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Lecture
Finite Element Modeling Methodology
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Related lectures (32)
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Elasticity and Deformation
Covers stress, strain, modulus of elasticity, and material behavior under different loads.
Linear Elasticity: Spherically-Symmetric Problems
Explores linear elasticity in spherically-symmetric problems and axially-symmetric cylindrical shells.
Stress and Deformation: Understanding Material Behavior
Explores stress, strain, elasticity, plasticity, and material behavior, emphasizing the importance of dislocations and microstructure.
Linear Elasticity: Basics and Hooke's Law
Explores linear elasticity, Hooke's Law, isotropic materials, and thermal expansion effects.
Deformation of Materials: Stresses, Deformations, and Elasticity
Explores the deformation of materials through stresses, deformations, and elasticity, focusing on the behavior of metals, ceramics, and polymers.
Linear Statics of Deformable Solids
Introduces linear statics for linear elastic solids in small deformations, stress equilibrium, the Virtual Work Principle, and the Finite Element Method.
Deflection of beams: superposition method
Explains the superposition method for beam deflection and linear displacements due to various forces.
Elasticity in Materials Science
Covers linear elasticity, plastic deformation, types of bonds in solids, and elastic properties of crystalline materials.
Harmonic Oscillator and Hooke's Law
Explores harmonic oscillators, Hooke's Law, and elasticity in relation to force and spring elongation.
Review: 3D Linear Elasticity & Beams
Covers the review of 3D Linear Elasticity and beams, focusing on mechanics of slender structures.