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  1. Judgement and justification.William G. Lycan - 1988 - New York: Cambridge University Press.
    Toward theory a homuncular of believing For years and years, philosophers took thoughts and beliefs to be modifications of incorporeal Cartesian egos. ...
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  • How Can We Build a Better World?Nicholas Maxwell - 1991 - In Jürgen Mittelstrass (ed.), Einheit der Wissenschaften: Internationales Kolloquium der Akademie der Wissenschaften zu Berlin, 25-27 June 1990. New York: Walter de Gruyter. pp. 388-427.
    In order to build a better world we need to learn how to do it. That in turn requires that our institutions of learning, our schools and universities, are rationally organized for, and devoted to, the task. At present, devoted as they are to the pursuit of knowledge, they are not. We need urgently to bring about a revolution in academia so that the basic aim becomes to seek and promote wisdom, construed to be the capacity to realize what is (...)
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  • Falsification and the Methodology of Scientific Research Programmes.Imre Lakatos - 1970 - In Imre Lakatos & Alan Musgrave (eds.), Criticism and the growth of knowledge. Cambridge [Eng.]: Cambridge University Press. pp. 91-196.
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  • Falsification and the methodology of scientific research programmes.Lakatos Imre - 1970 - In Imre Lakatos & Alan Musgrave (eds.), Criticism and the growth of knowledge. Cambridge [Eng.]: Cambridge University Press. pp. 91-195.
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  • Scientific inference.Harold Jeffreys - 1931 - Cambridge [Eng.]: Cambridge University Press.
    Thats logic. LEWIS CARROLL, Through the Looking Glass 1-1. The fundamental problem of this work is the question of the nature of scientific inference.
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  • Scientific Inference.Harold Jeffreys - 1931 - Cambridge [Eng.]: Cambridge University Press.
    A scientific theory is originally based on a particular set of observations. How can it be extended to apply outside this original range of cases? This question, which is fundamental to natural philosophy, is considered in detail in this book, which was originally published in 1931, and first published as this third edition in 1973. Sir Harold begins with the principle that 'it is possible to learn from experience and to make inferences from beyond the data directly known to sensation'. (...)
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  • 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. Research (...)
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  • The Structure of Scientific Revolutions.Thomas S. Kuhn - 1962 - Chicago, IL: University of Chicago Press. Edited by Ian Hacking.
    Thomas S. Kuhn's classic book is now available with a new index.
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  • Science and Scepticism.John Watkins - 1986 - Philosophy of Science 53 (2):302-305.
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  • The Scientific Image by Bas C. van Fraassen. [REVIEW]Michael Friedman - 1982 - Journal of Philosophy 79 (5):274-283.
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  • The Logic of Scientific Discovery.Patterns of Discovery.Karl R. Popper & Norwood R. Hanson - 1960 - Philosophy and Phenomenological Research 21 (2):266-268.
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  • The fate of the enlightenment: Reply to Kekes.Nicholas Maxwell - 1986 - Inquiry: An Interdisciplinary Journal of Philosophy 29 (1-4):79-92.
    If humanity is to learn how to live together more cooperatively and wisely than at present, it is essential that we create a new kind of academic inquiry and education that is rationally devoted to helping us learn how to be cooperative and wise. This new kind of inquiry would give intellectual priority to articulating our problems of living, proposing and criticizing possible solutions, possible cooperative actions. The pursuit of knowledge would play a subordinate role. This in essence is the (...)
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  • Understanding sensations.Nicholas Maxwell - 1968 - Australasian Journal of Philosophy 46 (2):127-146.
    My aim in this paper is to defend a version of the brain process theory, or identity thesis, which differs in one important respect from the theory put forward by J.J.C. Smart. I shall argue that although the sensations which a person experiences are, as a matter of contingent fact, brain processes, nonetheless there are facts about sensations which cannot be described or understood in terms of any physical theory. These 'mental' facts cannot be described by physics for the simple (...)
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  • Science, reason, knowledge, and wisdom: A critique of specialism.Nicholas Maxwell - 1980 - Inquiry: An Interdisciplinary Journal of Philosophy 23 (1):19 – 81.
    In this paper I argue for a kind of intellectual inquiry which has, as its basic aim, to help all of us to resolve rationally the most important problems that we encounter in our lives, problems that arise as we seek to discover and achieve that which is of value in life. Rational problem-solving involves articulating our problems, proposing and criticizing possible solutions. It also involves breaking problems up into subordinate problems, creating a tradition of specialized problem-solving - specialized scientific, (...)
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  • Physics and Common Sense: A Critique of Physicalism.Nicholas Maxwell - 1966 - British Journal for the Philosophy of Science 16 (February):295-311.
    In this paper I set out to solve the problem of how the world as we experience it, full of colours and other sensory qualities, and our inner experiences, can be reconciled with physics. I discuss and reject the views of J. J. C. Smart and Rom Harré. I argue that physics is concerned only to describe a selected aspect of all that there is – the causal aspect which determines how events evolve. Colours and other sensory qualities, lacking causal (...)
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  • A critique of Popper's views on scientific method.Nicholas Maxwell - 1972 - Philosophy of Science 39 (2):131-152.
    This paper considers objections to Popper's views on scientific method. It is argued that criticism of Popper's views, developed by Kuhn, Feyerabend, and Lakatos, are not too damaging, although they do require that Popper's views be modified somewhat. It is argued that a much more serious criticism is that Popper has failed to provide us with any reason for holding that the methodological rules he advocates give us a better hope of realizing the aims of science than any other set (...)
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  • Review of J udgement and Justification.Stephen Stich - 1993 - Noûs 27 (3):380-383.
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  • Normative naturalism.Larry Laudan - 1990 - Philosophy of Science 57 (1):44-59.
    Normative naturalism is a view about the status of epistemology and philosophy of science; it is a meta-epistemology. It maintains that epistemology can both discharge its traditional normative role and nonetheless claim a sensitivity to empirical evidence. The first sections of this essay set out the central tenets of normative naturalism, both in its epistemic and its axiological dimensions; later sections respond to criticisms of that species of naturalism from Gerald Doppelt, Jarrett Leplin and Alex Rosenberg.
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  • Scientific Inference.L. E. Palmieri - 1957 - Philosophy and Phenomenological Research 18 (2):269-270.
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  • The inference to the best explanation.Gilbert H. Harman - 1965 - Philosophical Review 74 (1):88-95.
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  • Enumerative induction as inference to the best explanation.Gilbert H. Harman - 1968 - Journal of Philosophy 65 (18):529-533.
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  • Theory and Evidence.Clark N. Glymour - 1980 - Princeton University Press.
    The Description for this book, Theory and Evidence, will be forthcoming.
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  • The aim and structure of physical theory.Pierre Maurice Marie Duhem - 1954 - Princeton,: Princeton University Press.
    This classic work in the philosophy of physical science is an incisive and readable account of the scientific method. Pierre Duhem was one of the great figures in French science, a devoted teacher, and a distinguished scholar of the history and philosophy of science. This book represents his most mature thought on a wide range of topics.
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  • The Scientific Image.William Demopoulos & Bas C. van Fraassen - 1982 - Philosophical Review 91 (4):603.
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  • Science and Scepticism.Fred D'Agostino & John Watkins - 1987 - Philosophical Quarterly 37 (146):104.
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  • Induction and Hypothesis.Robert Rosthal - 1958 - Philosophy and Phenomenological Research 19 (1):123-124.
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  • Judgment and Justification.Lynne Rudder Baker - 1991 - Philosophical Review 100 (3):481.
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  • Science as a Human Endeavor.George Frederick Kneller - 1978 - Columbia University Press.
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  • Popper and after: four modern irrationalists.David Charles Stove - 1982 - New York: Pergamon Press.
    Stove argues that Popper and his successors in the philosophy of science, Kuhn, Lakatos and Feyerabend, were irrationalists because they were deductivists. That is, they believed all logic is deductive, and thus denied that experimental evidence could make scientific theories logically more probable. The book was reprinted as Anything Goes (1998) and Scientific Irrationalism: Origins of a Postmodern Cult (1998).
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  • Articulating the Aims of Science.Nicholas Maxwell - 1977 - Nature 265 (January 6):2.
    Most scientists and philosophers of science take for granted the standard empiricist view that the basic intellectual aim of science is truth per se. But this seriously misrepresents the aims of scieince. Actually, science seeks explanatory truth and, more generally, important truth. Problematic metaphysical and value assumptions are inherent in the real aims of science. Precisely because these aims are profoundly problematic, they need to be articulated, imaginatively explored and critically assesseed, in order to improve them, as an integral part (...)
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  • The Aim and Structure of Physical Theory.Pierre Duhem & Philip P. Wiener - 1955 - Science and Society 19 (1):85-87.
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  • Induction, Simplicity and Scientific Progress.Nicholas Maxwell - 1979 - Scientia 114 (14):629-653.
    In a recent work, Popper claims to have solved the problem of induction. In this paper I argue that Popper fails both to solve the problem, and to formulate the problem properly. I argue, however, that there are aspects of Popper's approach which, when strengthened and developed, do provide a solution to at least an important part of the problem of induction, along somewhat Popperian lines. This proposed solution requires, and leads to, a new theory of the role of simplicity (...)
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  • Theory and Evidence.Clark Glymour - 1981 - Philosophy of Science 48 (3):498-500.
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  • From Knowledge to Wisdom.Nicholas Maxwell - 2009 - In David Cayley (ed.), Ideas on the Nature of Science. New Brunswick, Canada: Goose Lane Editions. pp. 360-378.
    There are these two absolutely basic problems: to learn about the universe and ourselves as a part of the universe, and to learn how to create a civilized world. Essentially, we have solved the first problem. We solved it when we created modern science. That is not to say that we know everything that is to be known, but we created a method for improving our knowledge about the world. But we haven't solved the second problem. And to solve the (...)
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  • Popper and after. Four Modern Irrationalists.D. C. Stove - 1984 - British Journal for the Philosophy of Science 35 (3):307-310.
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  • The Logic of Scientific Discovery.K. Popper - 1959 - British Journal for the Philosophy of Science 10 (37):55-57.
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  • Theory and Evidence.Clark Glymour - 1980 - Ethics 93 (3):613-615.
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  • The Logic of Scientific Discovery.Karl Popper - 1959 - Studia Logica 9:262-265.
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  • Conjectures and Refutations.K. Popper - 1963 - Les Etudes Philosophiques 21 (3):431-434.
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  • Scientific Inference.Harold Jeffreys - 1959 - Philosophy 34 (128):66-68.
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  • Induction and Hypothesis.S. F. Barker - 1960 - British Journal for the Philosophy of Science 11 (42):164-166.
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  • The Generalized Darwinian Research Programme.Nicholas Maxwell - 1984 - In From Knowledge to Wisdom. Blackwell. pp. 269-275.
    The generalized Darwinian research programme accepts physicalism, but holds that all life is purposive in character. It seeks to understand how and why all purposiveness has evolved in the universe – especially purposiveness associated with what we value most in human life, such as sentience, consciousness, person-to-person understanding, science, art, free¬dom, love. As evolution proceeds, the mechanisms of evolution themselves evolve to take into account the increasingly important role that purposive action can play - especially when quasi-Lamarckian evolution by cultural (...)
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