Results for 'Measurement science'

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  1. Itzhak Gilboa.Kolmogorov'S. Complexity Measure & L. Simpucism - 1994 - In Dag Prawitz & Dag Westerståhl (eds.), Logic and Philosophy of Science in Uppsala. Kluwer Academic Publishers. pp. 205.
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  2.  6
    Is it possible to measure science.Nikolay Salkov - 2016 - Journal of Philosophical Researchжурнал Философских Исследований 2 (1):2-2.
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  3.  22
    A History of Light and Colour Measurement: Science in the Shadows.Sean F. Johnston - 2001 - Bristol, UK: Institute of Physics Press.
    2003 Paul Bunge Prize of the Hans R. Jenemann Foundation for the History of Scientific Instruments Judging the brightness and color of light has long been contentious. Alternately described as impossible and routine, it was beset by problems both technical and social. How trustworthy could such measurements be? Was the best standard of intensity a gas lamp, an incandescent bulb, or a glowing pool of molten metal? And how much did the answers depend on the background of the specialist? A (...)
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  4.  16
    The Science of Measuring Pleasure and Pain.Cynthia Freeland - 2016 - In Olof Pettersson & Vigdis Songe-Møller (eds.), Plato’s Protagoras: Essays on the Confrontation of Philosophy and Sophistry. Cham: Springer.
    Near the end of the Protagoras there is a famous argument in which Socrates appears to deny the possibility of weakness of will. The passage is part of a longer examination of whether virtue can be taught and of the unity of the virtues. Socrates and Protagoras discuss whether it makes sense to say, as people commonly do, that they sometimes choose to do things they know are not best for them because they are “overcome by pleasure.” Supposedly “the many” (...)
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  5.  21
    Measuring the Intentional World: Realism, Naturalism, and Quantitative Methods in the Behavioral Sciences.J. D. Trout - 1998 - New York, US: OUP Usa.
    Scientific realism has been advanced as an interpretation of the natural sciences but never the behavioral sciences. This book introduces a novel version of scientific realism, Measured Realism, that characterizes the kind of theoretical progress in the social and psychological sciences that is uneven but indisputable. It proposes a theory of measurement, Population-Guided Estimation, that connects natural, psychological, and social scientific inquiry. Presenting quantitative methods in the behavioral sciences as at once successful and regulated by the world, the book (...)
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  6. Measurement in Science.Eran Tal - 2015 - Stanford Encyclopedia of Philosophy.
  7.  16
    Science Outside the Laboratory: Measurement in Field Science and Economics.Marcel Boumans - 2015 - New York, US: Oxford University Press.
    The conduct of most of social science occurs outside the laboratory. Such studies in field science explore phenomena that cannot for practical, technical, or ethical reasons be explored under controlled conditions. These phenomena cannot be fully isolated from their environment or investigated by manipulation or intervention. Yet measurement, including rigorous or clinical measurement, does provide analysts with a sound basis for discerning what occurs under field conditions, and why. In Science Outside the Laboratory, Marcel Boumans (...)
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  8.  5
    Measures of Science: Theological and Technological Impulses in Early Modern Thought.James Barry - 1996 - Northwestern University Press.
    Drawing on past and current research in continental philosophy, Measures of Science: Theological and Technological Impulses in Early Modern Thought examines the development of certain founding issues of early modern science. Focusing on three key seventeenth-century figures--Descartes, Bacon, and Newton--and locating his argument explicitly within the approach of Alexandre Koyre, James Barry Jr. explores the philosophical, theological, and technological priorities that established the frame for the full emergence of the new science. In showing how the work of (...)
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  9. Measuring the non-existent: validity before measurement.Kino Zhao - 2023 - Philosophy of Science 90 (2):227–244.
    This paper examines the role existence plays in measurement validity. I argue that existing popular theories of measurement and of validity follow a correspondence framework, which starts by assuming that an entity exists in the real world with certain properties that allow it to be measurable. Drawing on literature from the sociology of measurement, I show that the correspondence framework faces several theoretical and practical challenges. I suggested the validity-first framework of measurement, which starts with a (...)
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  10.  26
    Performance Measurement and the Governance of American Academic Science.Irwin Feller - 2009 - Minerva 47 (3):323-344.
    Neoliberal precepts of the governance of academic science-deregulation; reification of markets; emphasis on competitive allocation processes have been conflated with those of performance management—if you cannot measure it, you cannot manage it—into a single analytical and consequent single programmatic worldview. As applied to the United States’ system of research universities, this conflation leads to two major divergences from relationships hypothesized in the governance of science literature. (1) The governance and financial structures supporting academic science in the United (...)
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  11.  39
    Additive conjoint measurement with respect to a pair of orderings.A. A. J. Marley - 1970 - Philosophy of Science 37 (2):215-222.
    Suppose that entities composed of two distinct components can be qualitatively ordered in two ways, such that each ordering relation satisfies the axioms of conjoint measurement. Without further assumptions nothing can be said about the relation between the pair of numerical scales constructed for each component. Axioms are stated that relate the two measurement theories, and that are sufficient to establish that the two conjoint scales on each component are linearly related.
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  12.  8
    Health Measurement, Industry, and Science.Leah McClimans - 2017 - In Dien Ho (ed.), Philosophical Issues in Pharmaceutics: Development, Dispensing, and Use. Dordrecht: Springer.
    Patient-reported outcome measures are now common endpoints in clinical trials. In 2009 in an effort to standardize and streamline their use in medical product labeling, the FDA published FDA Guidance for Industry Patient-Reported Outcomes Measures: Use in Medical Product Development to Support Labeling Claims. This publication drew attention to the need to ensure that PROMs are methodologically sound. Nonetheless, in this paper I discuss how many of these measures continue to fall short in terms of validity, interpretability, and responsiveness. As (...)
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  13. Calibration: Modelling the measurement process.Eran Tal - 2017 - Studies in History and Philosophy of Science Part A 65:33-45.
  14.  27
    Measurement, pleasure, and practical science in Plato's Protagoras.Henry S. Richardson - 1990 - Journal of the History of Philosophy 28 (1):7-32.
    In lieu of an abstract, here is a brief excerpt of the content:Measurement, Pleasure, and Practical Science in Plato's Protagoras HENRY S. RICHARDSON 1. INTRODUCTION TOWARDS THE END OF THE PROTAGORAS Socrates suggests that the "salvation of our life" depends upon applying to pleasures and pains a science of measurement (metr$tik~techn~).Whether Plato intended to portray Socrates as putting forward sincerely the form of hedonism that makes these pleasures and pains relevant has been the subject of a (...)
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  15.  5
    Measurement, Pleasure, and Practical Science in Plato's Protagoras.Henry S. Richardson - 1990 - Journal of the History of Philosophy 28 (1):7-32.
    In lieu of an abstract, here is a brief excerpt of the content:Measurement, Pleasure, and Practical Science in Plato's Protagoras HENRY S. RICHARDSON 1. INTRODUCTION TOWARDS THE END OF THE PROTAGORAS Socrates suggests that the "salvation of our life" depends upon applying to pleasures and pains a science of measurement (metr$tik~techn~).Whether Plato intended to portray Socrates as putting forward sincerely the form of hedonism that makes these pleasures and pains relevant has been the subject of a (...)
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  16. Quantum Selections, Propensities and the Problem of Measurement.Mauricio Suárez - 2004 - British Journal for the Philosophy of Science 55 (2):219-255.
    This paper expands on, and provides a qualified defence of, Arthur Fine's selective interactions solution to the measurement problem. Fine's approach must be understood against the background of the insolubility proof of the quantum measurement. I first defend the proof as an appropriate formal representation of the quantum measurement problem. The nature of selective interactions, and more generally selections, is then clarified, and three arguments in their favour are offered. First, selections provide the only known solution to (...)
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  17.  70
    Quantum measurement and the program for the unity of science.David C. Scharf - 1989 - Philosophy of Science 56 (4):601-623.
    It is quite extraordinary, philosophically speaking, that according to the orthodox interpretation: (a) quantum mechanics is a complete and comprehensive theory of microphysics, and yet (b) the role of measurement, in quantum mechanics, cannot be analyzed in terms of the collective effects of the microphysical particles making up the apparatus. It follows that, if the orthodox interpretation is correct, the measurement apparatus and its quantum physical effects cannot be accounted for microreductively. This is significant because it is widely (...)
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  18.  47
    Measuring the Success of Science.Ilkka Niiniluoto - 1990 - PSA: Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990:435 - 445.
    This paper discusses alternative ways of defining and measuring institutional, pragmatic, empirical, and cognitive success in science. Four realist measures of epistemic credit are compared: posterior probability, confirmation (corroboration), expected verisimilitude, and probable verisimilitude. Laudan's non-realist concept of the empirical problem-solving effectiveness of a theory is found to be similar to Hempel's notion of systematic power. It is argued that such truth-independent concepts alone are insufficient and inadequate to characterize cognitive success. But if they are used as truth-dependent epistemic (...)
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  19.  29
    Measuring the Intentional World: Realism, Naturalism, and Quantitative Methods in the Behavioral Sciences.Harold Kincaid & J. D. Trout - 2000 - Philosophical Review 109 (1):112.
    Scientific realism is usually a thesis or theses advanced about our best natural science. In contrast, this book defends scientific realism applied to the social and behavioral sciences. It does so, however, by applying the same argument strategy that many have found convincing for the natural sciences, namely, by arguing that we can only explain the success of the sciences by postulating their approximate truth. The particular success that Trout emphasizes for the social sciences is the effective use of (...)
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  20.  16
    Measurement, Realism and Objectivity: Essays on Measurement in the Social and Physical Sciences.J. Forge (ed.) - 1987 - Springer Verlag.
    The institutionalization of History and Philosophy of Science as a distinct field of scholarly endeavour began comparatively earl- though not always under that name - in the Australasian region. An initial lecturing appointment was made at the University of Melbourne immediately after the Second World War, in 1946, and other appoint ments followed as the subject underwent an expansion during the 1950s and 1960s similar to that which took place in other parts of the world. Today there are major (...)
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  21.  5
    Measuring Things That Measure You: Complex Epistemological Practices in Science Applied to the Martial Arts.Zachary Agoff, Vadim Keyser & Benjamin Gwerder - 2024 - Philosophies 9 (3):74.
    We argue that an epistemology of martial arts is at least as complex as advanced epistemological positions available to the philosophy of science. Part of the complexity is a product of the epistemic relation between the knower and known, or the scientist and the object of inquiry. In science, we measure things without changing them and, sometimes, complex systems can change as we measure them; but, in the epistemology of sport that we are interested in, each measurer is (...)
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  22.  51
    The making of measurement: Editors’ introduction.Daniel Jon Mitchell, Eran Tal & Hasok Chang - 2017 - Studies in History and Philosophy of Science Part A 65:1-7.
  23.  58
    How uncertainty can save measurement from circularity and holism.Sophie Ritson & Kent Staley - 2021 - Studies in History and Philosophy of Science Part A 85:155-165.
  24. Making Time: A Study in the Epistemology of Measurement.Eran Tal - 2016 - British Journal for the Philosophy of Science 67 (1):297-335.
    This article develops a model-based account of the standardization of physical measurement, taking the contemporary standardization of time as its central case study. To standardize the measurement of a quantity, I argue, is to legislate the mode of application of a quantity concept to a collection of exemplary artefacts. Legislation involves an iterative exchange between top-down adjustments to theoretical and statistical models regulating the application of a concept, and bottom-up adjustments to material artefacts in light of remaining gaps. (...)
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  25.  9
    SEAN F. JOHNSTON, A History of Light and Colour Measurement: Science in the Shadows. Bristol and Philadelphia: Institute of Physics, 2001. Pp. xi+281. ISBN 0-7503-0754-4. £45.00, $75.00. [REVIEW]Richard Kremer - 2006 - British Journal for the History of Science 39 (3):442-444.
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  26.  36
    Locke on measurement.Peter R. Anstey - 2016 - Studies in History and Philosophy of Science Part A 60:70-81.
  27.  88
    Quantum Superpositions and the Representation of Physical Reality Beyond Measurement Outcomes and Mathematical Structures.Christian de Ronde - 2016 - Foundations of Science 23 (4):621-648.
    In this paper we intend to discuss the importance of providing a physical representation of quantum superpositions which goes beyond the mere reference to mathematical structures and measurement outcomes. This proposal goes in the opposite direction to the project present in orthodox contemporary philosophy of physics which attempts to “bridge the gap” between the quantum formalism and common sense “classical reality”—precluding, right from the start, the possibility of interpreting quantum superpositions through non-classical notions. We will argue that in order (...)
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  28.  62
    Heidegger, measurement and the 'intelligibility' of science.Denis McManus - 2007 - European Journal of Philosophy 15 (1):82–105.
  29.  46
    On the Challenges of Measurement in the Human Sciences.Cristian Larroulet Philippi - 2023 - Dissertation, University of Cambridge
    Measurement practices are central to most sciences. In the human sciences, however, it remains controversial whether the measurement of human attributes—depression, happiness, intelligence, etc.—has been successful. Are, say, widely used depression questionnaires valid measuring instruments? Can we trust self-reported happiness scales to deliver quantitative measurements as it is sometimes claimed? These and related questions are till today hotly disputed. There are two main frameworks under which human measurements are studied and criticized. One is the so-called construct validity framework. (...)
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  30. Measuring the intentional world: Realism, naturalism, and quantitative methods in the behavioral sciences.Harold Kincaid - 2000 - Philosophical Review 109 (1):112-115.
    Scientific realism is usually a thesis or theses advanced about our best natural science. In contrast, this book defends scientific realism applied to the social and behavioral sciences. It does so, however, by applying the same argument strategy that many have found convincing for the natural sciences, namely, by arguing that we can only explain the success of the sciences by postulating their approximate truth. The particular success that Trout emphasizes for the social sciences is the effective use of (...)
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  31. Does the Bohm theory solve the measurement problem?Abraham D. Stone - 1994 - Philosophy of Science 61 (2):250-266.
    When classical mechanics is seen as the short-wavelength limit of quantum mechanics (i.e., as the limit of geometrical optics), it becomes clear just how serious and all-pervasive the measurement problem is. This formulation also leads us into the Bohm theory. But this theory has drawbacks: its nonuniqueness, in particular, and its nonlocality. I argue that these both reflect an underlying problem concerning information, which is actually a deeper version of the measurement problem itself.
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  32.  62
    Are all measurement outcomes “classical”?Manuel Bächtold - 2008 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 39 (3):620-633.
  33. Models as Mediators: Perspectives on Natural and Social Science.Mary S. Morgan & Margaret Morrison (eds.) - 1999 - Cambridge University Press.
    Models as Mediators discusses the ways in which models function in modern science, particularly in the fields of physics and economics. Models play a variety of roles in the sciences: they are used in the development, exploration and application of theories and in measurement methods. They also provide instruments for using scientific concepts and principles to intervene in the world. The editors provide a framework which covers the construction and function of scientific models, and explore the ways in (...)
     
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  34.  95
    Non-contextuality, finite precision measurement and the Kochen–Specker theorem.Jonathan Barrett & Adrian Kent - 2004 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 35 (2):151-176.
  35. A phenomenological solution to the measurement problem? Husserl and the foundations of quantum mechanics.Steven French - 2002 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 33 (3):467-491.
    The London and Bauer monograph occupies a central place in the debate concerning the quantum measurement problem. Gavroglu has previously noted the influence of Husserlian phenomenology on London's scientific work. However, he has not explored the full extent of this influence in the monograph itself. I begin this paper by outlining the important role played by the monograph in the debate. In effect, it acted as a kind of 'lens' through which the standard, or Copenhagen, 'solution' to the (...) problem came to be perceived and, as such, it was robustly criticized, most notably by Putnam and Shimony. I then spell out the Husserlian understanding of consciousness in order to illuminate the traces of this understanding within the London and Bauer text. This, in turn, yields a new perspective on this 'solution' to the measurement problem, one that I believe has not been articulated before and, furthermore, which is immune to the criticisms of Putnam and Shimony. (shrink)
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  36.  14
    Measurement, self-tracking and the history of science: An introduction.Fenneke Sysling - 2020 - History of Science 58 (2):103-116.
    This article introduces the papers contained in this special issue and explores a new field of interest in the history of science: that of measurement and self-making. In this special issue, we aim to show that a focus on self-tracking and individualized measurement provides insight into the ways technologies of quantification, when applied to individual bodies and selves, have introduced new notions of autonomy, responsibility, citizenship, and the possibility of self-improvement and life-course decisions. This introduction is an (...)
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  37. How Bohm’s Theory Solves the Measurement Problem.Peter J. Lewis - 2007 - Philosophy of Science 74 (5):749-760.
    I examine recent arguments based on functionalism that claim to show that Bohm's theory fails to solve the measurement problem, or if it does so, it is only because it reduces to a form of the many-worlds theory. While these arguments reveal some interesting features of Bohm's theory, I contend that they do not undermine the distinctive Bohmian solution to the measurement problem. ‡I would like to thank Harvey Brown, Martin Thomson-Jones, and David Wallace for helpful discussions. †To (...)
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  38.  21
    Non-contextuality, finite precision measurement and the Kochen–Specker theorem.Jonathan Barrett & Adrian Kent - 2004 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 35 (2):151-176.
  39.  13
    Heidegger, Measurement and the ‘Intelligibility’ of Science.Denis McManus - 2007 - European Journal of Philosophy 15 (1):82-105.
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  40.  43
    The Consistent Histories formalism and the measurement problem.Elias Okon & Daniel Sudarsky - 2015 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 52 (Part B):217-222.
    In response to a recent rebuttal of Okon and Sudarsky presented in Griffiths, we defend the claim that the Consistent Histories formulation of quantum mechanics does not solve the measurement problem. In order to do so, we argue that satisfactory solutions to the problem must not only not contain anthropomorphic terms at the fundamental level, but also that applications of the formalism to concrete situations should not require any input not contained in the description of the situation at hand (...)
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  41.  38
    Looking for Those Natural Numbers: Dimensionless Constants and the Idea of Natural Measurement.Philip Mirowski - 1992 - Science in Context 5 (1):165-188.
    The ArgumentMany find it “notoriously difficult to see how societal context can affect in any essential way how someone solves a mathematical problem or makes a measurement.” That may be because it has been a habit of western scientists to assert their numerical schemes were untainted by any hint of anthropomorphism. Nevertheless, that Platonist penchant has always encountered obstacles in practice, primarily because the stability of any applied numerical scheme requires some alien or external warrant.This paper surveys the history (...)
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  42.  75
    An empirical reply to empiricism: Protective measurement opens the door for quantum realism.Michael Dickson - 1995 - Philosophy of Science 62 (1):122-140.
    Quantum mechanics has sometimes been taken to be an empiricist (vs. realist) theory. I state the empiricist's argument, then outline a recently noticed type of measurement--protective measurement--that affords a good reply for the realist. This paper is a reply to scientific empiricism (about quantum mechanics), but is neither a refutation of that position, nor an argument in favor of scientific realism. Rather, my aim is to place realism and empiricism on an even score in regards to quantum theory.
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  43.  6
    Measuring the Success of Science.Ilkka Niiniluoto - 1990 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990 (1):434-445.
    While most philosophers of science agree that science is, perhaps in many ways, a highly successful enterprise, there is no consensus about the best way of defining and measuring this success. Philosophers are also divided in their views about two further issues: What does the success of a scientific theory indicate? What is the best way of explaining this success?After some remarks about institutional and pragmatic measures of success, this paper concentrates on rival ways of defining cognitive success. (...)
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  44.  7
    Measuring Instrument for Ethical Sensitivity in the Therapeutic Sciences.Juan Bornman & Alida Naudé - 2017 - Journal of Clinical Ethics 28 (4):290-302.
    There are currently no instruments available to measure ethical sensitivity in the therapeutic sciences. This study therefore aimed to develop and implement a measure of ethical sensitivity that would be applicable to four therapeutic professions, namely audiology, occupational therapy, physiotherapy, and speech-language pathology. The study followed a two-phase, sequential exploratory mixed-methods design. Phase One, the qualitative development phase, employed six stages and focused on developing an instrument based on a systematic review: an analysis of professional ethical codes, focus group discussions, (...)
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  45.  23
    Cohen and Helmholtz on the Foundations of Measurement.Francesca Biagioli - 2018 - In Christian Damböck (ed.), Philosophie Und Wissenschaft Bei Hermann Cohen/Philosophy and Science in Hermann Cohen. Springer Verlag. pp. 77-100.
    It is well known that Hermann Cohen was one of the first philosophers who engaged in the debate about non-Euclidean geometries and the concept of space. His relation to Hermann von Helmholtz, who played a major role in the same debate, is an illuminating example of how some of the leading ideas of Marburg neo-Kantianism, although motivated independently of scientific debates, naturally led to the examination of scientific works and scientists’ epistemological views. This paper deals with Cohen’s view of magnitudes (...)
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  46. Van Fraassen and Ruetsche on preparation and measurement.Bradley Monton - 1999 - Philosophy of Science 66 (3):91.
    Ruetsche (1996) has argued that van Fraassen's (1991) Copenhagen Variant of the Modal Interpretation (CVMI) gives unsatisfactory accounts of measurement and of state preparation. I defend the CVMI against Ruetsche's first argument by using decoherence to show that the CVMI does not need to account for the measurement scenario which Ruetsche poses. I then show, however, that there is a problem concerning preparation, and the problem is more serious than the one Ruetsche focuses on. The CVMI makes no (...)
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  47.  6
    A Note on Measuring Normal Science.K. Brad Wray - 2018 - Scientometrics 117:647-650.
    Petrovich provides an insightful study on analytic philosophy (AP) with the intention of determining whether this sub-field of philosophy has been operating within what Kuhn calls a normal science framework. Through a citation analysis, Petrovich concludes that AP does not exhibit the sort of pattern that we would expect of a field operating in a normal science phase. I take issue with Petrovich’s way of measuring normal science. I provide some insight into how we might better measure (...)
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  48.  17
    Are all measurement outcomes “classical”?Manuel Bächtold - 2008 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 39 (3):620-633.
  49.  10
    Sean F. Johnston. History of Light and Colour Measurements: Science in the Shadows. xi+281 pp., illus., figs., tables, bibl., index. Bristol: Institute of Physics Publishing, 2001. $75. [REVIEW]David A. Goss - 2003 - Isis 94 (4):759-760.
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  50.  19
    No actual measurement … was required: Maxwell and Cavendish's null method for the inverse square law of electrostatics.Isobel Falconer - 2017 - Studies in History and Philosophy of Science Part A 65:74-86.
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