convention V0 is real) and assume that I(t) = I0eiωt where I0 is a general complex number (which can be written quite generally as I0 = |I0|e−iδ), and where one gets physical answers at the end by taking the real part of the complex answers. Find an algebraic complex expression that expresses the sum of the voltages. Solve this expression directly using algebra, no pictures of “phasors” really required. Factor out the solution to obtain |I0|, δ, Z (the complex impedance), and the voltages across each element

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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Derive the full solution to the driven LRC circuit shown below using complex exponentials. Start with
Kirchhoff’s rule for the loop and assume a complex V (t) = V0eiωt (where by convention V0 is real) and
assume that I(t) = I0eiωt where I0 is a general complex number (which can be written quite generally
as I0 = |I0|e−iδ), and where one gets physical answers at the end by taking the real part of the
complex answers. Find an algebraic complex expression that expresses the sum of the voltages. Solve this expression directly using algebra, no pictures of “phasors” really required. Factor out the solution to obtain
|I0|, δ, Z (the complex impedance), and the voltages across each element as a function of time.

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