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- Avresistor of 51.0 Q, an inductor of 22.0 pH and a capacitor of 150 pF are in parallel. The frequency is 1.00 MHz. Whatis the complex impedance, R_jX? A.51.0_j14.9. B.51.0_/149 C.46.2_j14.9. D.46.2_j14.9. ¥ Show Answer Answer: Dona) V B, VGb) V EC) IE, IC and IDD) IBE) VC, VS and VDF) VCE, VDSfind their value(x.xk= 1.8 k)For the circuit above, R=5kΩ and C=2μF. If Vi =sin(1000t)V, what is the value of Vo at t=4π/3 ms?
- A series RLC circuit is connected to a 400-hZ line with an applied voltage of 35.678 V. The resistor has a true power of 14.4 W, and there are 12.96 inductive VARs and 28.8 capactive VARs. Determine the value of ER? Show your work. a) ER=24 V b) ER= 20V c) ER= 12 V d) ER= 10V21. What is the impedance equivalent of Series LC 22. What is the impedance equivalent of a series RLCCompute ID for the following cases, You can use Kp=Kn= 20U : VSG= -2V, VSD = 1V, VTP= -3V
- a student is doing work on circuit in which he employs a voltage af 60 sin(314t+60) by observing the peak voltage determine following below evaluate the maximum value of vol;tage a=60v b=55v c=45v d=40vFigure 1090 For Prob. 1047. 10.48 Find i, in the circuit in Fig. 10.91 y superposition. A 10.: in the 50 cos 20007 V 0s(2t - 60°) V 2 sin 40001 A 10.5 Figure 1091 oDetermine the Ib in the given circuit if VBB = 15V, Vcc = 15V, RB = 15k ohms, RC = 1k ohms. Assume β = 100.
- Use Millman's Theorem to solve for output voltage, Vo. Ans. Vo=—0.5VWhich option is correct? The bandwidth of an AM signal is given by a) BW = 2fm b) BW = 1/2fm c) BW = fm d) None of the aboveAn input power of P = 3 W is fed to a 75 km conductor. A repeater is present at 40 km from transmitter and has a gain of 70 dB. The conductor has a of 3 dB/km. The power received at receiver side is: (a) -140.23 dBm (b) -120.23 dBm (c)-110.23 dBm (d) -150.23 dBm