The elevator in a vertical mine shaft is supported by a steel cable of cross-sectional area 3.20 x 10-4 m2. The mine shaft is 250 meters deep and the elevator's mass is 800kg. When the elevator is at the bottom of the shaft, its weight stretches the cable 3.1cm (0.031m). From this information find the linear modulus (Young's modulus) for this type of steel.
The elevator in a vertical mine shaft is supported by a steel cable of cross-sectional area 3.20 x 10-4 m2. The mine shaft is 250 meters deep and the elevator's mass is 800kg. When the elevator is at the bottom of the shaft, its weight stretches the cable 3.1cm (0.031m). From this information find the linear modulus (Young's modulus) for this type of steel.
Physics for Scientists and Engineers: Foundations and Connections
1st Edition
ISBN:9781133939146
Author:Katz, Debora M.
Publisher:Katz, Debora M.
Chapter14: Static Equilibrium, Elasticity, And Fracture
Section: Chapter Questions
Problem 57PQ: A copper rod with length 1.4 m and cross-sectional area 2.0 cm2 is fastened to a steel rod of length...
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The elevator in a vertical mine shaft is supported by a steel cable of cross-sectional area 3.20 x 10-4 m2. The mine shaft is 250 meters deep and the elevator's mass is 800kg. When the elevator is at the bottom of the shaft, its weight stretches the cable 3.1cm (0.031m). From this information find the linear modulus (Young's modulus) for this type of steel.
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