Results for 'scientific and knowledge discovery'

996 found
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  1.  4
    Scientific Knowledge: Discovery of Nature or Mental Construction?Harry Settanni - 1992 - University Press of America.
    This book defends the constructivist view of science, namely, the view that scientific theories are mental constructions in the mind of the scientist, rather than the realist view that scientific theories are accounts of what nature itself is like. To prove this point, evolution theory is contrasted with "creation science" as two paradigms or extremely divergent theories, each of which, as a mental construct, explains the data or facts of the natural world equally well. Contents: Realism vs. Constructivism; (...)
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  2.  20
    The Place of Crowdfunding in the Discovery of Scientific and Social Value of Medical Research.Lorenzo del Savio - 2017 - Bioethics 31 (5):384-392.
    Crowdfunding is increasingly common in medical research. Some critics are concerned that by adopting crowdfunding, some researchers may sidestep the established systems of review of the social and scientific value of studies, especially mechanisms of expert-based review. I argue firstly that such concerns are based on a misleading picture of how research value is assessed and secondly that crowdfunding may turn out to be an useful complement of extant funding systems. I start with the idea that medical knowledge (...)
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  3.  32
    Conventionalism, scientific discovery and the sociology of knowledge.Angelo M. Petroni - 1993 - International Studies in the Philosophy of Science 7 (3):225-240.
    In this paper the basic aim of the so‐called ‘strong programme’ in the sociology of knowledge is examined. The ‘strong programme’ is considered (and rightly so) as an extreme version of the anti‐realist view of science. While the problem of scientific realism has normally been dealt with from the point of view of the ‘context of justification’ of theories, the paper focuses on the issues raised by law‐discovery. In this context Herbert Simon's views about the existence of (...)
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  4. Realism and the Aim of Science: From the Postscript to the Logic of Scientific Discovery.Karl Raimund Popper - 1985 - New York: Routledge. Edited by William Warren Bartley.
    Realism and the Aim of Science is one of the three volumes of Karl Popper’s Postscript to the Logic of scientific Discovery. The Postscript is the culmination of Popper’s work in the philosophy of physics and a new famous attack on subjectivist approaches to philosophy of science. Realism and the Aim of Science is the first volume of the Postcript . Popper here formulates and explains his non-justificationist theory of knowledge: science aims at true explanatory theories, yet (...)
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  5.  37
    The discovery of meaning through scientific and religious forms of indwelling.John V. Apczynski - 2005 - Zygon 40 (1):77-88.
    . Because of similarities between some implications of Michael Polanyi's theory of personal knowledge and intelligent design, claims have been made that his theory provides support to the project of intelligent design. This essay contends that, when Polanyi's reflections on a Ideological framework for contextualizing evolutionary biology are properly understood as a heuristic vision, his position contrasts sharply with the empirical claims made on behalf of intelligent design.
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  6.  73
    Scientific Collaboration and Collective Knowledge.Thomas Boyer-Kassem, Conor Mayo-Wilson & Michael Weisberg (eds.) - 2017 - New York, USA: Oxford University Press.
    Current scientific research almost always requires collaboration among several (if not several hundred) specialized researchers. When scientists co-author a journal article, who deserves credit for discoveries or blame for errors? How should scientific institutions promote fruitful collaborations among scientists? In this book, leading philosophers of science address these critical questions.
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  7.  31
    Multiple discoveries, inevitability, and scientific realism.Luca Tambolo & Gustavo Cevolani - 2021 - Studies in History and Philosophy of Science Part A 90 (December 2021):30-38.
    When two or more (groups of) researchers independently investigating the same domain arrive at the same result, a multiple discovery occurs. The pervasiveness of multiple discoveries in science suggests the intuition that they are in some sense inevitable—that one should view them as results that force themselves upon us, so to speak. We argue that, despite the intuitive force of such an “inevitabilist insight,” one should reject it. More specifically, we distinguish two facets of the insight and argue that: (...)
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  8. Symposium on "Computer Discovery and the Sociology of Scientific Knowledge".David Edge & Peter Slezak - 1989 - Sage Publications.
     
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  9.  21
    Scientific discovery, causal explanation, and process model induction.Pat Langley - 2019 - Mind and Society 18 (1):43-56.
    In this paper, I review two related lines of computational research: discovery of scientific knowledge and causal models of scientific phenomena. I also report research on quantitative process models that falls at the intersection of these two themes. This framework represents models as a set of interacting processes, each with associated differential equations that express influences among variables. Simulating such a quantitative process model produces trajectories for variables over time that one can compare to observations. Background (...)
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  10.  12
    Scientific Discovery and Scientific Reputation: The Reception of Peyton Rous’ Discovery of the Chicken Sarcoma Virus.Eva Becsei-Kilborn - 2010 - Journal of the History of Biology 43 (1):111-157.
    This article concerns itself with the reception of Rous’ 1911 discovery of what later came to be known as the Rous Sarcoma Virus. Rous made his discovery at the Rockefeller Institute for Medical Research which had been primarily established to conduct research into infectious diseases. Rous’ chance discovery of a chicken tumor led him to a series of conjectures about cancer causation and about whether cancer could have an extrinsic cause. Rous’ finding was received with some scepticism (...)
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  11. Two Kinds of Knowledge in Scientific Discovery.Will Bridewell & Pat Langley - 2010 - Topics in Cognitive Science 2 (1):36-52.
    Research on computational models of scientific discovery investigates both the induction of descriptive laws and the construction of explanatory models. Although the work in law discovery centers on knowledge‐lean approaches to searching a problem space, research on deeper modeling tasks emphasizes the pivotal role of domain knowledge. As an example, our own research on inductive process modeling uses information about candidate processes to explain why variables change over time. However, our experience with IPM, an artificial (...)
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  12.  10
    Realism and the Aim of Science: From the Postscript to the Logic of Scientific Discovery.Iii Bartley (ed.) - 1985 - Routledge.
    _Realism and the Aim of Science_ is one of the three volumes of Karl Popper’s _Postscript_ to the Logic of scientific Discovery. The _Postscript_ is the culmination of Popper’s work in the philosophy of physics and a new famous attack on subjectivist approaches to philosophy of science. _Realism and the Aim of Science_ is the first volume of the _Postcript_. Popper here formulates and explains his non-justificationist theory of knowledge: science aims at true explanatory theories, yet it (...)
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  13. Realism and the Aim of Science: From the Postscript to the Logic of Scientific Discovery.Iii Bartley (ed.) - 1985 - Routledge.
    _Realism and the Aim of Science_ is one of the three volumes of Karl Popper’s _Postscript_ to the Logic of scientific Discovery. The _Postscript_ is the culmination of Popper’s work in the philosophy of physics and a new famous attack on subjectivist approaches to philosophy of science. _Realism and the Aim of Science_ is the first volume of the _Postcript_. Popper here formulates and explains his non-justificationist theory of knowledge: science aims at true explanatory theories, yet it (...)
     
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  14.  12
    Realism and the Aim of Science: From the Postscript to the Logic of Scientific Discovery.Iii Bartley (ed.) - 1985 - Routledge.
    _Realism and the Aim of Science_ is one of the three volumes of Karl Popper’s _Postscript_ to the Logic of scientific Discovery. The _Postscript_ is the culmination of Popper’s work in the philosophy of physics and a new famous attack on subjectivist approaches to philosophy of science. _Realism and the Aim of Science_ is the first volume of the _Postcript_. Popper here formulates and explains his non-justificationist theory of knowledge: science aims at true explanatory theories, yet it (...)
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  15. Human Thought, Mathematics, and Physical Discovery.Gila Sher - 2023 - In Carl Posy & Yemima Ben-Menahem (eds.), Mathematical Knowledge, Objects and Applications: Essays in Memory of Mark Steiner. Springer. pp. 301-325.
    In this paper I discuss Mark Steiner’s view of the contribution of mathematics to physics and take up some of the questions it raises. In particular, I take up the question of discovery and explore two aspects of this question – a metaphysical aspect and a related epistemic aspect. The metaphysical aspect concerns the formal structure of the physical world. Does the physical world have mathematical or formal features or constituents, and what is the nature of these constituents? The (...)
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  16.  11
    Discovery and Instrumentation: How Surplus Knowledge Contributes to Progress in Science.George Borg - 2019 - Perspectives on Science 27 (6):861-890.
    An important fact about human labor is that it can result not just in reproduction of what it started with, but in something new, a surplus product. When the latter is a means of production, it makes possible a mechanism of change consisting of reproduction by means of the expanded means of production. Each iteration of the labor process can differ from the preceding one insofar as it incorporates the surplus generated previously. Over the long-term, this cyclical process can lead (...)
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  17. The scientific dimensions of social knowledge and their distant echoes in 20th-century American philosophy of science.Philip Mirowski - 2004 - Studies in History and Philosophy of Science Part A 35 (2):283-326.
    The widespread impression that recent philosophy of science has pioneered exploration of the “social dimensions of scientific knowledge” is shown to be in error, partly due to a lack of appreciation of historical precedent, and partly due to a misunderstanding of how the social sciences and philosophy have been intertwined over the last century. This paper argues that the referents of “democracy” are an important key in the American context, and that orthodoxies in the philosophy of science tend (...)
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  18.  17
    Computational discovery of communicable scientific knowledge.Pat Langley, Jeff Shrager & Kazumi Saito - 2002 - In L. Magnani, N. J. Nersessian & C. Pizzi (eds.), Logical and Computational Aspects of Model-Based Reasoning. Kluwer Academic Publishers. pp. 201--225.
  19.  50
    Instituting science: Discovery or construction of scientific knowledge?James A. Marcum - 2008 - International Studies in the Philosophy of Science 22 (2):185 – 210.
    Is knowledge in the natural sciences discovered or constructed? For objectivists, scientific knowledge is discovered through investigations into a mind-independent, natural world. For constructivists, such knowledge is produced through negotiations among members of a professional guild. I examine the clash between the two positions and propose that scientific knowledge is the concurrent outcome from investigations into a natural world and from consensus reached through negotiations of a professional guild. Specifically, I introduce the general methodological (...)
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  20.  19
    Reuniting Virtue and Knowledge.Tom Culham - 2015 - Journal of Philosophy of Education 49 (2):294-310.
    Einstein held that intuition is more important than rational inquiry as a source of discovery. Further, he explicitly and implicitly linked the heart, the sacred, devotion and intuitive knowledge. The raison d’être of universities is the advance of knowledge; however, they have primarily focused on developing student's skills in working with rational knowledge. Given the paucity of attention to virtue and our intuitive abilities this article briefly explores the philosophical meaning of intuition and the role intuition (...)
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  21.  6
    Seeds of Virtue and Knowledge.Maryanne Cline Horowitz - 1998 - Princeton University Press.
    In this wide-ranging and thought-provoking study, Maryanne Cline Horowitz explores the image and idea of the human mind as a garden: under the proper educational cultivation, the mind may nourish seeds of virtue and knowledge into the full flowering of human wisdom. This copiously illustrated investigation begins by examining the intellectual world of the Stoics, who originated the phrases "seeds of virtue" and "seeds of knowledge." Tracing the interrelated history of the Stoic cluster of epistemological images for natural (...)
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  22.  24
    A Discourse of a Method for the Well Guiding of Reason - And the Discovery of Truth in the Sciences.René Descartes, Thomas Newcomb & John Holden - 2017 - Createspace Independent Publishing Platform.
    In this reproduction of his original publication of 1649, Rene Descartes discusses how seekers of knowledge can best attain true insight of the world around them. Often referred to as simply the Discourse on the Method, this work is frequently cited as one of the most important to appear during the Enlightenment era. It discusses the ideal means through which those in search of knowledge can approach the world, and the practice of science, as a means of attaining (...)
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  23.  33
    Scientific Discovery and Scientific Reputation: The Reception of Peyton Rous' Discovery of the Chicken Sarcoma Virus. [REVIEW]Eva Becsei-Kilborn - 2008 - Journal of the History of Biology 43 (1):111 - 157.
    This article concerns itself with the reception of Rous' 1911 discovery of what later came to be known as the Rous Sarcoma Virus (RSV). Rous made his discovery at the Rockefeller Institute for Medical Research which had been primarily established to conduct research into infectious diseases. Rous' chance discovery of a chicken tumor led him to a series of conjectures about cancer causation and about whether cancer could have an extrinsic cause. Rous' finding was received with some (...)
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  24.  6
    Shores of Knowledge: New World Discoveries and the Scientific Imagination - by Joyce Appleby.Jorge Canizares-Esguerra - 2014 - Centaurus 56 (2):126-128.
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  25. The logic of scientific discovery.Karl Raimund Popper - 1934 - New York: Routledge. Edited by Hutchinson Publishing Group.
    Described by the philosopher A.J. Ayer as a work of 'great originality and power', this book revolutionized contemporary thinking on science and knowledge. Ideas such as the now legendary doctrine of 'falsificationism' electrified the scientific community, influencing even working scientists, as well as post-war philosophy. This astonishing work ranks alongside The Open Society and Its Enemies as one of Popper's most enduring books and contains insights and arguments that demand to be read to this day.
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  26.  34
    Discovery Knowledge and Reliable Limiting Convergence - The KALC-Paradigm.Vincent Fella Hendricks & Stig Andur Pedersen - 1998 - Philosophica 61 (1).
    From the point of view of the KaLC-paradigm this paper has two aims. First of all it attempts to sketch some of the pertinent problems of scientific discovery and secondly, it outlines how these problems can be treated in the KaLC -paradigm.
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  27.  9
    Carl G. Hempel: Thought Experiments Between Methodological Monism and the Discovery/Justification Dichotomy.Marco Buzzoni - 2024 - Epistemology and Philosophy of Science 61 (1):202-222.
    Hempel’s account of thought experiments has been discussed only by a very few authors and, for the most part, with rather cursory remarks. Its importance, however, is not only historical, but also systematic theoretical, because it involves the distinction between discovery and justification, a main pillar of neopositivistic philosophy of science. Hempel raised the question whether thought experiments constitute a methodological component of scientific research or, on the contrary, are merely a heuristic-psychological device for obtaining and/or transmitting new (...)
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  28.  67
    Knowledge, Glory and ‘On Human Dignity'.Henri Atlan, Glory Knowledge & On Human Dignity - 2007 - Diogenes 54 (3):11-17.
    The idea of dignity seems indissociable from that of humanity, whether in its universal dimension of ‘human dignity’, or in the individual ‘dignity of the person’. This paper provides an outlook on the ethics governing the sciences and technology, in particular the biological sciences and biotechnology, and recalls the notion of ‘glory’, both human and divine, as it infuses a great part of the Middle Ages and the Renaissance cultures, just before the scientific revolution in Europe.
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  29.  29
    Notes and Discussions: »The Subjective Element in Scientific Discovery: Popper versus ‘Traditional Epistemology'«.Paul Tibbetts - 1980 - Dialectica 34 (2):155-160.
    The explanation [of scientific change and problem solving] must, in the final analysis, be psychological or sociological. It must, that is, be a description of a value system, an ideology, together with an analysis of the institutions through which that system is transmitted and enforced. Thomas Kuhn Traditional epistemology with its concentration… on knowledge in the subjective sense, is irrelevant to the study of scientific knowledge. Karl Popper.
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  30.  60
    Knowledge, bodies, and values: Reproductive technologies and their scientific context.Helen E. Longino - 1992 - Inquiry: An Interdisciplinary Journal of Philosophy 35 (3-4):323 – 340.
    This essay sets human reproductive technologies in the context of biological research exploiting the discovery of the structure of the DNA molecule in the early 1950s. By setting these technological developments in this research context and then setting the research in the framework of a philosophical analysis of the role of social values in scientific inquiry, it is possible to develop a perspective on these technologies and the aspirations they represent that is relevant to the concerns of their (...)
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  31.  41
    The Logic of Scientific Discovery.Karl R. Popper - 1935 - London, England: Routledge.
    Described by the philosopher A.J. Ayer as a work of 'great originality and power', this book revolutionized contemporary thinking on science and knowledge. Ideas such as the now legendary doctrine of 'falsificationism' electrified the scientific community, influencing even working scientists, as well as post-war philosophy. This astonishing work ranks alongside _The Open Society and Its Enemies_ as one of Popper's most enduring books and contains insights and arguments that demand to be read to this day.
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  32.  73
    Scientific discovery as a combinatorial optimisation problem: How best to navigate the landscape of possible experiments?Douglas B. Kell - 2012 - Bioessays 34 (3):236-244.
    A considerable number of areas of bioscience, including gene and drug discovery, metabolic engineering for the biotechnological improvement of organisms, and the processes of natural and directed evolution, are best viewed in terms of a ‘landscape’ representing a large search space of possible solutions or experiments populated by a considerably smaller number of actual solutions that then emerge. This is what makes these problems ‘hard’, but as such these are to be seen as combinatorial optimisation problems that are best (...)
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  33.  19
    Mapping and Analyzing the Scientific Map of Knowledge Organization Using Research Indexed in the WOS Database.and Iman Nikijoo, Kiarash Fartash, Saeed Ramezani & Ali Asghar Sadabadi - 2023 - Knowledge Organization 49 (6):448-464.
    Scientometrics has found many applications in describing, explaining and predicting the scientific status of researchers, educational and research groups, universities, organizations and countries in various national and international arenas. By studying the scientific products of different countries, their status in the production of science can be evaluated. Present study was conducted using a scientometrics approach and using co-word analysis and social network analysis (SNA) to investigate relationships in the field of know­ledge organization. In this regard, research indexed in (...)
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  34. Complexity Revolution and the New Age of Scientific Discoveries.Andrei P. Kirilyuk - manuscript
    This summary of the original paradigm of the universal science of complexity starts with the discovered exact origin of the stagnating "end" of conventional, unitary science paradigm and development traditionally presented by its own estimates as the only and the best possible kind of scientific knowledge. Using a transparent generalisation of the exact mathematical formalism of arbitrary interaction process, we show that unitary science approach and description, including its imitations of complexity and chaoticity, correspond to artificial and ultimately (...)
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  35.  54
    Making Scientific Discoveries: Interdisciplinary Reflections.Jan G. Michel (ed.) - 2021 - Paderborn, Deutschland: Brill/mentis.
    Scientific progress depends crucially on scientific discoveries. Yet the topic of scientific discoveries has not been central to debate in the philosophy of science. This book aims to remedy this shortcoming. Based on a broad reading of the term “science” (similar to the German term “Wissenschaft”), the book convenes experts from different disciplines who reflect upon several intertwined questions connected to the topic of making scientific discoveries. -/- Among these questions are the following: What are the (...)
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  36.  70
    The Journey from Discovery to Scientific Change: Scientific Communities, Shared Models, and Specialised Vocabulary.Sarah M. Roe - 2017 - International Studies in the Philosophy of Science 31 (1):47-67.
    Scientific communities as social groupings and the role that such communities play in scientific change and the production of scientific knowledge is currently under debate. I examine theory change as a complex social interaction among individual scientists and the scientific community, and argue that individuals will be motivated to adopt a more radical or innovative attitude when confronted with striking similarities between model systems and a more robust understanding of specialised vocabulary. Two case studies from (...)
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  37.  82
    Scientific knowledge.Philip Kitcher - 2002 - In Paul K. Moser (ed.), The Oxford handbook of epistemology. New York: Oxford University Press. pp. 385--408.
    In “Scientific Knowledge,” Philip Kitcher challenges arguments that deny the truth of the theoretical claims of science, and he attempts to discover reasons for endorsing the truth of such claims. He suggests that the discovery of such reasons might succeed if we ask why anyone thinks that the theoretical claims we accept are true and then look for answers that reconstruct actual belief‐generating processes. To this end, Kitcher presents the “homely argument” for scientific truth, which claims (...)
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  38.  5
    Perspectives: Sts on the High and Low Roads to Contexts of Discovery and Justification of Scientific Knowledge.Steve Fuller & John M. Wilkes - 1996 - Bulletin of Science, Technology and Society 16 (5-6):227-232.
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  39.  27
    Scientific Controversies: Case Studies in the Resolution and Closure of Disputes in Science and Technology.Hugo Tristram Engelhardt, H. Tristram Engelhardt Jr, Arthur L. Caplan & Drs William F. And Virginia Connolly Mitty Chair Arthur L. Caplan - 1987 - Cambridge University Press.
    This collection of essays examines the ways in which disputes and controversies about the application of scientific knowledge are resolved. Four concrete examples of public controversy are considered in detail: the efficacy of Laetrile, the classification of homosexuality as a disease, the setting of safety standards in the workplace, and the utility of nuclear energy as a source of power. The essays in this volume show that debates about these cases are not confined to matters of empirical fact. (...)
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  40.  70
    Toward a Philosophy of Scientific Discovery.Jan G. Michel - 2021 - In Making Scientific Discoveries: Interdisciplinary Reflections. Paderborn, Deutschland: Brill/mentis. pp. 9-53.
    Jan G. Michel argues that we need a philosophy of scientific discovery. Before turning to the question of what such a philosophy might look like, he addresses two questions: Don’t we have a philosophy of scientific discovery yet? And do we need one at all? To answer the first question, he takes a closer look at history and finds that we have not had a systematic philosophy of scientific discovery worthy of the name for (...)
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  41. Genesis and development of a scientific fact.Ludwik Fleck - 1979 - Chicago: University of Chicago Press. Edited by T. J. Trenn & R. K. Merton.
    The sociological dimension of science is studied using the discovery of the Wasserman reaction and its accidental application as a test for syphilis as a basis, ...
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  42.  9
    Issues and Images in the Philosophy of Science: Scientific and Philosophical Essays in Honour of Azarya Polikarov.R. S. Cohen - 1997 - Springer.
    Azarya Polikarov was born in Sofia on October 9, 1921. Through the many stages of politics, economy, and culture in Bulgaria, he maintained his rational humanity and scientific curiosity. He has been a splendid teacher and an accomplished critical philosopher exploring the conceptual and historical vicis situdes of physics in modern times and also the science policies that favor or threaten human life in these decades. Equally and easily at home both within the Eastern and Central European countries and (...)
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  43. Concerning the Unity of Knowledge and the Aim of Scientific Inquiry: A Critique of E.O. Wilson's Consilience Worldview.Carmen Maria Marcous - unknown
    In this paper I set out to problematize what the distinguished evolutionary biologist, Edward O. Wilson, has presented to a popular audience as his consilience worldview. Wilson's consilience worldview is a metaphysical framework that presumes the existence of an underlying unity in the knowledge gleaned from otherwise diverse modes of intellectual inquiry, and details a particular normative approach for its discovery by scientists. After introducing Wilson's consilience worldview (WCW), I review philosophical and historical literature on the role that (...)
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  44.  8
    Perspectives: Rediscovering the Contexts of Discovery and Justification of Scientific Knowledge.Richard A. Deitrich & Steve Fuller - 1996 - Bulletin of Science, Technology and Society 16 (4):167-170.
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  45.  15
    Intangible Materialism: The Body, Scientific Knowledge, and the Power of Language.Ronald Schleifer - 2009 - Univ of Minnesota Press.
    Taking as his point of departure Norbert Weiner's statement that information is basic to understanding materialism in our era, Ronald Schleifer shows how discoveries of modern physics have altered conceptions of matter and energy and the ...
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  46.  61
    Membership and Knowledge. Scientific Research as a Group Activity.Silvia Tossut - 2014 - Episteme 11 (3):349-367.
    Much scientific research is characterized by a high degree of multidisciplinarity and interdependence between the experts. In these cases research may be described as a group activity, and as such analysed in terms of the intentions of the participants. In this paper I apply Bratman's notion of shared intentionality to explain the relations between social and epistemic elements in groups with a truth-oriented common goal. I argue that in truth-oriented activities the disposition to help – which is a constitutive (...)
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  47.  31
    Discovery as the context of any scientific justification.C. A. Peursen - 1989 - Man and World 22 (4):471-484.
    The analysis of philosophically important themes can depart from two different angles. The first one investigates the various answers that have been given to a certain issue, like that of the problem of knowledge, the justification of theories, the notion of culture, etcetera. These answers are often mutually contradictory which, by the way, facilitates their overview (like the schemes of rationalism-empiricism, justification-discovery, universalism-relativism). A second approach starts from the problems (or: “problematique”) behind the divergent answers (e.g., foundationalism behind (...)
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  48.  35
    The scientific discovery of 'natural capital': The production of catalytic antibodies.M. Ben-Chaim - 2001 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 32 (3):413-433.
    Modern science has undoubtedly become one the principal engines of economic growth, even though the epistemological status of scientific knowledge has been continuously contested. Leaving the philosophical problem of knowledge aside, this paper examines how scientific discovery contributes to the production of wealth. The analysis focuses on a recent achievement at the crossroads of chemistry, immunology and biotechnology: antibody catalysis. For this purpose, we develop a model of entrepreneurial work to explain how the discovery (...)
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  49.  66
    Discovery of causal mechanisms: Oxidative phosphorylation and the Calvin–Benson cycle.Raphael Scholl & Kärin Nickelsen - 2015 - History and Philosophy of the Life Sciences 37 (2):180-209.
    We investigate the context of discovery of two significant achievements of twentieth century biochemistry: the chemiosmotic mechanism of oxidative phosphorylation and the dark reaction of photosynthesis. The pursuit of these problems involved discovery strategies such as the transfer, recombination and reversal of previous causal and mechanistic knowledge in biochemistry. We study the operation and scope of these strategies by careful historical analysis, reaching a number of systematic conclusions: even basic strategies can illuminate “hard cases” of scientific (...)
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  50. Scientific Progress and Democratic Society through the Lens of Scientific Pluralism.Theptawee Chokvasin - 2023 - Suranaree Journal of Social Science 17 (2):Article ID e268392 (pp. 1-15).
    Background and Objectives: In this research article, the researcher addresses the issue of creating public understanding in a democratic society about the progress of science, with an emphasis on pluralism from philosophers of science. The idea that there is only one truth and that there are just natural laws awaiting discovery by scientists has historically made it difficult to explain scientific progress. This belief motivates science to develop theories that explain the unity of science, and it is thought (...)
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