A device consisting of four heavy balls connected by low-mass rods is free to rotate about an axle. It is initially not spinning. A small| bullet traveling very fast buries itself in one of the balls. In the diagram, m = 0.004 kg, v = 450 m/s, M1 = 1.5 kg, M2 = 0.3 kg, Rj = 0.8 m, and R2 = 0.3 m. The axle of the device is at the origin (0, 0, 0), and the bullet strikes at location (0.234, 0.765, 0) m. M1 m M2 R1 R2 M2 M1 Just after the impact, what is the angular speed of the device? Note that this is an inelastic collision; the system's temperature increases. radians/s angular speed (absolute value of the angular velocity) = i

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A device consisting of four heavy balls connected by low-mass rods is free to rotate about an axle. It is initially not spinning. A small
bullet traveling very fast buries itself in one of the balls. In the diagram, m = 0.004 kg, v = 450 m/s, M1 = 1.5 kg, M2 = 0.3 kg,
R1 = 0.8 m, and R2 = 0.3 m. The axle of the device is at the origin (0, 0, 0), and the bullet strikes at location (0.234, 0.765, 0) m.
M1
m
M2
R2
M2
M1
Just after the impact, what is the angular speed of the device? Note that this is an inelastic collision; the system's temperature
increases.
radians/s
angular speed (absolute value of the angular velocity) = i
Transcribed Image Text:A device consisting of four heavy balls connected by low-mass rods is free to rotate about an axle. It is initially not spinning. A small bullet traveling very fast buries itself in one of the balls. In the diagram, m = 0.004 kg, v = 450 m/s, M1 = 1.5 kg, M2 = 0.3 kg, R1 = 0.8 m, and R2 = 0.3 m. The axle of the device is at the origin (0, 0, 0), and the bullet strikes at location (0.234, 0.765, 0) m. M1 m M2 R2 M2 M1 Just after the impact, what is the angular speed of the device? Note that this is an inelastic collision; the system's temperature increases. radians/s angular speed (absolute value of the angular velocity) = i
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