Results for 'Revolution for Science'

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  1. 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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  2. 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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  3. 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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  4.  17
    Constructing a ‘revolution in science’: the campaign to promote a favourable reception for the 1919 solar eclipse experiments.Alistair Sponsel - 2002 - British Journal for the History of Science 35 (4):439-467.
    A patriot fiddler-composer of LutonWrote a funeral march which he played with the mute on,To record, as he said, that a Jewish-Swiss-TeutonHad partially scrapped the Principia of Newton.Punch, 19 November 1919, p. 422When the results of experiments performed during the British solar eclipse expeditions of 1919 were announced at a joint meeting of the Royal Society and the Royal Astronomical Society, they were celebrated in the next day's Times of London with the famous headline ‘Revolution in science’. This (...)
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  5.  24
    Revolutions in science, revolutions in chemistry.Jeffrey I. Seeman - 2023 - Foundations of Chemistry 25 (2):321-335.
    Despite decades of research and thought on the meaning and identification of revolutions in science, there is no generally accepted definition for this concept. This paper presents 13 different characteristics that have been used by philosophers and historians of science to characterize revolutions in science, in general, and in chemistry, in particular. These 13 characteristics were clustered into six independent factors. Suggestions are provided as to the use of these characteristics and factors to evaluate historical events as (...)
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  6.  44
    Revolutions in science and refinements in the analysis of causation.Joseph C. Pitt & Morton Tavel - 1977 - Zeitschrift Für Allgemeine Wissenschaftstheorie 8 (1):48-62.
    Summary A sufficient condition for a revolution in physics is a change in the concept of cause. To demonstrate this, we examine three developments in physical theory. After informally characterizing a theory in terms of an heuristic and a set of equations, we show how tensions between these two dimensions lead to the development of alternative theoretical accounts. In each case the crucial move results in a refinement of our account of cause. All these refinements taken together result in (...)
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  7.  22
    Permanent Revolution In Science: A Quantum Epistemology.Steve Fuller - 2020 - Philosophy of the Social Sciences 51 (1):48-57.
    This article is the preface to the Russian translation of my Kuhn vs Popper. I use it as an opportunity to re-examine the difference between Kuhn and Popper on the nature of ‘revolutions’ in science. Kuhn is rightly seen as a ‘reluctant revolutionary’ and Popper a ‘permanent revolutionary’. In this respect, Kuhn sticks to the original medieval meaning of ‘revolution’ as restoration of a natural order, whereas Popper adopts the more modern meaning of ‘revolution’ that comes into (...)
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  8.  12
    Beauty and Revolution in Science.James W. McAllister - 1996 - Ithaca: Cornell University Press.
    How reasonable and rational can science be when its practitioners speak of "revolutions" in their thinking and extol certain theories for their "beauty"? James W. McAllister addresses this question with the first systematic study of the aesthetic evaluations that scientists pass on their theories. P. A. M. Dirac explained why he embraced relativity by saying, "It is the essential beauty of the theory which I feel is the real reason for believing in it." Dirac's claim seems to belie rationalist (...)
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  9.  88
    Scientific revolution for ever?William Kneale - 1968 - British Journal for the Philosophy of Science 19 (1):27-42.
  10. 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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  11.  22
    The Revolution in Science and Technology and Problems of Education.A. I. Uemov - 1976 - Russian Studies in Philosophy 15 (1):61-65.
    The revolution in science and technology poses serious problems for the practice of educating the new human being. By accelerating many times the development of the forces of production, the revolution in science and technology leads to the appearance of new skills and professions and reduces the need for a number of others. This means that we must, even now, prepare our young people for conditions of life not yet in existence and that we often inadequately (...)
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  12.  13
    The Revolution in Science and Technology and the Ideological Struggle.A. N. Shlepakov - 1976 - Russian Studies in Philosophy 15 (1):73-77.
    The connection between the revolution in science and technology and ideological struggle is quite obvious, and it affects not only the content of the struggle but its very scale, character, and means. Today the technical potentials for bringing ideological influence to bear have increased to an unprecedented degree. This increase has expanded the range of communication to a tremendous degree and brought its object — the masses of the people — close to the sources of ideological influence.
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  13. 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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  14. Our Fundamental Problem: A Revolution for Philosophy and the World.Nicholas Maxwell - 2021 - Humanities, Arts, and Society Magazine 3.
    How can our human world – the world we experience and live in – exist and best flourish embedded as it is in the physical universe? That is Our Fundamental Problem. It encompasses all others of science, thought and life. It is the proper task of philosophy to try to improve our conjectures as to how aspects of Our Fundamental Problem are to be solved, and to encourage everyone to think, imaginatively and critically, now and again, about the problem. (...)
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  15.  30
    Towards a new framework for revolutions in science.Wenceslao J. González - 1996 - Studies in History and Philosophy of Science Part A 27 (4):607-625.
  16.  96
    Guidelines for Research Ethics in Science and Technology.National Committee For Research Ethics In Science And Technology - 2009 - Jahrbuch für Wissenschaft Und Ethik 14 (1):255-266.
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  17.  49
    Beauty and Revolution in Science.J. D. Trout - 1998 - Philosophical Review 107 (2):320.
    The role of aesthetic factors in science is often mentioned, but seldom discussed in a sustained and systematic way. This thoughtful book is James McAllister’s attempt to do so. McAllister’s treatment engages a broad range of issues, relating aesthetic criteria to such diverse issues as the history of astronomy and twentieth-century physics, theoretical ruptures, and architecture. Its core goals are two. One goal is to show that there is a role for aesthetic considerations in theory choice that is compatible (...)
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  18. Imperatives for Teacher Education.G. T. Evans & Centre for Applied Cognitive Science - 1985 - Centre for Applied Cognitive Science, Oise.
  19.  11
    The Counter-Revolution of Science[REVIEW]W. J. H. Sprott - 1953 - British Journal for the Philosophy of Science 4 (15):246-248.
  20.  15
    Problems of Programming the Process of Forming the New Human Being Under the Conditions of the Revolution in Science and Technology.N. G. Chumachenko - 1976 - Russian Studies in Philosophy 15 (1):18-21.
    The revolution in science and technology is significantly changing the character of production and work. One of the important aspects of this change is that labor becomes a scientifically organized process that makes increased demands on development of the human factor in production. The most productive scientific ideas, the most perfect technologies, when combined with production, may fail to produce the desired "yield" unless a sufficient number of well-trained personnel, or of the required organizational structures corresponding to the (...)
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  21.  22
    The Revolution in Science and Technology and the Shaping of Rational Needs in the Individual Under the Conditions of Developed Socialist Society.I. V. Popovich - 1976 - Russian Studies in Philosophy 15 (1):39-42.
    Socialist society is a society whose basic economic law and goal is the fullest possible satisfaction of human needs. Proceeding from this, the Twenty-fourth Congress of the CPSU set a course for a more profound turn in the economy toward solution of the various tasks related to improving the well-being of Soviet people, not only for the five-year plan period but also as the general orientation of the economic development of the country for the long term.
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  22.  5
    Revolution in Science[REVIEW]L. Williams - 1986 - British Journal for the History of Science 19 (3):339-342.
  23.  2
    Revolutions in Science: Their Meaning and Relevance. [REVIEW]A. Hall - 1990 - British Journal for the History of Science 23 (2):249-250.
  24. International Ethical Guidelines for Biomedical Research Involving Human Subjects. Geneva: CIOMS, 2002. 16. Resnik DB. The Ethics of HIV Research in Developing Nations. [REVIEW]Council for International Organizations of Medical Sciences - 1998 - Bioethics 12:286-206.
     
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  25. Second-Order Cybernetics as a Fundamental Revolution in Science.S. A. Umpleby - 2016 - Constructivist Foundations 11 (3):455-465.
    Context: The term “second-order cybernetics” was introduced by von Foerster in 1974 as the “cybernetics of observing systems,” both the act of observing systems and systems that observe. Since then, the term has been used by many authors in articles and books and has been the subject of many conference panels and symposia. Problem: The term is still not widely known outside the fields of cybernetics and systems science and the importance and implications of the work associated with second-order (...)
     
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  26. 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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  27. 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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  28.  6
    Towards a new framework for revolutions in science[REVIEW]Wenceslao J. Gonzalez - 1996 - Studies in History and Philosophy of Science Part A 27 (4):607-625.
  29.  3
    Ecological Revolutions: Nature, Gender, and Science in New England.Carolyn Merchant - 2010 - Univ of North Carolina Press.
    With the arrival of European explorers and settlers during the seventeenth century, Native American ways of life and the environment itself underwent radical alterations as human relationships to the land and ways of thinking about nature all changed. This colonial ecological revolution held sway until the nineteenth century, when New England's industrial production brought on a capitalist revolution that again remade the ecology, economy, and conceptions of nature in the region. In Ecological Revolutions, Carolyn Merchant analyzes these two (...)
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  30. Science for governance : the implications of the complexity revolution.Mario Giampietro, Tim Allen & Kozo Mayumi - 2006 - In Ângela Guimarães Pereira, Sofia Guedes Vaz & Sylvia S. Tognetti (eds.), Interfaces between science and society. Sheffield, UK: Greenleaf.
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  31.  14
    Opinion on the vulnerabilities of elderly people, especially of those who reside in institutions.National Council of Ethics for the Life Sciences - 2016 - Jahrbuch für Wissenschaft Und Ethik 20 (1):303-312.
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  32.  46
    “Editing” Genes: A Case Study About How Language Matters in Bioethics.Meaghan O'Keefe, Sarah Perrault, Jodi Halpern, Lisa Ikemoto, Mark Yarborough & U. C. North Bioethics Collaboratory for Life & Health Sciences - 2015 - American Journal of Bioethics 15 (12):3-10.
    Metaphors used to describe new technologies mediate public understanding of the innovations. Analyzing the linguistic, rhetorical, and affective aspects of these metaphors opens the range of issues available for bioethical scrutiny and increases public accountability. This article shows how such a multidisciplinary approach can be useful by looking at a set of texts about one issue, the use of a newly developed technique for genetic modification, CRISPRcas9.
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  33. 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 (...)
  34.  27
    Science. Not Just For Scientists. A Historiographical Analysis of the Changing Interpretations of the Scientific Revolution”.Aaron Gasparik - 2013 - Constellations (University of Alberta Student Journal) 4 (2).
    Traditionally, the Scientific Revolution has been portrayed as an era in history when new developments in fields of ‘scientific’ thought eclipsed the long-held notions presented by religion and philosophy. Historical interpretations subscribing to this view have often presented the Scientific Revolution as a time when significant changes occurred in the way societies understood their world. These historical analyses have focused on a limited suite of ideas – the iconic figures of the Scientific Revolution, the intellectual, methodological and (...)
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  35.  9
    Science. Not Just For Scientists. A Historiographical Analysis of the Changing Interpretations of the Scientific Revolution.Aaron Gasparik - 2013 - Constellations (University of Alberta Student Journal) 4 (2).
    Traditionally, the Scientific Revolution has been portrayed as an era in history when new developments in fields of ‘scientific’ thought eclipsed the long-held notions presented by religion and philosophy. Historical interpretations subscribing to this view have often presented the Scientific Revolution as a time when significant changes occurred in the way societies understood their world. These historical analyses have focused on a limited suite of ideas – the iconic figures of the Scientific Revolution, the intellectual, methodological and (...)
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  36. Review of James W. McAllister: Beauty & revolution in science[REVIEW]Katherine Hawley - 1997 - British Journal for the Philosophy of Science 48 (2):297-299.
  37.  12
    I. Bernard Cohen. Revolution in Science. Cambridge, Mass.: Harvard University Press, 1985. Pp. xx + 711. ISBN 0-674-76777-2. £22.75. [REVIEW]L. Pearce Williams - 1986 - British Journal for the History of Science 19 (3):339-342.
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  38.  13
    William R. Shea . Revolutions in Science: Their Meaning and Relevance. Canton: Science History Publications, 1988. Pp. xi + 291. [REVIEW]A. Rupert Hall - 1990 - British Journal for the History of Science 23 (2):249-250.
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  39. Francis Bacon's Natural Philosophy a New Source, a Transcription of Manuscript Hardwick 72a.Francis Bacon, Graham Rees, Christopher Upton & British Society for the History of Science - 1984 - British Society for the History of Science.
     
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  40.  17
    Hermeneutics and Science.Márta Fehér, Olga Kiss, L. Ropolyi & International Society for Hermeneutics and Science (eds.) - 1999 - Kluwer Academic Publishers.
  41. The World Crisis - And What To Do About It: A Revolution for Thought and Action Preface and Chapter 1.Nicholas Maxwell - 2021 - Singapore: World Scientific.
    At present universities are devoted to the acquisition of specialized knowledge and technological know-how. They fail to do what they most need to do: help the public acquire a good understanding of what our problems are, what needs to be done to solve them. Universities do not even conceive of their task in that way. The result is that the public, by and large, fails to appreciate just how serious the problems that face us are, and so fails to put (...)
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  42.  5
    Genetics, Ethics, and Human Values: Human Genome Mapping, Genetic Screening, and Gene Therapy : Proceedings of the XXIVth CIOMS Conference, Tokyo and Inuyama City, Japan, 22-27 July 1990.Z. Bankowski, Alexander Morgan Capron, Council for International Organizations of Medical Sciences, Nihon Gakujutsu Kaigi & Unesco - 1991
  43. 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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    Nicholas Maxwell: In Praise of Natural Philosophy: A Revolution for Thought and Life.Harald Walach - 2019 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 50 (4):603-609.
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  45.  7
    Structures of explanations for the scientific revolution: H. Floris Cohen: The rise of modern science explained: a comparative history. Cambridge: Cambridge University Press, 2015, 301pp, AUD$56.95 PB.Babak Ashrafi - 2017 - Metascience 26 (3):355-359.
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    Jon Agar, Turing and the universal machine: The making of the modern computer. Revolutions in science. Duxford: Icon books, 2001. Pp. IV+153. Isbn 1-84046-250-7. £5.99, $9.95. [REVIEW]Martin Campbell-Kelly - 2002 - British Journal for the History of Science 35 (4):475-485.
  47.  24
    In Praise of Natural Philosophy: A Revolution for Thought and Life: by Nicholas Maxwell, Montreal, McGill-Queen’s University Press, 2017, xii+342 pp., ISBN 9780773549029, Can$110.00, US$110.00 ; ISBN 9780773549036, Can$34.95, US$29.95.Mohammad Reza Haghighi Fard - 2019 - International Studies in the Philosophy of Science 32 (1):67-69.
    Volume 32, Issue 1, March 2019, Page 67-69.
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  48. 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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  49. 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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  50. 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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