1 k2 :4 + 12/0° V(+ 12/0°V/ 32 k2 > Vout Figure P11.23 Circuit for Problem 11.23.
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11.23 Determine Vout in the circuit of Fig. P11.23


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- A SERIES CIRCUIT CONSISTING OF AN 80- OHM RESISTOR, A 0.30 HENRY INDUCTOR AND A 50-uf (MICROFARAD) CAPACITOR IS CONNECTED TO A 120-VOLT 60+ CYCLE SOURCE C ALCULATE THE FOLLOWINC : (A.) EQUIVALENT IMPEDANC E OF THE CKT, (B.) CURRENT (c.) VOLTAGE DROPACROSS THE SEVERAL UNITS (D.) POWER AND POWER FACTOR,Parts D and E. ThanksA synchronous generator of reactance. 1.3 p.u. is connected to an infinite bus bar through transformer and transmission line of reactance 0.2 p.u. and 0.5 p.u. respectively. The inertia constant, H = 4 MW-sec/MVA. The infinite bus having the voltage of 1 p.u. and excitation voltage is 1.2 p.u. The resistance and damping are negligible, system operates at a frequency of 50 Hz. Calculate the frequency of oscillation, if system is loaded to 40% of maximum limit?
- Consider two interconnected voltage sources connected by a line of impedance Z=jX, as shown in Figure 2.27. (a) Obtain expressions for P12 and Q12. (b) Determine the maximum power transfer and the condition for it toPlease answer alll subparts for like either dislike...Please answer in typing format
- answer in text form please (without image)1. (a) A sinusoidal voltage with Veff = 10V is connected across Z₁ = 1 + jas shown in figure(a) below. Find i₁, leff, p₁(t), P₁, Q₁, power factor pf₁, and S1. (b) Repeat part (a) replacing the load Z₁ in (a) by Z₂ = 1-j as shown in figure (b) below. (c) Repeat part (a) after connecting in parallel Z₁ and Z₂ as shown in figure (c). Let v = 10√2cos wt. V= 10 V V= 10 V Z 10 V won 4½ mit T 4½ (a) (b) (c) S₁ 1 P₁ 3 $₂ 45° P₂ 45° P₁ S=P = P₁ + P₂ P₂ 2₂1. (a) A sinusoidal voltage with Veff = 10V is connected across Z₁ = 1 + jas shown in figure(a) below. Find i₁, leff, p₁(t), P₁, Q₁, power factor pf₁, and S1. (b) Repeat part (a) replacing the load Z₁ in (a) by Z₂ = 1-j as shown in figure (b) below. (c) Repeat part (a) after connecting in parallel Z₁ and Z₂ as shown in figure (c). Let v = 10√2cos wt. V= 10 V V= 10 V Z 10 V wing Emit T 4½ 44 (a) (b) (c) S₁ 1 P₁ 3 $₂ 45° P₂ 45° P₁ S=P = P₁ + P₂ P₂ 2₂ 2. A certain passive network has equivalent impedance Z= 3 + j402 and an applied voltage v(t) = 42.5 cos (1000t +30°) V. Give complete power information. (a) Apparent power, S (b) Real Power, P (c) Reactive Power, Q (d) power factor, p.f.
- Q2) The bus-bar (A) and (B) are linked by a bus-bar reactor of 1000 KVA with 10% reactance on bus-bar (A). The system has 2 generators each one of 5000 KVA with 5 % reactance, and on bus-bar (B) two motors each one of 5000 KVA with 12% reactance. Find the steady state apparent power (MVA) given to the symmetrical short circuit occurred on bus-bar (B) in the circuit shown below. Ма Mi B Gi A G₂ Xr mFor the system given below, a) Find K1 and K2 so that the steady-state error is zero, the settling time is one second, and the overshoot is 5% for a unit step input. b) Specify the system type and find the steady-state error a unit ramp input using the computed K1 and K2 values. "Can you explain step by step " check image "A fault current limiter as shown in the figure, has L1 = 1 mH and a total impedance of j10 Q. If the system frequency is 60 Hz, a) Find the capacitor C. Thyristor pair b) Find the inductor L2. L2 DK

