A child's top is held in place upright on a frictionless surface. The axle has a radius of r = 3.71 mm. Two strings are wrapped around the axle, and the top is set spinning by applying T = 2.15 N of constant tension to each string. If it takes 0.470 s for the string to unwind, how much angular momentum L does the top acquire? Assume that the strings do not slip as the tension is applied. kg-m? L = Point P is located on the outer surface of the top, a distance

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A child's top is held in place upright on a frictionless surface.
The axle has a radius of r = 3.71 mm. Two strings are
wrapped around the axle, and the top is set spinning by
T
T
applying T = 2.15 N of constant tension to each string. If it
takes 0.470 s for the string to unwind, how much angular
2r
momentum L does the top acquire? Assume that the strings
do not slip as the tension is applied.
R
SP
kg-m?
L =
Point P is located on the outer surface of the top, a distance
h = 33.0 mm above the ground. The angle that the outer
surface of the top makes with the rotation axis of the top is
0 = 28.0°. If the final tangential speed v, of point P is
1.05 m/s, what is the top's moment of inertia I?
T
2r
T
I =
kg-m?
Transcribed Image Text:A child's top is held in place upright on a frictionless surface. The axle has a radius of r = 3.71 mm. Two strings are wrapped around the axle, and the top is set spinning by T T applying T = 2.15 N of constant tension to each string. If it takes 0.470 s for the string to unwind, how much angular 2r momentum L does the top acquire? Assume that the strings do not slip as the tension is applied. R SP kg-m? L = Point P is located on the outer surface of the top, a distance h = 33.0 mm above the ground. The angle that the outer surface of the top makes with the rotation axis of the top is 0 = 28.0°. If the final tangential speed v, of point P is 1.05 m/s, what is the top's moment of inertia I? T 2r T I = kg-m?
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