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Constraints and Deformations in 3D
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Solid Mechanics Principles: Eigenstrains
Covers eigenstrains, deformations in a body not caused by stress, and their significance in mechanics.
3D Linear Elasticity & Beams
Introduces 3D linear elasticity, beams, dimensional analysis, and mechanics of slender structures.
Shear and Bearing Stresses
Explores shear and bearing stresses, including plasticity, creep, Hooke's Law, and allowable stresses in engineering design.
Relative Deformation in 3D: Strain Matrix
Explores relative deformation in 3D through strain matrix and displacement gradient, emphasizing constraints, stress-strain relations, and equilibrium equations.
Deformation Course: Part 3
Explores stiffness, types of bonds, glass transition, and elasticity in materials under stress.
Laminate Analysis: Introduction
Introduces the theory behind laminates and their applications in different industries.
Internal Equilibrium of Solids
Covers internal equilibrium of solids, stress analysis, beam deformation, and rupture criteria.
Axial Loading: Stress and Strain in Deformable Bodies
Covers axial loading, stress, strain, and their implications in deformable bodies.
Mechanics of Continuous Media
Explores stress components placement, strain-stress relationship, energy of deformation, material isotropy, and temperature effects.
Transformation: Constraints and Deformations
Explores the transformation of constraints and deformations in materials, focusing on stress analysis and tensor diagonalization.