15-9. The 200-kg crate rests on the ground for which the coefficients of static and kinetic friction are µ, = 0.5 and Hk =0.4, respectively. The winch delivers a horizontal towing force T to its cable at A which varies as shown in the graph. Determine the speed of the crate when 1= 4 s. Originally the tension in the cable is zero. Hint: First determine the force needed to begin moving the crate. T (N) 800 T = 400 2 -t (s) 4

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15-9. The 200-kg crate rests on the ground for which the
coefficients of static and kinetic friction are µ, = 0.5 and
Hk =0.4, respectively. The winch delivers a horizontal towing
force T to its cable at A which varies as shown in the graph.
Determine the speed of the crate when 1= 4 s. Originally
the tension in the cable is zero. Hint: First determine the
force needed to begin moving the crate.
T (N)
800
T = 400 2
-t (s)
4
Transcribed Image Text:15-9. The 200-kg crate rests on the ground for which the coefficients of static and kinetic friction are µ, = 0.5 and Hk =0.4, respectively. The winch delivers a horizontal towing force T to its cable at A which varies as shown in the graph. Determine the speed of the crate when 1= 4 s. Originally the tension in the cable is zero. Hint: First determine the force needed to begin moving the crate. T (N) 800 T = 400 2 -t (s) 4
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