6. The position of a particle along a straight line is given by s = (1.5r - 13.5 + 22.51) ft, where t is in seconds. Determine the position of the particle when t = 6 s and the total distance it travels during the 6- s time interval. Hint: Plot the path to determine the total distance traveled. Ans. s=6s = -27.0 ft ; Stot = 10.5 +48.0+10.5= 69.0 ft

Physics for Scientists and Engineers, Technology Update (No access codes included)
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Author:Raymond A. Serway, John W. Jewett
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Chapter2: Motion In One Dimension
Section: Chapter Questions
Problem 2.41P: An object moves with constant acceleration 4.00 m/s2 and over a lime interval reaches a final...
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6. The position of a particle along a straight line is given by s = (1.5r - 13.52 + 22.5t) ft, where t is in
seconds. Determine the position of the particle when t = 6 s and the total distance it travels during the 6-
s time interval. Hint: Plot the path to determine the total distance traveled.
Ans.
s=6s = -27.0 ft ;
Stot = 10.5 + 48.0+ 10.5 69.0 ft
7. A particle moves along a straight line such that its position is defined by s = ( - 6t + 5) m. Determine
Transcribed Image Text:6. The position of a particle along a straight line is given by s = (1.5r - 13.52 + 22.5t) ft, where t is in seconds. Determine the position of the particle when t = 6 s and the total distance it travels during the 6- s time interval. Hint: Plot the path to determine the total distance traveled. Ans. s=6s = -27.0 ft ; Stot = 10.5 + 48.0+ 10.5 69.0 ft 7. A particle moves along a straight line such that its position is defined by s = ( - 6t + 5) m. Determine
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