2. Consider the RLC circuit in Homework 1, Question 3. The values of R, L, and C are given as: R = 0.9 . L = 1 H and C = 0.3 F. + V₁(t) L V(t) + (a) Consider the input x(t) = V,(t) = sin(3t+ 10) and the output y(t) = V₁(t). (i) Find the input phasor X. X=-10j e (ii) Using the phasor-domian circuit analysis, find the output phasor Y. Y = (iii) Find the output y(t). y(t) = | (b) Consider the input x(t) = V,(t) = cos(14t+5) and the output y(t) = Ic(t). (i) Using the phasor-domian circuit analysis, find the output phasor Y. Y=☐ (ii) Find the output y(t). v(t) = - || Ic (t) R C
2. Consider the RLC circuit in Homework 1, Question 3. The values of R, L, and C are given as: R = 0.9 . L = 1 H and C = 0.3 F. + V₁(t) L V(t) + (a) Consider the input x(t) = V,(t) = sin(3t+ 10) and the output y(t) = V₁(t). (i) Find the input phasor X. X=-10j e (ii) Using the phasor-domian circuit analysis, find the output phasor Y. Y = (iii) Find the output y(t). y(t) = | (b) Consider the input x(t) = V,(t) = cos(14t+5) and the output y(t) = Ic(t). (i) Using the phasor-domian circuit analysis, find the output phasor Y. Y=☐ (ii) Find the output y(t). v(t) = - || Ic (t) R C
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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Transcribed Image Text:2. Consider the RLC circuit in Homework 1, Question 3. The values of R, L, and C are given as: R = 0.9 . L = 1 H and C = 0.3 F.
+ V₁(t)
L
V(t)
+
(a) Consider the input x(t) = V,(t) = sin(3t+ 10) and the output y(t) = V₁(t).
(i) Find the input phasor X.
X=-10j
e
(ii) Using the phasor-domian circuit analysis, find the output phasor Y.
Y =
(iii) Find the output y(t).
y(t) = |
(b) Consider the input x(t) = V,(t) = cos(14t+5) and the output y(t) = Ic(t).
(i) Using the phasor-domian circuit analysis, find the output phasor Y.
Y=☐
(ii) Find the output y(t).
v(t) =
-
|| Ic (t)
R
C
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