Q8) A 3-phase Y-connected load has a voltage VBN= 200 <30° V. Find VAB ?
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Q: 2- A 10 kVA, 2500/250 V, single phase transformer gave the following results: V (Volt) I (Amp) Power…
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Q: Single phase non-ideal transformer. Turn Ratio= 3000/600. R₁ = 0.9Q R2= 36 mQ Ro= 3000 Q X₁₁ = 0.60…
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Q: Using Mesh analysis, find i1 in Amperes if Vs = 15.7 V and R 1.1 Ohm. = 302 502 www www Vs 4% www R…
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Q: 1. Consider the following signal with length N = 4: 1, n = 1,3, x[n]=2, n=2 |0, n = 0. (a) Let xp[n]…
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Q: "2. In the following circuit R₁ = 2000, RL = 100k, n₁/n2 = 1/100, and vin (t) = 40 cos(wt)V, where w…
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Q: Consider the following continuous-time signal x(t) = sin(2π10t) + sin(2π200t) Obtain the Fourier…
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Q: (33pts) 2. Use nodal analysis to find io in the following circuit 259 2A į, 402 M 200 302 20 V 6 A
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Q: 1. If vin (t) = 169 cos(120πt +50°) V: (a) What is the phasor Vin? (b) Find the impedance seen by…
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- Two impedances Z₁ and Z2 are connected in series to a voltage source with voltage Vs volts. Let V₁ be the voltage across Z₁ and V₂ be the voltage across Z2. Then, the total voltage Vs is divided between V₁ and V2 in proportion to impedance values Z₁ and Z2. O a. True O b. FalseImpedances Z2 and Z3 in parallel are in series with impedance Z1 across a 100 V, 50 Hz ac supply. Z1 =6.25 + j1.25 ohm; Z2 = 5+ j0 ohm and Z3 = 5-jXc ohm. Determine the value of capacitance of Xc such that the total curent of the circuit will be in phase with the total voltage. When is then the circuit current and power.2. A single-phase a.c. distributor AB is fed from end A and has a total impedance of (0-2 +j03) ohm. At the far end, the voltage VR = 240 V and the current is 100 A at a p.f. of 0-8 lagging. At the mid-point M, a current of 100 A is tapped at a p.f. of 0-6 lagging with reference to the voltage Vy at the mid-point. Calculate the supply voltage V and phase angle between V and Vg- [292 V, 2-6°] T 40 A
- HelpThree impedances Z1, Z2 and ZL are connected in tee. The impedance Z1 is connected in series with the supply voltage V1 while the impedance Z2 is connected in series with the voltage V2. If V1 = 200 volts, V2 = 120 volts, Z1 = (5+j4) ohms, Z2 = (10-j13) ohms, and ZL. Calculate the maximum power transferred to load impedance ZL . Use Maximum power transfer theorem.4.3. Consider 3 ac loads connected across a 240V ac source where: L1 absorbs 10kW at 0.8pf lagging, L2 absorbs 20KVA at 0.9pf leading, and L3 has an impedance of Z = 102. Calculate: Vic240 Lêv AC 84ure Ac Load a. Complex power absorbed by each load b. Complex power supplied by the source c. Source current RMS value I
- Let a series RLC network be connected to a source voltage V, drawing a current I. (a) In terms of the load impedance Z=ZZ, find expressions for P and Q, from complex power considerations. (b) Express p(t) in terms of P and Q, by choosing i(t)=2Icost. (c) For the case of Z=R+jL+1/jC, interpret the result of part (b) in terms of P,QL, and Qc. In particular, if 2LC=1, when the inductive and capacitive reactances cancel, comment on what happens.THREE PHASE( NEED ONLY HANDWRITTEN SOLUTION PLEASE OTHERWISE DOWNVOTE).In the circuit given in Figure 2, vead(t) = /2-80 cos(4f)V a) Express each circuit element in phasor domain. b) Find the equivalent load impedance (Złoad). c) Calculate the phasor value for the load current Ijoad- Write down time domain expression for the same current ijoad(1). d) Calculate the phasor value for the source voltage Vs. Write down time domain expression for the same voltage v,(t). e) Calculate the active, reactive and apparent power of the load. Determine the power factor. 4H İjoad(t) 5y N v.(t) V load(t) 5H 25mF LOAD all
- 3 The load Z, in the circuit of Figure P7.28 consists of a 25-2 resistor in series with a 0.1-mF capacitor. Assuming f = 60 Hz, find %3D三 T AaBbCcDc AaBbCcDc AABBC T Normal 1 No Spac. Heading Paragraph Styles In the circuit pictured the current through R1 is 11 = 6A in the direction shown. a) Determine the current 14. Describe choice of node or loop (including direction of travel). b) Determine the current 13. Describe choice of node or loop (including direction of travel). c) Determine the Determine the potential difference Vgd = Vg Vd between points g and d.Example: A balanced positive-sequence wye-connected 60 Hz three-phase source has line-to- line voltages of V,=1000 V. This source is connected to a balanced wye-connected load. Each phase of the load consists of a 0.2 H inductance in series with a 100 0 resistance. Find the line-to-neutral voltages, the line currents, the power, and the reactive power delivered to the load. Assume that the phase of Van is zero.