V₁ I₁ www R₁ L₁ mon Ir Rf > www R₂ Im Lm L2 ୮୪୪୪ 12 RL ୮୪୪୪ LL The equivalent circuit for a transformer or induction motor is similar to that shown in the "T-Circuit" schematic diagram. The unknowns may be found from a variety of circuit theory methods. Mesh analysis using MATLAB is suggested. Given R1 = 1 ohms; L1 = 0.01 H; Rf = 1000 ohms; Lm = 8 H; R2 = 1 ohms; L2 = 0.01 H; RL = 200 ohms; LL = 0; and V1 = 480 V. Assume V1 is the reference for phase angle. Determine the magnitude V2. Round to the nearest integer value of volts. Determine angle of V2. Round to the nearest tenth of degrees.

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
Chapter4: Transmission Line Parameters
Section: Chapter Questions
Problem 4.8MCQ: An ac resistance is higher than a dc resistance. True False
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V₁
I₁
www
R₁
L₁
୮୪୪୪
If
Rf >
www
R₂
Im Lm
L2
୮୪୪୪
12
RL
1000
The equivalent circuit for a transformer or induction motor is similar to that shown in the "T-Circuit" schematic diagram. The
unknowns may be found from a variety of circuit theory methods. Mesh analysis using MATLAB is suggested. Given R1 = 1 ohms; L1
= 0.01 H; Rf = 1000 ohms; Lm = 8 H; R2 = 1 ohms; L2 = 0.01 H; RL = 200 ohms; LL = 0; and V1 = 480 V. Assume V1 is the reference
for phase angle. Determine the magnitude V2. Round to the nearest integer value of volts.
Determine angle of V2. Round
to the nearest tenth of degrees.
Transcribed Image Text:V₁ I₁ www R₁ L₁ ୮୪୪୪ If Rf > www R₂ Im Lm L2 ୮୪୪୪ 12 RL 1000 The equivalent circuit for a transformer or induction motor is similar to that shown in the "T-Circuit" schematic diagram. The unknowns may be found from a variety of circuit theory methods. Mesh analysis using MATLAB is suggested. Given R1 = 1 ohms; L1 = 0.01 H; Rf = 1000 ohms; Lm = 8 H; R2 = 1 ohms; L2 = 0.01 H; RL = 200 ohms; LL = 0; and V1 = 480 V. Assume V1 is the reference for phase angle. Determine the magnitude V2. Round to the nearest integer value of volts. Determine angle of V2. Round to the nearest tenth of degrees.
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