A.1) Calculate the current IR1 of the circuit in Figure 1 by combining the resistors in parallel. A.2) Calculate the current through each of the resistors in the circuit in Figure 1, using the current from the previous point and the current divider equation (do not use Ohm's Law). VS 10 V IR1 ww R1 220 Ω IR2 R2 - 100 Ω IR3 R3 2200 IR4 R4 330 Ω Figure 1: Circuit for testing the current divider

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
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A.1) Calculate the current IR1 of the circuit in Figure 1
by combining the resistors in parallel.
A.2) Calculate the current through each of the
resistors in the circuit in Figure 1, using the current
from the previous point and the current divider
equation (do not use Ohm's Law).
VS
10 V
IR1
R1
220 Ω
IR2
R2
- 100 Q
IR3
R3
220 Ω
IR4
R4
330 Ω
Figure 1: Circuit for testing the current divider
Transcribed Image Text:A.1) Calculate the current IR1 of the circuit in Figure 1 by combining the resistors in parallel. A.2) Calculate the current through each of the resistors in the circuit in Figure 1, using the current from the previous point and the current divider equation (do not use Ohm's Law). VS 10 V IR1 R1 220 Ω IR2 R2 - 100 Q IR3 R3 220 Ω IR4 R4 330 Ω Figure 1: Circuit for testing the current divider
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