4. An out of balance three phase star connected load has the following complex currents: I₁ = le¹j⁰, A, I₂ =le¯j60° ,A and I₂ =1e¹j6⁰, A. This load is supplied by a four wire power line from a balance voltage source. Find the r.m.s. value of the neutral current Io =?

Power System Analysis and Design (MindTap Course List)
6th Edition
ISBN:9781305632134
Author:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Publisher:J. Duncan Glover, Thomas Overbye, Mulukutla S. Sarma
Chapter2: Fundamentals
Section: Chapter Questions
Problem 2.45P: Two balanced Y-connected loads, one drawing 10 kW at 0.8 power factor lagging and the other IS kW at...
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current - 1=?, and the power factor - cosp =?.
4.
An out of balance three phase star connected load has the following complex currents:
I₁ = lejº,A, I₂ =le¯6⁰,A and I₁=1e¹j6⁰, A. This load is supplied by a four wire
power line from a balance voltage source. Find the r.m.s. value of the neutral current Io =?
Wait
to th
Transcribed Image Text:current - 1=?, and the power factor - cosp =?. 4. An out of balance three phase star connected load has the following complex currents: I₁ = lejº,A, I₂ =le¯6⁰,A and I₁=1e¹j6⁰, A. This load is supplied by a four wire power line from a balance voltage source. Find the r.m.s. value of the neutral current Io =? Wait to th
The total resistance of a series wound DC motor is ER*=0.52. This machine has an
electromagnetic constant of CEM=1.85. When this motor is supplied by a DC voltage source
of UM-200V and is loaded, it takes current of I=30A and operates with magnetic flux of
p=0.1 Wb. If its additional power losses are 4PAD=100W, and its iron power losses in the
armature are 4PIR(a)=50W find: the induced e.m.f. in the armature winding - Ea=?, the
revolution speed at this load n=?, and the efficiency at this load n =?
Transcribed Image Text:The total resistance of a series wound DC motor is ER*=0.52. This machine has an electromagnetic constant of CEM=1.85. When this motor is supplied by a DC voltage source of UM-200V and is loaded, it takes current of I=30A and operates with magnetic flux of p=0.1 Wb. If its additional power losses are 4PAD=100W, and its iron power losses in the armature are 4PIR(a)=50W find: the induced e.m.f. in the armature winding - Ea=?, the revolution speed at this load n=?, and the efficiency at this load n =?
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