The motion of a point on the circumference of a rolling wheel of radius 5 feet is described by the vector function r(t) = 5 (24t sin (24t))i + 5(1-cos(24t))j Find the velocity vector of the point. v(t) Find the acceleration vector of the point. ä(t) 2880 sin (24t)i + 2880 cos (24t)j✔ or CARAAN 120(1- cos (24t))i + 120 sin (24t)j✔ Find the speed of the point. s(t) 240 sin (12t) wwwww Submit Question X

Trigonometry (MindTap Course List)
10th Edition
ISBN:9781337278461
Author:Ron Larson
Publisher:Ron Larson
Chapter3: Additional Topics In Trigonometry
Section3.3: Vectors In The Plane
Problem 10ECP
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The motion of a point on the circumference of a rolling wheel of radius 5 feet is described by the vector
function
F(t) = 5(24t - sin(24t))i +5(1 - cos(24t))j
Find the velocity vector of the point.
v(t)
Find the acceleration vector of the point.
ä(t) 2880 sin (24t)i + 2880 cos (24t)j✔
CABAME
120(1- cos (24t) )i + 120 sin (24t)j✔
Find the speed of the point.
s(t) 240 sin (12t)
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Transcribed Image Text:The motion of a point on the circumference of a rolling wheel of radius 5 feet is described by the vector function F(t) = 5(24t - sin(24t))i +5(1 - cos(24t))j Find the velocity vector of the point. v(t) Find the acceleration vector of the point. ä(t) 2880 sin (24t)i + 2880 cos (24t)j✔ CABAME 120(1- cos (24t) )i + 120 sin (24t)j✔ Find the speed of the point. s(t) 240 sin (12t) wwwww Submit Question X Q Search EO H
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