a. Calculate the center of mass and the rotational inertia of the system after the collision relative to the center of the large cylinder. b. What is the angular velocity of the system after the collision? c. What is the velocity of the CM? Draw a large and detailed diagram showing all the distances etc. eillo fon i ban un 2.r dq biles moliea 10 m/s Afog 0C) 0.25

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter11: Angular Momentum
Section: Chapter Questions
Problem 58P: Shown below is a small particle of mass 20 g that is moving at a speed of 10.0 m/s when it collides...
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104 ied
A small particle of mass 20.0g is moving at a speed of 10.0 m/s when it collides and sticks to ooR
the edge of a uniform cylinder - a solid disk. The cylinder is free to translate - the axis is NOT fixed. The cylinder has
a mass of 0.500 kg and a radius of 10.0 cm, and is initially at rest. Ignore air resistance and friction.
a. Calculate the center of mass and the rotational inertia of the system after the collision relative to the center of the
large cylinder.
b. What is the angular velocity of the system after the collision? orir o qillor el
c. What is the velocity of the CM?
Draw a large and detailed diagram showing all the distances etc. nadqe biles moliene
10 m/sod (iog 0)
e monod
dgrarl s qu allor li bnn n 02.
0.2
neu n i no lod o eeam la istroo arti To poolo
A war
ilonl s ue ban ena Tovol sdt autwoile imgb
il arls bo
fedos s ah roT od it maioglo to
belietst
do how imu eda wod wol8.gret olilo go c m lsd odi to a2em to inso a lo boo
Transcribed Image Text:104 ied A small particle of mass 20.0g is moving at a speed of 10.0 m/s when it collides and sticks to ooR the edge of a uniform cylinder - a solid disk. The cylinder is free to translate - the axis is NOT fixed. The cylinder has a mass of 0.500 kg and a radius of 10.0 cm, and is initially at rest. Ignore air resistance and friction. a. Calculate the center of mass and the rotational inertia of the system after the collision relative to the center of the large cylinder. b. What is the angular velocity of the system after the collision? orir o qillor el c. What is the velocity of the CM? Draw a large and detailed diagram showing all the distances etc. nadqe biles moliene 10 m/sod (iog 0) e monod dgrarl s qu allor li bnn n 02. 0.2 neu n i no lod o eeam la istroo arti To poolo A war ilonl s ue ban ena Tovol sdt autwoile imgb il arls bo fedos s ah roT od it maioglo to belietst do how imu eda wod wol8.gret olilo go c m lsd odi to a2em to inso a lo boo
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