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Category Theory in Physics, Mathematics, and Philosophy

Bag om Category Theory in Physics, Mathematics, and Philosophy

The contributions gathered here demonstrate how categorical ontology can provide a basis for linking three important basic sciences: mathematics, physics, and philosophy. Category theory is a new formal ontology that shifts the main focus from objects to processes. The book approaches formal ontology in the original sense put forward by the philosopher Edmund Husserl, namely as a science that deals with entities that can be exemplified in all spheres and domains of reality. It is a dynamic, processual, and non-substantial ontology in which all entities can be treated as transformations, and in which objects are merely the sources and aims of these transformations. Thus, in a rather surprising way, when employed as a formal ontology, category theory can unite seemingly disparate disciplines in contemporary science and the humanities, such as physics, mathematics and philosophy, but also computer and complex systems science.

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  • Sprog:
  • Engelsk
  • ISBN:
  • 9783030308957
  • Indbinding:
  • Hardback
  • Sideantal:
  • 134
  • Udgivet:
  • 12. November 2019
  • Udgave:
  • 12019
  • Størrelse:
  • 155x235x0 mm.
  • Vægt:
  • 454 g.
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Leveringstid: 2-3 uger
Forventet levering: 23. Juli 2024

Beskrivelse af Category Theory in Physics, Mathematics, and Philosophy

The contributions gathered here demonstrate how categorical ontology can provide a basis for linking three important basic sciences: mathematics, physics, and philosophy. Category theory is a new formal ontology that shifts the main focus from objects to processes.
The book approaches formal ontology in the original sense put forward by the philosopher Edmund Husserl, namely as a science that deals with entities that can be exemplified in all spheres and domains of reality. It is a dynamic, processual, and non-substantial ontology in which all entities can be treated as transformations, and in which objects are merely the sources and aims of these transformations.
Thus, in a rather surprising way, when employed as a formal ontology, category theory can unite seemingly disparate disciplines in contemporary science and the humanities, such as physics, mathematics and philosophy, but also computer and complex systems science.

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