A Texas cockroach of mass 0.201 kg runs counterclockwise around the rim of a lazy Susan (a circular disk mounted on a vertical axle) that has a radius 13.5 cm, rotational inertia 6.60 x 10-3 kg-m², and frictionless bearings. The cockroach's speed (relative to the ground) is 1.92 m/s, and the lazy Susan turns clockwise with angular velocity wo = 3.80 rad/s. The cockroach finds a bread crumb on the rim and, of course, stops. (a) What is the angular speed of the lazy Susan after the cockroach stops? (b) Is mechanical energy conserved as it stops? (a) Number i -7.5048 (b) no Units rad/s

University Physics Volume 1
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Author:William Moebs, Samuel J. Ling, Jeff Sanny
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Chapter11: Angular Momentum
Section: Chapter Questions
Problem 9CQ: If a particle is moving with respect to a chosen origin it has linear momentum. What conditions must...
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A Texas cockroach of mass 0.201 kg runs counterclockwise around the rim of a lazy Susan (a circular disk mounted on a vertical axle)
that has a radius 13.5 cm, rotational inertia 6.60 x 10-³ kg⋅m², and frictionless bearings. The cockroach's speed (relative to the ground)
is 1.92 m/s, and the lazy Susan turns clockwise with angular velocity wo = 3.80 rad/s. The cockroach finds a bread crumb on the rim and,
of course, stops. (a) What is the angular speed of the lazy Susan after the cockroach stops? (b) Is mechanical energy conserved as it
stops?
(a) Number i -7.5048
(b)
no
Units
rad/s
Transcribed Image Text:A Texas cockroach of mass 0.201 kg runs counterclockwise around the rim of a lazy Susan (a circular disk mounted on a vertical axle) that has a radius 13.5 cm, rotational inertia 6.60 x 10-³ kg⋅m², and frictionless bearings. The cockroach's speed (relative to the ground) is 1.92 m/s, and the lazy Susan turns clockwise with angular velocity wo = 3.80 rad/s. The cockroach finds a bread crumb on the rim and, of course, stops. (a) What is the angular speed of the lazy Susan after the cockroach stops? (b) Is mechanical energy conserved as it stops? (a) Number i -7.5048 (b) no Units rad/s
=
A 7.43 kg particle with velocity ú (3.49 m/s )î - (9.42 m/s ) is at x = 6.73 m, y = 8.04 m. It is pulled by a 6.52 N force in the
negative x direction. About the origin, what are (a) the particle's angular momentum, (b) the torque acting on the particle, and (c) the
rate at which the angular momentum is changing?
(a) Number
i -263.9532
(b) Number i -43.87
(c) Number i 43.87
k Units
k Units
kg.m^2/s
N•m
k Units N.m
Transcribed Image Text:= A 7.43 kg particle with velocity ú (3.49 m/s )î - (9.42 m/s ) is at x = 6.73 m, y = 8.04 m. It is pulled by a 6.52 N force in the negative x direction. About the origin, what are (a) the particle's angular momentum, (b) the torque acting on the particle, and (c) the rate at which the angular momentum is changing? (a) Number i -263.9532 (b) Number i -43.87 (c) Number i 43.87 k Units k Units kg.m^2/s N•m k Units N.m
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