R1 16.After your adjustments to R1 and R2, measure VMAX and VMIN and record the exact values below. 1kQ MaxVoltage VMAX: 8.49V VMIN: 0.5V R2 OutputVoltage # Measure the values across R1 and R3 and confirm VMAx and VMIN from Step V1 16 using the voltage divider principle. Insert an image of your calculations below. Include a circuit diagram with your calculations. A6 MinVoltage Measured R1: 0.961KO R3 Measured R3: 0.606KQ 1K2 Measured RT: 10.62kQ

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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19. measure the values across R1 and R3 and confirm VMAX and VMIN from Step 16 using the voltage divider principle. Insert an image of your calculations below. Include a circuit diagram with your calculations.

Using the maths demonstrated above, what would be the values of R1 and R3 to achieve minimum and maximum voltages of 0.3V and E-0.3V, respectively. Show your calculations below.

R1
16.After your adjustments to R1 and R2, measure VMAX and VMIN and record
the exact values below.
1kQ
MaxVoltage
VMAX:
8.49V
VMIN:
0.5V
R2
OutputVoltage # Measure the values across R1 and R3 and confirm VMAx and VMIN from Step
V1
16 using the voltage divider principle. Insert an image of your calculations
below. Include a circuit diagram with your calculations.
A6
MinVoltage
Measured R1: 0.961KQ
R3
Measured R3: 0.606KQ
1k2
Measured RT: 10.62kQ
Figure 5
Transcribed Image Text:R1 16.After your adjustments to R1 and R2, measure VMAX and VMIN and record the exact values below. 1kQ MaxVoltage VMAX: 8.49V VMIN: 0.5V R2 OutputVoltage # Measure the values across R1 and R3 and confirm VMAx and VMIN from Step V1 16 using the voltage divider principle. Insert an image of your calculations below. Include a circuit diagram with your calculations. A6 MinVoltage Measured R1: 0.961KQ R3 Measured R3: 0.606KQ 1k2 Measured RT: 10.62kQ Figure 5
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