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  1. Fundamental Properties of Fundamental Properties.M. Eddon - 2013 - In Karen Bennett Dean Zimmerman (ed.), Oxford Studies in Metaphysics, Volume 8. pp. 78-104.
    Since the publication of David Lewis's ''New Work for a Theory of Universals,'' the distinction between properties that are fundamental – or perfectly natural – and those that are not has become a staple of mainstream metaphysics. Plausible candidates for perfect naturalness include the quantitative properties posited by fundamental physics. This paper argues for two claims: (1) the most satisfying account of quantitative properties employs higher-order relations, and (2) these relations must be perfectly natural, for otherwise the perfectly natural properties (...)
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  • Intrinsic Explanations and Numerical Representations.M. Eddon - 2014 - In Robert M. Francescotti (ed.), Companion to Intrinsic Properties. Boston: De Gruyter. pp. 271-290.
    In Science Without Numbers (1980), Hartry Field defends a theory of quantity that, he claims, is able to provide both i) an intrinsic explanation of the structure of space, spacetime, and other quantitative properties, and ii) an intrinsic explanation of why certain numerical representations of quantities (distances, lengths, mass, temperature, etc.) are appropriate or acceptable while others are not. But several philosophers have argued otherwise. In this paper I focus on arguments from Ellis and Milne to the effect that one (...)
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  • The analysis of sensations as the foundation of all sciences.J. van Brakel - 1993 - Behavioral and Brain Sciences 16 (1):163-164.
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  • Derivation of Stevens's exponent from neurophysiological data.Artour N. Lebedev - 1993 - Behavioral and Brain Sciences 16 (1):152-153.
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  • Old and New Problems in Philosophy of Measurement.Eran Tal - 2013 - Philosophy Compass 8 (12):1159-1173.
    The philosophy of measurement studies the conceptual, ontological, epistemic, and technological conditions that make measurement possible and reliable. A new wave of philosophical scholarship has emerged in the last decade that emphasizes the material and historical dimensions of measurement and the relationships between measurement and theoretical modeling. This essay surveys these developments and contrasts them with earlier work on the semantics of quantity terms and the representational character of measurement. The conclusions highlight four characteristics of the emerging research program in (...)
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  • Paradigms of measurement.Piotr Swistak - 1990 - Theory and Decision 29 (1):1-17.
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  • The metaphysics of quantity.Brent Mundy - 1987 - Philosophical Studies 51 (1):29 - 54.
    A formal theory of quantity T Q is presented which is realist, Platonist, and syntactically second-order (while logically elementary), in contrast with the existing formal theories of quantity developed within the theory of measurement, which are empiricist, nominalist, and syntactically first-order (while logically non-elementary). T Q is shown to be formally and empirically adequate as a theory of quantity, and is argued to be scientifically superior to the existing first-order theories of quantity in that it does not depend upon empirically (...)
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  • On conventionality and simultaneity - a reply.Brian Ellis - 1971 - Australasian Journal of Philosophy 49 (2):177 – 203.
    This paper is a response to the "panel discussion of simultaneity by slow clock transport in the special and general theories of relativity" ("philosophy of science", 36, (march, 1969), Pp. 1-81) which arose out of a paper by brian ellis and peter bowman on "conventionality in distant simultaneity", ("philosophy of science", 34, (june, 1967), Pp. 116-36). It is argued that the basic disagreement between the pittsburgh panel and us is an epistemological one. In particular, Our concept of a good physical (...)
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  • Metaphysics of Quantity and the Limit of Phenomenal Concepts.Derek Lam - 2018 - Inquiry: An Interdisciplinary Journal of Philosophy (3):1-20.
    Quantities like mass and temperature are properties that come in degrees. And those degrees (e.g. 5 kg) are properties that are called the magnitudes of the quantities. Some philosophers (e.g., Byrne 2003; Byrne & Hilbert 2003; Schroer 2010) talk about magnitudes of phenomenal qualities as if some of our phenomenal qualities are quantities. The goal of this essay is to explore the anti-physicalist implication of this apparently innocent way of conceptualizing phenomenal quantities. I will first argue for a metaphysical thesis (...)
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  • Fechner's theory of mental measurement.Stephen Link - 1993 - Behavioral and Brain Sciences 16 (1):153-154.
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  • The antecedents of signal detection theory.Donald Laming - 1993 - Behavioral and Brain Sciences 16 (1):151-152.
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  • Quantitative Properties.M. Eddon - 2013 - Philosophy Compass 8 (7):633-645.
    Two grams mass, three coulombs charge, five inches long – these are examples of quantitative properties. Quantitative properties have certain structural features that other sorts of properties lack. What are the metaphysical underpinnings of quantitative structure? This paper considers several accounts of quantity and assesses the merits of each.
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  • Does Temperature Have a Metric Structure?Bradford Skow - 2011 - Philosophy of Science 78 (3):472-489.
    Is there anything more to temperature than the ordering of things from colder to hotter? Are there also facts, for example, about how much hotter (twice as hot, three times as hot...) one thing is than another? There certainly are---but the only strong justification for this claim comes from statistical mechanics. What we knew about temperature before the advent of statistical mechanics (what we knew about it from thermodynamics) provided only weak reasons to believe it.
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  • Numbers as quantitative relations and the traditional theory of measurement.Joel Michell - 1994 - British Journal for the Philosophy of Science 45 (2):389-406.
    The thesis that numbers are ratios of quantities has recently been advanced by a number of philosophers. While adequate as a definition of the natural numbers, it is not clear that this view suffices for our understanding of the reals. These require continuous quantity and relative to any such quantity an infinite number of additive relations exist. Hence, for any two magnitudes of a continuous quantity there exists no unique ratio. This problem is overcome by defining ratios, and hence real (...)
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  • The instance theory of explanation.John Forge - 1986 - Australasian Journal of Philosophy 64 (2):127 – 142.
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  • Bigelow and Pargetter on quantities.John Forge - 1995 - Australasian Journal of Philosophy 73 (4):594 – 605.
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  • Errors of measurement and explanation-as-unification.John Forge - 1993 - Philosophia 22 (1-2):41-61.
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  • How to accept the transitivity of better than.Justin Klocksiem - 2016 - Philosophical Studies 173 (5):1309-1334.
    Although the thesis that the moral better than relation is transitive seems obviously true, there is a growing literature according to which Parfit’s repugnant conclusion and related puzzles reveal that this thesis is false or problematic. This paper begins by presenting several such puzzles and explaining how they can be used in arguments for the intransitivity of better than. It then proposes and defends a plausible alternative picture of the behavior of better than that both resolves the repugnant conclusion and (...)
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  • Psychophysics and the mind-brain problem.Michel Treisman - 1993 - Behavioral and Brain Sciences 16 (1):162-163.
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  • Bedrock metaphysics, fossil fuel psychophysics.Dale A. Stout - 1993 - Behavioral and Brain Sciences 16 (1):160-161.
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  • Unwarranted popularity of a power function for heaviness estimates.Helen E. Ross - 1993 - Behavioral and Brain Sciences 16 (1):159-160.
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  • A parallel view of the history of psychophysics.Gregory R. Lockhead - 1993 - Behavioral and Brain Sciences 16 (1):154-155.
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  • Beyond Peirce: The New Science of Semiotics and the Semiotics of Law. [REVIEW]Charls Pearson - 2008 - International Journal for the Semiotics of Law - Revue Internationale de Sémiotique Juridique 21 (3):247-296.
    This paper shows how Peirce's semeiotic could be turned into a powerful science. The New Science of Semiotics provides not only a new paradigm and an empirical justification for all these applications, but also a rational and systematic procedure for carrying them out as well. Thus the New Science of Semiotics transforms the philosophy of law into the science of legal scholarship, the discipline that I call jurisology.
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  • In Defense of the Trichotomy Thesis.Justin Klocksiem - 2010 - Acta Analytica 25 (3):317-327.
    According to a standard picture, for any two comparable objects and a basis for comparison, either one is greater than the other or they are equal with respect to the basis. This picture has been called the Trichotomy Thesis, and although it is intuitive and plausible, it has been called into question by such philosophers as Derek Parfit, James Griffin, Joseph Raz, and Ruth Chang. Chang’s discussion is particularly rich, for she proposes and provides a detailed account of a possible (...)
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  • The Amenability of Pleasure and Pain to Aggregation.Justin Klocksiem - 2010 - Ethical Theory and Moral Practice 13 (3):293-303.
    According to several prominent philosophers, pleasure and pain come in measurable quantities. This thesis is controversial, however, and many philosophers have presented or felt compelled to respond to arguments for the conclusion that it is false. One important class of these arguments concerns the problem of aggregation, which says that if pleasure and pain were measurable quantities, then, by definition, it would be possible to perform various mathematical and statistical operations on numbers representing amounts of them. It is sometimes argued (...)
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  • Notational Variants and Invariance in Linguistics.Kent Johnson - 2015 - Mind and Language 30 (2):162-186.
    This article argues that the much-maligned ‘notational variants’ of a given formal linguistic theory play a role similar to alternative numerical measurement scales. Thus, they can be used to identify the invariant components of the grammar; i.e., those features that do not depend on the choice of empirically equivalent representation. Treating these elements as the ‘meaningful’ structure of language has numerous consequences for the philosophy of science and linguistics. I offer several such examples of how linguistic theorizing can profit from (...)
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  • The chimera of psychological measurement.Gail A. Hornstein - 1993 - Behavioral and Brain Sciences 16 (1):148-149.
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  • Fechner's impact for measurement theory.Michael Heidelberger - 1993 - Behavioral and Brain Sciences 16 (1):146-148.
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  • A perspective for viewing the history of psychophysics.David J. Murray - 1993 - Behavioral and Brain Sciences 16 (1):115-137.
    Fechner's conception of psychophysics included both “outer psychophysics” the relation between stimulus intensity and the response reflecting sensation strength, and “inner psychophysics” the relation between neurelectric responses and sensation strength. In his own time outer psychophysics focussed on the form of the psychophysical law, with Fechner espousing a logarithmic law, Delboeuf a variant of the logarithmic law incorporating a resting level of neural activity, and Plateau a power law. One of the issues on which the dispute was focussed concerned the (...)
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  • Epidemical spread of scientific objects: An attempt of empirical approach to some problems of meta-science.Maria Nowakowska - 1973 - Theory and Decision 3 (3):262-297.
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  • Invariance, Structure, Measurement – Eino Kaila and the History of Logical Empiricism.Matthias Neuber - 2012 - Theoria 78 (4):358-383.
    Eino Kaila's thought occupies a curious position within the logical empiricist movement. Along with Hans Reichenbach, Herbert Feigl, and the early Moritz Schlick, Kaila advocates a realist approach towards science and the project of a “scientific world conception”. This realist approach was chiefly directed at both Kantianism and Poincaréan conventionalism. The case in point was the theory of measurement. According to Kaila, the foundations of physical reality are characterized by the existence of invariant systems of relations, which he called structures. (...)
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  • True Science: Apropos a Recent Collection of Duhem's Essays. [REVIEW]Paul Needham - 2000 - Theoria 66 (1):86-96.
    Duhem is perhaps the last active scientist to have produced a philosophi- cal text, and TheAim and Structure of Physical Theory retains its status as one that every textbook writer in the philosophy of science has to take into consideration. Several of Duhem’s other books have since appeared in English translation, but the Essays in the History and Philosophy of Science is the first collection of Duhem’s papers to appear in English. Commentators have oRen pointed out that the roots of (...)
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  • Measurement and the verificationist theory/observation distinction.Miklavž Vospernik - 2004 - Acta Analytica 19 (33):95-117.
    In the following article, we propose to show that following the general verificationist epistemic programme (its demand that the truth of our judgments be verifiable), the analysis of measurement on the one hand, and the classical positivist analysis of common-sense observation on the other, do not lead to same conclusions. This is especially important, because the differences in conclusions concern the positivist theory/observation distinction. In particular, the analysis of measurement does not fully support this distinction. This fact might have important (...)
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  • The head and tail of psychophysical algebra.Robert A. M. Gregson - 1993 - Behavioral and Brain Sciences 16 (1):141-142.
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  • Negative, infinite, and hotter than infinite temperatures.Philip Ehrlich - 1982 - Synthese 50 (2):233 - 277.
    We examine the notions of negative, infinite and hotter than infinite temperatures and show how these unusual concepts gain legitimacy in quantum statistical mechanics. We ask if the existence of an infinite temperature implies the existence of an actual infinity and argue that it does not. Since one can sensibly talk about hotter than infinite temperatures, we ask if one could legitimately speak of other physical quantities, such as length and duration, in analogous terms. That is, could there be longer (...)
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  • The place of psychophysics in the history of sensory science.David J. Murray - 1993 - Behavioral and Brain Sciences 16 (1):166-186.
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  • Looking backward: Progress in outer psychophysics.David J. Weiss - 1993 - Behavioral and Brain Sciences 16 (1):165-165.
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  • The discovery of the psychophysical power law by Tobias Mayer in 1754 and the psychophysical hyperbolic law by Ewald Hering in 1874.Otto-Joachim Grüsser - 1993 - Behavioral and Brain Sciences 16 (1):142-144.
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  • The phantom limb extrapolation.Willard L. Brigner - 1993 - Behavioral and Brain Sciences 16 (1):139-139.
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  • Nonconscious sensation and inner psychophysics.Norman H. Anderson - 1993 - Behavioral and Brain Sciences 16 (1):137-138.
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  • Physical models and fundamental laws: Using one piece of the world to tell about another.Susan G. Sterrett - 2001 - Mind and Society 3 (1):51-66.
    In this paper I discuss the relationship between model, theories, and laws in the practice of experimental scale modeling. The methodology of experimental scale modeling, also known as physical similarity, differs markedly from that of other kinds of models in ways that are important to issues in philosophy of science. Scale models are not discussed in much depth in mainstream philosophy of science. In this paper, I examine how scale models are used in making inferences. The main question I address (...)
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  • Why we shouldn't give Ellis a dinch.John Fox - 2007 - Analysis 67 (4):301–303.
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  • What Ekman really said.Mats Olsson, Kathleen Harder & John C. Baird - 1993 - Behavioral and Brain Sciences 16 (1):157-158.
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  • Dimensional explanations.Marc Lange - 2009 - Noûs 43 (4):742-775.
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  • On the construction of psychophysical reality.Mark Wagner - 1993 - Behavioral and Brain Sciences 16 (1):164-165.
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  • A Philosophical Critique of the Distinction of Representational and Pragmatic Measurements on the Example of the Periodic System of Chemical Elements.Ave Mets - 2019 - Foundations of Science 24 (1):73-93.
    Measurement theory in (Hand in The world through quantification. Oxford University Press, 2004; Suppes and Zinnes in Basic measurement theory. Psychology Series, 1962) is concerned with the assignment of number to objects of phenomena. Representational aspect of measurement is the extent to which the assigned numbers and arithmetics truthfully represent the underlying objects and their relations, and is characteristic to natural sciences; pragmatic aspect is the extent to which the assigned numbers serve purposes other than representing the underlying phenomena, and (...)
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  • Psychophysics, its history and ontology.Horst Gundlach - 1993 - Behavioral and Brain Sciences 16 (1):144-145.
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  • From metaphysics to psychophysics and statistics.Gerd Gigerenzer - 1993 - Behavioral and Brain Sciences 16 (1):139-140.
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  • A note concerning the Epidemical Spread of Scientific Objects.Maria Nowakowska - 1976 - Theory and Decision 7 (1-2):141-142.
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  • Sensation strength: Another point of view.Robert Teghtsoonian - 1993 - Behavioral and Brain Sciences 16 (1):161-162.
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