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  1. An Aristotelian Realist Philosophy of Mathematics: Mathematics as the science of quantity and structure.James Franklin - 2014 - London and New York: Palgrave MacMillan.
    An Aristotelian Philosophy of Mathematics breaks the impasse between Platonist and nominalist views of mathematics. Neither a study of abstract objects nor a mere language or logic, mathematics is a science of real aspects of the world as much as biology is. For the first time, a philosophy of mathematics puts applied mathematics at the centre. Quantitative aspects of the world such as ratios of heights, and structural ones such as symmetry and continuity, are parts of the physical world and (...)
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  • Representation in measurement.Elina Vessonen - 2021 - European Journal for Philosophy of Science 11 (3):1-23.
    The Representational Theory of Measurement is the best known account of the kind of representation measurement requires. However, RTM has been challenged from various angles, with critics claiming e.g. that RTM fails to account for actual measurement practice and that it is ambiguous about the nature of measurable attributes. In this paper I use the critical literature on RTM to formulate Representation Minimalism – a characterization of what measurement-relevant representation requires at the minimum. I argue that Representation Minimalism avoids the (...)
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  • The Concept of Unit Coherence and Its Application to Psychology Theories.David Trafimow - 2012 - Journal for the Theory of Social Behaviour 42 (2):131-154.
    Philosophers and scientists agree that an important characteristic of theories is their internal coherence. I propose that there is a particular type of internal coherence, termed “unit coherence,” that has received insufficient attention from psychologists. When psychologists theorize about the mechanisms that bring about human behavior, the units in which the variables are expressed need to be consistent throughout the theory; this is unit coherence. The theory of reasoned action is an example of a unit incoherent theory. I explain why (...)
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  • Two Myths of Representational Measurement.Eran Tal - 2021 - Perspectives on Science 29 (6):701-741.
    Axiomatic measurement theories are commonly interpreted as claiming that, in order to quantify an empirical domain, the qualitative structure of data about that domain must be mapped to a numerical structure. Such mapping is supposed to be established independently, i.e., without presupposing that the domain can be quantified. This interpretation is based on two myths: that it is possible to independently infer the qualitative structure of objects from empirical data, and that the adequacy of numerical representations can only be justified (...)
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  • Thermoscopes, thermometers, and the foundations of measurement.David Sherry - 2011 - Studies in History and Philosophy of Science Part A 42 (4):509-524.
    Psychologists debate whether mental attributes can be quantified or whether they admit only qualitative comparisons of more and less. Their disagreement is not merely terminological, for it bears upon the permissibility of various statistical techniques. This article contributes to the discussion in two stages. First it explains how temperature, which was originally a qualitative concept, came to occupy its position as an unquestionably quantitative concept (§§1–4). Specifically, it lays out the circumstances in which thermometers, which register quantitative (or cardinal) differences, (...)
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  • Crença, Verdade e Exatidão: O Realismo Científico Encontra a Filosofia Das Medições.Félix Flores Pinheiro - 2022 - Kriterion: Journal of Philosophy 63 (153):683-708.
    ABSTRACT The current debate on scientific realism is an entire universe. A general thesis can be put like follows: scientific activity attains a world that is independent of science itself. This “reaching out” can be thought of in terms of theoretical practices, such as the formulation of true theories, and/or experimental practices, such as the construction of suficiently accurate methods to (re)formulate and test what is said by the theories. By this latter route, the debate about scientific realism in the (...)
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  • Methodological empiricism and the choice of measurement models in social sciences.Clayton Peterson - 2018 - European Journal for Philosophy of Science 8 (3):831-854.
    Realism is generally assumed as the correct position with regards to psychological research and the measurement of psychological attributes in psychometrics. Borsboom et al., 203–219 2003), for instance, argued that the choice of a reflective measurement model necessarily implies a commitment to the existence of psychological constructs as well as a commitment to the belief that empirical testing of measurement models can justify their correspondence with real causal structures. Hood :739–761 2013) deemphasized Borsboom et al.’s position and argued that the (...)
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  • Omnivorousness as the bridging of cultural holes: A measurement strategy.Omar Lizardo - 2014 - Theory and Society 43 (3-4):395-419.
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  • A structural interpretation of measurement and some related epistemological issues.Alessandro Giordani - 2017 - Studies in History and Philosophy of Science Part A:1-11.
    Measurement is widely applied because its results are assumed to be more reliable than opinions and guesses, but this reliability is sometimes justified in a stereotyped way. After a critical analysis of such stereotypes, a structural characterization of measurement is proposed, as partly empirical and partly theoretical process, by showing that it is in fact the structure of the process that guarantees the reliability of its results. On this basis the role and the structure of background knowledge in measurement and (...)
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  • Mathematics as a science of non-abstract reality: Aristotelian realist philosophies of mathematics.James Franklin - 2022 - Foundations of Science 27 (2):327-344.
    There is a wide range of realist but non-Platonist philosophies of mathematics—naturalist or Aristotelian realisms. Held by Aristotle and Mill, they played little part in twentieth century philosophy of mathematics but have been revived recently. They assimilate mathematics to the rest of science. They hold that mathematics is the science of X, where X is some observable feature of the (physical or other non-abstract) world. Choices for X include quantity, structure, pattern, complexity, relations. The article lays out and compares these (...)
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  • Introduction: Measurement at the Crossroads.Nadine de Courtenay, Fabien Grégis, Jan Lacki & Christine Proust - 2021 - Perspectives on Science 29 (6):681-700.
    The guest editors would like to thank the University of Paris and the ENSA Paris-Val de Seine for having provided premises to successfully host the 2018 "Measurement at the Crossroads" conference in Paris.Our thanks extend to our funding sources: the conference was made possible thanks to the generous support of the Institut Humanités, Sciences et Sociétés, the SPHERE laboratory and the Laboratoire Matériaux et Phénomènes Quantiques of the University of Paris, the department of History and Philosophy of Science of the (...)
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  • The Future of Mathematics in Economics: A Philosophically Grounded Proposal.Ricardo Crespo & Fernando Tohmé - 2017 - Foundations of Science 22 (4):677-693.
    The use of mathematics in economics has been widely discussed. The philosophical discussion on what mathematics is remains unsettled on why it can be applied to the study of the real world. We propose to get back to some philosophical conceptions that lead to a language-like role for the mathematical analysis of economic phenomena and present some problems of interest that can be better examined in this light. Category theory provides the appropriate tools for these analytical approach.
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  • Measurement in Science.Eran Tal - 2015 - Stanford Encyclopedia of Philosophy.