Three resistors are connected in parallel. The resistances are each worth R1 = 2 ohms, R2 = 1 ohm and R3 = 2 ohms. If the resistance circuit is connected to a voltage of 12 volts, calculate the total current and the current flowing in the 1 ohm resistance. a. The magnitude of the total current = 14 A; current strength at R2 = 12 A b. The magnitude of the total current = 24 A; current strength at R2 = 12 A c. The magnitude of the total current = 18 A; current strength at R2 = 14 A d. The magnitude of the total current = 20 A; current strength at R2 = 14 A
Three resistors are connected in parallel. The resistances are each worth R1 = 2 ohms, R2 = 1 ohm and R3 = 2 ohms. If the resistance circuit is connected to a voltage of 12 volts, calculate the total current and the current flowing in the 1 ohm resistance. a. The magnitude of the total current = 14 A; current strength at R2 = 12 A b. The magnitude of the total current = 24 A; current strength at R2 = 12 A c. The magnitude of the total current = 18 A; current strength at R2 = 14 A d. The magnitude of the total current = 20 A; current strength at R2 = 14 A
Physics for Scientists and Engineers with Modern Physics
10th Edition
ISBN:9781337553292
Author:Raymond A. Serway, John W. Jewett
Publisher:Raymond A. Serway, John W. Jewett
Chapter27: Direct-current Circuits
Section: Chapter Questions
Problem 17P: The circuit shown in Figure P27.17 is connected for 2.00 min. (a) Determine the current in each...
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Three resistors are connected in parallel. The resistances are each worth R1 = 2 ohms, R2 = 1 ohm and R3 = 2 ohms. If the resistance circuit is connected to a voltage of 12 volts, calculate the total current and the current flowing in the 1 ohm resistance.
a. The magnitude of the total current = 14 A; current strength at R2 = 12 A
b. The magnitude of the total current = 24 A; current strength at R2 = 12 A
c. The magnitude of the total current = 18 A; current strength at R2 = 14 A
d. The magnitude of the total current = 20 A; current strength at R2 = 14 A
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