For the circuit shown, calculate root main square voltage where a=50°. P S 220 ww w W 100
Q: Determine the voltage dropped on R3, given: E₁ = 131 V, R₁ = 450, R₂ = 93 , and R₂ = 149 0 (Round…
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Q: Q2. 201+ Ra = Rc Rd Ra Yout 4K52 8k5 16152 RC ERO a). Find the value of Rb in order to make the…
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Q: If C = 45 µF, determine the equivalent capacitance for the combination shown. a) 17.0 µF, b) 30.0…
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Q: Determine the voltage dropped across R₂, given: E=227 V, R₁ = 44 02, R₂ = 47 02, R₂ = 47 02, and R₁…
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Q: = 10.9 In the circuit of Fig. 10.7a let R 330 k2, C = 1 nF, R₁ = 10 k2, and R₂ = 20 ks. Assuming…
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Q: Determine the total resistance for the circuit, given: E₁ = 477 V, P₁ = 459 W, P₂ = 459 W, P3 = 459…
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Q: Determine the voltage dropped across R₁, given: E₁ = 126 V, R₁ = 25, R₂ = 27, R₂ = 142, and R₁ = 130…
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Q: C. 30 V For the circuit in next Figure, Find the total capacitance. Find the total charge Q (Q = Cv)…
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- Describe in your own words why IG is effectively zero amperes for a JFETtransistor0.5) A full-wave rectifier with L-C filter is shown in figure 3. If the resistance of the load is 2002, detemine the ripple factor. 100mH 52 Vs 470 µF RL Vs = v2 5 Sin 314t %3DElectrical Engineering Question 1 Is the FSM a Mealy or Moore machine? Choose '0' for Mealy and '1'for Moore. Reset So 0100 Format: 0/000 X/Y,Y;Y, 1/000 0/010 1/010 1/001 Answer : • Do not enter space before and after the answer • Do not press Enter after the answer
- Calculate the equivalent capacitance that would connect to points "A" and "B". Answer in microFarads. Numeric entry only. No other characters or symbols. 400 µF A В HH 200 μF 300 µF 100 µFIf the voltage Vs = 800 mV, then the current flowing in the primary winding Ip, is: 1:8 -j202 Select one: a. Ip =40<0° mA O b. Ip =320<-90° mA O c. Ip = 0.320<90° A %3D O d. None of these llWhy Pout will not increase bu 75% So why we did not use (1+0.75)(S)Pf and only we use 0.75(s)(pf) why we did not increase it ?
- (b) Figure Q2(b) represents a single-line diagram of typical power system with the line impedances as indicated in pu on a 100 MVA base with a synchronous generator at Bus 1. The line charging susceptances are neglected. Calculate the bus voltages of V½ and V3 in pu using Gauss-Seidel method with the initial estimates of V, = 1+ j0 pu and V) = 1+ j0 pu. Perform only THREE (3) iterations. (0) (0) 1 230.5 0.01+j0.03 pu MW G 0.025+j0.05 pu 0.02+j0.04 pu 172.9 MVAR V1 = 1.0620°Waveform Generator RED CLIP BLACK CLIP R1 C1 1kQ 100μF Figure 3: Breadboard circuit. GND 7. Measure the value of R1: 8. Measure the value of C1: Wave Gen Wave Gen GND GND + GND GND For High Level O For Low I Level τ: R1: R1 1kQ C1: R1 1kΩ 카 GND Figure 4: Circuit behaviour. The circuits in Figure 4 show the expected behaviour of the RC circuit. When the waveform voltage level is high, the capacitor charges through R1. When the waveform voltage is low, the capacitor discharges through resistor R1. It is important to note that the switches in Figure 4 do not exist inside the instrument. They are an analogy to the circuit behaviour. 6. Calculate the T for this circuit: 11 GND C1 100μF C1 100μFChoose the correct answers The coil winding in PMMC meter is -1 small heavy large fine