Question #11: A waveform, x(t) = 10cos(1000xt+n/3) +20cos(2000лt+n/4) + 30cos(2500лt+π/6), is to be uniformly sampled for digital transmission. (a) Find the Nyquist Rate (2 x fmax). (b) If we want to reproduce 1 hour of this waveform, how many sample values need to be stored?
Question #11: A waveform, x(t) = 10cos(1000xt+n/3) +20cos(2000лt+n/4) + 30cos(2500лt+π/6), is to be uniformly sampled for digital transmission. (a) Find the Nyquist Rate (2 x fmax). (b) If we want to reproduce 1 hour of this waveform, how many sample values need to be stored?
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Transcribed Image Text:**Question #11:**
A waveform, \( x(t) = 10\cos(1000\pi t + \pi/3) + 20\cos(2000\pi t + \pi/4) + 30\cos(2500\pi t + \pi/6) \), is to be uniformly sampled for digital transmission.
(a) Find the Nyquist Rate (\(2 \times f_{\text{max}}\)).
(b) If we want to reproduce 1 hour of this waveform, how many sample values need to be stored?
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