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  1. Hermeneutics, underdetermination and quantum mechanics.James T. Cushing - 1995 - Science & Education 4 (2):137-146.
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  • Book Review: Ian Hacking on Constructionism. [REVIEW]Jeff Coulter - 2001 - Science, Technology, and Human Values 26 (1):82-86.
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  • Presentist History for Pluralist Science.Hasok Chang - 2020 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (1):97-114.
    Building on my previous writings on presentism, pluralism, and “complementary science”, I develop an activist view of historiography. I begin by recognizing the inevitability of presentism. Our own purposes and perspectives do and should guide the production of our accounts of the past; like funerals, history-writing is for the living. There are different kinds of presentist history, depending on the historians’ purposes and perspectives. My particular inclination is pluralist. Science remembers its own history from a particular perspective, which views the (...)
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  • The reggeization program 1962–1982: Attempts at reconciling quantum field theory with S-matrix theory.Tian Yu Cao - 1991 - Archive for History of Exact Sciences 41 (3):239-283.
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  • Plausible coselection of belief by referent: All the “objectivity” that is possible.Donald T. Campbell - 1993 - Perspectives on Science 1 (1):88-108.
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  • String Theory, Non-Empirical Theory Assessment, and the Context of Pursuit.Frank Cabrera - 2021 - Synthese 198:3671–3699.
    In this paper, I offer an analysis of the radical disagreement over the adequacy of string theory. The prominence of string theory despite its notorious lack of empirical support is sometimes explained as a troubling case of science gone awry, driven largely by sociological mechanisms such as groupthink (e.g. Smolin 2006). Others, such as Dawid (2013), explain the controversy by positing a methodological revolution of sorts, according to which string theorists have quietly turned to nonempirical methods of theory assessment given (...)
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  • The Practice of Naturalness: A Historical-Philosophical Perspective.Arianna Borrelli & Elena Castellani - 2019 - Foundations of Physics 49 (9):860-878.
    No evidence of “new physics” was found so far by LHC experiments, and this situation has led some voices in the physics community to call for the abandonment of the “naturalness” criterion, while other scientists have felt the need to break a lance in its defense by claiming that, at least in some sense, it has already led to successes and therefore should not be dismissed too quickly, but rather only reflected or reshaped to fit new needs. In our paper (...)
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  • Constructing Strangeness: Exploratory Modeling and Concept Formation.Arianna Borrelli - 2021 - Perspectives on Science 29 (4):388-408.
    The notion of exploratory modeling constitutes a powerful heuristic tool for historical-epistemological analysis and especially for studying concept formation. I will show this by means of a case study from the history of particle physics: the formation of the concept of “strangeness” in the early 1950s at the interface of theory and experiment. Strangeness emerged from a broad space of possibilities opened up by exploratory modeling by authors working in communication and competition, and constructing both new questions and new answers. (...)
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  • Monist and Pluralist Approaches on Underdetermination: A Case Study in Evolutionary Microbiology.Thomas Bonnin - 2020 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (1):135-155.
    Philosophers have usually highlighted how the weakness and paucity of historical evidence underdetermine the choice between rival historical explanations. Focusing underdetermination on the link between theory and evidence comes, I argue, with three assumptions: competing hypotheses are easy to generate, investigators agree on the constitution and interpretation of the evidence and a plurality of hypotheses is a useful evil to reach consensus. The last assumption implies that the sustained coexistence of incompatible hypotheses is considered as a scientific failure. I argue (...)
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  • Racionalidade, consistência, reticulação e coerência: o caso da renormalização na teoria quântica do campo.Valter Alnis Bezerra - 2003 - Scientiae Studia 1 (2):151-181.
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  • What’s in It for the Historian of Science? Reflections on the Value of Philosophy of Science for History of Science.Theodore Arabatzis - 2017 - International Studies in the Philosophy of Science 31 (1):69-82.
    In this article, I explore the value of philosophy of science for history of science. I start by introducing a distinction between two ways of integrating history and philosophy of science: historical philosophy of science and philosophical history of science. I then offer a critical discussion of Imre Lakatos’s project to bring philosophy of science to bear on historical interpretation. I point out certain flaws in Lakatos’s project, which I consider indicative of what went wrong with PHS in the past. (...)
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  • Robustness, Reliability, and Overdetermination (1981).William C. Wimsatt - 2012 - In Lena Soler (ed.), Characterizing the robustness of science: after the practice turn in philosophy of science. New York: Springer Verlag. pp. 61-78.
    The use of multiple means of determination to “triangulate” on the existence and character of a common phenomenon, object, or result has had a long tradition in science but has seldom been a matter of primary focus. As with many traditions, it is traceable to Aristotle, who valued having multiple explanations of a phenomenon, and it may also be involved in his distinction between special objects of sense and common sensibles. It is implicit though not emphasized in the distinction between (...)
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  • How research programs come apart: The example of supersymmetry and the disunity of physics.Lucas Gautheron & Elisa Omodei - 2023 - Quantitative Science Studies 4 (3):671–699.
    According to Peter Galison, the coordination of different “subcultures” within a scientific field happens through local exchanges within “trading zones.” In his view, the workability of such trading zones is not guaranteed, and science is not necessarily driven towards further integration. In this paper, we develop and apply quantitative methods (using semantic, authorship, and citation data from scientific literature), inspired by Galison’s framework, to the case of the disunity of high-energy physics. We give prominence to supersymmetry, a concept that has (...)
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  • Scientific revolutions.Thomas Nickles - 2010 - Stanford Encyclopedia of Philosophy.
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  • False Vacuum: Early Universe Cosmology and the Development of Inflation.Chris Smeenk - 2005 - In Eisenstaedt Jean & Knox A. J. (eds.), The Universe of General Relativity. Birkhauser. pp. 223-257.
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  • Realism and Antirealism.Randall Harp & Kareem Khalifa - 2016 - In Lee C. McIntyre & Alexander Rosenberg (eds.), The Routledge Companion to Philosophy of Social Science. New York: Routledge. pp. 254-269.
    Our best social scientific theories try to tell us something about the social world. But is talk of a “social world” a metaphor that we ought not take too seriously? In particular, do the denizens of the social world—cultural values like the Protestant work ethic, firms like ExxonMobil, norms like standards of dress and behavior, institutions like the legal system, teams like FC Barcelona, conventions like marriages—exist? The question is not merely academic. Social scientists use these different social entities to (...)
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  • Herbert Simon’s Computational Models of Scientific Discovery.Stephen Downes - 1990 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990 (1):97-108.
    Herbert Simon’s work on scientific discovery deserves serious attention by philosophers of science for several reasons. First, Simon was an early advocate of rational scientific discovery, contra Popper and logical empiricist philosophers of science (Simon 1966). This proposal spurred on investigation of scientific discovery in philosophy of science, as philosophers used and developed Simon’s notions of “problem solving” and “heuristics” in attempts to provide rational accounts of scientific discovery (See Nickles 1980a, Wimsatt 1980). Second, Simon promoted and developed many of (...)
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  • Concepts of Agency: Introduction to the Thematic Section.Lenny Moss - 2024 - Biological Theory 19 (1):3-5.
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  • The Other Merton Thesis.Harriet Zuckerman - 1989 - Science in Context 3 (1):239-267.
    The ArgumentWritten as one book, Science, Technology and Society in Seventeenth-Century England has become two. One book, treating Puritanism and science, has since become “The Merton Thesis.” The other, treating shifts of interest among the sciences and problem choice within the sciences, has been less consequential. This paper proposes that neglect of one part of the monograph has skewed readers' understanding of the whole. Society and culture contributed to institutionalization of science and the directions it took, neither one exclusively. Four (...)
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  • The Unbearable Lightness of Representing ‘Reality’ in Science Education: A response to Schulz.Michalinos Zembylas - 2008 - Educational Philosophy and Theory 40 (4):494-514.
    This article responds to Schulz's criticisms of an earlier paper published in Educational Philosophy and Theory. The purpose in this paper is to clarify and extend some of my earlier arguments, to indicate what is unfortunate (i.e. what is lost) from a non‐charitable, modernist reading of Lyotardian postmodernism (despite its weaknesses), and to suggest what new directions are emerging in science education from efforts to move beyond an either/or dichotomy of foundationalism and relativism.
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  • Scientific Modeling Versus Engineering Modeling: Similarities and Dissimilarities.Aboutorab Yaghmaie - 2021 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (3):455-474.
    This article aims to answer what I call the “constitution question of engineering modeling”: in virtue of what does an engineering model model its target system? To do so, I will offer a category-theoretic, structuralist account of design, using the olog framework. Drawing on this account, I will conclude that engineering and scientific models are not only cognitively but also representationally indistinguishable. I will finally propose an axiological criterion for distinguishing scientific from engineering modeling.
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  • Is scientific research driven by opportunity, problems, or observations?Tong Wu - 2008 - Frontiers of Philosophy in China 3 (3):424-437.
    With the recent rise of the philosophy of scientific practices, SSK (Sociology of Scientific Knowledge), and feminist approaches to the philosophy of science, a new perspective is gradually coming into being, holding that the starting point for scientific research is opportunity. Opportunistic features in solar neutrino experiments, Opportunistic features of complexity studies emerging from economics, and the measurement of insects’ flight can prove the above perspective from different angels. It is important and significant to determine whether the starting point for (...)
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  • Kuhn's constructionism.K. Brad Wray - 2010 - Perspectives on Science 18 (3):311-327.
    I challenge Hacking's characterization of Kuhn's constructionism. I argue that Kuhn does not believe that nature has no joints. Rather, Kuhn believes there is no unique correct way to cut nature into kinds. I also argue that Kuhn is not an externalist. He believes that disputes in science are resolved on the basis of a consideration of the epistemic merits of the theories. Subjective factors merely ensure that competing theories are developed, and the strengths and weaknesses of the theories are (...)
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  • Mediating Machines.M. Norton Wise - 1988 - Science in Context 2 (1):77-113.
    The ArgumentThe societal context within which science is pursued generally acts as a productive force in the generation of knowledge. To analyze this action it is helpful to consider particular modes of mediation through which societal concerns are projected into the very local and esoteric concerns of a particular domain of research. One such mode of mediation occurs through material systems. Here I treat two such systems – the steam engine and the electric telegraph – in the natural philosophy of (...)
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  • Theoretical unity: The case of the standard model.Andrew Wayne - 1996 - Perspectives on Science 4 (4):391-407.
    What does it mean to say that a scientific theory is unified? Prominent attempts by John Watkins, Philip Kitcher, and Margaret Morrison to answer this question face serious difficulties, and many analysts of science remain pessimistic about the possibility of ever rendering precise or explaining what theoretical unity consists in. This paper gives grounds for optimism, offering a novel account of the concept of unification. This account is tested against a detailed study of the standard model in contemporary high-energy physics, (...)
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  • Is Scientific Research Driven by Opportunity, Problems, or Observations?Wu Tong & Tian Xiaofei - 2008 - Frontiers of Philosophy in China 3 (3):424 - 437.
    With the recent rise of the philosophy of scientific practices, SSK (Sociology of Scientific Knowledge), and feminist approaches to the philosophy of science, a new perspective is gradually coming into being, holding that the starting point for scientific research is opportunity. Opportunistic features in solar neutrino experiments, Opportunistic features of complexity studies emerging from economics, and the measurement of insects' flight can prove the above perspective from different angels. It is important and significant to determine whether the starting point for (...)
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  • Concept Formation and Scientific Objectivity: Weyl’s Turn against Husserl.Iulian D. Toader - 2013 - Hopos: The Journal of the International Society for the History of Philosophy of Science 3 (2):281-305.
    This paper argues that Weyl's view that scientific objectivity requires that concepts be freely created, i.e., introduced via Hilbert-style axiomatizations, led him to abandon the phenomenological view of objectivity.
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  • Higgs Models and Other Stories about Mass Generation.Michael Stöltzner - 2014 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 45 (2):369-386.
    The paper studies the topography of the model landscape of the physics in the Higgs sector both within the Standard Model of Elementary Particle Physics and beyond in the months before the discovery of a SM Higgs boson. At first glance, this landscape appears fragmented into a large number of different models and research communities. But it also clusters around certain guiding ideas, among them supersymmetry or dynamical symmetry breaking, in which representative and narrative features of the models are combined. (...)
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  • Antirepresentationalism Before and After Rorty.Barbara Herrnstein Smith - 2022 - Common Knowledge 28 (3):424-442.
    Richard Rorty's rejection of prevailing interior-mirror understandings of the presumed relationship between “minds” and “nature,” along with his promotion of nonrepresentational accounts of knowledge, truth, and science, participates in a rich tradition of jointly pragmatist and constructivist views that spans the twentieth century. This contribution to the symposium “Whatever Happened to Richard Rorty?” considers Rorty's complex and ambivalent relation to that tradition, particularly to the work of his American pragmatist predecessors, William James and John Dewey, and to subsequent pragmatist-constructivist antirepresentationalism (...)
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  • Were experiments ever neglected? Ian Hacking and the history of philosophy of experiment.Massimiliano Simons & Matteo Vagelli - 2021 - Philosophical Inquiries 9 (1):167-188.
    Ian Hacking’s Representing and Intervening is often credited as being one of the first works to focus on the role of experimentation in philosophy of science, catalyzing a movement which is sometimes called the “philosophy of experiment” or “new experimentalism”. In the 1980s, a number of other movements and scholars also began focusing on the role of experimentation and instruments in science. Philosophical study of experimentation has thus seemed to be an invention of the 1980s whose central figure is Hacking. (...)
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  • Advertisement for the ontology for medicine.Jeremy R. Simon - 2010 - Theoretical Medicine and Bioethics 31 (5):333-346.
    The ontology of medicine—the question of whether disease entities are real or not—is an underdeveloped area of philosophical inquiry. This essay explains the primary question at issue in medical ontology, discusses why answering this question is important from both a philosophical and a practical perspective, and argues that the problem of medical ontology is unique, i.e., distinct, from the ontological problems raised by other sciences and therefore requires its own analysis.
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  • Relativism, Incoherence, and the Strong Programme.Harvey Siegel - 2011 - In Richard Schantz & Markus Seidel (eds.), The Problem of Relativism in the Sociology of (Scientific) Knowledge. ontos. pp. 41-64.
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  • The Renaissance of Francis Bacon: On Bacon’s Account of Recent Nano-Technoscience.Jan Cornelius Schmidt - 2011 - NanoEthics 5 (1):29-41.
    The program of intervening, manipulating, constructing and creating is central to natural and engineering sciences. A renewed wave of interest in this program has emerged within the recent practices and discourse of nano-technoscience. However, it is striking that, framed from the perspective of well-established epistemologies, the constructed technoscientific objects and engineered things remain invisible. Their ontological and epistemological status is unclear. The purpose of the present paper is to support present-day approaches to techno-objects ( ontology ) insofar as they make (...)
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  • The Kuhnian mode of HPS.Samuel Schindler - 2013 - Synthese 190 (18):4137-4154.
    In this article I argue that a methodological challenge to an integrated history and philosophy of science approach put forth by Ronald Giere almost forty years ago can be met by what I call the Kuhnian mode of History and Philosophy of Science (HPS). Although in the Kuhnian mode of HPS norms about science are motivated by historical facts about scientific practice, the justifiers of the constructed norms are not historical facts. The Kuhnian mode of HPS therefore evades the naturalistic (...)
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  • Astronomers Mark Time: Discipline and the Personal Equation.Simon Schaffer - 1988 - Science in Context 2 (1):115-145.
    The ArgumentIt is often assumed that all sciences travel the path of increasing precision and quantification. It is also assumed that such processes transcend the boundaries of rival scientific disciplines. The history of the personal equation has been cited as an example: the “personal equation” was the name given by astronomers after Bessel to the differences in measured transit times recorded by observers in the same situation. Later in the nineteenth century Wilhelm Wundt used this phenomenon as a type for (...)
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  • A Matter of Kuhnian Theory-Choice? The GWS Model and the Neutral Current.Samuel Schindler - 2014 - Perspectives on Science 22 (4):491-522.
    In a widely received paper on theory choice, Kuhn made three central claims. First, as a matter of empirical fact, different theories tend to score differently with regard to what Kuhn considered to be the standard set of theoretical virtues, i.e., empirical accuracy, internal and external consistency, scope, simplicity, and fertility. Whereas some theories will for instance be more empirically accurate than others, other theories will have greater external coherence with our background theories. Second, hardly ever does a theory’s being (...)
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  • Empirical equivalence and underdetermination.Husain Sarkar - 2000 - International Studies in the Philosophy of Science 14 (2):187 – 197.
    Jarrett Leplin in A Novel Defense of Scientific Realism (1997) argues that if the thesis of empirical equivalence is cogent, then the thesis of underdetermination cannot even get off the ground. Part of Leplin's argument rests on the claim that auxiliary hypotheses can be independently confirmed, thus enabling us to determine the epistemic worth of a theory. This, in turn, helps in determining about what we should be realists. Leplin's claims are demonstrated to be problematic. Leplin wants, inconsistently, to use (...)
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  • A bayesian analysis of strategies in evolutionary biology.David Wyss Rudge - 1998 - Perspectives on Science 6 (4):341-360.
    : Most work done in philosophy of experiment has focused on experiments taken from the domain of physics. The present essay tests whether Allan Franklin's (1984, 1986, 1989, 1990) philosophy of experiment developed in the context of high energy physics can be extended to include examples from evolutionary biology, such as H. B. D. Kettlewell's (1955, 1956, 1958) famous studies of industrial melanism in the peppered moth, Biston betularia. The analysis demonstrates that many of the techniques used by evolutionary biologists (...)
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  • Physics Needs Philosophy. Philosophy Needs Physics.Carlo Rovelli - 2018 - Foundations of Physics 48 (5):481-491.
    Contrary to claims about the irrelevance of philosophy for science, I argue that philosophy has had, and still has, far more influence on physics than is commonly assumed. I maintain that the current anti-philosophical ideology has had damaging effects on the fertility of science. I also suggest that recent important empirical results, such as the detection of the Higgs particle and gravitational waves, and the failure to detect supersymmetry where many expected to find it, question the validity of certain philosophical (...)
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  • Expert Text Analysis in the Inclusion of History and Philosophy of Science in Higher Education.Vitaly Pronskikh & Galina V. Sorina - 2022 - Science & Education 31 (4):961-975.
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  • We Have Never Been “New Experimentalists”: On the Rise and Fall of the Turn to Experimentation in the 1980s.Jan Potters & Massimiliano Simons - 2023 - Hopos: The Journal of the International Society for the History of Philosophy of Science 13 (1):91-119.
    The 1980s, it is often claimed, was the decade when experimentation finally became a philosophical topic. This was the responsibility, the claim continues, of one particular movement within philosophy of science, called “new experimentalism.” The aim of this article is to complicate this historical narrative. We argue that in the 1980s, the study of experimentation was carried out not by one movement with one particular aim but rather in a diverse and open-ended way by people with different aims and backgrounds. (...)
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  • Time and a theory of the visible. [REVIEW]Andy Pickering - 1997 - Human Studies 20 (3):325-333.
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  • Reason Enough? More on Parity-Violation Experiments and Electroweak Gauge Theory.Andy Pickering - 1990 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990 (2):459-469.
    In recent years a unified strategy in dealing with constructivism has been emerging in the writings of historians and philosophers of science. In my own experience, the strategy is exemplified in the long critiques of all or parts of my book, Constructing Quarks (CQ), set out by Paul Roth, Peter Galison and Allan Franklin. These critiques have two common features. First, the substance of constructivist claims is more or less ignored, in favour a fictional version that simply asserts the opposite (...)
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  • Forms of Life: Science, Contingency and Harry Collins.Andy Pickering - 1987 - British Journal for the History of Science 20 (2):213-221.
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  • Decentering sociology: Synthetic dyes and social theory.Andrew Pickering - 2005 - Perspectives on Science 13 (3):352-405.
    : This essay addresses the difficulties that sociology as a discipline continues to experience in grasping the relations between technology, science and the social. I argue that these difficulties stem from a resolute centering of sociology on the social, which follows a generically Durkheimian blueprint. I elaborate a response to these difficulties which derives from recent lines of work in science and technology studies, and which entails a decentering of the social relative to the material and the conceptual, in terms (...)
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  • Philosophical skepticism not relativism is the problem with the Strong Programme in Science Studies and with Educational Constructivism.Dimitris P. Papayannakos - 2008 - Science & Education 17 (6):573-611.
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  • Scientific Discovery as a Topic for Philosophy of Science: Some Personal Reflections.Tom Nickles - 2020 - Topoi 39 (4):841-845.
    This is a brief, personal retrospective on developments in the treatment of scientific discovery by philosophers, since about 1970.
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  • Deflationary Methodology and Rationality of Science.Thomas Nickles - 1996 - Philosophica 58 (2).
    The last forty years have produced a dramatic reversal in leading accounts of science. Once thought necessary to (explain) scientific progress, a rigid method of science is now widely considered impossible. Study of products yields to study of processes and practices, .unity gives way to diversity, generality to particularity, logic to luck, and final justification to heuristic scaffolding. I sketch the story, from Bacon and Descartes to the present, of the decline and fall of traditional scientific method, conceived as The (...)
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  • The Factory as Laboratory.Peter Miller & Ted O'Leary - 1994 - Science in Context 7 (3):469-496.
    The ArgumentThis paper argues that science and technology studies need to adopt a much wider view of what counts as a laboratory. The factory, it is suggested, is as much a site of invention and intervention as the laboratory. As a site for the government of economic life, the factory is a laboratorypar excellence. One particular factory is studied — the Decatur, Illinois, plant of Caterpillar Inc. — as it is rethought and remade in accordance with ideals of cellular manufacturing, (...)
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  • Multiplex and Unfolding: Computer Simulation in Particle Physics.Martina Merz - 1999 - Science in Context 12 (2):293-316.
    The ArgumentWhat kind of objects are computer programs used for simulation purposes in scientific settings? The current investigation treats a special case. It focuses on “event generators,” the program packages that particle physicists construct and use to simulate mechanisms of particle production. The paper is an attempt to bring the multiplex and unfolding character of such knowledge objects to the fore: Multiple meanings and functions are embodied in the object and can be drawn out selectively according to the requirements of (...)
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