EXAMPLE 15.19 For the network in Fig. a Determine Yr and Zr. h. Sketch the admittance diagram. c. Find E and I. d. Compute the power factor of the network and the power delivered to the network. c. Determine the equivalent series circuit as far as the terminal charac- teristics of the network are concerned. f. Using the equivalent circuit developed in part (e), calculate E, and compare it with the result of part (c). g. Determine the power delivered to the nerwork, and compare it with the solution of part (d). h. Determine the equivalent parallel network from the equivalent series circuit, and calculate the total admittance Y7. Compare the result with the solution of part (a). 1-V7(12) sin 1000 R,101 R, 40n L 6 mH L 12 mH so pF 20 µF
EXAMPLE 15.19 For the network in Fig. a Determine Yr and Zr. h. Sketch the admittance diagram. c. Find E and I. d. Compute the power factor of the network and the power delivered to the network. c. Determine the equivalent series circuit as far as the terminal charac- teristics of the network are concerned. f. Using the equivalent circuit developed in part (e), calculate E, and compare it with the result of part (c). g. Determine the power delivered to the nerwork, and compare it with the solution of part (d). h. Determine the equivalent parallel network from the equivalent series circuit, and calculate the total admittance Y7. Compare the result with the solution of part (a). 1-V7(12) sin 1000 R,101 R, 40n L 6 mH L 12 mH so pF 20 µF
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
Section: Chapter Questions
Problem 1P: Visit your local library (at school or home) and describe the extent to which it provides literature...
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KVL and KCL
KVL stands for Kirchhoff voltage law. KVL states that the total voltage drops around the loop in any closed electric circuit is equal to the sum of total voltage drop in the same closed loop.
Sign Convention
Science and technology incorporate some ideas and techniques of their own to understand a system skilfully and easily. These techniques are called conventions. For example: Sign conventions of mirrors are used to understand the phenomenon of reflection and refraction in an easier way.
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