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The golden mean

Por: Colaborador(es): Tipo de material: TextoIdioma: en Editor: Salt Lake City, UT : Project Gutenberg, 1996Descripción: 1 online resource : multiple file formatsTipo de contenido:
  • text
Tipo de medio:
  • computer
Tipo de soporte:
  • online resource
Tema(s): Clasificación LoC:
  • QA
Recursos en línea: Resumen: "The Golden Mean" by Jerry T. Bonnell and Robert J. Nemiroff is a scientific publication likely written in the late 20th century. The work explores mathematical concepts related to the golden ratio, presenting detailed calculations and extensive numerical data associated with this significant mathematical constant. At the start of the publication, the authors introduce the golden ratio, defined as \((1+\sqrt{5})/2\), and follow this by providing an impressively long sequence of its digits—over a million in total. This opening sets the stage for a deeper exploration of the mathematical and aesthetic significance of the golden ratio, suggesting that the subsequent content will delve into its implications in various fields such as art, architecture, and nature. The authors' collaborative efforts underscore their goal of presenting precise mathematical computations to enrich the reader's understanding of this fascinating topic. (This is an automatically generated summary.)
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To a million digits

Release date is 1996-12-01

"The Golden Mean" by Jerry T. Bonnell and Robert J. Nemiroff is a scientific publication likely written in the late 20th century. The work explores mathematical concepts related to the golden ratio, presenting detailed calculations and extensive numerical data associated with this significant mathematical constant. At the start of the publication, the authors introduce the golden ratio, defined as \((1+\sqrt{5})/2\), and follow this by providing an impressively long sequence of its digits—over a million in total. This opening sets the stage for a deeper exploration of the mathematical and aesthetic significance of the golden ratio, suggesting that the subsequent content will delve into its implications in various fields such as art, architecture, and nature. The authors' collaborative efforts underscore their goal of presenting precise mathematical computations to enrich the reader's understanding of this fascinating topic. (This is an automatically generated summary.)

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