In a balanced three-phase system, the source is a balanced Y with an abc phase sequence and a line voltage Vab-211/ 55°V. The load is a balanced Y in parallel with a balanced A. The phase impedance of the Y is 5+5j 2/4 and the phase impedance of the A is 3-9j 2/4. The line impedance is 1.4+0.8) 2/4. Use the single phase equivalent circuit to calculate the line voltage at the load in the a-phase. Express your answer in volts to three significant figures. Enter your answer using angle notation. Express argument in degrees. ▸ View Available Hint(s) AB= 15.ΑΣΦ. 41 Ivec ? V
In a balanced three-phase system, the source is a balanced Y with an abc phase sequence and a line voltage Vab-211/ 55°V. The load is a balanced Y in parallel with a balanced A. The phase impedance of the Y is 5+5j 2/4 and the phase impedance of the A is 3-9j 2/4. The line impedance is 1.4+0.8) 2/4. Use the single phase equivalent circuit to calculate the line voltage at the load in the a-phase. Express your answer in volts to three significant figures. Enter your answer using angle notation. Express argument in degrees. ▸ View Available Hint(s) AB= 15.ΑΣΦ. 41 Ivec ? V
Introductory Circuit Analysis (13th Edition)
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ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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In a balanced three-phase system, the source is a balanced Y with an abc phase sequence and a line voltage Vab=211/ 55°V. The load is a balanced Y in parallel with a balanced
A. The phase impedance of the Y is 5+5j / and the phase impedance of the A is 3-9j 2/. The line impedance is 1.4+0.8j /. Use the single phase equivalent circuit to calculate the
line voltage at the load in the a-phase.
Express your answer in volts to three significant figures. Enter your answer using angle notation. Express argument in degrees.
► View Available Hint(s)
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