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  1. Psychology, or sociology of science?N. E. Wetherick - 1989 - Behavioral and Brain Sciences 12 (3):489-489.
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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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  • Optimization and connectionism are two different things.Drew McDermott - 1989 - Behavioral and Brain Sciences 12 (3):483-484.
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  • Explanatory coherence (plus commentary).Paul Thagard - 1989 - Behavioral and Brain Sciences 12 (3):435-467.
    This target article presents a new computational theory of explanatory coherence that applies to the acceptance and rejection of scientific hypotheses as well as to reasoning in everyday life, The theory consists of seven principles that establish relations of local coherence between a hypothesis and other propositions. A hypothesis coheres with propositions that it explains, or that explain it, or that participate with it in explaining other propositions, or that offer analogous explanations. Propositions are incoherent with each other if they (...)
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  • Laboratory models, causal explanation and group selection.James R. Griesemer & Michael J. Wade - 1988 - Biology and Philosophy 3 (1):67-96.
    We develop an account of laboratory models, which have been central to the group selection controversy. We compare arguments for group selection in nature with Darwin's arguments for natural selection to argue that laboratory models provide important grounds for causal claims about selection. Biologists get information about causes and cause-effect relationships in the laboratory because of the special role their own causal agency plays there. They can also get information about patterns of effects and antecedent conditions in nature. But to (...)
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  • Has the philosophy of technology arrived? A state‐of‐the‐art review.Don Ihde - 2004 - Philosophy of Science 71 (1):117-131.
    Using the occasion of the publication of a Blackwell anthology in the philosophy of technology, Philosophy of Technology: The Technological Condition (2003), as a key to the contemporary role of this subdiscipline, this article reviews the current state-of-this-art. Both philosophy of science and philosophy of technology are twentieth century inventions, but each has followed a somewhat different set of philosophical traditions and pursued sometimes divergent questions. Here the primary developments of recent philosophy of technology are examined with emphasis upon issues (...)
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  • Socializing naturalized philosophy of science.Stephen M. Downes - 1993 - Philosophy of Science 60 (3):452-468.
    I propose an approach to naturalized philosophy of science that takes the social nature of scientific practice seriously. I criticize several prominent naturalistic approaches for adopting "cognitive individualism", which limits the study of science to an examination of the internal psychological mechanisms of scientists. I argue that this limits the explanatory capacity of these approaches. I then propose a three-level model of the social nature of scientific practice, and use the model to defend the claim that scientific knowledge is socially (...)
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  • Objectivity in experimental inquiry: Breaking data-technique circles.Sylvia Culp - 1995 - Philosophy of Science 62 (3):438-458.
    I respond to H. M. Collins's claim (1985, 1990, 1993) that experimental inquiry cannot be objective because the only criterium experimentalists have for determining whether a technique is "working" is the production of "correct" (i.e., the expected) data. Collins claims that the "experimenters' regress," the name he gives to this data-technique circle, cannot be broken using the resources of experiment alone. I argue that the data-technique circle, can be broken even though any interpretation of the raw data produced by techniques (...)
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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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  • Pharmacological Interventions and the Neurobiological Basis of Mental Disorders.Jonathan Y. Tsou - 2017 - In Opris Ioan & F. Casanova Manuel (eds.), The Physics of the Mind and Brain Disorders: Integrated Neural Circuits Supporting the Emergence of Mind. Springer. pp. 613-628.
    In psychiatry, pharmacological research has played a crucial role in the formulation, revision, and refinement of neurobiological theories of psychopathology. Besides being utilized as potential treatments for various mental disorders, pharmacological drugs play an important epistemic role as experimental instruments that help scientists uncover the neurobiological underpinnings of mental disorders (Tsou, 2012). Interventions with psychiatric patients using pharmacological drugs provide researchers with information about the neurobiological causes of mental disorders that cannot be obtained in other ways. This important source of (...)
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  • Credentialing scientific claims.Frederick Suppe - 1993 - Perspectives on Science 1 (2):153-203.
    This article seeks rapprochement between the sociology of knowledge and philosophy of science by attempting to capture the best social constructionist insights within a strongly realistic philosophy of science. Key to doing so are separating the grounds for the individual scientist coming to know that P from those grounds for socially credentialing the claim that P within the relevant scientific subcommunity and showing how truth considerations can enter into the analysis of knowledge without interfering with social constructionist treatments of credentialing (...)
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  • Explanation and acceptability.Peter Achinstein - 1989 - Behavioral and Brain Sciences 12 (3):467-468.
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  • When weak explanations prevail.Carl Bereiter & Marlene Scardamalia - 1989 - Behavioral and Brain Sciences 12 (3):468-469.
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  • Error as means to discovery.Kevin Elliott - 2004 - Philosophy of Science 71 (2):174-197.
    This paper argues, first, that recent studies of experimentation, most notably by Deborah Mayo, provide the conceptual resources to describe scientific discovery's early stages as error-probing processes. Second, it shows that this description yields greater understanding of those early stages, including the challenges that they pose, the research strategies associated with them, and their influence on the rest of the discovery process. Throughout, the paper examines the phenomenon of "chemical hormesis" (i.e., anomalous low-dose effects from toxic chemicals) as a case (...)
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  • Coherence and abduction.Paul O'Rorke - 1989 - Behavioral and Brain Sciences 12 (3):484-484.
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  • Review essays : Why epistemology just might be(come) sociology.Steve Fuller - 1990 - Philosophy of the Social Sciences 20 (1):99-109.
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  • (1 other version)Phenomenotechnique in historical perspective: Its origins and implications for philosophy of science.Teresa Castelão-Lawless - 1995 - Philosophy of Science 62 (1):44-59.
    This article provides an overview of the historical and philosophical context from which originated G. Bachelard's concept of "phenomenotechnique". It analyzes why phenomenotechnique is crucial for science studies. By incorporating the concept of phenomenotechnique into Hacking's and Galison's models of science, I argue that we can avoid the radicalism of both while also preventing the analysis of scientific practices from collapsing into the interpretive frames mandated by social constructivists.
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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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  • Extending explanatory coherence.Paul Thagard - 1989 - Behavioral and Brain Sciences 12 (3):490-502.
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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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  • Theory autonomy and future promise.Matti Sintonen - 1989 - Behavioral and Brain Sciences 12 (3):488-488.
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  • (1 other version)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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  • Perspectival Instruments.Ana-Maria Creţu - 2022 - Philosophy of Science 89 (3):521-541.
    Despite its potential implications for the objectivity of scientific knowledge, the claim that “scientific instruments are perspectival” has received little critical attention. I show that this claim is best understood as highlighting the dependence of instruments on different perspectives. When closely analyzed, instead of constituting a novel epistemic challenge, this dependence can be exploited to mount novel strategies for resolving two old epistemic problems: conceptual relativism and theory-ladeness. The novel content of this article consists in articulating and developing these strategies (...)
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  • The economics of science.Arthur M. Diamond - 1996 - Knowledge, Technology & Policy 9 (2):6-49.
    Increasing the “truth per dollar” of money spent on science is one legitimate long-run goal of the economics of science. But before this goal can be achieved, we need to increase our knowledge of the successes and failures of past and current reward structures of science. This essay reviews what economists have learned about the behavior of scientists and the reward structure of science. One important use of such knowledge will be to help policy-makers create a reward structure that is (...)
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  • Coherence: Beyond constraint satisfaction.Gareth Gabrys & Alan Lesgold - 1989 - Behavioral and Brain Sciences 12 (3):475-475.
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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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  • 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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  • What does explanatory coherence explain?Ronald N. Giere - 1989 - Behavioral and Brain Sciences 12 (3):475-476.
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  • Theory in psychology: A review essay of Andre Kukla's methods of theoretical psychology. [REVIEW]Huib Looren de Jong, Sacha Bem & Maurice Schouten - 2004 - Philosophical Psychology 17 (2):275 – 295.
    This review essay critically discusses Andre Kukla's Methods of theoretical psychology. It is argued that Kukla mistakenly tries to build his case for theorizing in psychology as a separate discipline on a dubious distinction between theory and observation. He then argues that the demise of empiricism implies a return of some form of rationalism, which entails an autonomous role for theorizing in psychology. Having shown how this theory-observation dichotomy goes back to traditional and largely abandoned ideas in epistemology, an alternative (...)
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  • (1 other version)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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  • Quantum mechanics and the social sciences: After hermeneutics.Patrick A. Heelan - 1995 - Science & Education 4 (2):127-136.
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  • On the testability of ECHO.D. C. Earle - 1989 - Behavioral and Brain Sciences 12 (3):474-474.
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  • What's in a link?Jerome A. Feldman - 1989 - Behavioral and Brain Sciences 12 (3):474-475.
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  • Texting ECHO on historical data.Jan M. Zytkow - 1989 - Behavioral and Brain Sciences 12 (3):489-490.
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  • The importance of asking the right questions.Dennis M. Patterson - 1991 - Social Epistemology 5 (1):75 – 77.
    (1991). The importance of asking the right questions. Social Epistemology: Vol. 5, Social epistemology of the law, pp. 75-77. doi: 10.1080/02691729108578600.
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  • A Twentieth-Century Phlogiston: Constructing Error and Differentiating Domains.Douglas Allchin - 1997 - Perspectives on Science 5 (1):81-127.
    In the 1950s–60s biochemists searched intensively for a series of high-energy molecules in the cell. Although we now believe that these molecules do not exist, biochemists claimed to have isolated or identified them on at least sixteen occasions. The episode parallels the familiar eighteenth-century case of phlogiston, in illustrating how error is not simply the loss of facts but, instead, must be actively constructed. In addition, the debates surrounding each case demonstrate how revolutionary-scale disagreement is sometimes resolved by differentiating or (...)
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  • Higher-Level Perspectives and Ethics of Technoscience: Scheme Dynamics for an Action-, Technology-Shaped and Responsibility-Oriented Philosophy of Science.Hans Lenk - 2018 - Axiomathes 28 (6):619-637.
    New accents in the philosophy of technology and philosophy of science amounting, e.g., to the so-called schools of the “New Experimentalism”, “New Instrumentalism” and, recently, “New Mechanism” emphasize the impact of instruments, experiments, and “mechanisms” of the respective technologies opened up by the progress of ever-improving measuring instruments, procedures etc. In addition, it would be necessary to accentuate the process- and action-orientation including practical responsibility problems and dynamic systems models from an epistemological perspective of the methodological scheme-interpretationist approach developed by (...)
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  • Thagard's Principle 7 and Simpson's paradox.Robyn M. Dawes - 1989 - Behavioral and Brain Sciences 12 (3):472-473.
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  • Inference to the best explanation is basic.John R. Josephson - 1989 - Behavioral and Brain Sciences 12 (3):477-478.
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  • The correspondence principle and the closure of theories.Friedel Weinert - 1994 - Erkenntnis 40 (3):303 - 323.
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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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  • (1 other version)Theory of the Apparatus and Theory of the Phenomena: The Case of Low Dose Electron Microscopy.Zeno G. Swijtink - 1990 - PSA Proceedings of the Biennial Meeting of the Philosophy of Science Association 1990 (1):573-584.
    Electron microscopy, and in particular low dose electron microscopy, offers interesting cases of experimental techniques where the theory of the phenomena studied and the theory of the apparatus used, are intertwined. A single primary exposure usually does not give an interpretable image, and computerized image enhancement techniques are used to create from multiple exposures a single, visually meaningful image. Some of the enhancement programs start from informed guesses at the structure of the specimen and use the primary exposures in a (...)
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  • ECHO and STAHL: On the theory of combustion.Herbert A. Simon - 1989 - Behavioral and Brain Sciences 12 (3):487-487.
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  • The epistemology of a spectrometer.Daniel Rothbart & Suzanne W. Slayden - 1994 - Philosophy of Science 61 (1):25-38.
    Contrary to the assumptions of empiricist philosophies of science, the theory-laden character of data will not imply the inherent failure (subjectivity, circularity, or rationalization) of instruments to expose nature's secrets. The success of instruments is credited to scientists' capacity to create artificial technological analogs to familiar physical systems. The design of absorption spectrometers illustrates the point: Progress in designing many modern instruments is generated by analogically projecting theoretical insights from known physical systems to unknown terrain. An experimental realism is defended.
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  • Measuring the plausibility of explanatory hypotheses.James A. Reggia - 1989 - Behavioral and Brain Sciences 12 (3):486-487.
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  • Probability and normativity.David Papineau - 1989 - Behavioral and Brain Sciences 12 (3):484-485.
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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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  • Interpretive praxis and theory‐networks.Sangwon Lee - 2006 - Pacific Philosophical Quarterly 87 (2):213-230.
    I develop the idea of what I call an interpretive praxis as a generalized procedure for analyzing how experimenters can formulate observable predictions, discern real effects from experimental artifacts, and compare predictions with data. An interpretive praxis requires theories – theories not only about instruments and the interpretation of phenomena, but also theories that connect the use of instruments and interpretation of phenomena to high‐level theory. I will call all such theories that enable experimentation to work intermediate theories. I offer (...)
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  • Are explanatory coherence and a connectionist model necessary?Jerry R. Hobbs - 1989 - Behavioral and Brain Sciences 12 (3):476-477.
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  • Experimental questions.Allan Franklin - 1993 - Perspectives on Science 1 (1):127-46.
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