Q4) Choose one of the different cases indicated in the parenthesis so that the preceding sentence is correct. a) If sampling rate is increased above the Nyquist rate then the quantization noise will (increase, decrease, not change, decrease until a point). b) Aliasing distortion will always occur if the signal is (band limited, not band limited, not time limited, sampled above Nyquist rate). c) Which type binary signaling has DC component (Unipolar NRZ, Polar NRZ, Bipolar RZ, Manchester NRZ). d) Noise added to digital signals during transmission through the channel can be cleared by using (synchronization circuits, regenerative repeaters, narrowband filters, pulse shaping).

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Q4) Choose one of the different cases indicated in the parenthesis so that the preceding sentence
is correct.
a) If sampling rate is increased above the Nyquist rate then the quantization noise will (increase,
decrease, not change, decrease until a point).
b) Aliasing distortion will always occur if the signal is (band limited, not band limited, not time
limited, sampled above Nyquist rate).
c) Which type binary signaling has DC component (Unipolar NRZ, Polar NRZ, Bipolar RZ,
Manchester NRZ).
d) Noise added to digital signals during transmission through the channel can be cleared by using
(synchronization circuits, regenerative repeaters, narrowband filters, pulse shaping).
Transcribed Image Text:Q4) Choose one of the different cases indicated in the parenthesis so that the preceding sentence is correct. a) If sampling rate is increased above the Nyquist rate then the quantization noise will (increase, decrease, not change, decrease until a point). b) Aliasing distortion will always occur if the signal is (band limited, not band limited, not time limited, sampled above Nyquist rate). c) Which type binary signaling has DC component (Unipolar NRZ, Polar NRZ, Bipolar RZ, Manchester NRZ). d) Noise added to digital signals during transmission through the channel can be cleared by using (synchronization circuits, regenerative repeaters, narrowband filters, pulse shaping).
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