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Lecture
Buckling of Plates: Post-Buckling Deformation Behavior Investigation
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Gaussian Curvature in Plates
Explores Gaussian curvature, principal curvatures, and nonlinear strain in thin elastic plates.
Buckling of Plates: Post-Buckling Deformation Analysis
Investigates post-buckling deformation of plates, deriving bending and stretching energies.
Plates II: Föppl-von Kármán Equations
Covers the framework for plates, bending and stretching energies, and Föppl-von Kármán Equations, exploring mean and Gaussian curvatures.
Plates II: Mechanics of Slender Structures
Explores the mechanics of slender structures, discussing plate evaluation, bending energy, and curvature tensors.
Plates II: Föppl-von Kármán Equations
Explores the theory of plates, including bending and stretching energies, and the Föppl-von Kármán Equations.
Mechanics of Plates: Curvature, Bending, and Stretching Energy
Covers the mechanics of plates, focusing on curvature, bending, and stretching energy.
Buckling of Plates in Mechanics of Slender Structures
Covers critical force, post-buckling behavior, bending energy, strain tensor, stretching energy, and shear buckling.
Derivation of Boundary Conditions in Mechanics of Slender Structures
Covers the derivation of boundary conditions in mechanics of slender structures, focusing on total energy variation and equilibrium equations.
Shells I: Mechanics of Slender Structures
Covers linear and membrane theories of pressure vessels, differential geometry of surfaces, and the reduction of dimensionality from 3D to 2D.
Plates III: Buckling Theory and Applications
Explores Föppl-von Kármán plate theory, including buckling equations and an example of plate compression.