The load impedance in the circuit shown is shunted by a capacitor having a capacitive reac- tance of -52 N. Calculate: a) the rms phasors V and IL, b) the average power and magnetizing reactive power absorbed by the (39 + j26) N load impedance, c) the average power and magnetizing reactive power absorbed by the (1 + j4) N line impedance, d) the average power and magnetizing reactive power delivered by the source, and e) the magnetizing reactive power delivered by the shunting capacitor.

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The load impedance in the circuit shown is
shunted by a capacitor having a capacitive reac-
tance of -52 N. Calculate:
a) the rms phasors V and IL,
b) the average power and magnetizing reactive
power absorbed by the (39 + j26) N load
impedance,
c) the average power and magnetizing reactive
power absorbed by the (1 + j4) N line
impedance,
d) the average power and magnetizing reactive
power delivered by the source, and
e) the magnetizing reactive power delivered by
the shunting capacitor.
Transcribed Image Text:The load impedance in the circuit shown is shunted by a capacitor having a capacitive reac- tance of -52 N. Calculate: a) the rms phasors V and IL, b) the average power and magnetizing reactive power absorbed by the (39 + j26) N load impedance, c) the average power and magnetizing reactive power absorbed by the (1 + j4) N line impedance, d) the average power and magnetizing reactive power delivered by the source, and e) the magnetizing reactive power delivered by the shunting capacitor.
j4 N
39 0
250 /0°
V (rms)
j26 N
Source
Line
-Load
Transcribed Image Text:j4 N 39 0 250 /0° V (rms) j26 N Source Line -Load
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