An LC circuit like the one in the figure below contains an 65.0 mH inductor and a 28.0 µF capacitor that initially carries a 170 µC charge. The switch is open for t <0 and is then thrown closed at t = 0. Qmax. S (a) Find the frequency (in hertz) of the resulting oscillations. 117.97 Hz (b) At t = 1.00 ms, find the charge on the capacitor. 169.98 X µc (c) At t = 1.00 ms, find the current in the circuit. 1.63 X mA ell
An LC circuit like the one in the figure below contains an 65.0 mH inductor and a 28.0 µF capacitor that initially carries a 170 µC charge. The switch is open for t <0 and is then thrown closed at t = 0. Qmax. S (a) Find the frequency (in hertz) of the resulting oscillations. 117.97 Hz (b) At t = 1.00 ms, find the charge on the capacitor. 169.98 X µc (c) At t = 1.00 ms, find the current in the circuit. 1.63 X mA ell
College Physics
11th Edition
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Author:Raymond A. Serway, Chris Vuille
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
Transcribed Image Text:An LC circuit like the one in the figure below contains an 65.0 mH inductor and a 28.0 µF capacitor that initially carries a 170 µC charge. The switch is open for t < 0 and is then thrown
closed at t = 0.
Qmax
(a) Find the frequency (in hertz) of the resulting oscillations.
| 117.97
Hz
(b) At t = 1.00 ms, find the charge on the capacitor.
169.98
X µC
(c) At t = 1.00 ms, find the current in the circuit.
1.63
X mA
ell
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