-2/1-v², where a and v are The acceleration of a slider is defined by the relation a = expressed in m/s² and m/s respectively. The system starts at time t = 0 with x = 1.5 m and v = 0. Determine (a) the position of the slider when v = -0.6 m/s, (b) the position of the slider when t = 0.3 s. %3D
-2/1-v², where a and v are The acceleration of a slider is defined by the relation a = expressed in m/s² and m/s respectively. The system starts at time t = 0 with x = 1.5 m and v = 0. Determine (a) the position of the slider when v = -0.6 m/s, (b) the position of the slider when t = 0.3 s. %3D
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![The acceleration of a slider is defined by the relation a = -2/1-v², where a and v are
expressed in m/s² and m/s respectively. The system starts at time t = 0 with x = 1.5 m
and v = 0. Determine (a) the position of the slider when v = -0.6 m/s, (b) the position of
the slider whent = 0.3 s.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fe3e3ae67-5715-4221-a0ff-0456d85d7fe3%2Fbc83203b-9362-45dc-a0eb-cd84cb3c1cbf%2Flk6xzkb_processed.png&w=3840&q=75)
Transcribed Image Text:The acceleration of a slider is defined by the relation a = -2/1-v², where a and v are
expressed in m/s² and m/s respectively. The system starts at time t = 0 with x = 1.5 m
and v = 0. Determine (a) the position of the slider when v = -0.6 m/s, (b) the position of
the slider whent = 0.3 s.
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