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- 16. Absolute-value impedance is equal to the square root of:A. G2 + B2.B. R2 + X2.C. Zo.D. Y.Q14.22 Answers to 14.21: C = 5 nF, L = 79.16 mH, R = 1.99 kΩ, ωc1 = 39246.1 rad/s, ωc2 = 64378.8 rad/sDetermine a frequency ω that will cause the input x(t) = cos(ωt) to produce a strong response when applied tothe system descriptbed by (D2 + 2D + 13/4) y(t) = x(t). Carfully explain your choice
- Determine the following DC: Ib Ic Ie Vc Vb Id Vds Vd Vs In AC: Zo Zin Avs VoCircuits 2:Source Transformation (AC) Pls show full and clean solution tnxQ1 Find the Norton equivalent circuit for the following circuit with respect f0 the terminals ab using Multsim program with the values that are shown on the circuit M 25V 60 40 50 1ov RL 250 30
- In the circuit given below, R = 40 Ω. Identify v(t) for t > 0. a) v(t) = 6 cos(0.5t) V b) v(t) = 12 cos(0.5t) V c) v(t) = 6 sin(0.5t) V d) v(t) = 3 sin(0.5t) VFigure 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 oC = 5 nF, L = 79.16 mH, R = 1.99 kΩ, ωc1 = 39246.1 rad/s, ωc2 = 64378.8 rad/s Please show all steps clearly, thank you.
- ona) V B, VGb) V EC) IE, IC and IDD) IBE) VC, VS and VDF) VCE, VDSfind their value(x.xk= 1.8 k)a) Please calculate the current i(t), when the external voltage is set to uI(t) = 10 V cos(w*t) for the frequency 159.15 Hz (for this frequency the impedance of the circuit turns real). b) Please draft the magnitude of the total Impedance Z into the diagram ( |Z| in Ω - y-axis and f in Hz - x-axis ) . You do not need to derive an analytical expression, but you can. Please add relevant parameters such as interesting frequencies and limits to the draft.In the n-channel JFET circuit given in the figure, I (DDS) = 6mA, V (p) = -4 V. Calculate the values of I(DQ), V(DQ) and V(DSQ) accordingly. I sent you question's image. Thank you.. Please write clearly I should understand