Language using graphics functions such as ListDensityPlot Voronoiĭiagrams can be even more easily visualized in the Wolfram Gives a graphical illustration of the Voronoi diagram (left figure above). Returns a data structure corresponding to the Voronoi diagram of a given set of In the Wolfram Language package ComputationalGeometry` The Wolfram Language command VoronoiDiagram However, for an analysis highlighting some of the oversimplifications and misattributions in this folklore history account of the events surrounding Snow and the London cholera incident, see Field (2020). In his analysis, Snow constructed a map on which he drew a line labeled "Boundary of equal distance between Broad Street Pump and other Pumps." This line essentially indicated the Broad Street Pump's Voronoi cell (Austin 2006). A particularly notable use of a Voronoi diagram was the analysis of the 1854 cholera epidemic in London, in which physician John Snow determined a strong correlation of deaths with proximity to a particular (and infected) water pump on Broad Street (Snow 1854, Snow 1855). They find widespread applications in areas such as computer graphics, epidemiology, geophysics, and meteorology. They were also studied by Voronoi (1907), who extended the investigation of Voronoi diagrams to higher dimensions. Voronoi diagrams were considered as early at 1644 by René Descartes and were used by Dirichlet (1850) in the investigation of positive quadratic forms. The cells are called Dirichlet regions, Thiessen polytopes, or Voronoi A Voronoi diagram is sometimes also known as a Dirichlet One generating point and every point in a given polygon is closer to its generating The partitioning of a plane with points into convex polygons
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