following information is given in connection with a load circuit consisting of two parallel branches: Z 1 = 4.8/25 o ohms, Z 2 = 3.75/-72 o ohms, I 1 = 50 amperes, and I 2 = 64 amperes. Calculate: a) the equivalent impedance; b) the total voltage; c) the currents I1 and I2 if the total voltage is used as reference; d) the total real, reactive, and apparent powers; e) the overall power factor.
following information is given in connection with a load circuit consisting of two parallel branches: Z 1 = 4.8/25 o ohms, Z 2 = 3.75/-72 o ohms, I 1 = 50 amperes, and I 2 = 64 amperes. Calculate: a) the equivalent impedance; b) the total voltage; c) the currents I1 and I2 if the total voltage is used as reference; d) the total real, reactive, and apparent powers; e) the overall power factor.
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
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The following information is given in connection with a load circuit consisting of two parallel
branches: Z 1 = 4.8/25 o ohms, Z 2 = 3.75/-72 o ohms, I 1 = 50 amperes, and I 2 = 64 amperes.
Calculate: a) the equivalent impedance; b) the total voltage; c) the currents I1 and I2 if the total
voltage is used as reference; d) the total real, reactive, and apparent powers; e) the overall
power factor.
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