When the rope is at an angle of a = 30° the 1-kg sphere A has a speed vo = 0.6 m/s. The coefficient of restitution between A and the 2-kg wedge B is 0.8 and the length of rope l = 0.9 m. The spring constant has a value of 1500 N/m and 0 = 20°. Determine (a) the velocities of A and B immediately after the impact, (b) the maximum deflection of the spring assuming A does not strike B again before this point. A k В Vo

Classical Dynamics of Particles and Systems
5th Edition
ISBN:9780534408961
Author:Stephen T. Thornton, Jerry B. Marion
Publisher:Stephen T. Thornton, Jerry B. Marion
Chapter9: Dynamics Of A System Of Particles
Section: Chapter Questions
Problem 9.60P
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When the rope is at an angle of a = 30° the l-kg sphere A has a
speed vo = 0.6 m/s. The coefficient of restitution between A and
the 2-kg wedge B is 0.8 and the length of rope l = 0.9 m. The
spring constant has a value of 1500 N/m and 0 = 20°. Determine
(a) the velocities of A and B immediately after the impact, (b) the
maximum deflection of the spring assuming A does not strike B
again before this point.
A
k
B
Vo
Transcribed Image Text:When the rope is at an angle of a = 30° the l-kg sphere A has a speed vo = 0.6 m/s. The coefficient of restitution between A and the 2-kg wedge B is 0.8 and the length of rope l = 0.9 m. The spring constant has a value of 1500 N/m and 0 = 20°. Determine (a) the velocities of A and B immediately after the impact, (b) the maximum deflection of the spring assuming A does not strike B again before this point. A k B Vo
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