English

Experimental tests of Bertrand's question and the Duhem-Quine problem

History and Philosophy of Physics 2020-01-08 v2

Abstract

In this paper we report on an experimental test of Bertrand's question on the probability to find a random chord drawn inside a unit-radius circle with length greater than 3\sqrt{3}. In an experiment performed by tossing straws onto a circle, we confirm theoretical predictions that the answer depends on the ratio of the circle diameter, 2R2R, to the straw length, LL, and that the special case corresponding to Laplace's principle of indifference is only obtained in the experimentally unattainable limit of infinite straw length, d~=2R/L0\tilde{d}=2R/L\rightarrow 0. In addition, we observe a systematic discrepancy in the limit, d~=2R/L1\tilde{d}=2R/L\rightarrow 1, where a large number of events are rejected. We conclude that the experimental test of Bertrand's paradox provides a good illustration of the Duhem-Quine problem---that hypothesis testing is always conditional on a bundle of real auxiliary assumptions.

Keywords

Cite

@article{arxiv.1806.00308,
  title  = {Experimental tests of Bertrand's question and the Duhem-Quine problem},
  author = {Zhenning Liu and Charles S. Adams},
  journal= {arXiv preprint arXiv:1806.00308},
  year   = {2020}
}

Comments

5 pages, 6 figures