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Título: =Symmetric Numerical Integration Formulas for Regular Polygons
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Publicación seriada
Referencias AnalíticasReferencias Analíticas
Autor: Nooijen, M. ; Te Velde, G. ; Baerends, E. J.
Título: Symmetric Numerical Integration Formulas for Regular Polygons
Páginas/Colación: pp. 198-218
Url: Ir a http://locus.siam.org/SINUM/volume-27/art_0727014.htmlhttp://locus.siam.org/SINUM/volume-27/art_0727014.html
Siam Journal on Numerical Analysis Vol. 27, no. 1 February 1990
Información de existenciaInformación de existencia

Palabras Claves: Palabras: NUMERICAL INTEGRATION IN N DIMENSIONS NUMERICAL INTEGRATION IN N DIMENSIONS, Palabras: REGULAR POLYGONS REGULAR POLYGONS, Palabras: SYMMETRY SYMMETRY

Resumen
RESUMEN

RESUMEN

The theory of interpolatory integration formulas in $n$ dimensions is combined with group theory to classify and generate symmetric integration formulas in a systematic way. The points are computed as the common zeros of a set of polynomials. These polynomials constitute a canonical basis for the real ideal belonging to the formula. For a symmetric formula they can be chosen to span a representation of the symmetry group. For regions with high symmetry and formulas of low degree this leads to only a few distinct possibilities and the existence of the corresponding formulas is easily checked. In general, however, the canonical basis is not completely determined by symmetry and degree, and a suitable choice has to be made. The application to regular polygons in two dimensions is discussed and formulas are presented for polygons with three, five, six, seven, and eight vertices, with varying degrees of exactness (up to order 27 for the hexagon).

 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 

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