In the circuit in (Figure 1) the switch has been closed for a long time before opening at t=0. Take R = 75. Part A Find the value of L so that vo (t) equals 0.25v, (0+) when t = 7 ms. Express your answer to three significant figures and include the appropriate units. L = 379 mH Submit Previous Answers Part B Correct Find the percentage of the stored energy that has been dissipated in the resistor R when t = 7 ms. Express your answer as a percentage to three significant figures. 1 ΑΣΦ. 11 vec % dissipated = Submit Previous Answers Request Answer × Incorrect; Try Again; 3 attempts remaining t=0 1 k 60 mA 5 ΚΩ w R L ? %

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In the circuit in (Figure 1) the switch has been closed for a
long time before opening at t=0. Take R = 75.
Part A
Find the value of L so that vo (t) equals 0.25v, (0+) when t = 7 ms.
Express your answer to three significant figures and include the appropriate units.
L = 379 mH
Submit
Previous Answers
Part B
Correct
Find the percentage of the stored energy that has been dissipated in the resistor R when t = 7 ms.
Express your answer as a percentage to three significant figures.
1 ΑΣΦ. 11 vec
% dissipated =
Submit Previous Answers Request Answer
× Incorrect; Try Again; 3 attempts remaining
t=0
1 k
60 mA
5 ΚΩ
w
R
L
?
%
Transcribed Image Text:In the circuit in (Figure 1) the switch has been closed for a long time before opening at t=0. Take R = 75. Part A Find the value of L so that vo (t) equals 0.25v, (0+) when t = 7 ms. Express your answer to three significant figures and include the appropriate units. L = 379 mH Submit Previous Answers Part B Correct Find the percentage of the stored energy that has been dissipated in the resistor R when t = 7 ms. Express your answer as a percentage to three significant figures. 1 ΑΣΦ. 11 vec % dissipated = Submit Previous Answers Request Answer × Incorrect; Try Again; 3 attempts remaining t=0 1 k 60 mA 5 ΚΩ w R L ? %
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