A mass M = 3.3-kg block rests on a frictionless surface, near a shear cliff. This block is attached to a string that passes over a pulley which is suspended over the cliff. The other end of the string is attached to a m = 2.4-kg block which hangs in mid-air on the other side of the cliff. The pulley is a uniform disk of radius 8.0 cm and mass 0.60 kg. (a) What is the magnitude of the acceleration of each block? acceleration of M = 3.3 kg m/s2 acceleration of m = 2.4 kg m/s2 (b) What is the tension in the string? small tension N large tension N
A mass M = 3.3-kg block rests on a frictionless surface, near a shear cliff. This block is attached to a string that passes over a pulley which is suspended over the cliff. The other end of the string is attached to a m = 2.4-kg block which hangs in mid-air on the other side of the cliff. The pulley is a uniform disk of radius 8.0 cm and mass 0.60 kg. (a) What is the magnitude of the acceleration of each block? acceleration of M = 3.3 kg m/s2 acceleration of m = 2.4 kg m/s2 (b) What is the tension in the string? small tension N large tension N
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A mass M = 3.3-kg block rests on a frictionless surface, near a shear cliff. This block is attached to a string that passes over a pulley which is suspended over the cliff. The other end of the string is attached to a m = 2.4-kg block which hangs in mid-air on the other side of the cliff. The pulley is a uniform disk of radius 8.0 cm and mass 0.60 kg. (a) What is the magnitude of the acceleration of each block? acceleration of M = 3.3 kg m/s2 acceleration of m = 2.4 kg m/s2 (b) What is the tension in the string? small tension N large tension N
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