90 A particle slides along a curve defined by the path equation,r = 4 + sin(50), where r is in meters and 0 is in radians. The angular position, 0 , in radians , is given by 0 = (n/6)t , where t is in seconds. At t = 4 seconds, determine: 120 150 30 %3D 180 1. V, and Vg. 210 330 2. aт and ag. 240 3. Plot the velocity components.

Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter4: Two-and-three Dimensional Motion
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90
A particle slides along a curve defined by the path
equation,r = 4 + sin(50), where r is in meters and 0
is in radians. The angular position, 0 , in radians , is
given by 0 = (n/6)t , where t is in seconds. At t = 4
seconds, determine:
120
150
30
180
1. V, and Ve.
2. а, аnd ag-
3. Plot the velocity components.
210
330
240
300
Transcribed Image Text:90 A particle slides along a curve defined by the path equation,r = 4 + sin(50), where r is in meters and 0 is in radians. The angular position, 0 , in radians , is given by 0 = (n/6)t , where t is in seconds. At t = 4 seconds, determine: 120 150 30 180 1. V, and Ve. 2. а, аnd ag- 3. Plot the velocity components. 210 330 240 300
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