angle of cal when a force is applied he cable attached at C. The gross weight of the car and its load is 5500 lb, and it acts at point G. wing the tension in the cable connected at C is 5000 lb, determine (a) the acceleration of the car, the distance the car moves in 20 s, (c) the time it takes for the car to return to its original position e cable breaks after 20 s. 24 in. 25 25 in. 88 25,in. 30 in. I
angle of cal when a force is applied he cable attached at C. The gross weight of the car and its load is 5500 lb, and it acts at point G. wing the tension in the cable connected at C is 5000 lb, determine (a) the acceleration of the car, the distance the car moves in 20 s, (c) the time it takes for the car to return to its original position e cable breaks after 20 s. 24 in. 25 25 in. 88 25,in. 30 in. I
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
Transcribed Image Text:. A loading car is at rest on a track forming an angle of 25° with the vertical when a force is applied
to the cable attached at C. The gross weight of the car and its load is 5500 lb, and it acts at point G.
Knowing the tension in the cable connected at C is 5000 lb, determine (a) the acceleration of the car,
b) the distance the car moves in 20 s, (c) the time it takes for the car to return to its original position
of the cable breaks after 20 s.
24 in.
25
25 in.
B
25 in.
30 in.
A
201
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