2. For the series circuit in Fig. 20.49: a. Find the value of Xc for resonance. b. Determine the total impedance of the circuit at reso- nance. c. Find the magnitude of the current I. d. Calculate the...


2. For the series circuit in Fig. 20.49:<br>a. Find the value of Xc for resonance.<br>b. Determine the total impedance of the circuit at reso-<br>nance.<br>c. Find the magnitude of the current I.<br>d. Calculate the voltages Vg, VL, and Vc at resonance. How<br>are V and Vc related? How does Vg compare to the ap-<br>plied voltage E?<br>e. What is the quality factor of the circuit? Is it a high or<br>low Q circuit?<br>+ Vg<br>R = 20<br>X = 30 1<br>%3D<br>E )50 mV<br>FIG. 20.49<br>

Extracted text: 2. For the series circuit in Fig. 20.49: a. Find the value of Xc for resonance. b. Determine the total impedance of the circuit at reso- nance. c. Find the magnitude of the current I. d. Calculate the voltages Vg, VL, and Vc at resonance. How are V and Vc related? How does Vg compare to the ap- plied voltage E? e. What is the quality factor of the circuit? Is it a high or low Q circuit? + Vg R = 20 X = 30 1 %3D E )50 mV FIG. 20.49

Jun 11, 2022
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