Q.Explain Stress and Strain.
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Start your 14-day free trial to unlock the full solution →Stress is the internal restoring force per unit area (F/A, unit Pa); strain is the resulting fractional deformation (ΔL/L or similar), a dimensionless number. Stress ∝ strain (Hooke's law) for small deformations.
When an external deforming force is applied to a body, it changes the body's shape or size. In response, internal restoring forces develop within the body that try to bring it back to its original configuration.
Stress: Defined as the internal restoring force acting per unit area of a deformed body: Stress = F/A. Its SI unit is N/m² (pascal, Pa), the same as pressure. Stress is of three main types depending on the kind of deformation: (i) Tensile/longitudinal stress — when the deforming force causes a change in length (stretching or compression along one dimension); (ii) Shearing (tangential) stress — when the force causes a change in shape without a change in volume, by acting tangentially/parallel to a surface; (iii) Volume (bulk/hydraulic) stress — when the force (e.g. uniform pressure) causes a change in volume without a change in shape, as when an object is immersed in a fluid.
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