Suppose that a particle follows the path r(t) = 2 sin(3t) i+4 cos(3t) j. Give an equation (in the form of a formula involving x and y set equal to 0) whose whose solutions consist of the path of the particle. = 0. %3| (Answer in terms of x and y.) Determine the velocity vector of the particle when t = T : v(x) = (Answer in terms of t.) Determine the acceleration vector of the particle whent = t : а(л) - (Answer in terms of t.)

Algebra & Trigonometry with Analytic Geometry
13th Edition
ISBN:9781133382119
Author:Swokowski
Publisher:Swokowski
Chapter11: Topics From Analytic Geometry
Section: Chapter Questions
Problem 18T
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Suppose that a particle follows the path
r(t) = 2 sin(3t) i+4 cos(3t) j.
Give an equation (in the form of a formula involving x and y set equal to 0) whose whose solutions
consist of the path of the particle.
= 0.
(Answer in terms of x and y.)
Determine the velocity vector of the particle when t = T :
v(7) =
(Answer in terms of t.)
Determine the acceleration vector of the particle whent = t :
a(7) =
(Answer in terms of t.)
Transcribed Image Text:Suppose that a particle follows the path r(t) = 2 sin(3t) i+4 cos(3t) j. Give an equation (in the form of a formula involving x and y set equal to 0) whose whose solutions consist of the path of the particle. = 0. (Answer in terms of x and y.) Determine the velocity vector of the particle when t = T : v(7) = (Answer in terms of t.) Determine the acceleration vector of the particle whent = t : a(7) = (Answer in terms of t.)
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