Obtain the phasor notation of the following time-harmonic functions with an angular frequency of w (if it's possible): (a) V (t) = 6sin(wt – n/5), (b) V(t) = 20 cos(60nt – 60°). (c) I(t) = 2sin2 (wt) + 2cos2 (wt), (d) V (t) = sin(wt +n/3)sin(wt +1/6), (e) U(t) = -5 sin(wt)-2cos(@t), (f) D(t) = 1-sin(@t).
Obtain the phasor notation of the following time-harmonic functions with an angular frequency of w (if it's possible): (a) V (t) = 6sin(wt – n/5), (b) V(t) = 20 cos(60nt – 60°). (c) I(t) = 2sin2 (wt) + 2cos2 (wt), (d) V (t) = sin(wt +n/3)sin(wt +1/6), (e) U(t) = -5 sin(wt)-2cos(@t), (f) D(t) = 1-sin(@t).
College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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Transcribed Image Text:Obtain the phasor notation of the following time-harmonic functions with an angular frequency of w
(if it's possible):
(a) V (t) = 6sin(wt – n/5), (b) V(t) = 20 cos(60nt – 60°).
(c) I(t) = 2sin2 (wt) + 2cos2 (wt), (d) V (t) = sin(wt +n/3)sin(wt +1/6),
(e) U(t) = -5 sin(wt)-2cos(@t), (f) D(t) = 1-sin(@t).
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