iR ic + L R In the circuit above, use L = 20MH, C = 2µF, v(0) = -21V, and i(0) = -120mA. For each of the following values of R, find the two desired quantities. a. For R = 502, determine the roots of the characteristic equation. (You may enter your answers in either order.) S = +j +j ell
iR ic + L R In the circuit above, use L = 20MH, C = 2µF, v(0) = -21V, and i(0) = -120mA. For each of the following values of R, find the two desired quantities. a. For R = 502, determine the roots of the characteristic equation. (You may enter your answers in either order.) S = +j +j ell
Introductory Circuit Analysis (13th Edition)
13th Edition
ISBN:9780133923605
Author:Robert L. Boylestad
Publisher:Robert L. Boylestad
Chapter1: Introduction
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ic
i
R
C
In the circuit above, use L = 20MH, C = 2µF, v(0) = -21V, and i(0) = -120mA.
For each of the following values of R, find the two desired quantities.
a. For R = 502, determine the roots of the characteristic equation. (You may enter your answers in either order.)
+j
%3D
+j
S2 =
%3D
b. For R = 1002, determine the two coefficients associated with v(t). (Re-enter your answers below.)
Answers:
c. For R = 162, determine the values of the voltage v at t = 26µs and t = 1.9ms. (Enter the earlier one first. Re-enter your answers below.)
Answers:
ell"
Transcribed Image Text:iR
ic
i
R
C
In the circuit above, use L = 20MH, C = 2µF, v(0) = -21V, and i(0) = -120mA.
For each of the following values of R, find the two desired quantities.
a. For R = 502, determine the roots of the characteristic equation. (You may enter your answers in either order.)
+j
%3D
+j
S2 =
%3D
b. For R = 1002, determine the two coefficients associated with v(t). (Re-enter your answers below.)
Answers:
c. For R = 162, determine the values of the voltage v at t = 26µs and t = 1.9ms. (Enter the earlier one first. Re-enter your answers below.)
Answers:
ell
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