Sts: A Structural Theory Of Sets

Logic Journal of the IGPL 7 (4):481-515 (1999)
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Abstract

We explore a non-classical, universal set theory, based on a purely 'structural' conception of sets. A set is a transfinite process of unfolding of an arbitrary binary structure, with identity of sets given by the observational equivalence between such processes. We formalize these notions using infinitary modal logic, which provides partial descriptions for set structures up to observational equivalence. We describe the comprehension and topological properties of the resulting set-theory, and we use it to give non-classical solutions to classical paradoxes, to prove fixed-point theorems that relate recursion and corecursion, to formalize 'super-large', reflexive categories and 'super-large' circular modes, and to provide 'natural' solutions for domain equations

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original Baltag, Alexandru (1998) "STS: A Structural Theory of Sets". In Kracht, Marcus, de Rijke, Maarten, Wansing, Heinrich, Zakharyaschev, Michael, Advances in Modal Logic, pp. 1-34: CSLI Publications (1998)

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Alexandru Baltag
University of Amsterdam

References found in this work

The Liar: An Essay on Truth and Circularity.Jon Barwise & John Etchemendy - 1987 - Oxford, England and New York, NY, USA: Oxford University Press USA. Edited by John Etchemendy.
Cantorian Set Theory and Limitation of Size.Michael Hallett - 1984 - Oxford, England: Clarendon Press.
[Omnibus Review].Yiannis N. Moschovakis - 1968 - Journal of Symbolic Logic 33 (3):471-472.
Non-Well-Founded Sets.Peter Aczel - 1988 - Palo Alto, CA, USA: Csli Lecture Notes.

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