3. A particle travels along a straight line with a velocity v= (12 - 3r) m/s, where t is in seconds. When t= 1 s, the particle is located 10 m to the left of the origin. Determine the acceleration when t= 4 s, the displacement from t = 0 to t= 10 s, and the distance the particle travels during this time period. Ans: a =-24 m/s² ; A, = -880 m ; ST = 912 m

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Chapter1: Units, Trigonometry. And Vectors
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Ans. s= 20 ft.
3. A particle travels along a straight line with a velocity v = (12 - 3r) m/s, where t is in seconds. When t =
1 s, the particle is located 10 m to the left of the origin. Determine the acceleration when t= 4 s, the
displacement from 1 = 0 to t = 10 s, and the distance the particle travels during this time period.
A, = -880 m ;
Ans:
a = -24 m/s? ;
ST = 912 m
4. A particle travels along a straight line with a constant acceleration. When s = 4 ft, v = 3 ft/s and when s
= 10 ft, v = 8 ft/s. Determine the velocity as a function of position.
Transcribed Image Text:Ans. s= 20 ft. 3. A particle travels along a straight line with a velocity v = (12 - 3r) m/s, where t is in seconds. When t = 1 s, the particle is located 10 m to the left of the origin. Determine the acceleration when t= 4 s, the displacement from 1 = 0 to t = 10 s, and the distance the particle travels during this time period. A, = -880 m ; Ans: a = -24 m/s? ; ST = 912 m 4. A particle travels along a straight line with a constant acceleration. When s = 4 ft, v = 3 ft/s and when s = 10 ft, v = 8 ft/s. Determine the velocity as a function of position.
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