The 6-kg sphere is projected horizontally with a velocity of 17 m/s against the 30-kg carriage which is backed up by the spring with stiffness of 1210 N/m. The carriage is initially at rest with the spring uncompressed. If the coefficient of restitution is 0.51, calculate the rebound velocity v', the rebound angle 8, and the maximum travel o of the carriage after impact. 6 kg 17 m/s k 1210 N/m 64° 30 kg

Structural Analysis
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Chapter2: Loads On Structures
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the 6 kg sphere is projected horizontally with a velocity of 17 m/s against the 30 kg carriage which is backed up by the spring with stiffness of 1210 N/m. The carriage is intially at rest with the spring uncompressed. If the coefficient of restitution is 0.51, calculate the rebound velocity v', the rebound angle , and the maxiumum travel of the carriage after impact.

The 6-kg sphere is projected horizontally with a velocity of 17 m/s against the 30-kg carriage which is
backed up by the spring with stiffness of 1210 N/m. The carriage is initially at rest with the spring
uncompressed. If the coefficient of restitution is 0.51, calculate the rebound velocity v', the rebound
angle 8, and the maximum travel o of the carriage after impact.
6 kg
17 m/s
k= 1210 N/m
64°
30 kg
Transcribed Image Text:The 6-kg sphere is projected horizontally with a velocity of 17 m/s against the 30-kg carriage which is backed up by the spring with stiffness of 1210 N/m. The carriage is initially at rest with the spring uncompressed. If the coefficient of restitution is 0.51, calculate the rebound velocity v', the rebound angle 8, and the maximum travel o of the carriage after impact. 6 kg 17 m/s k= 1210 N/m 64° 30 kg
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