Fast Answer please A balanced ∆ connected load with impedance 63 + j216 Ω⁄∅ 50∠0 ° Ω⁄∅ It is connected in parallel to a balanced Y-connected load with impedance. Parallel loads have an impedance of 1 + j3 Ω⁄∅ fed from one line. Y the magnitude of the connected load from line to neutral is 750 V. a) Calculate the magnitude of the current in the line feeding the loads? b) Calculate the magnitude of the phase voltage at the sending end of the line? c) The total apparent, average and reactive powers provided by the sources areA balanced ∆ connected load with impedance 63 + ?216 Ω⁄∅ 50∠0 ° Ω⁄∅ It is connected in parallel to a balanced ?-connected load with impedance. Parallel loads have an impedance of 1 + j3 Ω⁄∅ fed from one line. Y the magnitude of the connected load from line to neutral is 750 V. a) Calculate the magnitude of the current in the line feeding the loads? b) Calculate the magnitude of the phase voltage at the sending end of the line? c) The total apparent, average and reactive powers provided by the sources are
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A balanced ∆ connected load with impedance 63 + j216 Ω⁄∅ 50∠0
° Ω⁄∅
It is connected in parallel to a balanced Y-connected load with impedance. Parallel loads have an impedance of 1 + j3 Ω⁄∅
fed from one line. Y the magnitude of the connected load from line to neutral is 750 V.
a) Calculate the magnitude of the current in the line feeding the loads?
b) Calculate the magnitude of the phase voltage at the sending end of the line?
c) The total apparent, average and reactive powers provided by the sources areA balanced ∆ connected load with impedance 63 + ?216 Ω⁄∅ 50∠0
° Ω⁄∅
It is connected in parallel to a balanced ?-connected load with impedance. Parallel loads have an impedance of 1 + j3 Ω⁄∅
fed from one line. Y the magnitude of the connected load from line to neutral is 750 V.
a) Calculate the magnitude of the current in the line feeding the loads?
b) Calculate the magnitude of the phase voltage at the sending end of the line?
c) The total apparent, average and reactive powers provided by the sources are
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