A particle in an experimental apparatus has a velocity given by v = k√√s, where v is in millimeters per second, the positions is millimeters, and the constant k = 0.32 mm ¹/2s 1. If the particle has a velocity vo = 7 mm/s at t = 0, determine the particle position, velocity, and acceleration as functions of time. To check your work, evalutate the time t, the position s, and the acceleration a of the particle when the velocity reaches 40 mm/s. Answers: t= S= a= i i i S mm mm/s²

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A particle in an experimental apparatus has a velocity given by v = k√√s, where v is in millimeters per second, the positions is
millimeters, and the constant k = 0.32 mm ¹/2s1. If the particle has a velocity vo = 7 mm/s at t = 0, determine the particle position,
velocity, and acceleration as functions of time. To check your work, evalutate the time t, the position s, and the acceleration a of the
particle when the velocity reaches 40 mm/s.
Answers:
t=
S=
a =
i
i
i
S
mm
mm/s²
Transcribed Image Text:A particle in an experimental apparatus has a velocity given by v = k√√s, where v is in millimeters per second, the positions is millimeters, and the constant k = 0.32 mm ¹/2s1. If the particle has a velocity vo = 7 mm/s at t = 0, determine the particle position, velocity, and acceleration as functions of time. To check your work, evalutate the time t, the position s, and the acceleration a of the particle when the velocity reaches 40 mm/s. Answers: t= S= a = i i i S mm mm/s²
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