A wire of length “Lo” and cross-sectional area S supports a weight W vertically. a) This fine wire has a Young’s modulus = E and participates in the elastic zone as if it were a very small spring of constant force. Determine the force constant of the spring b) the behavior of the wire is represented in the graph. What would be the force constant for a copper wire 75.0 cm long and 1.291 mm in diameter? c) What weight W would the wire in part b) have if it were stretched 1.25 m
A wire of length “Lo” and cross-sectional area S supports a weight W vertically. a) This fine wire has a Young’s modulus = E and participates in the elastic zone as if it were a very small spring of constant force. Determine the force constant of the spring b) the behavior of the wire is represented in the graph. What would be the force constant for a copper wire 75.0 cm long and 1.291 mm in diameter? c) What weight W would the wire in part b) have if it were stretched 1.25 m
University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter12: Static Equilibrium And Elasticity
Section: Chapter Questions
Problem 60P: A 100-N weight is attached to a free end of a metallic wire that hangs from the ceiling. When a...
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A wire of length “Lo” and cross-sectional area S supports a weight W vertically.
- a) This fine wire has a Young’s modulus = E and participates in the elastic zone as if it were a very small spring of constant force. Determine the force constant of the spring
- b) the behavior of the wire is represented in the graph. What would be the force constant for a copper wire 75.0 cm long and 1.291 mm in diameter?
- c) What weight W would the wire in part b) have if it were stretched 1.25 m
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