Randomness and Reality

PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1978 (2):79-97 (1978)
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Abstract

In previous technical work ([1] and [2]) on which his present paper [3] draws, Benioff has presented results conforming with the following argument-scheme:First, if we construe Quantum Mechanics as making claims to the effect that infinite outcome sequences (generated by repeated measurements on a system for a given observable in a given state) be random; and second, if a strong definition of “random” is adopted in this construal, then certain models of Zermelo-Fraenkel set theory (ZF) cannot be “carriers for the mathematics of physics”.How interesting is this? One can approach the matter on two levels, the level of the specific technical results, and the level of more general implications of this pattern of argument for understanding connections between mathematics and physics. The second more general level should be our primary focus, but it will pay at the outset to look briefly at the technical level.

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Geoffrey Hellman
University of Minnesota

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References found in this work

The Problem of Hidden Variables in Quantum Mechanics.Simon Kochen & E. P. Specker - 1967 - Journal of Mathematics and Mechanics 17:59--87.
Is probability a dispositional property?Lawrence Sklar - 1970 - Journal of Philosophy 67 (11):355-366.
Determinism, laws, and predictability in principle.Richard Boyd - 1972 - Philosophy of Science 39 (4):431-450.
Laplacian determinism, or is this any way to run a universe?John Earman - 1971 - Journal of Philosophy 68 (21):729-744.

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