Solve exercise 1 a,b and c using a SIMULATOR OR MULTISIM OR OSCILLOSCOPE AND ADD IMAGE OF RESULTS OF THE OSCILLOSCOPE.
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Exercise 1. Generate the following signals and monitor them on the oscilloscope, write down the scales you used to correctly visualize the signals. Table No. 6.2. Signal measurements. Forma de Frecuencia Amplitud Time/Div Volts/Div onda (Hertz) (Pico-pico) Senoidal 60 5 Triangular 1000 2.5 Cuadrada 2000 8 Senoidal 5000 10 Triangular 10000 12 Cuadrada 50000 14
Exercise 16-Implement the following RC circuit. It measures the input signal and the output signal as shown in the image, calculates the lag between both signals and the gain of the output signal. xsci Tektronix] R1 w 10k * V2 10V pk 500Hz 0° C1 0.1UF Exercise 1c- It generates a sine signal ranging from 0 to 10 vp at a frequency of 100 Hz. Tried M Pos: Os CURSOR Type Off Source сні AL AN CH1 5V CH2 1V M 5ms CH1/2.95V
Solve exercise 1 a,b and c using a SIMULATOR OR MULTISIM OR OSCILLOSCOPE AND ADD IMAGE OF RESULTS OF THE OSCILLOSCOPE.
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Solve exercise 1 a,b and c using a SIMULATOR OR MULTISIM OR OSCILLOSCOPE AND ADD IMAGE OF RESULTS OF THE OSCILLOSCOPE.
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