32. Solve for following if the 3-phase transformer configuration in Figure 6 on Worksheet 3 has the givens as listed below: E-line on high side Turns ration 480 V 2:1/coil Resistance per load Efficiency 10 Ω 100% A) E/coil on the high side is a) 480V b) 240V c) 120V d) 69.28V B) E/coil on the low side is a) 480V b) 240V 120V c) d) 69.28V C) E-phase on the low side is a) 480V b) 240V c) 120V d) 69.28V D) E/resistor of the load is a) 480V b) 240V c) 120V d) 69.28V

Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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Section: Chapter Questions
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i can't figure out the configuration of this xfmr.

 

VA
H4
Figure 6
T-2
T-3
1-3
T-2
T-1
X-2
me
X-X
X-3
X-4
Worksheet 3
E-X
X-3
X4
H-4
Transcribed Image Text:VA H4 Figure 6 T-2 T-3 1-3 T-2 T-1 X-2 me X-X X-3 X-4 Worksheet 3 E-X X-3 X4 H-4
32.
Solve for following if the 3-phase transformer configuration in Figure 6 on Worksheet 3 has the
givens as listed below:
E-line on high side
Turns ration
480 V
2:1/coil
Resistance per load
Efficiency
10 2
100%
A) E/coil on the high side is
a) 480V
b) 240V
c)
d) 69.28V
120V
B) E/coil on the low side is
a)
b) 240V
c)
d) 69.28V
480V
120V
C) E-phase on the low side is
a)
b)
c)
d) 69.28V
480V
240V
120V
D) E/resistor of the load is
a)
b) 240V
120V
480V
c)
d) 69.28V
Transcribed Image Text:32. Solve for following if the 3-phase transformer configuration in Figure 6 on Worksheet 3 has the givens as listed below: E-line on high side Turns ration 480 V 2:1/coil Resistance per load Efficiency 10 2 100% A) E/coil on the high side is a) 480V b) 240V c) d) 69.28V 120V B) E/coil on the low side is a) b) 240V c) d) 69.28V 480V 120V C) E-phase on the low side is a) b) c) d) 69.28V 480V 240V 120V D) E/resistor of the load is a) b) 240V 120V 480V c) d) 69.28V
Expert Solution
Step 1

Assuming high voltage is connected to left windings.

on primary side consisting of two coils in series where as on secondary two coils are connected in parallel. so secondary Phase(or line) voltage is same as per coil voltage (because they are in parallel) where as Primary phase (or line)voltage is double the per coil voltage ( because they are in series) 

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