
Learning Goal To practice Problem-Solving Strategy 9.1 Rotational Energy EXECUTE the solution as follows A frictionless pulley has the shape of a uniform solid disk of mass 6.00 kg and radius 19.0 cm. A 1.30 kg stone is attached to a very light wire that is wrapped around the rim of the pulley(Figure 1), and the stone is released from rest. As it falls down, the wire unwinds without stretching or slipping, causing the pulley to rotate. How far must the stone fall so that the pulley has 2.40 J of kinetic energy? Part C How far must the stone fall so that the pulley has 2.40 J of kinetic energy? Express your answer numerically in meters to three significant figures Hints | Figure 1 of 1 In Submit My Answers Give Up pulley Incorrect; Try Again; 5 attempts remaining EVALUATE your answer Part D stone This question will be shown after you complete previous question(s)





