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Karl Popper, Science and Enlightenment

London: UCL Press (2017)

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  1. The abundant world: Paul Feyerabend's metaphysics of science.Matthew J. Brown - 2016 - Studies in History and Philosophy of Science Part A 57:142-154.
    The goal of this paper is to provide an interpretation of Feyerabend's metaphysics of science as found in late works like Conquest of Abundance and Tyranny of Science. Feyerabend's late metaphysics consists of an attempt to criticize and provide a systematic alternative to traditional scientific realism, a package of views he sometimes referred to as “scientific materialism.” Scientific materialism is objectionable not only on metaphysical grounds, nor because it provides a poor ground for understanding science, but because it implies problematic (...)
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  • Science and Values.Harold I. Brown & Larry Laudan - 1986 - Philosophical Review 95 (3):439.
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  • Scientific explanation.Richard Bevan Braithwaite - unknown
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  • Autobiographical Notes.Max Black, Albert Einstein & Paul Arthur Schilpp - 1949 - Journal of Symbolic Logic 15 (2):157.
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  • Induction and Hypothesis.Robert Rosthal - 1958 - Philosophy and Phenomenological Research 19 (1):123-124.
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  • Induction and Hypothesis: A Study of the Logic of Confirmation.Stephen Francis Barker - 1957 - Ithaca, NY, USA: Cornell University Press.
    No detailed description available for "Induction and Hypothesis".
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  • Explanatory Unification.Thomas Bartelborth - 2002 - Synthese 130 (1):91-108.
    Explanations contribute to our understanding of the world byembedding phenomena into general nomic patterns that we recognize in the world. Manyof these patterns are, of course, causal ones, but the declaration as ``causal'' often fails to determinethe explanatory power of the pattern. More important is the systematization capacity and the empiricalcontent of the pattern or theory with respect to explanations. We can specify these parameters moreprecisely within the framework of the structuralist view of theories.
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  • The Problem of Knowledge.G. P. Henderson - 1958 - Philosophical Quarterly 8 (30):95-96.
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  • The Revolution in philosophy.A. J. Ayer (ed.) - 1956 - New York,: St. Martin's Press.
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  • The Problem of Knowledge.Alfred Jules Ayer - 1956 - New York,: Harmondsworth.
    In this book, the author of "Language, Truth and Logic" tackles one of the central issues of philosophy - how we can know anything - by setting out all the sceptic's arguments and trying to counter them one by one.
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  • Metaphysics Within Science: Against Radical Naturalism.Fredrik Andersen & Jonas R. Becker Arenhart - 2016 - Metaphilosophy 47 (2):159-180.
    In Every Thing Must Go James Ladyman and Don Ross argue for a radical version of naturalistic metaphysics and propose that contemporary analytic metaphysics is detached from science and should be discontinued. The present article addresses the issues of whether science and metaphysics are separable, intuitions and understanding should be excluded from scientific theory, and Ontic Structural Realism satisfies the criteria of the radical version of naturalism advanced by Ladyman and Ross. The point underlying those topics is that successful scientific (...)
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  • Every Thing Must Go: Metaphysics Naturalized.James Ladyman & Don Ross - 2007 - In James Ladyman & Don Ross (eds.), Every thing must go: metaphysics naturalized. New York: Oxford University Press.
    This book argues that the only kind of metaphysics that can contribute to objective knowledge is one based specifically on contemporary science as it really is, and not on philosophers' a priori intuitions, common sense, or simplifications of science. In addition to showing how recent metaphysics has drifted away from connection with all other serious scholarly inquiry as a result of not heeding this restriction, this book demonstrates how to build a metaphysics compatible with current fundamental physics, which, when combined (...)
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  • The metaphysics within physics.Tim Maudlin - 2007 - New York: Oxford University Press.
    A modest proposal concerning laws, counterfactuals, and explanations - - Why be Humean? -- Suggestions from physics for deep metaphysics -- On the passing of time -- Causation, counterfactuals, and the third factor -- The whole ball of wax -- Epilogue : a remark on the method of metaphysics.
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  • The Disorder of Things: Metaphysical Foundations of the Disunuty of Science.[author unknown] - 1995 - Proceedings and Addresses of the American Philosophical Association 68 (3):84-86.
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  • Explanatory unification.Philip Kitcher - 1981 - Philosophy of Science 48 (4):507-531.
    The official model of explanation proposed by the logical empiricists, the covering law model, is subject to familiar objections. The goal of the present paper is to explore an unofficial view of explanation which logical empiricists have sometimes suggested, the view of explanation as unification. I try to show that this view can be developed so as to provide insight into major episodes in the history of science, and that it can overcome some of the most serious difficulties besetting the (...)
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  • Thomas Kuhn.Alexander Bird - 2018 - Stanford Encyclopedia of Philosophy.
    Thomas Samuel Kuhn (1922–1996) is one of the most influential philosophers of science of the twentieth century, perhaps the most influential. His 1962 book The Structure of Scientific Revolutions is one of the most cited academic books of all time. Kuhn’s contribution to the philosophy of science marked not only a break with several key positivist doctrines, but also inaugurated a new style of philosophy of science that brought it closer to the history of science. His account of the development (...)
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  • Karl Raimund Popper 1902–1994.John Watkins - 1997 - In Watkins John (ed.), Proceedings of the British Academy, Volume 94: 1996 Lectures and Memoirs. pp. 645-684.
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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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  • Normal science and its dangers.Karl Popper - 1970 - In Imre Lakatos & Alan Musgrave (eds.), Criticism and the growth of knowledge. Cambridge [Eng.]: Cambridge University Press. pp. 51--8.
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  • Logic of Discovery or Psychology of Research?T. S. Kuhn - 1970 - In Imre Lakatos & Alan Musgrave (eds.), Criticism and the growth of knowledge. Cambridge [Eng.]: Cambridge University Press. pp. 22.
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  • The Principle of Relativity.Albert Einstein - 1920 - [Calcutta]: Dover Publications. Edited by H. Minkowski, Meghnad Saha & Satyendranath Bose.
    This collection of original papers on the special and general theories of relativity constitutes an indispensable part of a library on relativity. Here are the 11 papers that forged the general and special theories of relativity: seven papers by Einstein, plus two papers by Lorentz and one each by Minkowski and Weyl.
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  • The Concept of Mind.Gilbert Ryle - 1949 - Revue Philosophique de la France Et de l'Etranger 141:125-126.
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  • Probability and inductive logic.Henry Ely Kyburg - 1970 - [New York]: Macmillan.
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  • Scientific reasoning: the Bayesian approach.Peter Urbach & Colin Howson - 1993 - Chicago: Open Court. Edited by Peter Urbach.
    Scientific reasoning is—and ought to be—conducted in accordance with the axioms of probability. This Bayesian view—so called because of the central role it accords to a theorem first proved by Thomas Bayes in the late eighteenth ...
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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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  • Philosophy of Mathematics and Natural Science.Hermann Weyl - 1949 - Princeton, N.J.: Princeton University Press. Edited by Olaf Helmer-Hirschberg & Frank Wilczek.
    This is a book that no one but Weyl could have written--and, indeed, no one has written anything quite like it since.
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  • The rise of scientific philosophy.Hans Reichenbach - 1951 - Berkeley,: University of California Press.
    The student of philosophy usually is not irritated by obscure formulations. On the contrary, reading the quoted passage he would presumably be convinced ...
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  • Essays on the sociology of knowledge.Karl Mannheim - 1952 - New York,: Oxford University Press.
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  • The poverty of historicism.Karl Raimund Popper - 1957 - London,: Routledge and Kegan Paul.
    Hailed on publication in 1957 as "probably the only book published this year that will outlive the century," this is a brilliant of the idea that there are ...
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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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  • Public knowledge: an essay concerning the social dimension of science.J. M. Ziman - 1968 - London,: Cambridge University Press.
    In this 1974 book a practising scientist and gifted expositor sets forth an exciting point of view on the nature of science and how it works.
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  • Philosophical problems of space and time.Adolf Grünbaum - 1963 - Boston,: Reidel.
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  • Philosophy and Scientific Realism.J. J. C. Smart - 1963 - New York,: Routledge.
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  • Out of Error: Further Essays on Critical Rationalism.David W. Miller - 2006 - Ashgate Publishing.
    David Miller is the foremost exponent of the purist critical rationalist doctrine and here presents his mature views, discussing the role that logic and argument play in the growth of knowledge, criticizing the common understanding of argument as an instrument of justification, persuasion or discovery and instead advocating the critical rationalist view that only criticism matters. Miller patiently and thoroughly undoes the damage done by those writers who attack critical rationalism by invoking the sterile mythology of induction and justification that (...)
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  • The meaning of the wave function: in search of the ontology of quantum mechanics.Shan Gao - 2017 - New York, NY, USA: Cambridge University Press.
    The meaning of the wave function has been a hot topic of debate since the early days of quantum mechanics. Recent years have witnessed a growing interest in this long-standing question. Is the wave function ontic, directly representing a state of reality, or epistemic, merely representing a state of knowledge, or something else? If the wave function is not ontic, then what, if any, is the underlying state of reality? If the wave function is indeed ontic, then exactly what physical (...)
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  • Albert Einstein: Philosopher-Scientist.Paul Arthur Schilpp (ed.) - 1959 - Mjg Books.
    Written by the man considered the "Person of the Century" by Time magazine, this is not a glimpse into Einstein's personal life, but an extension and elaboration into his thinking on science. Two of the great theories of the physical world were created in the early 20th century: the theory of relativity and quantum mechanics. Einstein created the theory of relativity and was also one of the founders of quantum theory. Here, Einstein describes the failure of classical mechanics and the (...)
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  • Metaphysics and measurement.Alexandre Koyré - 1968 - Langhorne, Pa.: Gordon and Breach Science Publishers.
    This collection of six essays centers on Professor Koyre;'s great theme: the relative importance of metaphysics and observation, with controlled experiment a kind of marriage between the two. Professor Koyre;'s thesis might be summed up as a claim that when one is seeking to explain the scientific revolution, attention must be concentrated on the philosophical outlook of the scientist and away from speculative theories. At the time of his death, Alexandre Koyre; was a professor at the Ecole Pratique des Hautes (...)
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  • The promise of wisdom.Jesse Glenn Gray - 1968 - Philadelphia,: Lippincott.
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  • Why did Einstein's programme supersede lorentz's? (I).Elie Zahar - 1973 - British Journal for the Philosophy of Science 24 (2):95-123.
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  • Why did Einstein's programme supersede lorentz's? (II).Elie Zahar - 1973 - British Journal for the Philosophy of Science 24 (3):223-262.
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  • The Revolution in Philosophy.Alan Ross Anderson - 1956 - Journal of Symbolic Logic 25 (3):262-263.
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  • An Introduction to Metaphysics.J. J. C. Smart - 1951 - Philosophical Quarterly 1 (2):176-177.
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  • An Introduction to Metaphysics.C. H. Whiteley - 1950 - Philosophy 26 (97):183-185.
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  • Philosophy of Mathematics and Natural Science.Heinrich Scholz - 1950 - Journal of Symbolic Logic 15 (3):206-208.
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  • Philosophy of Mathematics and Natural Science.Harry M. Gehman - 1951 - Philosophy and Phenomenological Research 11 (3):433-435.
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  • The Comprehensibility of the World By Nicholas Maxwell Clarendon Press, Oxford, xv + 316pp. On a Purported Error About the Doctrine of Double Effect: A Reply to Sophie Botros. [REVIEW]Friedel Weinert - 2000 - Philosophy 75 (2):296-312.
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  • Unification: What is it, how do we reach and why do we want it?Erik Weber - 1999 - Synthese 118 (3):479-499.
    This article has three aims. The first is to give a partial explication of the concept of unification. My explication will be partial because I confine myself to unification of particular events, because I do not consider events of a quantitative nature, and discuss only deductive cases. The second aim is to analyze how unification can be reached. My third aim is to show that unification is an intellectual benefit. Instead of being an intellectual benefit unification could be an intellectual (...)
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  • The Role of Unification in Micro-Explanations of Physical Laws.Erik Weber & Merel Lefevere - 2014 - Theoria 29 (1):41-56.
    In the literature on scientific explanation, there is a classical distinction between explanations of facts and explanations of laws. This paper is about explanations of laws, more specifically mechanistic explanations of laws. We investigate whether providing unificatory information in mechanistic explanations of laws has a surplus value. Unificatory information is information about how the mechanism that explains the law which is our target relates to other mechanisms. We argue that providing unificatory information can lead to explanations with more explanatory power (...)
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