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The Foundations of Science: Science and Hypothesis, The Value of Science, Science and Method

Por: Colaborador(es): Tipo de material: TextoIdioma: en Editor: Salt Lake City, UT : Project Gutenberg, 2012Descripción: 1 online resource : multiple file formatsTipo de contenido:
  • text
Tipo de medio:
  • computer
Tipo de soporte:
  • online resource
Tema(s): Clasificación LoC:
  • Q
Recursos en línea: Créditos de producción:
  • Produced by Bryan Ness and the Online Distributed Proofreading Team at http://www.pgdp.net (This book was produced from scanned images of public domain material from the Google Print project.)
Resumen: "The Foundations of Science: Science and Hypothesis, The Value of Science" by Henri Poincaré is a philosophical work published in 1904. This French mathematician and physicist explores fundamental questions about how science works, examining the interplay between intuition and logic in mathematics, and the deep connections between mathematical theory and physical reality. Poincaré investigates how scientists choose theories, why mathematical language proves essential for physics, and confronts emerging crises challenging established principles like energy conservation and Newton's laws at the dawn of the twentieth century. (This is an automatically generated summary.)
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Wikipedia page about this book: https://en.wikipedia.org/wiki/The_Value_of_Science

Release date is 2012-05-16

Produced by Bryan Ness and the Online Distributed
Proofreading Team at http://www.pgdp.net (This book was
produced from scanned images of public domain material
from the Google Print project.)

"The Foundations of Science: Science and Hypothesis, The Value of Science" by Henri Poincaré is a philosophical work published in 1904. This French mathematician and physicist explores fundamental questions about how science works, examining the interplay between intuition and logic in mathematics, and the deep connections between mathematical theory and physical reality. Poincaré investigates how scientists choose theories, why mathematical language proves essential for physics, and confronts emerging crises challenging established principles like energy conservation and Newton's laws at the dawn of the twentieth century. (This is an automatically generated summary.)

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