2. In engineering, the modulus of elasticity is a way to measure how much an object deforms along an axis when opposing forces are applied among that axis. The formula can be expressed as E (F2-F)Lo where E is (82-81)A' %3D the modulus of elasticity, F is the axial force, & is a deformation measure, Lo is the original length of the object, and A is the cross-sectional area. Part A: Reaange the elasticity formula to find the cross-sectional area, A.

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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2. In engineering, the modulus of elasticity is a way to measure how much
an object deforms along an axis when opposing forces are applied
among that axis. The formula can be expressed as E
(F2-F)Lo where E is
(82-81)A'
%3D
the modulus of elasticity, F is the axial force, & is a deformation measure,
Lo is the original length of the object, and A is the cross-sectional area.
Part A: Reaange the elasticity formula to find the cross-sectional area, A.
Transcribed Image Text:2. In engineering, the modulus of elasticity is a way to measure how much an object deforms along an axis when opposing forces are applied among that axis. The formula can be expressed as E (F2-F)Lo where E is (82-81)A' %3D the modulus of elasticity, F is the axial force, & is a deformation measure, Lo is the original length of the object, and A is the cross-sectional area. Part A: Reaange the elasticity formula to find the cross-sectional area, A.
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