A sphere of mass 5 kg and a block of mass m, =3 kg are connected by a light cord that passes over a pulley as shown in Figure. The radius of the pulley is R=20 cm, and the mass of the thin rim is 1 kg. The spokes of the pulley have negligible mass. The block slides on a horizontal surface. The kinetic coefficient of friction between block 8. and horizontal surface is 0.1 Find for the linear acceleration of the two objects, R

University Physics Volume 1
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Chapter10: Fixed-axis Rotation
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Problem 93P: A block of mass 3 kg slides down an inclined plane at an angle of 45 with a massless tether attached...
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A sphere of mass 5 kg and a block of mass m, =3 kg are connected by a light cord
that passes over a pulley as shown in Figure. The radius of the pulley is R=20 cm, and
the mass of the thin rim is 1 kg. The spokes of the pulley have negligible mass. The
block slides on a horizontal surface. The kinetic coefficient of friction between block
and horizontal surface is 0.1 Find for the linear acceleration of the two objects,
8.
R
Transcribed Image Text:A sphere of mass 5 kg and a block of mass m, =3 kg are connected by a light cord that passes over a pulley as shown in Figure. The radius of the pulley is R=20 cm, and the mass of the thin rim is 1 kg. The spokes of the pulley have negligible mass. The block slides on a horizontal surface. The kinetic coefficient of friction between block and horizontal surface is 0.1 Find for the linear acceleration of the two objects, 8. R
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