A VO α // Fig. P13.188 and P13.189 B k www 13.189 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 VO α // Fig. P13.188 and P13.189 B k www 13.189 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.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Question
![A
Vo
α
Fig. P13.188 and P13.189
B
k
13.189 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 1 = 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.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fa86b2d75-dc89-44ee-816d-e64b811f53cb%2Fbe34dc61-8133-454b-8bf3-8c15a8ef86f4%2Fpz6jo_processed.png&w=3840&q=75)
Transcribed Image Text:A
Vo
α
Fig. P13.188 and P13.189
B
k
13.189 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 1 = 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.
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