(a) Write Kirchhoff's loop rule for the circuit shown in Figure P19.28 for the case in which E = 20 V, E2 = 8 V, R = 30 N, R2 = 20 N, and R3 = 10 N. (b) Determine the current in the circuit. (c) Using this value of cur- rent, start at position A and move clockwise around the circuit, calculating the electric potential change across each element in the circuit (be sure to indicate the sign of each change). (d) Add these potential changes 28. %3D %3D %3D

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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(a) Write Kirchhoff's loop rule for the circuit
shown in Figure P19.28 for the case in which
E = 20 V, E2 = 8 V, R = 30 N, R2 = 20 N,
and R3 = 10 N. (b) Determine the current
in the circuit. (c) Using this value of cur-
rent, start at position A and move clockwise
around the circuit, calculating the electric
potential change across each element in the
circuit (be sure to indicate the sign of each
change). (d) Add these potential changes
28.
%3D
%3D
%3D
Transcribed Image Text:(a) Write Kirchhoff's loop rule for the circuit shown in Figure P19.28 for the case in which E = 20 V, E2 = 8 V, R = 30 N, R2 = 20 N, and R3 = 10 N. (b) Determine the current in the circuit. (c) Using this value of cur- rent, start at position A and move clockwise around the circuit, calculating the electric potential change across each element in the circuit (be sure to indicate the sign of each change). (d) Add these potential changes 28. %3D %3D %3D
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