Homeomorphism and the Equivalence of Logical Systems

Notre Dame Journal of Formal Logic 39 (3):422-435 (1998)
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Abstract

Say that a property is topological if and only if it is invariant under homeomorphism. Homeomorphism would be a successful criterion for the equivalence of logical systems only if every logically significant property of every logical system were topological. Alas, homeomorphisms are sometimes insensitive to distinctions that logicians value: properties such as functional completeness are not topological. So logics are not just devices for exploring closure topologies. One still wonders, though, how much of logic is topological. This essay examines some logically significant properties that are topological (or are topological in some important class). In the process, we learn something about the conditions under which the meaning of a connective can be "given by the connective's role in inference."

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Citations of this work

Synonymous logics.Francis Jeffry Pelletier & Alasdair Urquhart - 2003 - Journal of Philosophical Logic 32 (3):259-285.

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References found in this work

Tonk, Plonk and Plink.Nuel Belnap - 1962 - Analysis 22 (6):130-134.
A warning about the choice of primitive operators in modal logic.David Makinson - 1973 - Journal of Philosophical Logic 2 (2):193 - 196.
Closed Bases and Closure Logic.Norman M. Martin - 1996 - The Monist 79 (1):117-127.

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