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Standalone Java Application   (GUIKit Package Tutorial)
The GUIKit` package can also be used to provide Mathematica-enriched user interfaces to standalone Java applications, leveraging the fact that J/Link also works within a Java ...
ButterflyGraph   (Combinatorica Package Symbol)
ButterflyGraph[n] returns the n-dimensional butterfly graph, a directed graph whose vertices are pairs (w, i), where w is a binary string of length n and i is an integer in ...
SetVertexWeights   (Combinatorica Package Symbol)
SetVertexWeights[g] assigns random real weights in the range [0, 1] to vertices in g. SetVertexWeights[g, w] assigns the weights in the weight list w to the vertices of g. ...
BarCharts`   (Mathematica Compatibility Information)
As of Version 7, the Bar Charts Package has been integrated into the Mathematica kernel.
Graphics`InequalityGraphics`   (Mathematica Compatibility Information)
New functions RegionPlot and RegionPlot3D have been added to the built-in Mathematica kernel. RegionPlot includes the functionality of InequalityPlot. RegionPlot3D includes ...
Graphics`Polyhedra`   (Mathematica Compatibility Information)
PolyhedronData has been added to the built-in Mathematica kernel. A new Polyhedron Operations Package has been created.
Graphics`Shapes`   (Mathematica Compatibility Information)
The functionality of RotateShape, TranslateShape, and AffineShape is provided by the newly added kernel functions Rotate, Translate, Scale and GeometricTransformation. ...
BoundedDiagram   (Computational Geometry Package Symbol)
BoundedDiagram[{{a_1, b_1}, ...}, {{x_1, y_1}, ...}] yields the bounded Voronoi diagram of the points {x_1, y_1}, {x_2, y_2} ..., where the bound is the convex polygon formed ...
VoronoiDiagram   (Computational Geometry Package Symbol)
VoronoiDiagram[{{x_1, y_1}, {x_2, y_2}, ...}] yields the planar Voronoi diagram of the points {x_1, y_1}, {x_2, y_2}, ....VoronoiDiagram[{{x_1, y_1}, {x_2, y_2}, ...}, val] ...
EconomizedRationalApproximation   (Function Approximations Package Symbol)
EconomizedRationalApproximation[expr, {x, {x_0, x_1}, m, n}] gives the economized rational approximation to expr that is good over the interval x_0 to x_1, with numerator ...
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