I . 13 V R1 R2 R3 R4 10 V 470 ohm 680 ohm 820 ohm 1.0 kohm Figure 4.1: DC Parallel Circuit Given the parallel circuit in Figure 4.1, calculate the total equivalent resistance RT of the circuit. RT HilH
I . 13 V R1 R2 R3 R4 10 V 470 ohm 680 ohm 820 ohm 1.0 kohm Figure 4.1: DC Parallel Circuit Given the parallel circuit in Figure 4.1, calculate the total equivalent resistance RT of the circuit. RT HilH
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Transcribed Image Text:Is
V
R1
R2
R3
R4
10 V
470 ohm
680 ohm
820 ohm
1.0 kohm
Figure 4.1: DC Parallel Circuit
Given the parallel circuit in Figure 4.1, calculate the total equivalent resistance RT of the
circuit.
RT =
Ω

Transcribed Image Text:Calculate the following for this circuit:
PR2
PR3
PR4
PD
= PRI + PR2 + PR3 + PR4
PRI
W
W
W
Verify that the total power dissipated in the resistors, PD, is equal to the power supplied by
the DC source, Ps.
Power Supplied by the Source
Ps = V * Is
W
Power Dissipated in the Resistors
PD = PRI + PRI+ PR3 + PR4
W
Ps = PD
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