FROM FRACTALS AND CELLULAR AUTOMATA TO BIOLOGY. Questo articolo non è disponibile.
Lingua: inglese
Editore: World Scientific, 2020
- Rilegato
- Nuovo

Da: AHA-BUCH GmbH, Einbeck, GermaniaAHA-BUCH GmbH
Venditore AbeBooks dal 14 agosto 2006
Condizione: Nuovo
EUR 200,00
Descrizione dell’articolo da parte del venditore
nach der Bestellung gedruckt Neuware - Printed after ordering - The didactical level of exposition, together with many astonishing images and animations, accompanied by the related simple computer programming codes (in Python and POV-Ray languages) make this book an extremely and unique useful tool to test the power of algorithmic information in generating ordered structure models (2D and 3D) like regular geometric shapes, complex shapes like fractals and cellular automata, and biological systems as the organs of a living body. Informational biologists besides mathematicians and physicists of complexity may learn to test their own capabilities in programming and modelling ordered structures starting from random initial conditions at different scale of each system: from elementary particles, to biological systems, to galaxies and the whole universe. Moreover the philosophical comments comparing some aspects of modern information theory to the Aristotelian notion of 'form are very appealing also for the epistemologist and the philosopher involved in complexity matters.…
Codice articolo 9789811217159
- Titolo
- FROM FRACTALS AND CELLULAR AUTOMATA TO BIOLOGY
- Autore
- Strumia Alberto
- Editore
- World Scientific
- Anno di pubblicazione
- 2020
- Condizione
- Neu
- Rilegatura
- Buch
- Lingua
- inglese
- ISBN 10
- 9811217157
- ISBN 13
- 9789811217159
- Peso dell'articolo
- 630 grammi
- Dimensioni
- 235x157x22 mm
The didactical level of exposition, together with many astonishing images and animations, accompanied by the related simple computer programming codes (in Python and POV-Ray languages) make this book an extremely and unique useful tool to test the power of algorithmic information in generating ordered structure models (2D and 3D) like regular geometric shapes, complex shapes like fractals and cellular automata, and biological systems as the organs of a living body. Informational biologists besides mathematicians and physicists of complexity may learn to test their own capabilities in programming and modelling ordered structures starting from random initial conditions at different scale of each system: from elementary particles, to biological systems, to galaxies and the whole universe. Moreover the philosophical comments comparing some aspects of modern information theory to the Aristotelian notion of "form are very appealing also for the epistemologist and the philosopher involved in complexity matters.
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