R1 VR, Vr, R2 For the circuit shown above use Kircho's laws to compute the voltage VR, across resistance R2 as a function of R1, R2 and supply voltage and write it below. VR, = Now choose R1 and R2 such that the voltage across R2 is Vs/11. R1 = R2 = Now build the circuit and compare the theoretical value with the measured value. VR2experimental VR2theoretical=

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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C. Series circuit as a voltage divider
R1
VR,
VR,
R2
V,
For the circuit shown above use Kircho's laws to compute the
voltage VR, across resistance R2 as a function ofR1, R2 and supply
voltage and write it below.
VR, =
Now choose R1 and R2 such that the voltage across R2 is Vs/11.
R1
R2 =
Now build the circuit and compare the theoretical value with the
measured value.
VR2theoretical
VR2experimental
Show the measurement and your circuit to the teaching assistant for
credit.
Transcribed Image Text:C. Series circuit as a voltage divider R1 VR, VR, R2 V, For the circuit shown above use Kircho's laws to compute the voltage VR, across resistance R2 as a function ofR1, R2 and supply voltage and write it below. VR, = Now choose R1 and R2 such that the voltage across R2 is Vs/11. R1 R2 = Now build the circuit and compare the theoretical value with the measured value. VR2theoretical VR2experimental Show the measurement and your circuit to the teaching assistant for credit.
Resistor Color Table
62 Ω +5%
1st Digit
2nd Digit
Multiplier
Tolerance
x 10
х 10 0
x 100 Q
x 1 KQ
х 10 KQ
|x 100 КО
x 1 MQ
+ 1%
t 2%
1
1
3
4
7
± 5%
+ 10%
8
8.
х0.1 Q
x 0.01 Q
Figure 1. Resistor color table
Transcribed Image Text:Resistor Color Table 62 Ω +5% 1st Digit 2nd Digit Multiplier Tolerance x 10 х 10 0 x 100 Q x 1 KQ х 10 KQ |x 100 КО x 1 MQ + 1% t 2% 1 1 3 4 7 ± 5% + 10% 8 8. х0.1 Q x 0.01 Q Figure 1. Resistor color table
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