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Cross-polytope and Taxicab geometry

Shortcuts: Differences, Similarities, Jaccard Similarity Coefficient, References.

Difference between Cross-polytope and Taxicab geometry

Cross-polytope vs. Taxicab geometry

In geometry, a cross-polytope, orthoplex, hyperoctahedron, or cocube is a regular, convex polytope that exists in n-dimensions. A taxicab geometry is a form of geometry in which the usual distance function or metric of Euclidean geometry is replaced by a new metric in which the distance between two points is the sum of the absolute differences of their Cartesian coordinates.

Similarities between Cross-polytope and Taxicab geometry

Cross-polytope and Taxicab geometry have 4 things in common (in Unionpedia): Geometry, Line segment, Lp space, Square.

Geometry

Geometry (from the γεωμετρία; geo- "earth", -metron "measurement") is a branch of mathematics concerned with questions of shape, size, relative position of figures, and the properties of space.

Cross-polytope and Geometry · Geometry and Taxicab geometry · See more »

Line segment

In geometry, a line segment is a part of a line that is bounded by two distinct end points, and contains every point on the line between its endpoints.

Cross-polytope and Line segment · Line segment and Taxicab geometry · See more »

Lp space

In mathematics, the Lp spaces are function spaces defined using a natural generalization of the ''p''-norm for finite-dimensional vector spaces.

Cross-polytope and Lp space · Lp space and Taxicab geometry · See more »

Square

In geometry, a square is a regular quadrilateral, which means that it has four equal sides and four equal angles (90-degree angles, or (100-gradian angles or right angles). It can also be defined as a rectangle in which two adjacent sides have equal length. A square with vertices ABCD would be denoted.

Cross-polytope and Square · Square and Taxicab geometry · See more »

The list above answers the following questions

Cross-polytope and Taxicab geometry Comparison

Cross-polytope has 67 relations, while Taxicab geometry has 55. As they have in common 4, the Jaccard index is 3.28% = 4 / (67 + 55).

References

This article shows the relationship between Cross-polytope and Taxicab geometry. To access each article from which the information was extracted, please visit:

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