Algebra of Theoretical Term Reductions in the Sciences

Symposion: Theoretical and Applied Inquiries in Philosophy and Social Sciences 1 (1): 51-67 (2014)
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Abstract

An elementary algebra identifies conceptual and corresponding applicational limitations in John Kemeny and Paul Oppenheim’s (K-O) 1956 model of theoretical reduction in the sciences. The K-O model was once widely accepted, at least in spirit, but seems afterward to have been discredited, or in any event superceeded. Today, the K-O reduction model is seldom mentioned, except to clarify when a reduction in the Kemeny-Oppenheim sense is not intended. The present essay takes a fresh look at the basic mathematics of K-O comparative vocabulary theoretical term reductions, from historical and philosophical standpoints, as a contribution to the history of the philosophy of science. The K-O theoretical reduction model qualifies a theory replacement as a successful reduction when preconditions of explanatory adequacy and comparable systematicization are met, and there occur fewer numbers of theoretical terms identified as replicable syntax types in the most economical statement of a theory’s putative propositional truths, as compared with the theoretical term count for the theory it replaces. The challenge to the historical model developed here, to help explain its scope and limitations, involves the potential for equivocal theoretical meanings of multiple theoretical term tokens of the same syntactical type.

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Citations of this work

On the concept of systematization in the Kemeny-Oppenheim approach to intertheoretical reduction.Gerhard Wagner - 2024 - Studies in History and Philosophy of Science Part A 103 (C):29-38.

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References found in this work

Approaches to reduction.Kenneth F. Schaffner - 1967 - Philosophy of Science 34 (2):137-147.
On reduction.John Kemeny & Paul Oppenheim - 1956 - Philosophical Studies 7 (1-2):6 - 19.

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