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Download as PDF; Printable version; ... The y-axis starts from zero Bar chart: ... can be specified in the graph and the legend templates.
If the template has a separate documentation page (usually called "Template:template name/doc"), add [[Category:Graph, chart and plot templates]] to the <includeonly> section at the bottom of that page. Otherwise, add <noinclude>[[Category:Graph, chart and plot templates]]</noinclude>
Polytopal flip graphs are, by this property, connected. As shown by Klaus Wagner in the 1930s, the flip graph of the topological sphere is connected. [7] Among the connected flip graphs, one also finds the flip graphs of any finite 2-dimensional set of points. [8] In higher dimensional Euclidean spaces, the situation is much more complicated.
For triangulations of a point set in dimension 5 or above, there exists examples where the flip graph is disconnected and a triangulation cannot be obtained from other triangulations via flips. [6] [3] Whether all flip graphs of finite 3- or 4-dimensional point sets are connected is an open problem. [7]
This template's initial visibility currently defaults to expanded, meaning that it is fully visible. To change this template's initial visibility, the |state= parameter may be used: {{ Graph, chart and plot templates | state = collapsed }} will show the template collapsed, i.e. hidden apart from its title bar.
The horizon chart is a variation of the area chart. Having established a horizontal axis, negative values are mirrored over the horizontal axis, while positive values retain their position. As an alternative approach, rather than reflecting negative values, they can be shifted so that the smaller value aligns with the horizontal axis.
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Sigmoid functions most often show a return value (y axis) in the range 0 to 1. Another commonly used range is from −1 to 1. A wide variety of sigmoid functions including the logistic and hyperbolic tangent functions have been used as the activation function of artificial neurons.