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inductor as shown. The generator voltage varies in time as ε=Va−Vb= εmsinωt, where εm=24 V and ω=175 radians/second. At this frequency, the circuit is in resonance with the maximum value of the current Imax=0.88 A. The capacitance C=182μF. The values for the resistance R and the inductance L are unknown. 1) What is L, the value of the inductance of the circuit? mH You currently have 0 submissions for this question. Only 10 submission are allowed. You can make 10 more submissions for this question. 2) What is Umax,C, the value of the maximum energy stored in the capacitor during one cycle? You currently have 0 submissions for this question. Only 10 submission are allowed. You can make 10 more submissions for this question. 3) What is ΔU, the total energy dissipated in the circuit in one cycle? You currently have 0 submissions for this question. Only 10 submission are allowed. You can make 10 more submissions for this question. 4) What is Q, the quality factor of this ciruit? You currently have 0 submissions for this question. Only 10 submission are allowed. You can make 10 more submissions for this question. 5) What is R, the value of the resistance of the circuit? Ω You currently have 0 submissions for this question. Only 10 submission are allowed. You can make 10 more submissions for this question. 6) Suppose now the value of the capacitance in the circuit is doubled (C′=2C) and the inductance is changed appropriately to keep the circuit in resonance at angular frequency ω=175 radians/s while the generator voltage and resistance are kept constant. How does Q, the quality factor of the circuit, change, if at all? Qincreases Q decreases Q stays the same
inductor as shown. The generator voltage varies in time as ε=Va−Vb= εmsinωt, where εm=24 V and ω=175 radians/second.
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inductor as shown. The generator voltage varies in time as ε=Va−Vb= εmsinωt, where εm=24 V and ω=175 radians/second.
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