Vs 10 V Theoretical and experimental values of five resistors in the laboratory. Measured value (2) 219.5 16.0 Name R₁ R2₂ R3 R4 R₁ IR1 Industrial value (0) 220 + 100+ 220 + 330 + 220 + www R1 2200 ww IR2 99.3 5.8 219.45+ 16.0 327.44+21.37 219.5+16.0 R2 - 100 Ω ww IR3 R3 220 Ω % error 0.28 0.7 0.25 0.78 0.28 IR4 R4 330 Ω Figure 1: Circuit for testing the current divider A.1 Show that Kirchhoff's Laws are satisfied using the experimental data, for the circuits in Figure 1 (LCK). A.2 Give conclusions about the current divider: do the experimental results show that this concept is fulfilled? how does the current divider relate to Kirchhoff's laws?

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I need help with part A.2 please:)

Vs
10 V
Theoretical and experimental values of five resistors in the laboratory.
Measured value (2)
219.5 16.0
99.3 5.8
219.45+ 16.0
Name
R₁
R2
R3
R4
R₁
IR1
Industrial value (0)
220 +
100+
220 +
330 +
220 +
www
R1
220 Q
ww
IR2
R2
327.44+21.37
219.5+16.0
- 100 Ω
ww
IR3
R3
220 Ω
% error
0.28
0.7
0.25
0.78
0.28
IR4
R4
330 Ω
Figure 1: Circuit for testing the current divider
A.1 Show that Kirchhoff's Laws are satisfied using the
experimental data, for the circuits in Figure 1 (LCK).
A.2 Give conclusions about the current divider: do the
experimental results show that this concept is
fulfilled? how does the current divider relate to
Kirchhoff's laws?
Transcribed Image Text:Vs 10 V Theoretical and experimental values of five resistors in the laboratory. Measured value (2) 219.5 16.0 99.3 5.8 219.45+ 16.0 Name R₁ R2 R3 R4 R₁ IR1 Industrial value (0) 220 + 100+ 220 + 330 + 220 + www R1 220 Q ww IR2 R2 327.44+21.37 219.5+16.0 - 100 Ω ww IR3 R3 220 Ω % error 0.28 0.7 0.25 0.78 0.28 IR4 R4 330 Ω Figure 1: Circuit for testing the current divider A.1 Show that Kirchhoff's Laws are satisfied using the experimental data, for the circuits in Figure 1 (LCK). A.2 Give conclusions about the current divider: do the experimental results show that this concept is fulfilled? how does the current divider relate to Kirchhoff's laws?
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