0.07 ohm, respectively. In order to make the generator flat-compound, so that it will have a no-load voltage of 230 V and a full-load voltage of 230 V, the series must produce 225 amp-turns. Calculate: (a) the resistance of the diverter to accomplish this change; (b) the total number of ampere-turns produced by each pole at no-load and at full-load.
0.07 ohm, respectively. In order to make the generator flat-compound, so that it will have a no-load voltage of 230 V and a full-load voltage of 230 V, the series must produce 225 amp-turns. Calculate: (a) the resistance of the diverter to accomplish this change; (b) the total number of ampere-turns produced by each pole at no-load and at full-load.
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
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A 10-kW, 250-V compound (long-shunt) generator has a no-load voltage of 230 V. The shunt field has 800 turns per pole and the series field 8.5 turns per pole. The shunt- and the series-field resistances are 80 ohms and 0.07 ohm, respectively. In order to make the generator flat-compound, so that it will have a no-load voltage of 230 V and a full-load voltage of 230 V, the series must produce 225 amp-turns. Calculate: (a) the resistance of the diverter to accomplish this change; (b) the total number of ampere-turns produced by each pole at no-load and at full-load.
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