The circuit shown consists of three resistors and two inductors. The resistors have resistances of R1 = 19 Ω, R2 = 13 Ω, and R3 = 14 Ω. The inductors have inductances of L1 = 0.75 H and L2 = 0.85 H. a) Calculate the equivalent resistance of the parallel resistor combination in Ω. b) Calculate the total resistance of the circuit in Ω. c) Calculate the equivalent inductance of the parallel inductors in H.
The circuit shown consists of three resistors and two inductors. The resistors have resistances of R1 = 19 Ω, R2 = 13 Ω, and R3 = 14 Ω. The inductors have inductances of L1 = 0.75 H and L2 = 0.85 H. a) Calculate the equivalent resistance of the parallel resistor combination in Ω. b) Calculate the total resistance of the circuit in Ω. c) Calculate the equivalent inductance of the parallel inductors in H.
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11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
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The circuit shown consists of three resistors and two inductors. The resistors have resistances of R1 = 19 Ω, R2 = 13 Ω, and R3 = 14 Ω. The inductors have inductances of L1 = 0.75 H and L2 = 0.85 H.
a) Calculate the equivalent resistance of the parallel resistor combination in Ω.
b) Calculate the total resistance of the circuit in Ω.
c) Calculate the equivalent inductance of the parallel inductors in H.
d) Find the time constant of the circuit in s.
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