Problem No. A spring gun is compressed 5 cm to shoot a ball of 0.1kg with...
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Problem No. A spring gun is compressed 5 cm to shoot a ball of 0.1kg with an angle of 30° as shown in Figure. a. Determine the storage energy (PE)spring of the spring gun after compression where the spring constant is 5 N/em of the spring gun. b. Use the law of conservation of energy to determine the releasing velocity of the ball.. (All losses are neglected). Spring gun HOYONO DO V₂ = 0=30 releasing velocity Problem No. A spring gun is compressed 5 cm to shoot a ball of 0.1kg with an angle of 30° as shown in Figure. a. Determine the storage energy (PE)pring of the spring gun after compression where the spring constant is 5 N/cm of the spring gun. b. Use the law of conservation of energy to determine the releasing velocity of the ball.. (All losses are neglected). Spring gun HOYONO DO V₂ = 0=30 releasing velocity Problem No. A spring gun is compressed 5 cm to shoot a ball of 0.1kg with an angle of 30° as shown in Figure. a. Determine the storage energy (PE)spring of the spring gun after compression where the spring constant is 5 N/em of the spring gun. b. Use the law of conservation of energy to determine the releasing velocity of the ball.. (All losses are neglected). Spring gun HOYONO DO V₂ = 0=30 releasing velocity Problem No. A spring gun is compressed 5 cm to shoot a ball of 0.1kg with an angle of 30° as shown in Figure. a. Determine the storage energy (PE)pring of the spring gun after compression where the spring constant is 5 N/cm of the spring gun. b. Use the law of conservation of energy to determine the releasing velocity of the ball.. (All losses are neglected). Spring gun HOYONO DO V₂ = 0=30 releasing velocity
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Given that The massm of the ball 01kgs Spring constant K5 Ncm5 NM100500NM Displacementx from t... View the full answer
Related Book For
Fundamentals of Physics
ISBN: 978-0471758013
8th Extended edition
Authors: Jearl Walker, Halliday Resnick
Posted Date:
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