1. Treat the motion of a particle which moves along the s-axis as shown. +s, ft or m -1 0 1 2 3 The velocity of a particle is given by v = 20t2 - 120t + 25, where v is in meters per second and t is in seconds. a. Plot the velocity versus time graph for the first 10 seconds. Show the zero acceleration. b. Referring to Situation A, what is the velocity of the particle when the acceleration become zero. c. Plot the acceleration versus time graph for the first 10 seconds. d. Describe the slope of the velocity and discuss its relationship to the acceleration of the particle.

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1. Treat the motion of a particle which moves along the s-axis as shown.
+ s, ft or m
1
3
The velocity of a particle is given by v = 20t² – 120t + 25,
where v is in meters per second and t is in seconds.
a. Plot the velocity versus time graph for the first 10 seconds. Show the zero acceleration.
b. Referring to Situation A, what is the velocity of the particle when the acceleration becomes
zero.
c. Plot the acceleration versus time graph for the first 10 seconds.
d. Describe the slope of the velocity and discuss its relationship to the acceleration of the
particle.
Transcribed Image Text:1. Treat the motion of a particle which moves along the s-axis as shown. + s, ft or m 1 3 The velocity of a particle is given by v = 20t² – 120t + 25, where v is in meters per second and t is in seconds. a. Plot the velocity versus time graph for the first 10 seconds. Show the zero acceleration. b. Referring to Situation A, what is the velocity of the particle when the acceleration becomes zero. c. Plot the acceleration versus time graph for the first 10 seconds. d. Describe the slope of the velocity and discuss its relationship to the acceleration of the particle.
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