9. DETAILS ZILLDIFFEQMODAP11 7.3.034. Recall that the differential equation for the instantaneous charge q(t) on the capacitor in an LRC-series circuit is + R dq + 1 = E(t). dt 2 dt See this excerpt about LRC-series circuits. Use the Laplace transform to find q(t) when L = 1 h, R = 20 N, C = 0.005 f, E(t) = 170 v, t > 0, q(0) = 0, and i(0) = 0. q(t) = What is the current i(t)? i(t) =

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9.
DETAILS
ZILLDIFFEQMODAP11 7.3.034.
Recall that the differential equation for the instantaneous charge q(t) on the capacitor in an LRC-series circuit is
dq
+ R-
dt 2
dE * 9 = E(t).
See this excerpt about LRC-series circuits. Use the Laplace transform to find g(t) when L = 1 h, R = 20 N, C = 0.005 f, E(t) = 170 V, t > 0, g(0) = 0, and i(0) = 0.
q(t) =
What is the current i(t)?
i(t) =
Transcribed Image Text:9. DETAILS ZILLDIFFEQMODAP11 7.3.034. Recall that the differential equation for the instantaneous charge q(t) on the capacitor in an LRC-series circuit is dq + R- dt 2 dE * 9 = E(t). See this excerpt about LRC-series circuits. Use the Laplace transform to find g(t) when L = 1 h, R = 20 N, C = 0.005 f, E(t) = 170 V, t > 0, g(0) = 0, and i(0) = 0. q(t) = What is the current i(t)? i(t) =
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