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- Multiple choice: -89.5+59.1j 15.9-16.9j -20+87.7j None of the answersIDSS=8mA , VP =-4VTo help plot the DC load line VGS=VG-IDRSa)Determine the value of Vgs when ID=1mAb)Determine the value of Vgs when ID=2mAc)Determine the value of Vgs when ID=3mAd)Determine the value of Vgs when ID=4mAe)Attach a Plot of JFET Characteristic Curve as shown in Figuref)What is the approximate VGSQ?g)What is the approximate IDQ in mA?h)Determine source voltage VS.i)Calculate the drain voltage VD.j)Calculate the drain-to-source voltage VDS.Variation of which of the following parameter is not consider as power quality problem for industry?VoltageCurrentPowerFrequency
- How much is the Zt for a 20-Ω resistor in series with a 20-Ω capacitive reactance? If a 20 V is across the R and also 20 V is across Xc, what is the supply voltage and phase angle of the circuit?Perform the following steps for the given circuit in below.RD = 1.8kΩ, RS = 560Ω, RG = 2.2MΩ, VDD = +9V, IDSS = 6mA, VP = -6Va) Calculate the ID current and VDS voltage of the JFET.b) Calculate the ID current and VDS voltage of the JFET, if the value of IDSS = 8mA,VP = -6V.c) Calculate the ID current and VDS voltage of the JFET, if the value of IDSS = 6mA,VP = -4V.d) Find the working region of the JFET for the all cases given above.Q10. If the impedance of a circuit = 20 – j10n, if a voltage source is connected across this impedance, which if the following statements is correct?
- Find VTH, RTH ? a. 12V, 11kΩ b. 10V, 6kΩ c. 6V, 11kΩ d. 11V, 15kΩIDSS= 10MA, VP = -4V,rd = 40 given below for kΩonFind the values Zi, Z0, AvThe load flow data for the sample power system are given below. The voltage magnitude at bus 2 is to be maintained at 1.04 p.u.Determine the set of load flow equations at the end of first iteration by using N-R method. Impedance for sample system Bus Code Impedances line charging admittance 1-2 0.08 + j0.24 0.0 1-3 0.02 + j0.06 0.0 2-3 0.06 + j0.18 0.0 Schedule of generation and loads: Bus Code Assured Voltages Generation Load…
- 1) Referring to the circuit as in Figure 1, transform the circuit in phasor domain representation.2) Determine the value of total impedance, ZT3) Determine the value of total current, IT4) Determine the value of branch current, I1 and I25) Determine the value of voltage across resistor, R1, R2 and R36) Determine the value of voltage across capacitor, C1 and C27) Determine the value of voltage across inductor, L.asnwer as soon as possibleAvresistor 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: D