A bowling ball m=2.3kg is dropped from a height h. It falls a distance, d, before encountering a large tube r = 3.1m which is connected by two bolts. Each bolt can individually sustain a force of F = 110 N before failing. Part a: write an expression for the maximum distance, d, above the pipe from which the ball can be dropped so the bolts do not fail. Part b: what is the distance, in meters?

College Physics
11th Edition
ISBN:9781305952300
Author:Raymond A. Serway, Chris Vuille
Publisher:Raymond A. Serway, Chris Vuille
Chapter5: Energy
Section: Chapter Questions
Problem 43P: The system shown in Figure P5.43 is used to lift an object of mass m = 76.0 kg. A constant downward...
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A bowling ball m=2.3kg is dropped from a height h. It falls a distance, d, before encountering a large tube r = 3.1m which is connected by two bolts. Each bolt can individually sustain a force of F = 110 N before failing. Part a: write an expression for the maximum distance, d, above the pipe from which the ball can be dropped so the bolts do not fail. Part b: what is the distance, in meters?

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