Table 3(Resistors in both series and parallel) R(Q) ¡ex(A) R₁ R₂ R3 R4 Reg 10Ω 100Ω 1000 10Ω 10 100 100 10 0.0175 0.0165 0.0165 0.0017 0.0135 Vex(V) ith(A) 2.006 0.171 1.641 0.173 0.153 Vth(V) % Error i % Error V 7. Using the equations for resistors in series and in parallel, calculate the theoretical voltages and currents for each of the resistors, and the entire circuit. Use the measured values of resistance in your calculations, then calculate the % errors. Show work.

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Table 3(Resistors in both series and parallel)
R(Q) ¡ex(A) Vex(V)
R₁
R₂
R3
R4
Reg
10Ω
10
1000 100
100Ω
100
10Ω
10
0.0175
0.0165
0.0165
0.0017
0.0135
2.006
0.171
1.641
0.173
0.153
ith(A)
Vth(V) % Error
į
% Error
V
7. Using the equations for resistors in series and in parallel, calculate the theoretical
voltages and currents for each of the resistors, and the entire circuit. Use the measured
values of resistance in your calculations, then calculate the % errors. Show work.
Transcribed Image Text:Table 3(Resistors in both series and parallel) R(Q) ¡ex(A) Vex(V) R₁ R₂ R3 R4 Reg 10Ω 10 1000 100 100Ω 100 10Ω 10 0.0175 0.0165 0.0165 0.0017 0.0135 2.006 0.171 1.641 0.173 0.153 ith(A) Vth(V) % Error į % Error V 7. Using the equations for resistors in series and in parallel, calculate the theoretical voltages and currents for each of the resistors, and the entire circuit. Use the measured values of resistance in your calculations, then calculate the % errors. Show work.
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