1.5 Determine the gain, phase difference, and transfer Yunction for each of the following input/output conditions. The components are linear. (a) Frequency: Input amplitude: Output amplitude: (b)...


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1.5 Determine the gain, phase difference, and transfer<br>Yunction for each of the following input/output conditions.<br>The components are linear.<br>(a) Frequency:<br>Input amplitude:<br>Output amplitude:<br>(b) Frequency:<br>Input amplitude:<br>Output amplitude:<br>(c Frequency:<br>Input amplitude:<br>Output amplitude:<br>(rpm means revolutions per minute)<br>0.004 Hz<br>10°C<br>phase: 15°<br>phase: -30°<br>0.447 mV<br>36 KHz<br>0.4 V<br>phase: 20°<br>phase: 19°<br>11.6 V<br>0.5 Hz<br>4.4 V<br>phase: 32°<br>phase: 0°<br>600 грm<br>

Extracted text: 1.5 Determine the gain, phase difference, and transfer Yunction for each of the following input/output conditions. The components are linear. (a) Frequency: Input amplitude: Output amplitude: (b) Frequency: Input amplitude: Output amplitude: (c Frequency: Input amplitude: Output amplitude: (rpm means revolutions per minute) 0.004 Hz 10°C phase: 15° phase: -30° 0.447 mV 36 KHz 0.4 V phase: 20° phase: 19° 11.6 V 0.5 Hz 4.4 V phase: 32° phase: 0° 600 грm

Jun 10, 2022
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