66. A uniform rope of cross-sectional area 0.50 cm² breaks when the tensile stress in it reaches 6.00 × 10°N/m². (a) What is the maximum load that can be lifted slowly at a constant speed by the rope? (b) What is the maximum load that can be lifted by the rope with an acceleration of 4.00 m/s²?

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter14: Static Equilibrium, Elasticity, And Fracture
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I need help with this problem and an explanation for the solution described below. (University Physics 1: Static Equilibrium, and Elasticity).

66. A uniform rope of cross-sectional area 0.50 cm² breaks when the tensile stress in it reaches
6.00 × 10°N/m². (a) What is the maximum load that can be lifted slowly at a constant speed by the
rope? (b) What is the maximum load that can be lifted by the rope with an acceleration of 4.00 m/s²?
Transcribed Image Text:66. A uniform rope of cross-sectional area 0.50 cm² breaks when the tensile stress in it reaches 6.00 × 10°N/m². (a) What is the maximum load that can be lifted slowly at a constant speed by the rope? (b) What is the maximum load that can be lifted by the rope with an acceleration of 4.00 m/s²?
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