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Lecture
Discrete Differential Geometry
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Related lectures (28)
Weingarten Application of Regular Surfaces
Covers the application of the Weingarten map on regular surfaces and the shape operator.
Hyperbolic Geometry
Introduces hyperbolic geometry, covering complete metric spaces, isometries, and Gaussian curvature in dimension 2.
Minimal Surfaces and Discrete Differential Geometry
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Explores minimal surfaces, curvature, Laplace-Beltrami operator, numerical solutions, Laplacian smoothing, diffusion flow, and time integration.
Mean and Gaussian Curvature
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Explores mean and Gaussian curvature, emphasizing their calculation for different bases and surfaces.
Differential Geometry of Surfaces
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Covers the fundamentals of differential geometry of surfaces, including the equilibrium of shells, pressure vessels, and the curvature of surfaces.
Differential Geometry: Surfaces
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Explores the differential geometry of parametric surfaces, covering tangent space, normal curvature, principal curvatures, and asymptotic curves.
Gaussian Curvature in Plates
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Explores Gaussian curvature, principal curvatures, and nonlinear strain in thin elastic plates.
Plates II: Föppl-von Kármán Equations
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Covers the framework for plates, bending and stretching energies, and Föppl-von Kármán Equations, exploring mean and Gaussian curvatures.
Shells I: Mechanics of Slender Structures
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Covers linear and membrane theories of pressure vessels, differential geometry of surfaces, and the reduction of dimensionality from 3D to 2D.
Principal Curvatures: Gaussian Curvature
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Explores principal curvatures and Gaussian curvature in the context of minimal surfaces, demonstrating their real-world applications.
Shells I
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Covers linear pressure vessels, thin shells, and critical buckling pressure, emphasizing the dimensional reduction from 3D to 2D.
Plates II: Föppl-von Kármán Equations
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Explores the theory of plates, including bending and stretching energies, and the Föppl-von Kármán Equations.
Gothic Surfaces: Curvature, Development, and Stereotomy
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Delves into the geometric principles of Gothic architecture, focusing on surface curvature and stereotomy techniques.
Course Recap and Asymptotic Grid Shells
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Covers course recap, shape optimization, asymptotic grid shells, and differential geometry concepts.
Differential Geometry: Parametric Curves & Surfaces
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Introduces the basics of differential geometry for parametric curves and surfaces, covering curvature, tangent vectors, and surface optimization.
Plates II: Mechanics of Slender Structures
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Explores the mechanics of slender structures, discussing plate evaluation, bending energy, and curvature tensors.
Computing Minimal Surfaces
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Explores the computation of minimal surfaces, Laplacian, Gauss curvature, numerical solutions, and mesh processing.
Differential Geometry of Surfaces
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Covers linear pressure vessels and the basics of differential geometry of surfaces, including covariant and contravariant base vectors.
Geometric Surfaces: Paraboloids and Hyperboloids in Architecture
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Explores the geometric properties of paraboloids and hyperboloids in architecture, emphasizing their design implications and practical applications.
Differential Geometry: Curves
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Explores the geometry of parametric curves, covering tangent vectors, curvature, and curve smoothing techniques.
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