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Lecture
Descriptive Geometry: Cones and Cylinders
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Related lectures (29)
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Surfaces in R^3: Curves and Regular Surfaces
Covers curves in R^2, regular surfaces in R^3, and geometric properties of edges.
Surface Integrals: Regular Parametrization
Covers surface integrals with a focus on regular parametrization and the importance of understanding the normal vector.
Descriptive Geometry: Cones and Cylinders
Explores intersections, curves, and perspectives in descriptive geometry of cones and cylinders.
Implicit Surfaces: Regular Points
Explains regular points on implicit surfaces and their relationship with gradients and tangent planes.
Descriptive Geometry: Cones and Cylinders
Covers the geometry of cones and cylinders, including sections of conics and Dandelin's theorem.
Implicit Function Theorem: Tangent Planes and Derivatives
Discusses the Implicit Function Theorem and its application to tangent planes and derivatives.
Dandelin Theorem: Ellipse Construction
Explores ellipse construction using the Dandelin theorem and properties of conics in space.
Surfaces with Variable Curvature
Explores surfaces with variable curvature, discussing their construction and properties.
Hyperboloid Surfaces: Sections and Developability
Delves into the properties of hyperboloid surfaces and their sections, emphasizing developability and curvature.