Problem 1 A 25 lb block-on-a-slope (0 = 30°) mechanism has been arranged in the UHart Dynamics lab so that at the state shown, the spring (k = 15 lb/ft) is unstretched, the block has moved down so = 2 ft, and the block is moving downward at vo = 16 ft/s. The coefficient of friction is k = 0.20. A constant force of F = 10 lb s applied in line with the slope. Determine the additional distance the block moves down the slope when it stops. So 00000 k vo 0 F

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Problem 1
A 25 lb block-on-a-slope (0 = 30°) mechanism has
been arranged in the UHart Dynamics lab so that at the
state shown, the spring (k = 15 lb/ft) is unstretched,
the block has moved down so = 2 ft, and the block is
moving downward at vo = 16 ft/s. The coefficient
of friction is μ = 0.20. A constant force of F = 10 lb
is applied in line with the slope.
Determine the additional distance the block moves
down the slope when it stops.
So
3
k
vo
F
0
Transcribed Image Text:Problem 1 A 25 lb block-on-a-slope (0 = 30°) mechanism has been arranged in the UHart Dynamics lab so that at the state shown, the spring (k = 15 lb/ft) is unstretched, the block has moved down so = 2 ft, and the block is moving downward at vo = 16 ft/s. The coefficient of friction is μ = 0.20. A constant force of F = 10 lb is applied in line with the slope. Determine the additional distance the block moves down the slope when it stops. So 3 k vo F 0
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