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Lecture
Membrane Theory of Shells: Cylindrical and Spherical Structures
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Membrane Theory of Shells
Explores the membrane theory of shells to analyze forces in thin shell structures.
Membrane Theory of Shells
Explores membrane forces in thin shell structures under various loadings, focusing on cylindrical and spherical shell roofs.
Membrane Theory of Shells
Covers the analysis of membrane forces in cylindrical and spherical shell structures using the membrane theory of shells.
Linear Shell Theory in Mechanics of Slender Structures
Explores linear shell theory in analyzing spherical shell behavior under pressure loading and membrane forces.
Linear Shell Theory: Equilibrium Equations
Covers the dimensional reduction of strain energy from 3D to 2D and linear shell theory equilibrium equations.
Differential Geometry of Surfaces
Covers linear pressure vessels and the basics of differential geometry of surfaces, including covariant and contravariant base vectors.
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.
Linear Shell Theory: Spherical Shells Analysis
Explores the analysis of spherical shells using linear shell theory and membrane forces under different loading conditions.
Linear Shell Theory: Inflation/Deflation of Spherical Shells
Explores linear shell theory applied to spherical shell inflation/deflation and membrane forces analysis.
Linear Shell Theory: Equilibrium and Energy
Covers the expression of the Kirchhoff-Saint Venant energy in a covariant setting and explores equilibrium equations for spherical shells and linear shell theory.