M2 Figure P11.36 A puck of mass m1 = 80.0 g and radius r1 = 4.00 cm glides across an air table at a speed v = 1.50 m/s. It makes a glancing collision with a seconc puck of radius r2 = 6.00 cm and mass m2 = 120 g (initially at rest) such that their rims just touch. Because their rims are coated with instant-acting glue the pucks stick together and rotate after the collision (Fig. P11.3b). a) What is the angular momentum of the system relative to the center of mass? b) What is the angular speed about the center of mass? %3D

College Physics
11th Edition
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Author:Raymond A. Serway, Chris Vuille
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Chapter1: Units, Trigonometry. And Vectors
Section: Chapter Questions
Problem 1CQ: Estimate the order of magnitude of the length, in meters, of each of the following; (a) a mouse, (b)...
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m2
Figure P11.36
A puck of mass m1 = 80.0 g and radius rl = 4.00 cm glides across an air
table at a speed v =
puck of radius
r2 = 6.00 cm and mass m2 = 120 g (initially at rest) such that their rims
just touch.
Because their rims are coated with instant-acting glue the pucks stick
together and rotate after the collision (Fig. P11.36b).
a) What is the angular momentum of the system relative to the center of
mass?
%D
1.50 m/s. It makes a glancing collision with a second
b) What is the angular speed about the center of mass?
Transcribed Image Text:m2 Figure P11.36 A puck of mass m1 = 80.0 g and radius rl = 4.00 cm glides across an air table at a speed v = puck of radius r2 = 6.00 cm and mass m2 = 120 g (initially at rest) such that their rims just touch. Because their rims are coated with instant-acting glue the pucks stick together and rotate after the collision (Fig. P11.36b). a) What is the angular momentum of the system relative to the center of mass? %D 1.50 m/s. It makes a glancing collision with a second b) What is the angular speed about the center of mass?
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