Mastery Problem #3 (RL Circuits): Given the circuit below, solve for the inductor current, iL(t), and the inductor voltage, vL(t), for ALL time t. Make sure that your equations for these variables contain the unit step function, u(t-3), as vell as the proper exponent. Enter your equations on the lines below, and then click on the CheckAnswer button to check your vork. iL(t) = amperes vL(t) = volts 50 2 iL(t) 0.5.u(t-3)4 150 Q 300 mH vL(t) amperes

Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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Mastery Problem #3 (RL Circuits): Given the circuit below,
solve for the inductor current, iL(t), and the inductor voltage,
L(t), for ALL time t. Make sure that your equations for these
variables contain the unit step function, u(t-3), as vell as the
proper exponent. Enter your equations on the lines belov, and
then click on the CheckAnswer button to check your vork.
iL(t) =
amperes
L(t) =
volts
%3D
50 2
iL(t)
0.5 u(t-3)4
150 Q
300 mH vL(t)
amperes
Transcribed Image Text:Mastery Problem #3 (RL Circuits): Given the circuit below, solve for the inductor current, iL(t), and the inductor voltage, L(t), for ALL time t. Make sure that your equations for these variables contain the unit step function, u(t-3), as vell as the proper exponent. Enter your equations on the lines belov, and then click on the CheckAnswer button to check your vork. iL(t) = amperes L(t) = volts %3D 50 2 iL(t) 0.5 u(t-3)4 150 Q 300 mH vL(t) amperes
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