Problem is related to voltage drop:
In the 3 phase system, a bus serves a 230A lagging power factor of .75
(3) 350 wag copper conductors are held in a PVC conduit.
With a 500' feeder, calculate voltage at the load (600V source)
Table 9 provides feeder impedance for unity power factor and for .85 power factor. The solution uses unity power factor values...
When I worked the problem, I calculated the effective impedance for .75 power factor and got 592.7V which is incorrect.
Not converting to effective impedance values yields 593.7V which is marked as the correct answer
Can anyone explain?
In the 3 phase system, a bus serves a 230A lagging power factor of .75
(3) 350 wag copper conductors are held in a PVC conduit.
With a 500' feeder, calculate voltage at the load (600V source)
Table 9 provides feeder impedance for unity power factor and for .85 power factor. The solution uses unity power factor values...
When I worked the problem, I calculated the effective impedance for .75 power factor and got 592.7V which is incorrect.
Not converting to effective impedance values yields 593.7V which is marked as the correct answer
Can anyone explain?