You are asked to help design a new type loop-the-loop ride. Instead of rolling down a long hill to generate the speed to go around the loop, the 310 kg cart starts at rest(with two passengers) on a track at the same level as the bottom of the 10 m radius loop. The cart is pressed against a compressed spring that, when released, launches the cart along the track around the loop. ▾ Part A Choose a spring of the appropriate spring constant to launch the cart so that the downward force exerted by the track on the cart as it passes the top of the loop is 0.2 times the force that Earth exerts on the cart. The spring is initially compressed 6.0 m.

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter9: Energy In Nonisolated Systems
Section: Chapter Questions
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You are asked to help design a new type of loop-the-loop ride. Instead of rolling down a long hill to generate the speed to go around the loop, the 310 kg cart starts at rest(with two passengers) on a track at the same level as the bottom of the 10
m radius loop. The cart is pressed against a compressed spring that, when released, launches the cart along the track around the loop.
Part A
Choose a spring of the appropriate spring constant to launch the cart so that the downward force exerted by the track on the cart as it passes the top of the loop is 0.2 times the force that Earth exerts on the cart. The spring is initially
compressed 6.0 m.
Transcribed Image Text:You are asked to help design a new type of loop-the-loop ride. Instead of rolling down a long hill to generate the speed to go around the loop, the 310 kg cart starts at rest(with two passengers) on a track at the same level as the bottom of the 10 m radius loop. The cart is pressed against a compressed spring that, when released, launches the cart along the track around the loop. Part A Choose a spring of the appropriate spring constant to launch the cart so that the downward force exerted by the track on the cart as it passes the top of the loop is 0.2 times the force that Earth exerts on the cart. The spring is initially compressed 6.0 m.
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