Consider the circuit shown in Figure. The voltage of 35.0 V is applied between points a and b. 12.0 n 4.00 0 5.00 0 6.00 N 8.00 0 1. The equivalent resistance of the circuit is = Ω 2. The total current supplied by the battery is = A 3. The potential differences across 120, 60 is= V & potential differences across 40, 80 is= 4. The current through 120 is = A & the current through 60 is = 5. The power dissipated across 80 is = W

College Physics
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ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter18: Direct-Current Circuits
Section: Chapter Questions
Problem 29P: (a) Can the circuit shown in Figure P18.29 be reduced to a single resistor connected to the...
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Consider the circuit shown in Figure. The voltage of 35.0 V is applied between points a and b.
12.0 N
4.00 0
5.00 0
6.00 N
8.00 0
1. The equivalent resistance of the circuit is =
Ω
2. The total current supplied by the battery is =
A
3. The potential differences across 120, 60 is=
V & potential differences across 40,
80 is=
V
4. The current through 120 is =
A & the current through 60 is =
5. The power dissipated across 80 is =
W
Transcribed Image Text:Consider the circuit shown in Figure. The voltage of 35.0 V is applied between points a and b. 12.0 N 4.00 0 5.00 0 6.00 N 8.00 0 1. The equivalent resistance of the circuit is = Ω 2. The total current supplied by the battery is = A 3. The potential differences across 120, 60 is= V & potential differences across 40, 80 is= V 4. The current through 120 is = A & the current through 60 is = 5. The power dissipated across 80 is = W
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