Max launches a ball into a ballistic pendulum that has a length R = 0.600m and reaches a maximum angle of 20°. The mass of the ball m = 40.0g and the mass of the pendulum M = 200g. Speed of the ball before the collision is 6.00 m a) (2p) Use the equation given in the lab instructions to calculate the velocity of the pendulum right after the collision with the ball using angle and length of the pendulum. Show work!
Max launches a ball into a ballistic pendulum that has a length R = 0.600m and reaches a maximum angle of 20°. The mass of the ball m = 40.0g and the mass of the pendulum M = 200g. Speed of the ball before the collision is 6.00 m a) (2p) Use the equation given in the lab instructions to calculate the velocity of the pendulum right after the collision with the ball using angle and length of the pendulum. Show work!
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
Related questions
Question
![Max launches a ball into a ballistic pendulum that has a
length R = 0.600m and reaches a maximum angle of
20°. The mass of the ball m = 40.0g and the mass of the
pendulum M = 200g. Speed of the ball before the
collision is 6.00
m
a) (2p) Use the equation given in the lab instructions to
calculate the velocity of the pendulum right after the
collision with the ball using angle and length of the
pendulum. Show work!](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fedc21858-d015-4c3a-8e3a-954951f5c301%2F87be7a53-6529-4f9f-abc6-0bcb9154c309%2Fy74t67_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Max launches a ball into a ballistic pendulum that has a
length R = 0.600m and reaches a maximum angle of
20°. The mass of the ball m = 40.0g and the mass of the
pendulum M = 200g. Speed of the ball before the
collision is 6.00
m
a) (2p) Use the equation given in the lab instructions to
calculate the velocity of the pendulum right after the
collision with the ball using angle and length of the
pendulum. Show work!
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