A point mass of m and intial velocity Vo is vertical Fod of Length L and mass 4mas Shoun in the.diagram below (values shoun below).They experience a perfectly inelastrc collision at the point laBled as C (So that Point mass gets to the rod at that point) Betermine the Kinal linear and anqular velocities of Maring towards a thin, nan uniform mass Stuck

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4m
m = 1.23 kg
L = 2.5 m
Lem=1.5 m (Rod)
vo = 5.8 m/s
Vo
L/5
1. Find the distance from the bottom to the new center of mass after the collision.
(You need to treat the rod as apoint mass locted at the center of its mass as
shown)
2. Find the linear velocity of the of the system after the collision.
3. If I of the system after the collision equals .75 kg m² find the final angular
speed in rad/s. First find the initial / final agular momentum
Transcribed Image Text:4m m = 1.23 kg L = 2.5 m Lem=1.5 m (Rod) vo = 5.8 m/s Vo L/5 1. Find the distance from the bottom to the new center of mass after the collision. (You need to treat the rod as apoint mass locted at the center of its mass as shown) 2. Find the linear velocity of the of the system after the collision. 3. If I of the system after the collision equals .75 kg m² find the final angular speed in rad/s. First find the initial / final agular momentum
A point mass of m
is Maring
vertical rod of
Shoun inte. diagram helow (values shoun
below).They experiencea perfectly
inelastic collision at the point lablled
as C (So that Point mass gets SUck
to the rodat that point). Betermine the
final linear and anquar Velocities or
the system
andintial velocity Vo
towards a thin, non uniform mass
LengthLand mass 4m
Jets
Transcribed Image Text:A point mass of m is Maring vertical rod of Shoun inte. diagram helow (values shoun below).They experiencea perfectly inelastic collision at the point lablled as C (So that Point mass gets SUck to the rodat that point). Betermine the final linear and anquar Velocities or the system andintial velocity Vo towards a thin, non uniform mass LengthLand mass 4m Jets
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