Electrical Engineering Archive: Questions from September 11, 2024
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En el circuito presentado
V_(1)=57V,V_(2)=14V,V_(3)=22V,V_(4)=73V,V_(5)=18VV_(6)=66V,V_(7)=86V
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R_(1)=21
Ohmios,
R_(2)=40
Ohmios,
R_(3)=22
Ohmios,
R_(4)=36
Ohmios,
R_(5)=30
Ohmios,
R_(6)=
57 Ohmios,
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En el circuito presentado
V_(1)=89V,V_(2)=32V,V_(3)=25V,V_(4)=20V,V_(5)=46V,V_(6)=34V,V_(7)=38V
.
R_(1)=43
Ohmios,
R_(2)=54
Ohmios,
R_(3)=42
Ohmios,
R_(4)=83
Ohmios,
R_(5)=50
Ohmios,
R_(6)=62
Ohmios,
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En el circuito presentado
V_(1)=57V,V_(2)=14V,V_(3)=22V,V_(4)=73V,V_(5)=18V,V_(6)=66V,V_(7)=86V
.
R_(1)=21
Ohmios,
R_(2)=40
Ohmios,
R_(3)=22
Ohmios,
R_(4)=36
Ohmios,
R_(5)=30
Ohmios,
R_(6)=
57 Ohmios,
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Un transformador reductor de 2,4 kVA, 2400/240 V, 50 Hz, tiene
los siguientes parámetros: R1 = 1,5 W, X1 = 2,5 W, R2 = 0,02 W, X2
= 0,03 W, Rc1 = 6 kW y Xm1 = 8 kW. Está funcionando al 80 % de su
ca
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En el circuito presentado
V_(1)=19V,V_(2)=43V,V_(3)=39V,V_(4)=47V,V_(5)=23V,V_(6)=10V,V_(7)=65V.R_(1)=
82 Ohmios,
R_(2)=83
Ohmios,
R_(3)=86
Ohmios,
R_(4)=
71 Ohmios,
R_(5)=69
Ohmios,
R_(6)=21
Ohmios,
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