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  1. Operationalism: An Interpretation of the Philosophy of Ancient Greek Geometry.Viktor Blåsjö - 2022 - Foundations of Science 27 (2):587-708.
    I present a systematic interpretation of the foundational purpose of constructions in ancient Greek geometry. I argue that Greek geometers were committed to an operationalist foundational program, according to which all of mathematics—including its entire ontology and epistemology—is based entirely on concrete physical constructions. On this reading, key foundational aspects of Greek geometry are analogous to core tenets of 20th-century operationalist/positivist/constructivist/intuitionist philosophy of science and mathematics. Operationalism provides coherent answers to a range of traditional philosophical problems regarding classical mathematics, such (...)
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  • Homeomeric Lines in Greek Mathematics.Fabio Acerbi - 2010 - Science in Context 23 (1):1-37.
    ArgumentThis article presents ancient documents on the subject of homeomeric lines. On the basis of such documents, the article reconstructs a definition of the notion as well as a proof of the result, which is left unproved in extant sources, that there are only three homeomeric lines: the straight line, the circumference, and the cylindrical helix. A point of particular historiographic interest is that homeomeric lines were the only class of lines defined directly as the extension of a mathematical property, (...)
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  • Sophistical Demonstrations: A Class of Arguments Entangled with False Peirastic and Pseudographemata.Lucas Angioni - 2023 - In Melina G. Mouzala (ed.), Ancient Greek Dialectic and Its Reception. De Gruyter. pp. 211-246.
  • Between Science and Dialectic.Pieter Sjoerd Hasper - 2012 - History of Philosophy & Logical Analysis 15 (1):286-322.
    How do, according to Aristotle, peirastic arguments, which are employed by nonscientists to put professed scientists to the test, work, and how do they differ from genuine scientific arguments? A peirastic argument succeeds in unmasking a would-be scientist if it establishes an inconsistency among the answers given. These answers may only comprise: propositions which are proper to the field and which everybody can know; propositions which only scientists may know; “common” propositions that everybody, including various sciences, uses in all kind (...)
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  • Poznanie geometryczne z kognitywnego punktu widzenia.Jerzy Pogonowski - 2021 - Philosophical Problems in Science 70:183-211.
    This review discusses the content of Mateusz Hohol’s new book Foundations of Geometric Cognition. Mathematical cognition has until now focused mainly on human numerical abilities. Hohol’s work tackles geometric cognition, an issue that has not been described in previous investigations into mathematical cognition. The main strength of the book lies in its critical analysis of a huge amount of results from empirical experiments. The author formulates his theoretical proposals very carefully, avoiding radical and one-sided solutions. He claims that human geometric (...)
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