Results for 'revolution in science'

996 found
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  1. The Need for a Revolution in the Philosophy of Science.Nicholas Maxwell - 2002 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 33 (2):381-408.
    There is a need to bring about a revolution in the philosophy of science, interpreted to be both the academic discipline, and the official view of the aims and methods of science upheld by the scientific community. At present both are dominated by the view that in science theories are chosen on the basis of empirical considerations alone, nothing being permanently accepted as a part of scientific knowledge independently of evidence. Biasing choice of theory in the (...)
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  2. 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 and (...)
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  3. A Copernican Revolution in Science and Religion Towards a Third Millennium Spirituality:The Entangled State of God and Humanity.Peter B. Todd - forthcoming - Symposium Conference Paper, C. G. Jung Society of Melbourne, May 21, 2016.
    As the title, The Entangled State of God and Humanity suggests, this lecture dispenses with the pre-Copernican, patriarchal, anthropomorphic image of God while presenting a case for a third millennium theology illuminated by insights from archetypal depth psychology, quantum physics, neuroscience and evolutionary biology. It attempts to smash the conceptual barriers between science and religion and in so doing, it may contribute to a Copernican revolution which reconciles both perspectives which have been apparently irreconcilable opposites since the sixteenth (...)
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  4. This Year's Nobel Prize (2022) in Physics for Entanglement and Quantum Information: the New Revolution in Quantum Mechanics and Science.Vasil Penchev - 2023 - Philosophy of Science eJournal (Elsevier: SSRN) 18 (33):1-68.
    The paper discusses this year’s Nobel Prize in physics for experiments of entanglement “establishing the violation of Bell inequalities and pioneering quantum information science” in a much wider, including philosophical context legitimizing by the authority of the Nobel Prize a new scientific area out of “classical” quantum mechanics relevant to Pauli’s “particle” paradigm of energy conservation and thus to the Standard model obeying it. One justifies the eventual future theory of quantum gravitation as belonging to the newly established quantum (...)
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  5. Reviving the parameter revolution in semantics.Bryan Pickel, Brian Rabern & Josh Dever - 2018 - In Derek Ball & Brian Rabern (eds.), The Science of Meaning: Essays on the Metatheory of Natural Language Semantics. Oxford: Oxford University Press. pp. 138-171.
    Montague and Kaplan began a revolution in semantics, which promised to explain how a univocal expression could make distinct truth-conditional contributions in its various occurrences. The idea was to treat context as a parameter at which a sentence is semantically evaluated. But the revolution has stalled. One salient problem comes from recurring demonstratives: "He is tall and he is not tall". For the sentence to be true at a context, each occurrence of the demonstrative must make a different (...)
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  6. From knowledge to wisdom: a revolution for science and the humanities.Nicholas Maxwell - 2007 - London: Pentire Press.
    From Knowledge to Wisdom argues that there is an urgent need, for both intellectual and humanitarian reasons, to bring about a revolution in science and the humanities. The outcome would be a kind of academic inquiry rationally devoted to helping humanity learn how to create a better world. Instead of giving priority to solving problems of knowledge, as at present, academia would devote itself to helping us solve our immense, current global problems – climate change, war, poverty, population (...)
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  7. David Knight, Travelling in Strange Seas: The Great Revolution in Science[REVIEW]Sean F. Johnston - 2015 - Ambix 62:293-294.
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  8. From knowledge to wisdom: a revolution in the aims and methods of science.Nicholas Maxwell - 1984 - Oxford: Blackwell.
    This book argues for the need to put into practice a profound and comprehensive intellectual revolution, affecting to a greater or lesser extent all branches of scientific and technological research, scholarship and education. This intellectual revolution differs, however, from the now familiar kind of scientific revolution described by Kuhn. It does not primarily involve a radical change in what we take to be knowledge about some aspect of the world, a change of paradigm. Rather it involves a (...)
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  9. A Revolution in Universities.Nicholas Maxwell - 2012 - Bedales Association and Old Bedalian Newsletter:19.
    For much of my working life I have argued, in and out of print, that we need to bring about a revolution in the aims and methods of science – and of academic inquiry more generally. Instead of giving priority to the search for knowledge, universities need to devote themselves to seeking and promoting wisdom by rational means, wisdom being the capacity to realize what is of value in life, for oneself and others, wisdom thus including knowledge, understanding (...)
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  10. A Revolution for Science and the Humanities: From Knowledge to Wisdom.Nicholas Maxwell - 2004 - Dialogue and Universalism 15 (1-2):29-57.
    At present the basic intellectual aim of academic inquiry is to improve knowledge. Much of the structure, the whole character, of academic inquiry, in universities all over the world, is shaped by the adoption of this as the basic intellectual aim. But, judged from the standpoint of making a contribution to human welfare, academic inquiry of this type is damagingly irrational. Three of four of the most elementary rules of rational problem-solving are violated. A revolution in the aims and (...)
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  11. Is a Cognitive Revolution in Theoretical Biology Underway?Tiago Rama - 2024 - Foundations of Science 1:1-22.
    The foundations of biology have been a topic of debate for the past few decades. The traditional perspective of the Modern Synthesis, which portrays organisms as passive entities with limited role in evolutionary theory, is giving way to a new paradigm where organisms are recognized as active agents, actively shaping their own phenotypic traits for adaptive purposes. Within this context, this article raises the question of whether contemporary biological theory is undergoing a cognitive revolution. This inquiry can be approached (...)
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  12. The Metaphysics of Science and Aim-Oriented Empiricism: A Revolution for Science and Philosophy.Nicholas Maxwell - 2019 - Cham, Switzerland: Springer Nature.
    This book gives an account of work that I have done over a period of decades that sets out to solve two fundamental problems of philosophy: the mind-body problem and the problem of induction. Remarkably, these revolutionary contributions to philosophy turn out to have dramatic implications for a wide range of issues outside philosophy itself, most notably for the capacity of humanity to resolve current grave global problems and make progress towards a better, wiser world. A key element of the (...)
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  13. Theories at Work: On the Structure and Functioning of Theories in Science, in Particular during the Copernican Revolution by Marinus Dirk Stafleu. [REVIEW]Gary Hatfield - 1990 - Isis 81 (2):340-341.
    Review of: Marinus Dirk Stafleu. Theories at Work: On the Structure and Functioning of Theories in Science, in Particular during the Copernican Revolution. (Christian Studies Today.) 310 pp., bibl., index. Lanham, Md./New York: University Press of America, 1987; Toronto: Institute for Christian Studies, 1987. $28.75 (cloth); $16.50 (paper).
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  14. Brief Account of How Nicholas Maxwell Came to Argue for the Urgent Need for a Revolution in Universities.Nicholas Maxwell - manuscript
    We need urgently to bring about a revolution in universities around the world, wherever possible, so that they take their fundamental task to be, not to acquire and apply knowledge, but rather to help humanity learn how to resolve conflicts and problems of living in increasingly cooperatively rational ways, so that we may make progress towards a good, genuinely civilized, wise world. The pursuit of knowledge would be a vital but subsidiary task. I have argued for the urgent need (...)
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  15. The Marginalist Revolution in Economics of XXth Century Beginning: Intertheoretic Approach.Rinat M. Nugayev - 2012 - In Ildar Talip-uli Nasretdinoff (ed.), The Problems of Cooperation. pp. 284-286.
    What are the reasons of theory change in economical science? – The author tries to answer the question utilizing his theory change epistemological model approbated on the natural sciences. Key words: economical theory, theory change, natural science, model.
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  16. Isaac Asimov’s sci-fi novella “Profession” versus professionalism: Reflections on the (missing) scientific revolutions in the 21th century.Vasil Penchev - 2024 - Philosophy of Science eJournal (Elsevier: SSRN) 17 (42):1-38.
    This is a partly provocative essay edited as a humanitarian study in philosophy of science and social philosophy. The starting point is Isaac Asimov’s famous sci-fi novella “Profession” (1957) to be “back” extrapolated to today’s relation between Thomas Kuhn’s “normal science” and “scientific revolutions” (1962). The latter should be accomplished by Asimov’s main personage George Platen’s ilk (called “feeble minded” in the novella) versus the “burned minded” professionals able only to “normal science”. Francis Fukuyama’s “end of history” (...)
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  17. Picturing Knowledge: Historical and Philosophical Problems Concerning the Use of Art in Science.Brian Scott Baigrie (ed.) - 1996 - University of Toronto Press.
    List of Illustrations Introduction 1 The Didactic and the Elegant: Some Thoughts on Scientific and Technological Illustrations in the Middle Ages and Renaissance 3 2 Temples of the Body and Temples of the Cosmos: Vision and Visualization in the Vesalian and Copernican Revolutions 40 3 Descartes’s Scientific Illustrations and ’la grande mecanique de la nature’ 86 4 Illustrating Chemistry 135 5 Representations of the Natural System in the Nineteenth Century 164 6 Visual Representation in Archaeology: Depicting the Missing-Link in Human (...)
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  18. The Language of Life. DNA and the revolution in personalized medicine. Francis S. Collins New York etc.: Harper, 2011.Hub Zwart - 2010 - Genomics, Society and Policy 6 (3):1-10.
    Francis Collins had an impressive track record as a gene hunter (cystic fibrosis, neurofibromatosis, Huntington’s disease) when he was appointed Director of the Human Genome Project (HGP) in 1993. In June 2000, together with Craig Venter and President Bill Clinton, he presented the draft version of the human genome sequence to a worldwide audience during a famous press conference. And in 2009, President Barack Obama nominated him as director of the National Institutes of Health (NIH), the largest Tfunding agency for (...)
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  19. Cross-Cultural Relevance of the Third Revolution in Psychiatry.Mohammed Abouelleil Rashed - 2010 - Dialogues in Philosophy, Mental and Neuro Sciences 3 (1):21-22.
    Fulford’s and Stanghellini’s concise and rich article is a mission-statement of an in- fluential direction in what they call the “third revolution” in late twentieth-century psychiatry. Values-based practice finds its intellectual mooring in phenomenology and analytic philosophy and is geared to handle the “complex and confl icting values” that are part of clinical decision-making.
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  20. 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 in such a (...)
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  21. Poetry, science and revolution: The enigma of Herman Gorter’s Pan.Hub Zwart - 2019 - Journal of Dutch Literature 10 (1):24-49.
    Herman Gorter (1864-1927) became famous as the author of May (1889) and Poems (1890). His opus magnum Pan, published in 1916, hardly acquired any readership at all, which is remarkable, given the monumental size and scope of this unique achievement, celebrating the imminent proletarian revolution and the advent of the communist era: a visionary work of global proportions. Gorter’s Pan will be assessed as thinking poetry, more precisely: as dialectical materialist poetry, as a work of art which articulates a (...)
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  22. The Beyträge at 200: Bolzano's quiet revolution in the philosophy of mathematics.Jan Sebestik & Paul Rusnock - 2013 - Journal for the History of Analytical Philosophy 1 (8).
    This paper surveys Bolzano's Beyträge zu einer begründeteren Darstellung der Mathematik (Contributions to a better-grounded presentation of mathematics) on the 200th anniversary of its publication. The first and only published issue presents a definition of mathematics, a classification of its subdisciplines, and an essay on mathematical method, or logic. Though underdeveloped in some areas (including,somewhat surprisingly, in logic), it is nonetheless a radically innovative work, where Bolzano presents a remarkably modern account of axiomatics and the epistemology of the formal sciences. (...)
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  23. Observation and “Science” in British anthropology before the “Malinowskian Revolution”.George Baca - 2015 - Studies in History and Philosophy of Science Part C: Studies in History and Philosophy of Biological and Biomedical Sciences 54:81-83.
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  24. In Praise of Natural Philosophy: A Revolution for Thought and Life.Nicholas Maxwell - 2017 - Montreal, Canada: McGill-Queen's University Press.
    The central thesis of this book is that we need to reform philosophy and join it to science to recreate a modern version of natural philosophy; we need to do this in the interests of rigour, intellectual honesty, and so that science may serve the best interests of humanity. Modern science began as natural philosophy. In the time of Newton, what we call science and philosophy today – the disparate endeavours – formed one mutually interacting, integrated (...)
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  25. In praise of natural philosophy: a revolution for thought and life.Nicholas Maxwell - 2012 - Philosophia 40 (4):705-715.
    Modern science began as natural philosophy. In the time of Newton, what we call science and philosophy today – the disparate endeavours – formed one mutually interacting, integrated endeavour of natural philosophy: to improve our knowledge and understanding of the universe, and to improve our understanding of ourselves as a part of it. Profound, indeed unprecedented discoveries were made. But then natural philosophy died. It split into science on the one hand, and philosophy on the other. This (...)
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  26. Metaphors: Midwives of conceptual change in science.Xingming Li - 2018 - Journal of Human Cognition 2 (2):17-31.
    The American philosopher of science Kuhn, in the 1980s, studied the scientific revolution in depth from a unique perspective of the philosophy of language, seeing it as a change in the language of science, especially in scientific vocabularies or dictionaries. In this process of transformation, metaphors, analogies, and models play the role of midwives in the birth of new concepts. Based on the analysis of Kuhn's relevant insights, this paper identifies the nature and use of metaphor, analogy (...)
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  27. The fourth industrial revolution and the future of the entrepreneurial university in South Africa.Gabriel O. Ogunlela & Robertson K. Tengeh - 2021 - International Journal of Research in Business and Social Science 10 (3):91-100.
    Globally, digital disruption has accelerated in the last few years. It is argued that this technological revolution would fundamentally alter our interactions with one another, our work, and our lives. The Fourth Industrial Revolution (4IR) can blur the boundaries between the physical and biological worlds. Although the extent of the effect is unclear, many anticipate massive changes in the economic and educational spheres. Given the close relationship between the economy and the drivers of entrepreneurship in universities, the survival (...)
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  28. The Second Scientific Revolution: Genesis and Advancement of Non-Classical Science.Rinat M. Nugayev - 2023 - Moscow: Triumph Publishers.
    What were the true reasons of the second scientific revolution? – To answer the question, the epistemic model is applied, according to which radical breakthroughs in science were not due to the fanciful excogitation of new ideas ‘ex nihilo’, but rather to the tedious, long-term and troublesome processes of the mutual lapping, reconciliation, interpenetration and intertwinement of ‘old’ research traditions preceding such breaks. It is contended that Einstein's 'annus mirabilis' constituted an acme of the second scientific revolution. (...)
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  29. The Structure of Psychic Revolutions: A Psychoanalytic Account of Kuhnian Science.Scott Taylor & S. C. Taylor - 2019 - American Imago 3 (76):381-404.
    In an often-forgotten proclamation during an autobiographical interview in 1995, Thomas Kuhn notes, without much explanation, his indebtedness to psychoanalysis. While in the wake of Kuhn's 1962 publication The Structure of Scientific Revolutions, many psychoanalytic scholars have made use of his work to justify shifts in psychoanalytic traditions, few have attempted to point out the relation between Kuhnian science and the psychoanalytic process. This article argues that there is a strong affinity between the developmental and structural themes of Kuhn’s (...)
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  30. The Rationality of Science in Relation to its History.Sherrilyn Roush - 2015 - In William J. Devlin & Alisa Bokulich (eds.), Kuhn’s Structure of Scientific Revolutions - 50 Years On. Cham: Boston Studies in the Philosophy and History of Science, vol. 311. Springer. pp. 71-90.
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  31. Grounding the Selectionist Explanation for the Success of Science in the External Physical World.Ragnar van der Merwe - forthcoming - Foundations of Science: DOI: 10.1007/s10699-023-09907-y.
    I identify two versions of the scientific anti-realist’s selectionist explanation for the success of science: Bas van Fraassen’s original and K. Brad Wray’s newer interpretation. In Wray’s version, psycho-social factors internal to the scientific community – viz. scientists’ interests, goals, and preferences – explain the theory-selection practices that explain theory-success. I argue that, if Wray’s version were correct, then science should resemble art. In art, the artwork-selection practices that explain artwork-success appear faddish. They are prone to radical change (...)
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  32. Einstein's Revolution: A Study in Theory Unification.Rinat M. Nugayev - 2018 - Sharjah, UAE: Bentham science publishers.
    Press release. -/- The ebook entitled, Einstein’s Revolution: A Study of Theory-Unification, gives students of physics and philosophy, and general readers, an epistemological insight into the genesis of Einstein’s special relativity and its further unification with other theories, that ended well by the construction of general relativity. The book was developed by Rinat Nugayev who graduated from Kazan State University relativity department and got his M.Sci at Moscow State University department of philosophy of science and Ph.D at Moscow (...)
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  33. Redefining revolutions.Andrew Aberdein - 2018 - In Moti Mizrahi (ed.), The Kuhnian image of science: Time for a decisive transformation? London: Rowman & Littlefield. pp. 133–154.
    In their account of theory change in logic, Aberdein and Read distinguish 'glorious' from 'inglorious' revolutions--only the former preserves all 'the key components of a theory' [1]. A widespread view, expressed in these terms, is that empirical science characteristically exhibits inglorious revolutions but that revolutions in mathematics are at most glorious [2]. Here are three possible responses: 0. Accept that empirical science and mathematics are methodologically discontinuous; 1. Argue that mathematics can exhibit inglorious revolutions; 2. Deny that inglorious (...)
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  34. Is the Wisdom Revolution Underway?Nicholas Maxwell - manuscript
    The world faces grave global problems. These have been made possible by modern science and technology. We have put knowledge-inquiry into academic practice – a seriously irrational kind of inquiry that seeks knowledge and technological know-how dissociated from a more fundamental concern to seek and promote wisdom. We urgently need to bring about a revolution in academic inquiry, so that knowledge-inquiry becomes wisdom-inquiry – a kind of inquiry rationally designed and devoted to helping humanity make progress towards a (...)
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  35. The Forgotten Earth: Nature, World Religions, and Worldlessness in the Legacy of the Axial Age/Moral Revolution.Eugene Halton - 2021 - In Said Amir Arjomand & Stephen Kalberg (eds.), From World Religions to Axial Civilizations and Beyond. Albany, NY, USA: State University of New York Press. pp. 209-238.
    The rise and legacy of world religions out of that period centered roughly around 500-600 BCE, what John Stuart-Glennie termed in 1873 the moral revolution, and Karl Jaspers later, in 1949, called the axial age, has been marked by heightened ideas of transcendence. Yet ironically, the world itself, in the literal sense of the actual earth, took on a diminished role as a central element of religious sensibility in the world religions, particularly in the Abrahamic religions. Given the issue (...)
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  36. Revaluing Laws of Nature in Secularized Science.Eli I. Lichtenstein - 2022 - In Yemima Ben-Menahem (ed.), Rethinking the Concept of Law of Nature: Natural Order in the Light of Contemporary Science. Springer. pp. 347-377.
    Discovering laws of nature was a way to worship a law-giving God, during the Scientific Revolution. So why should we consider it worthwhile now, in our own more secularized science? For historical perspective, I examine two competing early modern theological traditions that related laws of nature to different divine attributes, and their secular legacy in views ranging from Kant and Nietzsche to Humean and ‘governing’ accounts in recent analytic metaphysics. Tracing these branching offshoots of ethically charged God-concepts sheds (...)
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  37. The World Crisis - And What To Do About It: A Revolution for Thought and Action.Nicholas Maxwell - 2021 - New Jersey: World Scientific.
    Two great problems of learning confront humanity: learning about the universe, and about ourselves and other living things as a part of the universe; and learning how to create a good, civilized, enlightened, wise world. We have solved the first great problem of learning – we did that when we created modern science and technology in the 17th century. But we have not yet solved the second one. That combination of solving the first problem, failing to solve the second (...)
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  38. The Third Revolution: Philosophy into Practice in Twenty-first Century Psychiatry.Fulford KWM Bill & Stanghellini Giovanni - 2008 - Dialogues in Philosophy, Mental and Neuro Sciences 1 (1):5-14.
    Three revolutions in psychiatry characterised the closing decade of the twentieth century: 1) in the neurosciences, 2) in patient-centred models of service delivery, and 3) in the emergence of a rapidly expanding new cross -disciplinary field of philosophy and psychiatry. Starting with a case history, the paper illustrates the impact of this third revolution - the new philosophy of psychiatry - on day-to-day clinical practice through training programmes and policy developments in what has become known as values - based (...)
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  39. Definite Descriptions and the Gettier Example.Christoph Schmidt-Petri & London School of Economics and Political Science - 2002 - CPNSS Discussion Papers.
    This paper challenges the first Gettier counterexample to the tripartite account of knowledge. Noting that 'the man who will get the job' is a description and invoking Donnellan's distinction between their 'referential' and 'attributive' uses, I argue that Smith does not actually believe that the man who will get the job has ten coins in his pocket. Smith's ignorance about who will get the job shows that the belief cannot be understood referentially, his ignorance of the coins in his pocket (...)
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  40. Unification and Revolution: A Paradigm for Paradigms.Nicholas Maxwell - 2014 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 45 (1):133-149.
    Incommensurability was Kuhn’s worst mistake. If it is to be found anywhere in science, it would be in physics. But revolutions in theoretical physics all embody theoretical unification. Far from obliterating the idea that there is a persisting theoretical idea in physics, revolutions do just the opposite: they all actually exemplify the persisting idea of underlying unity. Furthermore, persistent acceptance of unifying theories in physics when empirically more successful disunified rivals can always be concocted means that physics makes a (...)
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  41. Can Humanity Learn to become Civilized? The Crisis of Science without Civilization.Nicholas Maxwell - 2000 - Journal of Applied Philosophy 17 (1):29-44.
    Two great problems of learning confront humanity: learning about the nature of the universe and our place in it, and learning how to become civilized. The first problem was solved, in essence, in the 17th century, with the creation of modern science. But the second problem has not yet been solved. Solving the first problem without also solving the second puts us in a situation of great danger. All our current global problems have arisen as a result. What we (...)
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  42. Representation in Cognitive Science, by Nicholas Shea. Oxford: Oxford University Press, 2018. Pp. 292.Todd Ganson - 2021 - Mind 130 (517).
    A central component of the cognitive revolution is a commitment to explaining behaviour by reference to internal representations of the world. This core aspect.
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  43. On decoding and rewriting genomes: a psychoanalytical reading of a scientific revolution.Hub Zwart - 2012 - Medicine, Health Care and Philosophy 15 (3):337-346.
    In various documents the view emerges that contemporary biotechnosciences are currently experiencing a scientific revolution: a massive increase of pace, scale and scope. A significant part of the research endeavours involved in this scientific upheaval is devoted to understanding and, if possible, ameliorating humankind: from our genomes up to our bodies and brains. New developments in contemporary technosciences, such as synthetic biology and other genomics and “post-genomics” fields, tend to blur the distinctions between prevention, therapy and enhancement. An important (...)
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  44. 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 (...)
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  45. Xiang Chen, Instrumental Traditions and Theories of Light: The uses of instruments in the optical revolution. Science and philosophy, 9. dordrecht, boston and London: Kluwer academic publishers, 2000. Pp. XXIII+211. Isbn 0-7923-6349-3. £60·00, $99·00. [REVIEW]Sean F. Johnston - 2002 - British Journal for the History of Science 35 (1):97-123.
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  46. The interdisciplinarity revolution.Vincenzo Politi - 2019 - Theoria. An International Journal for Theory, History and Foundations of Science 34 (2):237.
    Contemporary interdisciplinary research is often described as bringing some important changes in the structure and aims of the scientific enterprise. Sometimes, it is even characterized as a sort of Kuhnian scientific revolution. In this paper, the analogy between interdisciplinarity and scientific revolutions will be analysed. It will be suggested that the way in which interdisciplinarity is promoted looks similar to how new paradigms were described and defended in some episodes of revolutionary scientific change. However, contrary to what happens during (...)
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  47. 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 of scientific (...), followed by an overview of the five main philosophical accounts of scientific revolutions. It then challenges two historiographical assumptions of the philosophical analyses of scientific revolutions. (shrink)
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  48. The cognitive neuroscience revolution.Worth Boone & Gualtiero Piccinini - 2016 - Synthese 193 (5):1509-1534.
    We outline a framework of multilevel neurocognitive mechanisms that incorporates representation and computation. We argue that paradigmatic explanations in cognitive neuroscience fit this framework and thus that cognitive neuroscience constitutes a revolutionary break from traditional cognitive science. Whereas traditional cognitive scientific explanations were supposed to be distinct and autonomous from mechanistic explanations, neurocognitive explanations aim to be mechanistic through and through. Neurocognitive explanations aim to integrate computational and representational functions and structures across multiple levels of organization in order to (...)
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  49. Science and Enlightenment: Two Great Problems of Learning.Nicholas Maxwell - 2019 - Cham, Switzerland: Springer Verlag.
    Two great problems of learning confront humanity: learning about the nature of the universe and about ourselves and other living things as a part of the universe, and learning how to become civilized or enlightened. The first problem was solved, in essence, in the 17th century, with the creation of modern science. But the second problem has not yet been solved. Solving the first problem without also solving the second puts us in a situation of great danger. All our (...)
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  50. Scottish and French Enlightenment J. Mackintosh and the revolution controversy in Great Britain.Eleni Xilakis - 2014 - SOCRATES 2 (JUNE 2014):79-88.
    Scottish and French Enlightenment J. Mackintosh and the revolution controversy in Great Britain -/- Author / Authors : Dr. Eleni Xilakis Page no. 79-88 Discipline : Political Science/Polity/ Democratic studies Script/language : Roman/English Category : Research paper Keywords: Scottish and French Enlightenment, J. Mackintosh, the revolution controversy in Great Britain.
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