V 10ogr5 A meter stick of mass 200 grams is held horizontally at equilibrium using a vertical string connected to 20 cm position and 150 gram mass attached to the left end (0 cm position). 50 gram piece of clay moving downward with speed of 10 m/s makes perfectly inelastic ( stick to the meter stick) collision with meter stick at 80 cm position. Determine the anguular sneed of the system immediately after the collicion
V 10ogr5 A meter stick of mass 200 grams is held horizontally at equilibrium using a vertical string connected to 20 cm position and 150 gram mass attached to the left end (0 cm position). 50 gram piece of clay moving downward with speed of 10 m/s makes perfectly inelastic ( stick to the meter stick) collision with meter stick at 80 cm position. Determine the anguular sneed of the system immediately after the collicion
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![100g5
A meter stick of mass 200 grams is held horizontally at equilibrium using a vertical string connected to 20 cm position and 150 gram mass
attached to the left end (0 cm position). 50 gram piece of clay moving downward with speed of 10 m/s makes perfectly inelastic ( stick to the
meter stick) collision with meter stick at 80 cm position. Determine the angular speed of the system immediately after the collision.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fc2a494c4-467b-4608-8abc-0f816210035b%2Faaaf0d25-1daf-4806-92f8-6deb71d7bc81%2Fub9qjfd_processed.jpeg&w=3840&q=75)
Transcribed Image Text:100g5
A meter stick of mass 200 grams is held horizontally at equilibrium using a vertical string connected to 20 cm position and 150 gram mass
attached to the left end (0 cm position). 50 gram piece of clay moving downward with speed of 10 m/s makes perfectly inelastic ( stick to the
meter stick) collision with meter stick at 80 cm position. Determine the angular speed of the system immediately after the collision.
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