An oscillating LC circuit consists of a 75.0 mH inductor and a 3.60 mF capacitor. If the maximum charge on the capacitor is 2.90 mC, what are (a) the total energy in the circuit and (b) the maximum current?
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Question
An RLC circuit such as that of Fig. 31-7 has R 5.00 , C 20.0 mF, L 1.00 H, and 30.0 V. (a) At what angular frequency vd will the current amplitude have its maximum value, as in the resonance curves of Fig. 31-16? (b) What is this maximum value? At what (c) lower angular frequency vd1 and (d) higher angular frequency vd2 will the current amplitude be half this maximum value? (e) For the resonance curve for this circuit, what is the fractional half-width (vd1 ' vd2)/v?
Solution
The first step in solving 31 problem number 47 trying to solve the problem we have to refer to the textbook question: An RLC circuit such as that of Fig. 31-7 has R 5.00 , C 20.0 mF, L 1.00 H, and 30.0 V. (a) At what angular frequency vd will the current amplitude have its maximum value, as in the resonance curves of Fig. 31-16? (b) What is this maximum value? At what (c) lower angular frequency vd1 and (d) higher angular frequency vd2 will the current amplitude be half this maximum value? (e) For the resonance curve for this circuit, what is the fractional half-width (vd1 ' vd2)/v?
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