Results for 'scientific practices'

972 found
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  1.  58
    How Scientific Practices Matter: Reclaiming Philosophical Naturalism.Joseph Rouse - 2002 - University of Chicago Press.
    How can we understand the world as a whole instead of separate natural and human realms? Joseph T. Rouse proposes an approach to this classic problem based on radical new conceptions of both philosophical naturalism and scientific practice.
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  2.  54
    Scientific practice as ecological-enactive co-construction.Guilherme Sanches de Oliveira, Thomas van Es & Inês Hipólito - 2023 - Synthese 202 (1):1-33.
    Philosophy of science has undergone a naturalistic turn, moving away from traditional idealized concerns with the logical structure of scientific theories and toward focusing on real-world scientific practice, especially in domains such as modeling and experimentation. As part of this shift, recent work has explored how the project of philosophically understanding science as a natural phenomenon can be enriched by drawing from different fields and disciplines, including niche construction theory in evolutionary biology, on the one hand, and ecological (...)
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  3. Scientific Practice and the Epistemology of Governing Laws.Tyler Hildebrand - 2019 - Journal of the American Philosophical Association 5 (2):174-188.
    This article is concerned with the relationship between scientific practice and the metaphysics of laws of nature and natural properties. I begin by examining an argument by Michael Townsen Hicks and Jonathan Schaffer that an important feature of scientific practice—namely, that scientists sometimes invoke non-fundamental properties in fundamental laws—is incompatible with metaphysical theories according to which laws govern. I respond to their argument by developing an epistemology for governing laws that is grounded in scientific practice. This epistemology (...)
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  4.  27
    Good Scientific Practice: Developing a Curriculum for Medical Students in Germany.Katharina Fuerholzer, Maximilian Schochow & Florian Steger - 2020 - Science and Engineering Ethics 26 (1):127-139.
    German medical schools have not yet sufficiently introduced students to the field of good scientific practice. In order to prevent scientific misconduct and to foster scientific integrity, courses on GSP must be an integral part of the curriculum of medical students. Based on a review of the literature, teaching units and materials for two courses on GSP were developed and tested in a pilot course. The pilot course was accompanied by a pre-post evaluation that assessed students’ knowledge (...)
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  5. Scientific practice, conceptual change, and the nature of concepts.Ingo Brigandt - 2006
    The theory of concepts advanced in the present discussion aims at accounting for a) how a concept makes successful practice possible, and b) how a scientific concept can be subject to rational change in the course of history. To this end, I suggest that each scientific concept consists of three components of content: 1) the concept.
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  6.  20
    Modeling scientific practice: Paul Thagard's computational approach.Stephen M. Downes - 1993 - New Ideas in Psychology 11 (2):229-243.
    In this paper I examine Paul Thagard's computational approach to studying science, which is a contribution to the cognitive science of science. I present several criticisms of Thagard's approach and use them to motivate some suggestions for alternative approaches in cognitive science of science. I first argue that Thagard does not clearly establish the units of analysis of his study. Second, I argue that Thagard mistakenly applies the same model to both individual and group decision making. Finally, I argue that (...)
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  7. Collaboration in scientific practice—-A social epistemology of research groups.Susann Wagenknecht - 2014 - Dissertation, Aarhus University
    This monograph investigates the collaborative creation of scientific knowledge in research groups. To do so, I combine philosophical analysis with a first-hand comparative case study of two research groups in experimental science. Qualitative data are gained through observation and interviews, and I combine empirical insights with existing approaches to knowledge creation in philosophy of science and social epistemology. -/- On the basis of my empirically-grounded analysis I make several conceptual contributions. I study scientific collaboration as the interaction of (...)
     
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  8. Scientific Practice and Ordinary Action: Ethnomethodology and Social Studies of Science.Michael Lynch - 1993 - New York: Cambridge University Press.
    Philosophers, historians, and sociologists of science have grown interested in the daily practices of scientists. Recent studies have drawn linkages between scientific innovations and more ordinary procedures, craft skills, and sources of sponsorship. These studies dispute the idea that science is the application of a unified method or the outgrowth of a progressive history of ideas. This book critically reviews arguments and empirical studies in two areas of sociology that have played a significant role in the 'sociological turn' (...)
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  9. Returning to scientific practice: a new reflection on philosophy of science.Zhu Xu - 2019 - New York, NY: Routledge. Edited by Tong Wu.
    Introduction : towards philosophy of scientific practice -- The origin of the concept of practice -- Scientific practice: significance, types and scopes -- The nature of scientific practice -- The nature of knowledge : the local knowledge -- Knowledge and power -- The contextual normativity of scientific practice -- Philosophy of scientific practice and naturalism (I) -- Philosophy of scientific practices and naturalism (II) -- Philosophy of scientific practice and relativism -- Partner (...)
     
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  10. Scientific Practice and Necessary Connections.Andreas Hüttemann - 2013 - Theoria 79 (1):29-39.
    In this paper I will introduce a problem for at least those Humeans who believe that the future is open. More particularly, I will argue that the following aspect of scientific practice cannot be explained by openfuture- Humeanism: There is a distinction between states that we cannot bring about (which are represented in scientific models as nomologically impossible) and states that we merely happen not to bring about. Open-future-Humeanism has no convincing account of this distinction. Therefore it fails (...)
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  11.  35
    Scientific Practice in Modeling Diseases: Stances from Cancer Research and Neuropsychiatry.Marta Bertolaso & Raffaella Campaner - 2020 - Journal of Medicine and Philosophy 45 (1):105-128.
    In the last few decades, philosophy of science has increasingly focused on multilevel models and causal mechanistic explanations to account for complex biological phenomena. On the one hand, biological and biomedical works make extensive use of mechanistic concepts; on the other hand, philosophers have analyzed an increasing range of examples taken from different domains in the life sciences to test—support or criticize—the adequacy of mechanistic accounts. The article highlights some challenges in the elaboration of mechanistic explanations with a focus on (...)
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  12. Representation in Scientific Practice Revisited.[author unknown] - 2014
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  13. Natural Laws in Scientific Practice.John W. Carroll - 2005 - Philosophy and Phenomenological Research 71 (1):240-245.
  14.  8
    Metaphysics of Scientific Practice.Marie I. Kaiser & Javier Suárez - unknown
    The method of metaphysics of scientific practice consists in developing metaphysical claims on the basis of empirical information from and about scientific practice. This method stands in the tradition of naturalistic or scientific metaphysics on the one hand, and philosophy of science in practice on the other. In this chapter we draw on some of our own research to specify the method at work. We argue that the method is typically carried out in four steps: identifying the (...)
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  15.  70
    Arguments from scientific practice in the debate about the physical equivalence of symmetry-related models.Joanna Luc - 2022 - Synthese 200 (2):1-29.
    In the recent philosophical literature, several counterexamples to the interpretative principle that symmetry-related models are physically equivalent have been suggested The Oxford handbook of philosophy of physics, Oxford University Press, Oxford, 2013, Noûs 52:946–981, 2018; Fletcher in Found Phys 50:228–249, 2020). Arguments based on these counterexamples can be understood as arguments from scientific practice of roughly the following form: because in scientific practice such-and-such symmetry-related models are treated as representing distinct physical situations, these models indeed represent distinct physical (...)
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  16.  38
    Scientific Practice in the Contexts of Peripheral Science: C. V. Raman and His Construction of a Mechanical Violin-Player.Deepanwita Dasgupta - 2016 - Perspectives on Science 24 (4):381-395.
    “We can avoid, above all, the mistake of thinking that unless one is big one is negligible.”This paper tries to think about the contexts of scientific practices in peripheral spaces, spaces that exist outside the domain of the resource-rich and well-established scientific communities. I ask the question whether contributions from such modest circumstances can give rise to any creative expertise that is capable of producing novel outcomes in science, and whether exploring such contexts might give us reasons (...)
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  17.  14
    Articulating Scientific Practice with PROTEE: STS, Loyalties, and the Limits of Reflexivity.Ruth McNally & Helena Valve - 2013 - Science, Technology, and Human Values 38 (4):470-491.
    Scientific knowledge is the outcome of a collective, for example, of experts, methods, equipment, and experimental sites. The configuration of the collective shapes the scientific findings, allowing some interactions to become visible and meaningful at the expense of others. PROTEE is a methodology that aims to increase the reflexivity of research and innovation projects by helping to sensitize practitioners to the demarcations their projects enact and to think through how these may affect the relevance of the outcomes. We (...)
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  18. Natural laws in scientific practice.Marc Lange - 2000 - New York: Oxford University Press.
    It is often presumed that the laws of nature have special significance for scientific reasoning. But the laws' distinctive roles have proven notoriously difficult to identify--leading some philosophers to question if they hold such roles at all. This study offers original accounts of the roles that natural laws play in connection with counterfactual conditionals, inductive projections, and scientific explanations, and of what the laws must be in order for them to be capable of playing these roles. Particular attention (...)
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  19.  75
    Metaphysical presuppositions and scientific practices: Reductionism and organicism in cancer research.James A. Marcum - 2005 - International Studies in the Philosophy of Science 19 (1):31 – 45.
    Metaphysical presuppositions are important for guiding scientific practices and research. The success of twentieth-century biology, for instance, is largely attributable to presupposing that complex biological processes are reducible to elementary components. However, some biologists have challenged the sufficiency of reductionism for investigating complex biological phenomena and have proposed alternative presuppositions like organicism. In this article, contemporary cancer research is used as a case study to explore the importance of metaphysical presuppositions for guiding research. The predominant paradigm directing cancer (...)
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  20.  73
    A Minimal Metaphysics for Scientific Practice.Andreas Hüttemann - 2021 - Cambridge: Cambridge University Press.
    What are the metaphysical commitments which best 'make sense' of our scientific practice? In this book, Andreas Hüttemann provides a minimal metaphysics for scientific practice, i.e. a metaphysics that refrains from postulating any structure that is explanatorily irrelevant. Hüttemann closely analyses paradigmatic aspects of scientific practice, such as prediction, explanation and manipulation, to consider the questions whether and what metaphysical presuppositions best account for these practices. He looks at the role which scientific generalisation play in (...)
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  21.  31
    (1 other version)Techno-Scientific Practices: An Informational Approach.Federica Russo - 2000 - Lanham: Rowman & Littlefield Publishers.
    Techno-Scientific Practices analyzes and helps readers to understand the role of instruments and technologies in the practice of science, and their partnership with human agents in producing knowledge about the world.
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  22.  80
    Speech Acts, Attitudes, and Scientific Practice: Can Searle Handle "Assuming for the Sake of Hypothesis?".Daniel J. McKaughan - 2012 - Pragmatics and Cognition 20 (1):88-106.
    There are certain illocutionary acts that, contrary to John Searle's speech act theory, cannot be correctly classified as assertives. Searle's sincerity and essential conditions on assertives require, plausibly, that we believe our assertions and that we are committed to their truth. Yet it is a commonly accepted scientific practice to propose and investigate an hypothesis without believing it or being at all committed to its truth. Searle's attempt to accommodate such conjectural acts by claiming that the degree of belief (...)
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  23. Theoretical Virtues in Scientific Practice: An Empirical Study.Moti Mizrahi - 2022 - British Journal for the Philosophy of Science 73 (4):879-902.
    It is a common view among philosophers of science that theoretical virtues (also known as epistemic or cognitive values), such as simplicity and consistency, play an important role in scientific practice. In this article, I set out to study the role that theoretical virtues play in scientific practice empirically. I apply the methods of data science, such as text mining and corpus analysis, to study large corpora of scientific texts in order to uncover patterns of usage. These (...)
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  24.  45
    Scientific Practice and Epistemic Modes of Existence.Jeff Kochan - 2015 - In Dimitri Ginev (ed.), Debating Cognitive Existentialism: Values and Orientations in Hermeneutic Philosophy of Science. Boston: Brill | Rodopi. pp. 95-106.
    Proponents of practice-based accounts of science often reject theory-based accounts, and seek to explain scientific theory reductively in terms of practice. I consider two examples: Dimitri Ginev and Joseph Rouse. Both draw inspiration from Martin Heidegger’s existential conception of science. And both allege that Heidegger ultimately betrayed his insight that theory can be reduced to practice when he sought to explain modern science in terms of a theory-based “mathematical projection of nature.” I argue that Heidegger believed neither that theory (...)
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  25.  28
    Error and Uncertainty in Scientific Practice.Marcel Boumans, Giora Hon & Arthur C. Petersen (eds.) - 2014 - Pickering & Chatto.
    Assessment of error and uncertainty is a vital component of both natural and social science. This edited volume presents case studies of research practices across a wide spectrum of scientific fields. It compares methodologies and presents the ingredients needed for an overarching framework applicable to all.
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  26. Scientific practices and their social context.Daniel Hicks - 2012 - Dissertation, U. Of Notre Dame
    My dissertation combines philosophy of science and political philosophy. Drawing directly on the work of Alasdair MacIntyre and inspired by John Dewey, I develop two rival conceptions of scientific practice. I show that these rivals are closely linked to the two basic sides in the science and values debate -- the debate over the extent to which ethical and political values may legitimately influence scientific inquiry. Finally, I start to develop an account of justice that is sensitive to (...)
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  27. International Scientific Practical Conference «Modern Transformation of Economics and Management in the Era of Globalization».S. Sardak (ed.) - 2016
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  28. Scientific realism, scientific practice, and the natural ontological attitude.André Kukla - 1994 - British Journal for the Philosophy of Science 45 (4):955-975.
    Both sides in the debate about scientific realism have argued that their view provides a better account of actual scientific practice. For example, it has been claimed that the practice of theory conjunction presupposes realism, and that scientists' use of multiple and incompatible models presupposes some form of instrumentalism. Assuming that the practices of science are rational, these conclusions cannot both be right. I argue that neither of them is right, and that, in fact, all scientific (...)
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  29.  63
    Assertion, Nonepistemic Values, and Scientific Practice.Paul L. Franco - 2017 - Philosophy of Science 84 (1):160-180.
    This article motivates a shift in certain strands of the debate over legitimate roles for nonepistemic values in scientific practice from investigating what is involved in taking cognitive attitudes like acceptance toward an empirical hypothesis to looking at a social understanding of assertion, the act of communicating that hypothesis. I argue that speech act theory’s account of assertion as a type of doing makes salient legitimate roles nonepistemic values can play in scientific practice. The article also shows how (...)
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  30. The Philosophical Grammar of Scientific Practice.Hasok Chang - 2011 - International Studies in the Philosophy of Science 25 (3):205-221.
    I seek to provide a systematic and comprehensive framework for the description and analysis of scientific practice—a philosophical grammar of scientific practice, ‘grammar’ as meant by the later Wittgenstein. I begin with the recognition that all scientific work, including pure theorizing, consists of actions, of the physical, mental, and ‘paper-and-pencil’ varieties. When we set out to see what it is that one actually does in scientific work, the following set of questions naturally emerge: who is doing (...)
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  31. Scientific Realism 'and Scientific Practice'.R. Torretti - 2000 - Boston Studies in the Philosophy of Science 215:113-122.
  32. Circles of Scientific Practice: Regressus, Mathēsis, Denkstil.Jeff Kochan - 2015 - In Dimitri Ginev (ed.), Critical Science Studies after Ludwik Fleck. St. Kliment Ohridski University Press. pp. 83-99.
    Hermeneutic studies of science locate a circle at the heart of scientific practice: scientists only gain knowledge of what they, in some sense, already know. This may seem to threaten the rational validity of science, but one can argue that this circle is a virtuous rather than a vicious one. A virtuous circle is one in which research conclusions are already present in the premises, but only in an indeterminate and underdeveloped way. In order to defend the validity of (...)
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  33.  71
    An Epistemology of Scientific Practice.C. Kenneth Waters - 2019 - Philosophy of Science 86 (4):585-611.
    Philosophers’ traditional emphasis on theories, theoretical modeling, and explanation misguides research in philosophy of science. Articulating and applying core theories is part of scientific practice, but it is not the essence of scientific practice. Insofar as science has an essence, it is to systematically investigate and learn about what is not yet understood. This lecture analyzes genetics to articulate a broad-practice-centered approach to philosophy of science. It concludes by arguing that this approach can lead to richer, deeper, and (...)
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  34.  29
    Scientific Practice and Ordinary Action: Ethnomethodology and Social Studies of Science. Michael Lynch.Klaus Amann - 1996 - Isis 87 (4):766-767.
  35. Biological Individuality and Scientific Practice.Karen Kovaka - 2015 - Philosophy of Science 82 (5):1092-1103.
    I consider the relationship between scientific practice and the philosophical debate surrounding biological individuality. I argue for the sensitivity account, on which biologists do not require a resolution to the individuality debate. This view puts me in disagreement with much of the literature on biological individuality, where it has become common to claim that there is a relationship of dependence between biologists’ conceptions of individuality and the quality of their empirical work.
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  36.  44
    The philosophy of scientific practice in naturalist thought: Its approaches and problems.Tian Xiaofei - 2009 - Frontiers of Philosophy in China 4 (4):589-603.
    It is the continuity between epistemology and empirical science that the naturalism in contemporary philosophy of science emphasizes. After its individual and social dimensions, the philosophy of scientific practice takes a stand on naturalism in order to observe complex scientific activities through practice. However, regarding the naturalism’s problem of normativity, the philosophy of scientific practice today has deconstructed more than it has constructed.
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  37.  32
    Individuation, Process, and Scientific Practices.Melinda Fagan, Otávio Bueno & Ruey-Lin Chen (eds.) - 2018 - New York, USA: Oxford University Press.
    What things count as individuals, and how do we individuate them? It is a classic philosophical question often tackled from the perspective of analytic metaphysics. This volume proposes that there is another channel by which to approach individuation -- from that of scientific practices. From this perspective, the question then becomes: How do scientists individuate things and, therefore, count them as individuals? This volume collects the work of philosophers of science to engage with this central philosophical conundrum from (...)
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  38. Idealization in Scientific Practice.Rom Harre - 1990 - Poznan Studies in the Philosophy of the Sciences and the Humanities 16:183-191.
  39.  58
    The Relevance of Scientific Practice to The Problem of Coordination.Andrew Peterson - 2011 - Spontaneous Generations 5 (1):44-57.
    In his early work on the problem of coordination, Hans Reichenbach introduced axioms of coordination to describe the relationship between theory and observation. His insistence that these axioms are determinable a priori, however, causes him to ignore the normative dimensions of scientific inquiry and, in turn, generates a misleading interpretation of the theory-observation relationship. In response, I propose an alternative approach that describes this relationship through the framework of scientific practices. My argument will draw on two examples (...)
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  40. Scientific Practice and the Disunity of Physics.Andreas Hüttemann - 1998 - Philosophia Naturalis 35 (1):209-222.
    It is my aim in this paper to look at some of the arguments that are brought forward for or against certain claims to unity/disunity (in particular to examine those arguments from science and from scientific practice) in order to evaluate whether they really show what they claim to. This presupposes that the concept or rather the concepts of the unity of physics are reasonably clear. Three concepts of unity can be identified: (1) ontological unity, which refers to the (...)
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  41. Philosophical Theory, Scientific Practice, And Public Policy.Thomas Nenon & S. Stevens Jr - 1999 - Jahrbuch für Recht Und Ethik 7.
    In diesem Aufsatz wird der jeweils mögliche Beitrag verschiedener Experten, insbesondere von Fachphilosophen und Naturwissenschaftlern, zu einer allgemeinen Diskussion derjenigen ethischen und rechtlichen Fragen erörtert, die sich in Verbindung mit dem Genomprojekt stellen. Wir kommen zu dem Ergebnis, daß man die tatsächlich schon betriebene Forschung keinesfalls wird aufhalten können, sondern allenfalls bestimmte für bedenklich gehaltene Anwendungen der neuen Techniken verzögern oder verhindern kann. Wir stellen verschiedene Probleme vor, die die Wirksamkeit der philosophischen Reflexion in solchen Fragen zweifelhaft erscheinen läßt, die (...)
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  42. THE HEURISTIC STRUCTURE OF SCIENTIFIC PRACTICES.Sergio F. Martinez - 2006 - Chinese Studies in the Philosophy of Science 53 (2):1-23.
     
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  43. Joseph Rouse, How Scientific Practices Matter: Reclaiming Philosophical Naturalism Reviewed by.Dan McArthur - 2003 - Philosophy in Review 23 (4):279-281.
     
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  44.  41
    How Scientific Practices Matter. [REVIEW]Vincent W. Franco - 2004 - Review of Metaphysics 58 (1):191-194.
    Rouse’s masterful tome encompasses capacious domains but suffers from obscuration due to pleonasm and too many attempts to counter or unify the disparate views of too many other distinguished philosophers.
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  45. Constructive Empiricism and Scientific Practice. A Case Study.Valeriano Iranzo - 2002 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 17 (2):335-357.
    According to van Fraassen, constructive empiricism (CE) makes better sense of scientific activity than scientific realism (SR). I discuss a recent episode in biomedical research - investigations about Helicobacter Pylori and its relation to peptic ulcer. CE's expedient to cope with it is a sort of belief substitution. I argue that replacing realist beliefs by empiricist surrogates (as-if beliefs) could accommodate scientists' expectations and behavior. Nonetheless, theoretical agnosticism could hardly motivate scientists to focus just on the observational consequences (...)
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  46.  20
    Scientific Practice Theory Meets Feminist STS: The Case of Karen Barad.Joo-Hyun Cho - 2016 - Korean Feminist Philosophy 25 (null):65-104.
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  47. Activities of kinding in scientific practice.Catherine Kendig - 2015 - In Natural Kinds and Classification in Scientific Practice. Routledge.
    Discussions over whether these natural kinds exist, what is the nature of their existence, and whether natural kinds are themselves natural kinds aim to not only characterize the kinds of things that exist in the world, but also what can knowledge of these categories provide. Although philosophically critical, much of the past discussions of natural kinds have often answered these questions in a way that is unresponsive to, or has actively avoided, discussions of the empirical use of natural kinds and (...)
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  48. Counterpossible Non-vacuity in Scientific Practice.Peter Tan - 2019 - Journal of Philosophy 116 (1):32-60.
    The longstanding philosophical orthodoxy on counterfactuals holds, in part, that counterfactuals with metaphysically impossible antecedents are indiscriminately vacuously true. Drawing on a number of examples from across scientific practice, I argue that science routinely treats counterpossibles as non-vacuously true and also routinely treats other counterpossibles as false. In fact, the success of many central scientific endeavors requires that counterpossibles can be non-vacuously true or false. So the philosophical orthodoxy that counterpossibles are indiscriminately vacuously true is inconsistent with (...) practice. I argue that this provides a conclusive reason to reject the orthodoxy. (shrink)
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  49. Mathematical formalisms in scientific practice: From denotation to model-based representation.Axel Gelfert - 2011 - Studies in History and Philosophy of Science Part A 42 (2):272-286.
    The present paper argues that ‘mature mathematical formalisms’ play a central role in achieving representation via scientific models. A close discussion of two contemporary accounts of how mathematical models apply—the DDI account (according to which representation depends on the successful interplay of denotation, demonstration and interpretation) and the ‘matching model’ account—reveals shortcomings of each, which, it is argued, suggests that scientific representation may be ineliminably heterogeneous in character. In order to achieve a degree of unification that is compatible (...)
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  50.  99
    Metaphysical Presuppositions of Scientific Practice.Alexander Rueger & W. David Sharp - 1998 - Canadian Journal of Philosophy 28 (1):1-20.
    A certain order or stability of nature has often been seen as a necessary presupposition of many of our scientific practices, in particular of our use of information gained in one kind of circumstance to explain or predict what happens in quite different situations. John Maynard Keynes and, more recently, Nancy Cartwright have argued that these practices commit us to the existence of stable ‘atoms’ or ‘natures’ or ‘tendencies.’ The phenomena we observe in nature are, on this (...)
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