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  1. Justifying Sociological Knowledge: From Realism to Interpretation.Isaac Reed - 2008 - Sociological Theory 26 (2):101-129.
    In the context of calls for "postpositivist" sociology, realism has emerged as a powerful and compelling epistemology for social science. In transferring and transforming scientific realism --a philosophy of natural science--into a justificatory discourse for social science, realism splits into two parts: a strict, highly naturalistic realism and a reflexive, more mediated, and critical realism. Both forms of realism, however, suffer from conceptual ambiguities, omissions, and elisions that make them an inappropriate epistemology for social science. Examination of these problems in (...)
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  • Why and How Bioethics Must Turn toward Justice: A Modest Proposal.Jenny Reardon - 2020 - Hastings Center Report 50 (S1):70-76.
    In this essay, I argue that to create a genomics that offers more gifts than weights, central attention must be paid to questions of justice. This will require expanding bioethical imaginations so that they grasp and can respond to questions of structural inequity. It will necessitate building novel coalitions and collaborations that turn the attention of bioethical governance away from narrow individual questions such as, “Do I consent?” and toward the broader collective question, is this just? What kind of lives (...)
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  • Explanatory coherence in understanding persons, interactions, and relationships.Stephen J. Read & Lynn C. Miller - 1989 - Behavioral and Brain Sciences 12 (3):485-486.
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  • Making a machine instrumental: RCA and the wartime origins of biological electron microscopy in America, 1940–1945.Nicolas Rasmussen - 1996 - Studies in History and Philosophy of Science Part A 27 (3):311-349.
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  • Construction by reduction.Jeffry L. Ramsey - 1995 - Philosophy of Science 62 (1):1-20.
    Scientists employ a variety of procedures to eliminate degrees of freedom from computationally and/or analytically intractable equations. In the process, they often construct new models and discover new concepts, laws and functional relations. I argue these procedures embody a central notion of reduction, namely, the containment of one structure within another. However, their inclusion in the philosophical concept of reduction necessitates a reevaluation of many standard assumptions about the ontological, epistemological and functional features of a reduction. On the basis of (...)
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  • Heuristics and the generalized correspondence principle.Hans Radder - 1991 - British Journal for the Philosophy of Science 42 (2):195-226.
    Several philosophers of science have claimed that the correspondence principle can be generalized from quantum physics to all of (particularly physical) science and that in fact it constitutes one of the major heuristical rules for the construction of new theories. In order to evaluate these claims, first the use of the correspondence principle in (the genesis of) quantum mechanics will be examined in detail. It is concluded from this and from other examples in the history of science that the principle (...)
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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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  • 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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  • Non-passivity of perceptual experience.Isabelle Peschard - 2010 - Contemporary Pragmatism 7 (1):149-164.
    The main problems faced by a conception of perception as passive will be introduced through a critical examination of John McDowell's account of 'empirical thinking'. Overcoming these difficulties will lead to a conception of perception as involving an active cognitive participation of the perceiver, and an account of how observational judgment is warranted that is focused on the conditions of experience. In both cases, analogies to inquiry in scientific experimental practice will be explored.
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  • Mandelstam's interpretation of quantum mechanics in comparative perspective.A. A. Pechenkin - 2002 - International Studies in the Philosophy of Science 16 (3):265 – 284.
    In his 1939 Lectures, the prominent Soviet physicist L. I. Mandelstam proposed an interpretation of quantum mechanics that was understood in different ways. To assess Mandelstam's interpretation, we classify contemporary interpretations of quantum mechanics and compare his interpretation with others developed in the 1930s. We conclude that Mandelstam's interpretation belongs to the family of minimal statistical interpretations and has much in common with interpretations developed by American physicists. Mandelstam's characteristic message was his theory of indirect measurement, which influenced his discussion (...)
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  • Probability and normativity.David Papineau - 1989 - Behavioral and Brain Sciences 12 (3):484-485.
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  • Coherence and abduction.Paul O'Rorke - 1989 - Behavioral and Brain Sciences 12 (3):484-484.
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  • The devil is in the (historical) details: Continental drift as a case of normatively appropriate consensus?Naomi Oreskes - 2008 - Perspectives on Science 16 (3):pp. 253-264.
    In Social Empiricism, Miriam Solomon proposes a via media between traditional philosophical realism and social construction of scientific knowledge, but ignores a large body of historical literature that has attempted to plough just that path. She also proposes a standard for normatively appropriate consensus that, arguably, no theory in the history of science has ever achieved, including her own ideal type—plate tectonics. And while valorizing dissent, she fails to consider how dissent has been used in recent decades as a political (...)
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  • Revisiting Accounts of Narrative Explanation in the Sciences: Some Clarifications from Contemporary Argumentation Theory.Paula Olmos - 2020 - Argumentation 34 (4):449-465.
    The topic of the presence, legitimacy and epistemic worth of narrative explanations in different kinds of scientific discourse has already enjoyed several revivals within related discussions in contemporary philosophy of science. In fact, we have recently witnessed a more extensive, more unprejudiced and ambitious attention to narrative modes of making science. I think we need a systematic theoretical framework in order to categorize these different functions of narratives and understand their role in scientific explanatory and justificatory practice. My claim is (...)
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  • Maxwellian Electrodynamics Genesis and Development: Intertheoretic Context.Rinat Magdievich Nugayev - 2016 - Spontaneous Generations 8 (1):55-92.
    Key words: rationality, communication, maxwellian revolution, Ampere-Weber research programme, synthesis, Kantian epistemology.. Why did Maxwell’s programme supersede the Ampere-Weber one? – To answer the question one has to consider the intertheoretic context of maxwellian electrodynamics genesis and development. It is demonstrated that maxwellian electrodynamics was created as a result of the old pre-maxwellian programmes reconciliation: the electrodynamics of Ampere-Weber, the wave theory of Young-Fresnel and Faraday’s programme. The programmes’ meeting led to construction of the hybrid theory at first with an (...)
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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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  • Scientific Speculation and Literary Style in a Molecular Genetics Article.Greg Myers - 1991 - Science in Context 4 (2):321-346.
    The ArgumentStylistic analysis of an admittedly speculative scientific article can suggest what is involved in the social act of speculation. Walter Gilbert's influential paper “Why Genes in Pieces?” serves as an example of the conflicting demands of the need to display politeness and the need to display the urgency and excitement of the issues. Socially significant stylistic features emerge in comparison with another paper Gilbert co-authored, where the speculations occur in the discussion section of an experimental report, and in comparison (...)
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  • Theory, intervention and realism.Margaret Morrison - 1990 - Synthese 82 (1):1 - 22.
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  • 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 of (...)
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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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  • Neutral currents and the history of scientific ideas.Arthur I. Miller & Frederick W. Bullock - 1994 - Studies in History and Philosophy of Science Part A 25 (6):895-931.
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  • Valuing environmental costs and benefits in an uncertain future: risk aversion and discounting.Fabien Medvecky - 2012 - Erasmus Journal for Philosophy and Economics 5 (1):1-1.
    A central point of debate over environmental policies concerns how future costs and benefits should be assessed. The most commonly used method for assessing the value of future costs and benefits is economic discounting. One often-cited justification for discounting is uncertainty. More specifically, it is risk aversion coupled with the expectation that future prospects are more risky. In this paper I argue that there are at least two reasons for disputing the use of risk aversion as a justification for discounting (...)
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  • Optimization and connectionism are two different things.Drew McDermott - 1989 - Behavioral and Brain Sciences 12 (3):483-484.
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  • Acceptability, analogy, and the acceptability of analogies.Robert N. McCauley - 1989 - Behavioral and Brain Sciences 12 (3):482-483.
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  • Why Experimental Balance Is Still a Reason to Randomize.Marco Martinez & David Teira - forthcoming - British Journal for the Philosophy of Science.
    Experimental balance is usually understood as the control for the value of the conditions, other than the one under study, which are liable to affect the result of a test. We discuss three different approaches to balance. ‘Millean balance’ requires identifying and equalizing ex ante the value of these conditions in order to conduct solid causal inferences. ‘Fisherian balance’ measures ex post the influence of uncontrolled conditions through the analysis of variance. In ‘efficiency balance’ the value of the antecedent conditions (...)
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  • Mathematical engineering and mathematical change.Jean-Pierre Marquis - 1999 - International Studies in the Philosophy of Science 13 (3):245 – 259.
    In this paper, I introduce and examine the notion of “mathematical engineering” and its impact on mathematical change. Mathematical engineering is an important part of contemporary mathematics and it roughly consists of the “construction” and development of various machines, probes and instruments used in numerous mathematical fields. As an example of such constructions, I briefly present the basic steps and properties of homology theory. I then try to show that this aspect of contemporary mathematics has important consequences on our conception (...)
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  • Horizon for Scientific Practice: Scientific Discovery and Progress.James A. Marcum - 2010 - International Studies in the Philosophy of Science 24 (2):187-215.
    In this article, I introduce the notion of horizon for scientific practice (HSP), representing limits or boundaries within which scientists ply their trade, to facilitate analysis of scientific discovery and progress. The notion includes not only constraints that delimit scientific practice, e.g. of bringing experimentation to a temporary conclusion, but also possibilities that open up scientific practice to additional scientific discovery and to further scientific progress. Importantly, it represents scientific practice as a dynamic and developmental integration of activities to investigate (...)
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  • New science for old.Bruce Mangan & Stephen Palmer - 1989 - Behavioral and Brain Sciences 12 (3):480-482.
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  • Science in the age of mechanical reproduction: Moral and epistemic relations between diagrams and photographs. [REVIEW]Michael Lynch - 1991 - Biology and Philosophy 6 (2):205-226.
    Sociologists, philosophers and historians of science are gradually recognizing the importance of visual representation. This is part of a more general movement away from a theory-centric view of science and towards an interest in practical aspects of observation and experimentation. Rather than treating science as a matter of demonstrating the logical connection between theoretical and empirical statements, an increasing number of investigations are examining how scientists compose and use diagrams, graphs, photographs, micrographs, maps, charts, and related visual displays. This paper (...)
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  • Laboratory Space and the Technological Complex: An Investigation of Topical Contextures.Michael Lynch - 1991 - Science in Context 4 (1):51-78.
    The ArgumentThere can be no doubt about the moral and epistemological significance of what Shapin calls the “physical place” of the scientific laboratory. The physical place is defined by the locales, barriers, ports of entry, and lines of sight that bound the laboratory and separate it from other urban and architectural environments. Shapin's discussion of the emergence of the scientific laboratory in seventeenth-century England provides a convincing demonstration that credible knowledge is situated at an intersection between physical locales and social (...)
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  • Allan Franklin’s Transcendental Physics.Michael Lynch - 1990 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990 (2):471-485.
    Does Allan Franklin’s study of atomic parity-violation experiments provide convincing evidence against social constructivism? According to Franklin (1990a, p. 2), “when questions of theory choice, confirmation, or refutation are raised they are answered on the basis of valid experimental evidence… [and] there are good reasons for belief in the validity of that evidence.” Franklin asserts that social constructivists take the opposite position: “They would say that it is not the experimental results, but rather the social and/or cognitive interests of the (...)
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  • Explanationism, ECHO, and the connectionist paradigm.William G. Lycan - 1989 - Behavioral and Brain Sciences 12 (3):480-480.
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  • La filosofía de la ciencia y el lenguaje: relaciones cambiantes, alcances y límites.Pablo Lorenzano - 2011 - Arbor 187 (747):69-80.
    This paper consists of three sections. In the first one, some of the main developments in the philosophy of science through the xx century up to the present will be pointed out, and inserted them in the frame of some more general philosophical transformations, such as the so-called “linguistic turn” and “pragmatic turn”, respectively. In the second one, the established connection will be nuanced, from a revision of the work of a “classical” author such as Carnap. Finally, it will be (...)
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  • Scientific Practices as Social Knowledge.Juho Lindholm - 2023 - International Studies in the Philosophy of Science 35 (3):223-242.
    Practice-based philosophy of science has gradually arisen in the sociology of scientific knowledge (SSK) and science and technology studies (STS) during the past decades. It studies science as an ensemble of practices and theorising as one of these practices. A recent study has shown how the practice-based approach can be methodologically justified with reference to Peirce and Dewey. In this article, I will explore one consequence of that notion: science, as practice, is necessarily social. I will disambiguate five different senses (...)
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  • Scientific Practices as Social Knowledge.Juho Lindholm - 2022 - International Studies in the Philosophy of Science 35 (3):223-242.
    Practice-based philosophy of science has gradually arisen in the sociology of scientific knowledge (SSK) and science and technology studies (STS) during the past decades. It studies science as an ensemble of practices and theorising as one of these practices. A recent study has shown how the practice-based approach can be methodologically justified with reference to Peirce and Dewey. In this article, I will explore one consequence of that notion: science, as practice, is necessarily social. I will disambiguate five different senses (...)
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  • Why experiments matter.Arnon Levy & Adrian Currie - 2019 - Inquiry: An Interdisciplinary Journal of Philosophy 62 (9-10):1066-1090.
    ABSTRACTExperimentation is traditionally considered a privileged means of confirmation. However, why and how experiments form a better confirmatory source relative to other strategies is unclear, and recent discussions have identified experiments with various modeling strategies on the one hand, and with ‘natural’ experiments on the other hand. We argue that experiments aiming to test theories are best understood as controlled investigations of specimens. ‘Control’ involves repeated, fine-grained causal manipulation of focal properties. This capacity generates rich knowledge of the object investigated. (...)
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  • Explanatory coherence in neural networks?Daniel S. Levine - 1989 - Behavioral and Brain Sciences 12 (3):479-479.
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  • Apparatus and Experimentation Revisited.Trevor H. Levere - 2010 - Spontaneous Generations 4 (1):148-154.
    Those with knowledge about scientific instruments come from many different fields. Prominent among them are (1) collectors and dealers, (2) curators, (3) historians, (4) instrument makers, (5) philosophers, and (6) scientists (the order is alphabetical, not value-laden). The annual symposium of the Scientific Instrument Commission often brings members of each of these groups together, and they learn from one another. What follows are brief reflections on the activities of each group when its members consider instruments.
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  • Can mechanisms really replace laws of nature?Bert Leuridan - 2010 - Philosophy of Science 77 (3):317-340.
    Today, mechanisms and mechanistic explanation are very popular in philosophy of science and are deemed a welcome alternative to laws of nature and deductive‐nomological explanation. Starting from Mitchell's pragmatic notion of laws, I cast doubt on their status as a genuine alternative. I argue that (1) all complex‐systems mechanisms ontologically must rely on stable regularities, while (2) the reverse need not hold. Analogously, (3) models of mechanisms must incorporate pragmatic laws, while (4) such laws themselves need not always refer to (...)
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  • Practice, Reason, Context: The Dialogue Between Theory and Experiment.Timothy Lenoir - 1988 - Science in Context 2 (1):3-22.
    Experiment, instrumentation, and procedures of measurement, the body of practices and technologies forming the technical culture of science, have received at most a cameo appearance in most histories. For the history of science is almost always written as the history of theory. Of course, the interpretation of science as dominated by theory was the main pillar of the critique, launched by Kuhn, Quine, Hanson, Feyerabend, and others, of the positivist and logical empiricist traditions in the philosophy of science. Against Carnap, (...)
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  • Science as technology.Srdjan Lelas - 1993 - British Journal for the Philosophy of Science 44 (3):423-442.
    It is usually believed that science goes with things like theoria, ‘knowing that’, ontology and representing, and that techne, know-how, technology and intervening are only instrumental to science or its beneficial but nonetheless accidental side effect. In this context to be instrumental means also to be eliminable, or at least transparent, something that leaves no trace. Following the historical development of experimentation, from simple observation to modern microscopic experiments. I try to show how that view loses its ground. To produce (...)
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  • Moral particularism and scientific practice.Brendan Larvor - 2008 - Metaphilosophy 39 (4-5):492-507.
    Abstract: Particularism is usually understood as a position in moral philosophy. In fact, it is a view about all reasons, not only moral reasons. Here, I show that particularism is a familiar and controversial position in the philosophy of science and mathematics. I then argue for particularism with respect to scientific and mathematical reasoning. This has a bearing on moral particularism, because if particularism about moral reasons is true, then particularism must be true with respect to reasons of any sort, (...)
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  • How to think about informal proofs.Brendan Larvor - 2012 - Synthese 187 (2):715-730.
    It is argued in this study that (i) progress in the philosophy of mathematical practice requires a general positive account of informal proof; (ii) the best candidate is to think of informal proofs as arguments that depend on their matter as well as their logical form; (iii) articulating the dependency of informal inferences on their content requires a redefinition of logic as the general study of inferential actions; (iv) it is a decisive advantage of this conception of logic that it (...)
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  • The electrical universe: Grand cosmological theory versus mundane experiments.Helge Kragh - 1997 - Perspectives on Science 5 (2):199-231.
    This article examines in detail a remarkable but short-lived cosmological theory of 1959. The theory depended crucially on a hypothesis that could be, and was, tested in the laboratory. I use the case to discuss the nature of testing in cosmology and to argue against ideas about astronomy suggested by Ian Hacking. The case of the electrical universe exemplifies how disagreements can be settled by good experiments and also how experiments of wide-ranging theoretical significance need not be biased by either (...)
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  • Technology in scientific practice: how H. J. Muller used the fruit fly to investigate the X-ray machine.Svit Komel - 2023 - History and Philosophy of the Life Sciences 45 (2):1-34.
    Since the practice turn, the role technologies play in the production of scientific knowledge has become a prominent topic in science studies. Much existing scholarship, however, either limits technology to merely mechanical instrumentation or uses the term for a wide variety of items. This article argues that technologies in scientific practice can be understood as a result of past scientific knowledge becoming sedimented in materials, like model organisms, synthetic reagents or mechanical instruments, through the routine use of these materials in (...)
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  • The experimenters' regress: from skepticism to argumentation.Benoı̂t Godin & Yves Gingras - 2002 - Studies in History and Philosophy of Science Part A 33 (1):133-148.
    Harry Collins' central argument about experimental practice revolves around the thesis that facts can only be generated by good instruments but good instruments can only be recognized as such if they produce facts. This is what Collins calls the experimenters' regress. For Collins, scientific controversies cannot be closed by the ‘facts’ themselves because there are no formal criteria independent of the outcome of the experiment that scientists can apply to decide whether an experimental apparatus works properly or not.No one seems (...)
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  • Does ECHO explain explanation? A psychological perspective.Joshua Klayman & Robin M. Hogarth - 1989 - Behavioral and Brain Sciences 12 (3):478-479.
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  • Philosophy without borders, naturally: an interview with Harold Kincaid.Harold Kincaid - 2017 - Erasmus Journal for Philosophy and Economics 10 (1):83-100.
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  • Explanations and candidate explanations in physics.Martin King - 2020 - European Journal for Philosophy of Science 10 (1):1-17.
    There has been a growing trend to include non-causal models in accounts of scientific explanation. A worry addressed in this paper is that without a higher threshold for explanation there are no tools for distinguishing between models that provide genuine explanations and those that provide merely potential explanations. To remedy this, a condition is introduced that extends a veridicality requirement to models that are empirically underdetermined, highly-idealised, or otherwise non-causal. This condition is applied to models of electroweak symmetry breaking beyond (...)
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