What is the bandwidth of a series resonant circuit if its resonant frequency is 1000 Hz and Qs = 20? 1000 Hz 20 kHz 20 Hz 50 Hz
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- Suppose we have a series resonant circuit for which B=30 kHz, f 0 =300 kHz and R = 40 Ω .Determine the values of L and C.What kind of bandwidth can be obtained if a parallel resonant circuit is tuned to 2 MHz and the Q of the coil 40?10 kHz50 kHz20 kHz100 kHzThe following data are given for a three – branch parallel circuit: V = 12 V, R = 82 kΩ, L = 15 mH, and C = 390 pF. Determine the values specified at the resonant frequency. h. ZT = ______________i. Q = ______________j. f1 = ______________k. f2 = ______________
- The following data are given for a three-branch parallel circuit: V = 12 V, R = 82 kΩ, L = 15 mH, and C = 390 pF. Determine the values specified at the resonant frequency. d. IL = ______________e. IC = ______________f. IR = ______________What is the resonant frequency of a circuit when L of 25 microhenrys and C of 10 picofarads are in parallel? * A. 10.1 kHz B. 10.1 MHz C. 101 MHz D. 101 kHzWhat will be the total impedance of a series resonant circuit if the resistance is of 1.5 ohms, the inductor is of 2 mH and the capacitor is of 5 mF. The frequency of the ac signal is 1 kHz.
- A parallel resonant circuit has f 0 =20 MHz and B=200 kHz The maximum value of |Z p| is 5 kΩ.Determine the values of R, L, and CA tuned circuit has a Q of 80 at its resonant frequency of 480 kHz. What is its bandwidth?This is for a parallel rlc resonant circuit 1vpk source 1khz 100 ohm resister .047 uf capacitor 100 uh inductor Calculate the resonant frequency What is the approximate resonase frequency approximate peak voltage across resisitor approximate peak voltage across lc
- A parallel resonant circuit has f 0 =100 MHz, B=5 MHz,and R=2 kΩ. Determine the values of L and C.A tuned circuit has a resonant frequency of 18 MHz and a bandwidth of 120 kHz. What are the upper and lower cutoff frequencies?Determine the resonant frequency fr and the magnitude of the impedance |Z| for the circuit below at that frequency. What is the voltage amplitude VL across the inductor at resonance? Data: C1 = 5.0 μF, C2 = 25 μF, L = 50. mH, R = 200 Ω, and Vp = 10. V. fr = kHz |Z| = Ω VL = %