Your lab partner builds a circuit consisting of a power supply, voltage probe, current probe, and two resistors in an unknown configuration. By measuring the voltage and current, you can create a plot of I vs. V. By linearly fitting your plot you get the following fit, Slope: m = 0.0027 Om = 0.0003 4 Intercept: 6 = 0.002 A Ob = 0.003 A a) From your fit, what is the equivalent resistance and uncertainty of the resistor configuration? b) If your Lab partner calculates the theoretical value for the resistor in series as Reg = (360 ± 15) N, can you conclude your resistor %3D configuration in part a is in series? Explain. c) If the resistors used in the experimental setup had the values R1 = (390 ± %3D 20%) n and R2 = (150 ± 20%) sN, what is the theoretical value for the resistors in series?

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Chapter1: Units, Trigonometry. And Vectors
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Your lab partner builds a circuit consisting of a
power supply, voltage probe, current probe,
and two resistors in an unknown configuration.
By measuring the voltage and current, you can
create a plot of I vs. V. By linearly fitting your
plot you get the following fit,
Slope: m = 0.0027
Om = 0.0003
%3D
Intercept: 6 = 0.002 A
Ob = 0.003 A
From your fit, what is the equivalent
resistance and uncertainty of the resistor
a)
configuration?
b).
If your Lab partner calculates the
theoretical value for the resistor in series as Reg
= (360 ± 15) N, can you conclude your resistor
configuration in part a is in series? Explain.
c)
If the resistors used in the
experimental setup had the values R1 = (390 ±
20%) N and R2 = (150 ± 20%) N, what is the
%3D
theoretical value for the resistors in series?
Transcribed Image Text:Your lab partner builds a circuit consisting of a power supply, voltage probe, current probe, and two resistors in an unknown configuration. By measuring the voltage and current, you can create a plot of I vs. V. By linearly fitting your plot you get the following fit, Slope: m = 0.0027 Om = 0.0003 %3D Intercept: 6 = 0.002 A Ob = 0.003 A From your fit, what is the equivalent resistance and uncertainty of the resistor a) configuration? b). If your Lab partner calculates the theoretical value for the resistor in series as Reg = (360 ± 15) N, can you conclude your resistor configuration in part a is in series? Explain. c) If the resistors used in the experimental setup had the values R1 = (390 ± 20%) N and R2 = (150 ± 20%) N, what is the %3D theoretical value for the resistors in series?
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