For applications in computing, Bézier curves are pervasive and are defined by a piecewise linear curve L which is embedded in R3 and yields a smooth polynomial curve C embedded in R3. It is of interest to understand when L and C have the same embeddings. One class ofc ounterexamples is shown for L being unknotted, while C is knotted. Another class of counterexamples is created where L is equilateral and simple, while C is self-intersecting. These counterexamples were discovered using curve visualizing software and numerical algorithms that produce general procedures to create more examples
Figure 1: Our system takes as input a wireframe model produced from a 3D curve sketch, and outputs a...
We present algorithms to compute the topology of 2D and 3D hyperelliptic curves. The algorithms are ...
Finding a topologically accurate approximation of a real planar algebraic curve is a classic problem...
[EN] For applications in computing, Bézier curves are pervasive and are defined by a piecewise linea...
[EN] For applications in computing, Bézier curves are pervasive and are defined by a piecewise linea...
For applications in computing, Bézier curves are pervasive and are defined by a piecewise linear cu...
Abstract. For applications in computing, Bézier curves are perva-sive and are defined by a piecewis...
[EN] For applications in computing, Bézier curves are pervasive and are defined by a piecewise linea...
Previously, numerical evidence was presented of a self-intersecting Bezier curve having the unknot f...
Topology-based methods have been successfully used for the analysis and visualization of piecewise-l...
AbstractShape completion is an intriguing problem in geometry processing with applications in CAD an...
Topology-based methods have been successfully used for the analysis and visualization of piecewise-l...
Topology-based methods have been successfully used for the analysis and visualization of piecewise-l...
Topology-based methods have been successfully used for the analysis and visualization of piecewise-l...
Abstract. Topology-based methods have been successfully used for the analysis and visualization of p...
Figure 1: Our system takes as input a wireframe model produced from a 3D curve sketch, and outputs a...
We present algorithms to compute the topology of 2D and 3D hyperelliptic curves. The algorithms are ...
Finding a topologically accurate approximation of a real planar algebraic curve is a classic problem...
[EN] For applications in computing, Bézier curves are pervasive and are defined by a piecewise linea...
[EN] For applications in computing, Bézier curves are pervasive and are defined by a piecewise linea...
For applications in computing, Bézier curves are pervasive and are defined by a piecewise linear cu...
Abstract. For applications in computing, Bézier curves are perva-sive and are defined by a piecewis...
[EN] For applications in computing, Bézier curves are pervasive and are defined by a piecewise linea...
Previously, numerical evidence was presented of a self-intersecting Bezier curve having the unknot f...
Topology-based methods have been successfully used for the analysis and visualization of piecewise-l...
AbstractShape completion is an intriguing problem in geometry processing with applications in CAD an...
Topology-based methods have been successfully used for the analysis and visualization of piecewise-l...
Topology-based methods have been successfully used for the analysis and visualization of piecewise-l...
Topology-based methods have been successfully used for the analysis and visualization of piecewise-l...
Abstract. Topology-based methods have been successfully used for the analysis and visualization of p...
Figure 1: Our system takes as input a wireframe model produced from a 3D curve sketch, and outputs a...
We present algorithms to compute the topology of 2D and 3D hyperelliptic curves. The algorithms are ...
Finding a topologically accurate approximation of a real planar algebraic curve is a classic problem...