response. (b) Plot the phase response. (c) Plot the impulse response. Is this a linear-phase filter? If so, what type?

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