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Mechanical engineering for EEs
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Module 2
Mechanics of Materials: Stress, Strain, and Axial Loading
1
Normal Stress and Strain in Axially Loaded Members
Calculate normal stress and strain in axially loaded members.
Calculate normal stress and strain in axially loaded members.
2
Stress-Strain Curves and Hooke's Law
Interpret material properties from stress-strain curves and apply Hooke's Law.
Interpret material properties from stress-strain curves and apply Hooke's Law.
3
Direct Shear & Bearing Stress Analysis
Calculate shear stress and strain in materials under direct shear and bearing stress in connections.
Calculate shear stress and strain in materials under direct shear and bearing stress in connections.
4
Axial Deformation: Statically Determinate and Indeterminate Bars
Analyze deformation and elongation in bars under axial loads, including statically indeterminate cases.
Analyze deformation and elongation in bars under axial loads, including statically indeterminate cases.
5
Thin-Walled Pressure Vessel Stress Analysis
Determine stresses in thin-walled pressure vessels using hoop and longitudinal stress formulas.
Determine stresses in thin-walled pressure vessels using hoop and longitudinal stress formulas.
6
Safety Factors & Allowable Stress
Apply factors of safety to determine allowable stresses and assess simple designs.
Apply factors of safety to determine allowable stresses and assess simple designs.
Previous module
Statics: Rigid Body Equilibrium and Structures
Next module
Mechanics of Materials: Torsion and Bending in Beams