File:Inverse Hyperbolic Cotangent.svg
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Summary
editDescriptionInverse Hyperbolic Cotangent.svg |
English: Inverse Hyperbolic Cotangent function plot (Arc hyperbolic cotangent, arccoth)
arcoth(x) = ln((x + 1) / (x - 1)) / 2 Plotted with cubic bezier-curves. The bezier-controll-points are calculated to give a very accurate result. Asymptotes are included but commented out. Symbols are embeded in "Computer Modern" (TeX) font.Deutsch: Areakotangens Hyperbolicus |
Date | |
Source | Own work |
Author | Geek3 |
SVG development InfoField | This symbol was created with a text editor. |
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Permission is granted to copy, distribute and/or modify this document under the terms of the GNU Free Documentation License, Version 1.2 or any later version published by the Free Software Foundation; with no Invariant Sections, no Front-Cover Texts, and no Back-Cover Texts. A copy of the license is included in the section entitled GNU Free Documentation License.http://www.gnu.org/copyleft/fdl.htmlGFDLGNU Free Documentation Licensetruetrue |
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current | 22:30, 10 June 2008 | 520 × 420 (14 KB) | Geek3 (talk | contribs) | {{Information |Description={{en|1=Inverse Hyperbolic Cotangent function plot arcoth(x) = ln((x + 1) / (x - 1)) / 2 Plotted with cubic bezier-curves. The bezier-controll-points are calculated to give a very accurate result. Asymptotes are included but com |
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Short title | Arcoth.svg - a nice plot of the inverse hyperbolic cotangent function |
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Image title |
Arcoth(arccoth, acoth, coth^-1)-function arcoth(x) = ln((x + 1) / (x - 1)) / 2 from Wikimedia Commons plotted with cubic bezier-curves the bezier-controll-points are calculated to give a very accurate result. asymptotes included symbols in "Computer Modern" (TeX) font embedded created with a plain text editor using GNU/Linux about: http://commons.wikimedia.org/wiki/Image:Inverse Hyperbolic Cotangent.svg source: http://commons.wikimedia.org/ rights: GNU Free Documentation license, Creative Commons Attribution ShareAlike license |