A 35.0-kg child is sliding down a slide. The slide makes a 55° angle with the horizontal, as shown. The child’s acceleration down the slide is 6.00 m/s2.(a) Draw the free body diagram of all the forces acting on the child. (b) On your free body diagram, show the mg force resolved into components. Label the components. (c) Find the normal force of the slide on the child. (d) Using Newton’s second law, find the coefficient of kinetic friction of the child on the slide.
A 35.0-kg child is sliding down a slide. The slide makes a 55° angle with the horizontal, as shown. The child’s acceleration down the slide is 6.00 m/s2.(a) Draw the free body diagram of all the forces acting on the child. (b) On your free body diagram, show the mg force resolved into components. Label the components. (c) Find the normal force of the slide on the child. (d) Using Newton’s second law, find the coefficient of kinetic friction of the child on the slide.
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ISBN:9781305952300
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A 35.0-kg child is sliding down a slide. The slide makes a 55° angle with the horizontal, as shown. The child’s acceleration down the slide is 6.00 m/s2.(a) Draw the free body diagram of all the forces acting on the child. (b) On your free body diagram, show the mg force resolved into components. Label the components. (c) Find the normal force of the slide on the child. (d) Using Newton’s second law, find the coefficient of kinetic friction of the child on the slide.
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