Rediscovering the Archimedean Polyhedra: Piero della Francesca, Luca Pacioli, Leonardo da Vinci, Albrecht Dürer, Daniele Barbaro, and Johannes Kepler

Rediscovering the Archimedean Polyhedra: Piero della Francesca, Luca Pacioli, Leonardo da Vinci, Albrecht Dürer, Daniele Barbaro, and Johannes Kepler
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重新发现阿基米德多面体:Piero della Francesca、Luca Pacioli、Leonardo da Vinci、Albrecht Dürer、Daniele Barbaro 和 Johannes Kepler

DOI:
10.1007/bf00374595
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发表时间:
1997
影响因子:
0.5
通讯作者:
J. Field
J. Field
中科院分区:
人文科学2区
文献类型:
--
作者:
J. Field

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红色文艺复兴的故事并不是人们所关注的,是数学史上最重要的,事后可能会出版,总结有一个逻辑的进展,基米德固体发现很好地提供了一个更详细的描述,事实上,据我们所知,没有阿基米德的经典文本可以恢复。阿基米德立体之所以有这个名字,是因为帕普斯(公元300-350年)在他的文集中说,阿基米德(公元前287-212年)发现了13个立体,它们的面是不止一种正多边形。然后,Pappus列出了每个实体的数量和类型
The story of the red Renaissance is not th concerns the redisco history of mathemati with hindsight migh publication, summaris have a logical progre chimedean solids foun well to provide a prel a more detailed account of it In fact, as far as we know, there was no classical text by Archimedes to be recovered. The Archimedean solids have that name because in his Collection, Pappus (fl. AD 300-350) stated that Archimedes (c. 287-212 BC) had discovered thirteen solids whose faces were regular polygons of more than one kind. Pappus then listed the numbers and types of faces of each solid, for instance