Related lectures (34)
Finite Element Method: Basis Functions
Explains the construction of basis functions in the Finite Element Method, focusing on local to global mapping and numerical accuracy.
Conic Sections: Determining Parameters
Explores the determination of conic section parameters and the laws of Kepler in celestial mechanics.
Concatenation of Arcs in Geometry
Delves into the historical and geometric aspects of arc concatenation, including ellipse approximation and architectural applications.
Gravity and Barycenter: Definitions and Applications
Explores the definitions and properties of gravity and barycenter, including bounded regions and coordinate transformations.
Forces Centrales and Kepler's Laws
Explores central forces, trajectories, acceleration, and conic shapes in physics.
Construction of Ovals: From Roman Amphitheatres to Modern Architecture
Explores the historical construction methods of ovals, from Roman amphitheatres to modern architecture, including the use of symmetrical double tangency.
Conic Sections: Ellipse, Parabola, Hyperbola
Explores conic sections like ellipse, parabola, and hyperbola, their properties, constructions, and perspectives in 2D and 3D spaces.
Deformation Analysis in Elastic Solids
Explores manipulation of 3D arrays, barycenters, shape matrices, Jacobians, eigendecomposition, and visualization in elastic solids.

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