A slingshot consists of a light leather cup containing a stone. The cup is pulled back against two parallel rubber bands. It takes a force of 15 N to stretch either one of these bands 1.0 cm. (a) What is the potential energy stored in the two bands together when a 58-g stone is placed in the cup and pulled back 0.21 m from the equilibrium position?  ?J (b) With what speed does the stone leave the slingshot?  ?m/s

Physics for Scientists and Engineers: Foundations and Connections
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Chapter9: Energy In Nonisolated Systems
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Problem 65PQ: Figure P9.65A shows a crate attached to a rope that is extended over an ideal pulley. Boris pulls on...
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A slingshot consists of a light leather cup containing a stone. The cup is pulled back against two parallel rubber bands. It takes a force of 15 N to stretch either one of these bands 1.0 cm.

(a) What is the potential energy stored in the two bands together when a 58-g stone is placed in the cup and pulled back 0.21 m from the equilibrium position?
 ?J

(b) With what speed does the stone leave the slingshot?
 ?m/s
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