3. One line voltage of a balanced Y-connected source is VAB = 240230° V. If the source is connected to a A-connected load of 20/40°, find the phase and line currents. Assume the abc sequence.
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- q1 B g6= 9 g7 = 8Two delta connected loads are connected in parallel and powered by a balanced Y-connectedsource. The smaller of two loads draws 10 kVA at a lagging power factor of 0.75 and the largerdraws 25 kVA at a leading power factor of 0.8. The line voltage is 400 V. Calculate a) The powerfactor at which the source is operating. b) The total power drawn by the two loads. c) The phasecurrent of each load.Will upvote if right solution..
- Draw a 3-phase wye-connected generator with transmission lines connected to a 3-phase delta-connected load. Assume the lines connecting them have an inductance of j5 per phase. The generated voltages are 120 Vrms with phase 'a' having a phase angle of 0°. The loads are 10 Ohm resistors per phase. When drawing, make sure to label all 3 phases with voltage phasors, line inductances, and load resistances.2. One phase voltage of a three-phase wye-connected load is Vbn=340VZ+20° . Ib la vab 340V@+20 Vbc Vca a. Calculate the line-to-line voltages Vab, Vbc, and Vca (including the phase) on the transmission lines. b. Show that KVL is true for the loop around this 3-phase load, a to b to c and back to a (or any other closed path).A balanced three-phase Y-connected source with positive sequance has an internal voltage of 120 V/phase. The source feeds a balanced three-phase Y-connected load having an impedance of 39 + j28 N /phase. The impedance of the transmission line connecting the source to the load is 1+ j20/phase. The a- phase of the source is the reference voltage. a) Draw the equivalent per-phase-circuit for the phase "a". b) Calculate the three line currents in the transmission lines. c) Calculate the three phase voltages at load. d) Calculate the three line-to-line voltages at the terminals of the load. e) Calculate the total average power in watts delivered to the load. f) Calculate the total complex power in VA delivered by the source.
- Need in Detail handwritten step by step,each step2.40 A balanced three-phase 240-V source supplies a balanced three-phase load. If the line current I, is measured to be 15 A and is in phase with the line-to-line voltage, Výc, find the per-phase load impedance if the load is (a) Y-connected, (b) A-connected. BCIn a balanced three-phase Y-Y system, the source is an acb sequence of voltages and given Ven=120/35°V. The line impedance per phase is (1 +j2) 22, while the per-phase impedance of the load is (11 +j14) 22. Determine the followings: - i) Draw the Y-Y circuit as described above. Label all the components with the correct value. ii) Find the remaining phase voltages, Van, and Vbn iii) Draw a single-phase equivalent circuit of the three-phase system. iv) Find the following line currents, I, I, and I.