Results for 'Scientific revolution Wissenschaftsrevolution'

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  1. We are not Witnesses to a New Scientific Revolution.Gregor Schiemann - 2011 - In Alfred Nordmann, Hans Radder & Gregor Schiemann (eds.), Science Transformed?: Debating Claims of an Epochal Break. University of Pittsburgh Press. pp. 31-42.
    Do the changes that have taken place in the structures and methods of the production of scientific knowledge and in our understanding of science over the past fifty years justify speaking of an epochal break in the development of science? Gregor Schiemann addresses this issues through the notion of a scientific revolution and claims that at present we are not witnessing a new scientific revolution. Instead, Schiemann argues that after the so-called Scientific Revolution (...)
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  2. Science Transformed?: Debating Claims of an Epochal Break.Alfred Nordmann, Hans Radder & Gregor Schiemann (eds.) - 2011 - University of Pittsburgh Press.
    Advancements in computing, instrumentation, robotics, digital imaging, and simulation modeling have changed science into a technology-driven institution. Government, industry, and society increasingly exert their influence over science, raising questions of values and objectivity. These and other profound changes have led many to speculate that we are in the midst of an epochal break in scientific history. -/- This edited volume presents an in-depth examination of these issues from philosophical, historical, social, and cultural perspectives. It offers arguments both for and (...)
  3. Mehr Seinsschichten für die Welt? Vergleich und Kritik der Schichtenkonzeptionen von Nicolai Hartmann und Werner Heisenberg.Gregor Schiemann - 2012 - In G. Hertung & M. Wunsch (eds.), Nicolai Hartmann – Von der Systemphilosophie zur Systemetischen Philosophi. pp. 85-104.
    Ich thematisiere die beiden Konzeptionen als Varianten der wissenschaftlichen Weltsicht. Der Reiz des Vergleichs liegt aber weniger in den Gemeinsamkeiten als vielmehr in den Differenzen und den dabei hervortretenden Desideraten der beiden Konzeptionen. Heisenberg versteht sein Schichtenmodell nicht wie Hartmann als Fortsetzung und Zusammenfassung vorangehender philosophischer Bemühungen, sondern als einen Bruch mit den Hauptströmungen der philosophischen Tradition. In der geschichtlichen Entwicklung der Versuche um eine Bestimmung der Weltstruktur sieht er statt einer Generaltendenz, die langfristig auf eine Annäherung an die Wahrheit (...)
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  4. Strukturwandel der Wissenschaft.Gregor Schiemann, Alfred Nordmann & Hans Radder (eds.) - 2014
    Mit Robotik, Digitalisierung, softwaregesteuerten Präzisionsinstrumenten und hochkomplexen Simulationsverfahren wird heute Technik zur treibenden Kraft der wissenschaftlichen Forschungspraxis. Gleichzeitig sieht sich die universitäre Forschung wachsenden gesellschaftlichen Einflüssen ausgesetzt und nähert sich selbst immer mehr der Industrieforschung an, woraus sich neue Fragen nach den Werten und der Objektivität der Wissenschaft ergeben. Derartig weitreichende Veränderungen haben zahlreiche Spekulationen darüber provoziert, ob sich in der Wissenschaftsgeschichte gegenwärtig ein Epochenbruch vollzieht. Dieser Sammelband setzt sich aus philosophischen, historischen und kulturwissenschaftlichen Perspektiven mit den Epochenbruchthesen auseinander, bestätigt (...)
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  5. An Epoch-Making Change in the Development of Science? A Critique of the “Epochal-Break-Thesis”.Gregor Schiemann - 2011 - In M. Carrier & A. Nordmann (eds.), Science in the Context of Application. Springer. pp. 431--453.
    In recent decades, several authors have claimed that an epoch-making change in the development of science is taking place. A closer examination of this claim shows that these authors take different – and problematic – concepts of an epochal break as their points of departure. In order to facilitate an evaluation of the current development of science, I would like to propose a concept of an epochal change according to which it is not necessarily a discontinuous process that typically begins (...)
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  6.  14
    Beyond,”.Scientific Revolution - forthcoming - Perspectives on Science.
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  7. Reconstructing Scientific Revolutions: Thomas S. Kuhn’s Philosophy of Science.Paul Hoyningen-Huene - 1993 - Chicago: University of Chicago Press.
    Few philosophers of science have influenced as many readers as Thomas S. Kuhn. Yet no comprehensive study of his ideas has existed--until now. In this volume, Paul Hoyningen-Huene examines Kuhn's work over four decades, from the days before The Structure of Scientific Revolutions to the present, and puts Kuhn's philosophical development in a historical framework. Scholars from disciplines as diverse as political science and art history have offered widely differing interpretations of Kuhn's ideas, appropriating his notions of paradigm shifts (...)
  8. Scientific revolutions, specialization and the discovery of the structure of DNA: toward a new picture of the development of the sciences.Politi Vincenzo - 2018 - Synthese 195 (5):2267-2293.
    In his late years, Thomas Kuhn became interested in the process of scientific specialization, which does not seem to possess the destructive element that is characteristic of scientific revolutions. It therefore makes sense to investigate whether and how Kuhn’s insights about specialization are consistent with, and actually fit, his model of scientific progress through revolutions. In this paper, I argue that the transition toward a new specialty corresponds to a revolutionary change for the group of scientists involved (...)
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  9.  31
    The Scientific Revolution and the Origins of Modern Science.John Henry - 1997 - Palgrave-Macmillan.
    Acknowledgements viii Acknowledgements for the Second Edition ix 1 The Scientific Revolution and the Historiography of Science 1 2 Renaissance and Revolution 9 3 The Scientific Method 14 The Mathematization of the World Picture 14 Experience and Experiment 30 4 Magic and the Origins of Modern Science 54 5 The Mechanical Philosophy 68 6 Religion and Science 85 7 Science and the Wider Culture 98 8 Conclusion 110 Bibliography 113 Glossary 139 Index 153.
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  10.  29
    Are Scientific Revolutions Predetermined? Critical Appraisal of Wojciech Sady’s Struktura rewolucji relatywistycznej i kwantowej w fizyce (The Structure of the Relativistic and Quantum Revolution in Physics).Dmytro Sepetyi - forthcoming - Filozofia Nauki:1-16.
    In his book Struktura rewolucji relatywistycznej i kwantowej w fizyce (The Structure of the Relativistic and Quantum Revolution in Physics, 2020), Wojciech Sady presents his vision of the two greatest scientific revolutions in the 20th century. The book provides an illuminating account of the way these revolutions proceeded and strongly supports the thesis that, contrary to Thomas Kuhn’s famous suggestions, the revolutions involved no breaches in the continuity in scientific development but progressed in an evolutionary (although swift) (...)
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  11.  62
    Rethinking the Scientific Revolution.Margaret J. Osler (ed.) - 2000 - Cambridge University Press.
    This collection reconsiders canonical figures and the formation of disciplinary boundaries during the Scientific Revolution.
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  12. The Historiography of Scientific Revolutions: A Philosophical Reflection.Yafeng Shan - 2023 - In Mauro L. Condé & Marlon Salomon (eds.), Handbook for the Historiography of Science. Springer. pp. 257-273.
    Scientific revolution has been one of the most controversial topics in the history and philosophy of science. Yet it has been no consensus on what is the best unit of analysis in the historiography of scientific revolutions. Nor is there a consensus on what best explains the nature of scientific revolutions. This chapter provides a critical examination of the historiography of scientific revolutions. It begins with a brief introduction to the historical development of the concept (...)
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  13. On classification of scientific revolutions.Ladislav Kvasz - 1999 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 30 (2):201-232.
    The question whether Kuhn's theory of scientific revolutions could be applied to mathematics caused many interesting problems to arise. The aim of this paper is to discuss whether there are different kinds of scientific revolution, and if so, how many. The basic idea of the paper is to discriminate between the formal and the social aspects of the development of science and to compare them. The paper has four parts. In the first introductory part we discuss some (...)
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  14.  13
    Reappraisals of the Scientific Revolution, ed. by and (Cambridge:).David C. Lindberg & Robert S. Westman (eds.) - 1990 - Cambridge University Press.
    List of contributors; Acknowledgments; Introduction Robert S. Westman and David C. Lindberg; 1. Conceptions of the scientific revolution from Bacon to Butterfield: a preliminary sketch David C. Lindberg; 2. Conceptions of science in the scientific revolution Ernan McMullin; 3. Metaphysics and the new science Gary Hatfield; 4. Proof, portics, and patronage: Copernicus’s preface to De revolutionibus Robert S. Westman; 5. A reappraisal of the role of the universities in the scientific revolution John Gascoigne; 6. (...)
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  15. Scientific Revolutions and the Explosion of Scientific Evidence.Ludwig Fahrbach - 2017 - Synthese 194 (12):5039-5072.
    Scientific realism, the position that successful theories are likely to be approximately true, is threatened by the pessimistic induction according to which the history of science is full of suc- cessful, but false theories. I aim to defend scientific realism against the pessimistic induction. My main thesis is that our current best theories each enjoy a very high degree of predictive success, far higher than was enjoyed by any of the refuted theories. I support this thesis by showing (...)
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  16. Was the scientific revolution really a revolution in science?Gary Hatfield - 1996 - In Jamil Ragep & Sally Ragep (eds.), Tradition, Transmission, Transformation: Proceedings of Two Conferences on Pre-Modern Science Held at the University of Oklahoma. Brill. pp. 489–525.
    This chapter poses questions about the existence and character of the Scientific Revolution by deriving its initial categories of analysis and its initial understanding of the intellectual scene from the writings of the seventeenth century, and by following the evolution of these initial categories in succeeding centuries. This project fits the theme of cross cultural transmission and appropriation -- a theme of the present volume -- if one takes the notion of a culture broadly, so that, say, seventeenth (...)
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  17.  11
    Representing Space in the Scientific Revolution.David Marshall Miller - 2014 - Cambridge University Press.
    The novel understanding of the physical world that characterized the Scientific Revolution depended on a fundamental shift in the way its protagonists understood and described space. At the beginning of the seventeenth century, spatial phenomena were described in relation to a presupposed central point; by its end, space had become a centerless void in which phenomena could only be described by reference to arbitrary orientations. David Marshall Miller examines both the historical and philosophical aspects of this far-reaching development, (...)
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  18.  74
    The Scientific Revolution and The Death of Nature.Carolyn Merchant - 2006 - Isis 97:513-533.
    The Death of Nature: Women, Ecology, and the Scientific Revolution, published in 1980, presented a view of the Scientific Revolution that challenged the hegemony of mechanistic science as a marker of progress. It argued that seventeenth‐century science could be implicated in the ecological crisis, the domination of nature, and the devaluation of women in the production of scientific knowledge. This essay offers a twenty‐five‐year retrospective of the book’s contributions to ecofeminism, environmental history, and reassessments of (...)
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  19.  18
    The Scientific Revolution and The Death of Nature.Carolyn Merchant - 2006 - Isis 97 (3):513-533.
  20.  39
    The Cognitive Structure of Scientific Revolutions.Hanne Andersen, Peter Barker & Xiang Chen - 2006 - New York: Cambridge University Press. Edited by Peter Barker & Xiang Chen.
    Thomas Kuhn's Structure of Scientific Revolutions became the most widely read book about science in the twentieth century. His terms 'paradigm' and 'scientific revolution' entered everyday speech, but they remain controversial. In the second half of the twentieth century, the new field of cognitive science combined empirical psychology, computer science, and neuroscience. In this book, the theories of concepts developed by cognitive scientists are used to evaluate and extend Kuhn's most influential ideas. Based on case studies of (...)
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  21. Scientific revolutions.Thomas Nickles - 2010 - Stanford Encyclopedia of Philosophy.
  22. The Structure of Scientific Revolutions.Thomas Samuel Kuhn - 1962 - Chicago: University of Chicago Press. Edited by Otto Neurath.
    A scientific community cannot practice its trade without some set of received beliefs. These beliefs form the foundation of the "educational initiation that prepares and licenses the student for professional practice". The nature of the "rigorous and rigid" preparation helps ensure that the received beliefs are firmly fixed in the student's mind. Scientists take great pains to defend the assumption that scientists know what the world is like...To this end, "normal science" will often suppress novelties which undermine its foundations. (...)
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  23. Scientific Revolutions.I. Hacking - 1984 - Critical Philosophy 1 (1):97.
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  24. The Scientific Revolution: A Historiographical Inquiry.H. F. Cohen & S. Gaukroger - 1995 - Annals of Science 52 (5):503-508.
     
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  25.  58
    The Incentivised University: Scientific Revolutions, Policies, Consequences.Seán Mfundza Muller - 2021 - Springer.
    The core thesis of this book is that to understand the implications of incentive structures in modern higher education, we require a deeper understanding of associated issues in the philosophy of science. Significant public and philanthropic resources are directed towards various forms of research in the hope of addressing key societal problems. That view, and the associated allocation of resources, relies on the assumption that academic research will tend towards finding truth – or at least selecting the best approximations of (...)
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  26. Maxwellian Scientific Revolution: a case study in Kantian epistemology.Rinat M. Nugayev - 2014 - Logos and Episteme 5 (2):183-207.
    It is exhibited that maxwellian electrodynamics grew out of the old pre-maxwellian programmes reconciliation: the electrodynamics of Ampere-Weber, the wave theory of Young-Fresnel and Faraday’s scientific research programme. The programmes’ meeting led to construction of the whole hierarchy of theoretical objects starting from the genuine crossbreeds (the displacement current) and up to usual mongrels. After the displacement current invention the interpenetration of the pre-maxwellian programmes began that marked the beginning of theoretical schemes of optics and electromagnetism real unification. Maxwell’s (...)
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  27.  5
    Three Scientific Revolutions: How They Transformed Our Conceptions of Reality.Richard H. Schlagel - 2015 - Humanity Books.
    Science has had a profound influence in shaping contemporary perspectives of reality, yet few in the public have fully grasped the profound implications of scientific discoveries. This book describes three intellectual revolutions that led to the current scientific consensus, emphasizing how science over the centuries has undermined traditional, religious worldviews. The author begins in ancient Greece, where the first revolution took place. Beginning in the sixth-century BCE, a series of innovative thinkers rejected the mythology of their culture (...)
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  28. Einstein's Scientific Revolution (1898-1915): interdisciplinary Context.Rinat M. Nugayev (ed.) - 2010 - Logos: Innovative Technologies Center.
    What are the reasons of the second scientific revolution that happened at the beginning of the XX century? Why did the new physics supersede the old one? The author tries to answer the subtle questions with a help of the epistemological model of scientific revolutions that takes into account some recent advances in philosophy, sociology and history of science. According to the model, Einstein’s Revolution took place due to resolution of deep contradictions between the basic classical (...)
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  29. Maxwellian Scientific Revolution: Reconciliation of Research Programmes of Young-Fresnel,Ampere-Weber and Faraday.Rinat M. Nugayev (ed.) - 2013 - Kazan University Press.
    Maxwellian electrodynamics genesis is considered in the light of the author’s theory change model previously tried on the Copernican and the Einstein revolutions. It is shown that in the case considered a genuine new theory is constructed as a result of the old pre-maxwellian programmes reconciliation: the electrodynamics of Ampere-Weber, the wave theory of Fresnel and Young and Faraday’s programme. The “neutral language” constructed for the comparison of the consequences of the theories from these programmes consisted in the language of (...)
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  30.  76
    Kuhn: philosopher of scientific revolutions.W. W. Sharrock - 2002 - Malden, MA: Polity. Edited by Rupert J. Read.
    Thomas Kuhn's shadow hangs over almost every field of intellectual inquiry. His book The Structure of Scientific Revolutions has become a modern classic. His influence on philosophy, social science, historiography, feminism, theology, and (of course) the natural sciences themselves is unparalleled. His epoch-making concepts of 'new paradigm' and 'scientific revolution' make him probably the most influential scholar of the twentieth century. Sharrock and Read take the reader through Kuhn's work in a careful and accessible way, emphasizing Kuhn's (...)
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  31. The Scientific Revolution. A Historiographical Inquiry.H. Floris Cohen & Mikulas Teich - 1996 - History and Philosophy of the Life Sciences 18 (1):135.
  32.  54
    Scientific revolutions and inference to the best explanation.Alexander Bird - 1999 - Danish Yearbook of Philosophy 34 (1):25--42.
  33.  22
    The scientific revolution and the protestant reformation.—I: Calvin and servetus in relation to the new astronomy and the theory of the circulation of the blood.S. Mason - 1953 - Annals of Science 9 (1):64-87.
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  34.  23
    Cournot and Renouvier on Scientific Revolutions.Warren Schmaus - 2023 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 54 (1):7-17.
    Historians of philosophy have hitherto either given scant attention to Cournot and Renouvier’s views on scientific revolution, tried to read Kuhn’s concept of scientific revolution back into their works, or did not fully appreciate the extent to which these philosophers were reflecting on the works of their predecessors as well as on developments in mathematics and the sciences. Cournot’s views on cumulative development through revolution resemble Comte’s more than Kuhn’s, and his notion of progressive theoretical (...)
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  35. Scientific revolutions.Ian Hacking (ed.) - 1981 - New York: Oxford University Press.
    Bringing together important writings not easily available elsewhere, this volume provides a convenient and stimulating overview of recent work in the philosophy of science. The contributors include Paul Feyerabend, Ian Hacking, T.S. Kuhn, Imre Lakatos, Laurens Laudan, Karl Popper, Hilary Putnam, and Dudley Shapere. In addition, Hacking provides an introductory essay and a selective bibliography.
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  36. The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
  37. The scientific revolution.John A. Schuster - 1989 - In R. C. Olby, G. N. Cantor, J. R. R. Christie & M. J. S. Hodge (eds.), Companion to the History of Modern Science. Routledge. pp. 217--242.
     
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  38.  9
    Ideology, Inevitability, and the Scientific Revolution.John Henry - 2008 - Isis 99 (3):552-559.
    ABSTRACT Looking in particular at the Scientific Revolution, this essay argues that, for all their differences, positivist commentators on science and contextualist historians of science ought to be committed to the view that counterfactual changes in the history of science would have made no significant difference to its historical development. Assumptions about the history of science as an inexorable march toward the truth commit the positivist to the view that, even if things had been different, scientific knowledge (...)
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  39. Reconstructing Scientific Revolutions. Thomas S. Kuhn's Philosophy of Science.[author unknown] - 1994 - Tijdschrift Voor Filosofie 56 (2):374-375.
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  40.  40
    The Structure of Scientific Revolutions: 50th Anniversary Edition.Thomas S. Kuhn & Ian Hacking - 2012 - University of Chicago Press.
    A good book may have the power to change the way we see the world, but a great book actually becomes part of our daily consciousness, pervading our thinking to the point that we take it for granted, and we forget how provocative and challenging its ideas once were—and still are. _The Structure of Scientific Revolutions _is that kind of book. When it was first published in 1962, it was a landmark event in the history and philosophy of science. (...)
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  41.  8
    Kuhn's Structure of Scientific Revolutions at fifty: reflections on a science classic.Robert J. Richards & Lorraine Daston (eds.) - 2016 - Chicago: University of Chicago Press.
    Thomas S. Kuhn’s The Structure of Scientific Revolutions was a watershed event when it was published in 1962, upending the previous understanding of science as a slow, logical accumulation of facts and introducing, with the concept of the “paradigm shift,” social and psychological considerations into the heart of the scientific process. More than fifty years after its publication, Kuhn’s work continues to influence thinkers in a wide range of fields, including scientists, historians, and sociologists. It is clear that (...)
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  42. Kuhn’s Structure of Scientific Revolutions - 50 Years On.William J. Devlin & Alisa Bokulich (eds.) - 2015 - Cham: Boston Studies in the Philosophy and History of Science, vol. 311. Springer.
    In 1962, the publication of Thomas Kuhn’s Structure ‘revolutionized’ the way one conducts philosophical and historical studies of science. Through the introduction of both memorable and controversial notions, such as paradigms, scientific revolutions, and incommensurability, Kuhn argued against the traditionally accepted notion of scientific change as a progression towards the truth about nature, and instead substituted the idea that science is a puzzle solving activity, operating under paradigms, which become discarded after it fails to respond accordingly to anomalous (...)
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  43.  16
    Ideology, Inevitability, and the Scientific Revolution.John Henry - 2008 - Isis 99 (3):552-559.
    ABSTRACT Looking in particular at the Scientific Revolution, this essay argues that, for all their differences, positivist commentators on science and contextualist historians of science ought to be committed to the view that counterfactual changes in the history of science would have made no significant difference to its historical development. Assumptions about the history of science as an inexorable march toward the truth commit the positivist to the view that, even if things had been different, scientific knowledge (...)
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  44. Scientific Revolution and Inter-Paradygmatic Dialogues.Kinhide Mushakoji - 1985 - Dialectics and Humanism 12 (1):235-256.
     
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  45.  66
    The Structure of Scientific Revolutions.David Bohm - 1964 - Philosophical Quarterly 14 (57):377-379.
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  46.  72
    Scientific Revolutions without Paradigm-Replacement and the Coexistence of Competing Paradigms: The Case of Generative Grammar and Construction Grammar. [REVIEW]Stephan Kornmesser - 2014 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 45 (1):91-118.
    In the Kuhnian and Post-Kuhnian Philosophy of Science, it is widely accepted that scientific revolutions always involve the replacement of an old paradigm by a new paradigm. This article attempts to refute this assumption by showing that there are paradigm-constellations that conform to the relation of a scientific revolution in a Kuhnian sense without a paradigm-replacement occurring. The paradigms investigated here are the linguistic paradigms of Generative Grammar and Construction Grammar that, contrary to Kuhn’s conception of a (...)
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  47.  3
    The scientific revolution, by Steven Shapin, Illinois, University of Chicago Press, 1996.Patrícia Medeiros - 2011 - Kairos 3:97-111.
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    The Challenge of Scientific Revolutions: Van Fraassen's and Friedman's Responses.Vasso Kindi - 2011 - International Studies in the Philosophy of Science 25 (4):327-349.
    This article criticizes the attempts by Bas van Fraassen and Michael Friedman to address the challenge to rationality posed by the Kuhnian analysis of scientific revolutions. In the paper, I argue that van Fraassen's solution, which invokes a Sartrean theory of emotions to account for radical change, does not amount to justifying rationally the advancement of science but, rather, despite his protestations to the contrary, is an explanation of how change is effected. Friedman's approach, which appeals to philosophical developments (...)
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  49.  33
    The scientific revolution and the protestant reformation.—I.S. F. Mason PhD - 1953 - Annals of Science 9 (1):64-87.
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  50.  13
    The Scientific Revolution: Has There Been a British View?-A Personal Assessment.H. Floris Cohen - 1999 - History of Science 37 (1):79-106.
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