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The Philosophy of Karl Popper

Open Court Publishing Company (1974)

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  1. In Search of the Proper Scientific Approach: Hayek's Views on Biology, Methodology, and the Nature of Economics.Naomi Beck - 2009 - Science in Context 22 (4):567-585.
    ArgumentFriedrich August von Hayek is mainly known for his defense of free-market economics and liberalism. His views on science – more specifically on the methodological differences between the physical sciences on the one hand, and evolutionary biology and the social sciences on the other – are less well known. Yet in order to understand, and properly evaluate Hayek's political position, we must look at the theory of scientific method that underpins it. Hayek believed that a basic misunderstanding of the discipline (...)
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  • Location of the systems generating REM sleep: Lateral versus medial pons.Jerome M. Siegel & Dennis J. McGinty - 1986 - Behavioral and Brain Sciences 9 (3):420-421.
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  • State control: Changing tools and language.M. Steriade - 1986 - Behavioral and Brain Sciences 9 (3):421-423.
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  • Reciprocal interaction revisited.Thomas S. Kilduff & Christian Guilleminault - 1986 - Behavioral and Brain Sciences 9 (3):411-412.
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  • Is Freud's theory well-founded?Adolf Grünbaum - 1986 - Behavioral and Brain Sciences 9 (2):266-284.
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  • The elusive sleep cycle generator.V. Henn - 1986 - Behavioral and Brain Sciences 9 (3):408-408.
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  • Hermeneutics and psychoanalysis.Robert L. Woolfolk - 1986 - Behavioral and Brain Sciences 9 (2):265-266.
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  • Sleep cycle generation: Testing the new hypotheses.Robert Freedman - 1986 - Behavioral and Brain Sciences 9 (3):406-406.
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  • The scientific tasks confronting psychoanalysis.Gerald L. Klerman - 1986 - Behavioral and Brain Sciences 9 (2):245-245.
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  • Early Freud, late Freud, conflict and intentionality.Paul L. Wachtel - 1986 - Behavioral and Brain Sciences 9 (2):263-264.
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  • Psychoanalysis: Conventional wisdom, self knowledge, or inexact science.Murray L. Wax - 1986 - Behavioral and Brain Sciences 9 (2):264-265.
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  • Sleep cycle or REM sleep generator?Serge Daan, Domien G. M. Beersma & Derk Jan Dijk - 1986 - Behavioral and Brain Sciences 9 (3):402-403.
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  • Psychoanalysis as hermeneutics.Morris N. Eagle - 1986 - Behavioral and Brain Sciences 9 (2):231-232.
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  • Psychoanalysis has a wider scope than the retrospective discovery of etiologies.Matthew Hugh Erdelyi - 1986 - Behavioral and Brain Sciences 9 (2):234-235.
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  • The case against Freud's cases.Roger P. Greenberg - 1986 - Behavioral and Brain Sciences 9 (2):240-241.
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  • Précis of The Foundations of Psychoanalysis: A Philosophical Critique.Adolf Grünbaum - 1986 - Behavioral and Brain Sciences 9 (2):217-228.
    This book critically examines Freud's own detailed arguments for his major explanatory and therapeutic principles, the current neorevisionist versions of psychoanalysis, and the hermeneuticists' reconstruction of Freud's theory and therapy as an alternative to what they claim was a “scientistic” misconstrual of the psychoanalytic enterprise. The clinical case for Freud's cornerstone theory of repression – the claim that psychic conflict plays a causal role in producing neuroses, dreams, and bungled actions – turns out to be ill-founded for two main reasons: (...)
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  • The general algorithm for adaptation in learning, evolution, and perception.Donald T. Campbell - 1983 - Behavioral and Brain Sciences 6 (1):178-179.
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  • Karl Popper's contributions to logic and the philosophy of science.David Miller - 1991 - Foundations of Physics 21 (12):1369-1374.
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  • Sir Karl Popper and his philosophy of physics.Max Jammer - 1991 - Foundations of Physics 21 (12):1357-1368.
    The eminent mathematical physicist Sir Hermann Bondi once said: “There is no more to science than its method, and there is no more to its method than Popper has said.” Indeed, many regard Sir Karl Raimund Popper the greatest philosopher of science in our generation. Much of what Popper “has said” refers to physics, but physicists, generally speaking, have little knowledge of what he has said. True, Popper's philosophy of science and, in particular, his realistic interpretation of quantum mechanics deviates (...)
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  • Single-case probabilities.David Miller - 1991 - Foundations of Physics 21 (12):1501-1516.
    The propensity interpretation of probability, bred by Popper in 1957(K. R. Popper, in Observation and Interpretation in the Philosophy of Physics,S. Körner, ed. (Butterworth, London, 1957, and Dover, New York, 1962), p. 65; reprinted in Popper Selections,D. W. Miller, ed. (Princeton University Press, Princeton, 1985), p. 199) from pure frequency stock, is the only extant objectivist account that provides any proper understanding of single-case probabilities as well as of probabilities in ensembles and in the long run. In Sec. 1 of (...)
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  • Natureza e liberdade: a questão ética da posição indeterminista de Karl Popper.Paulo Eduardo de Oliveira - 2009 - Princípios 16 (26):189-209.
    O presente trabalho analisa a perspectiva indeterminista da epistemologia de Karl Popper. A partir da compreensáo unitária do Racionalismo Crítico, como epistemologia e filosofia política, ao mesmo tempo, o artigo mostra em que sentido se pode afirmar que a proposta de Popper revela uma questáo ética de largo alcance e interesse na filosofia contemporânea, sobretudo no que se refere à análise da crise da cientificidade moderna. Palavras-chave: Ética, Indeterminismo, Popper, Racionalismo Crítico.
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  • Wartości w nauce.Ernan Mcmullin - 1999 - Zagadnienia Filozoficzne W Nauce 24.
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  • The Rationality Principle Idealized.Boaz Miller - 2012 - Social Epistemology 26 (1):3-30.
    According to Popper's rationality principle, agents act in the most adequate way according to the objective situation. I propose a new interpretation of the rationality principle as consisting of an idealization and two abstractions. Based on this new interpretation, I critically discuss the privileged status that Popper ascribes to it as an integral part of all social scientific models. I argue that as an idealization, the rationality principle may play an important role in the social sciences, but it also has (...)
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  • Immersive ideals / critical distances : study of the affinity between artistic ideologies in virtual Reality and previous immersive idioms.Joseph Nechvatal (ed.) - 2010 - Berlin: LAP Lambert Academic Publishing AG & Co KG.
    My research into Virtual Reality technology and its central property of immersion has indicated that immersion in Virtual Reality (VR) electronic systems is a significant key to the understanding of contemporary culture as well as considerable aspects of previous culture as detected in the histories of philosophy and the visual arts. The fundamental change in aesthetic perception engendered by immersion, a perception which is connected to the ideal of total-immersion in virtual space, identifies certain shifts in ontology which are relevant (...)
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  • Popper, Kuhn, Lakatos, and Aim-Oriented Empiricism.Nicholas Maxwell - 2005 - Philosophia 32 (1-4):181-239.
    In this paper I argue that aim-oriented empiricism (AOE), a conception of natural science that I have defended at some length elsewhere[1], is a kind of synthesis of the views of Popper, Kuhn and Lakatos, but is also an improvement over the views of all three. Whereas Popper's falsificationism protects metaphysical assumptions implicitly made by science from criticism, AOE exposes all such assumptions to sustained criticism, and furthermore focuses criticism on those assumptions most likely to need revision if science is (...)
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  • De A et B, de leur indépendance logique, et de ce qu'ils n'ont aucun contenu factuel commun.Peter Roeper & Hugues Leblanc - 1997 - Dialogue 36 (1):137-.
    The logical independence of two statements is tantamount to their probabilistic independence, the latter understood in a sense that derives from stochastic independence. And analogous logical and probabilistic senses of having the same factual content similarly coincide. These results are extended to notions of non-symmetrical independence and independence among more than two statements.
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  • Are “All-and-Some” Statements Falsifiable After All?: The Example of Utility Theory.Philippe Mongin - 1986 - Economics and Philosophy 2 (2):185-195.
    Popper's well-known demarcation criterion has often been understood to distinguish statements of empirical science according to their logical form. Implicit in this interpretation of Popper's philosophy is the belief that when the universe of discourse of the empirical scientist is infinite, empirical universal sentences are falsifiable but not verifiable, whereas the converse holds for existential sentences. A remarkable elaboration of this belief is to be found in Watkins's early work on the statements he calls “all-and-some,” such as: “For every metal (...)
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  • Cutting the Gordian Knot of Demarcation.Sven Ove Hansson - 2009 - International Studies in the Philosophy of Science 23 (3):237-243.
    A definition of pseudoscience is proposed, according to which a statement is pseudoscientific if and only if it (1) pertains to an issue within the domains of science, (2) is not epistemically warranted, and (3) is part of a doctrine whose major proponents try to create the impression that it is epistemically warranted. This approach has the advantage of separating the definition of pseudoscience from the justification of the claim that science represents the most epistemically warranted statements. The definition is (...)
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  • Darwinian 'blind' hypothesis formation revisited.Maria E. Kronfeldner - 2010 - Synthese 175 (2):193--218.
    Over the last four decades arguments for and against the claim that creative hypothesis formation is based on Darwinian ‘blind’ variation have been put forward. This paper offers a new and systematic route through this long-lasting debate. It distinguishes between undirected, random, and unjustified variation, to prevent widespread confusions regarding the meaning of undirected variation. These misunderstandings concern Lamarckism, equiprobability, developmental constraints, and creative hypothesis formation. The paper then introduces and develops the standard critique that creative hypothesis formation is guided (...)
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  • Feyerabend's discourse against method: A marxist critique.J. Curthoys & W. Suchting - 1977 - Inquiry: An Interdisciplinary Journal of Philosophy 20 (1-4):243 – 371.
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  • Popper and progress: A reply to Campbell.Brian Baigrie - 1989 - Social Epistemology 3 (1):65 – 69.
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  • Normative epistemology and naturalized epistemology.Harold I. Brown - 1988 - Inquiry: An Interdisciplinary Journal of Philosophy 31 (1):53 – 78.
    A number of philosophers have argued that a naturalized epistemology cannot be normative, and thus that the norms that govern science cannot themselves be established empirically. Three arguments for this conclusion are here developed and then responded to on behalf of naturalized epistemology. The response is developed in three stages. First, if we view human knowers as part of the natural world, then the attempt to establish epistemic norms that are immune to scientific evaluation faces difficulties that are at least (...)
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  • Normative naturalism and the challenge of relativism: Laudan versus Worrall on the justification of methodological principles.Howard Sankey - 1996 - International Studies in the Philosophy of Science 10 (1):37 – 51.
    In a recent exchange, John Worrall and Larry Laudan have debated the merits of the model of rational scientific change proposed by Laudan in his book Science and Values. On the model advocated by Laudan, rational change may take place at the level of scientific theory and methodology, as well as at the level of the epistemic aims of science. Moreover, the rationality of a change which occurs at any one of these three levels may be dependent on considerations at (...)
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  • How (not) to write the history of pragmatist philosophy of science?Sami Pihlström - 2008 - Perspectives on Science 16 (1):26-69.
    This survey article discusses the pragmatist tradition in twentieth century philosophy of science. Pragmatism, originating with Charles Peirce's writings on the pragmatic maxim in the 1870s, is a background both for scientific realism and, via the views of William James and John Dewey, for the relativist and/or constructivist forms of neopragmatism that have often been seen as challenging the very ideas of scientific rationality and objectivity. The paper shows how the issue of realism arises in pragmatist philosophy of science and (...)
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  • Popper, falsifiability, and evolutionary biology.David N. Stamos - 1996 - Biology and Philosophy 11 (2):161-191.
    First, a brief history is provided of Popper's views on the status of evolutionary biology as a science. The views of some prominent biologists are then canvassed on the matter of falsifiability and its relation to evolutionary biology. Following that, I argue that Popper's programme of falsifiability does indeed exclude evolutionary biology from within the circumference of genuine science, that Popper's programme is fundamentally incoherent, and that the correction of this incoherence results in a greatly expanded and much more realistic (...)
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  • Six things Popper would like biologists not to ignore: In memoriam, Karl Raimund Popper, 1902–1994.Tom Settle - 1996 - Biology and Philosophy 11 (2):141-159.
    To honour the memory of Sir Karl Popper, I put forward six elements of his philosophy which might be of particular interest to biologists and to philosophers of biology and which I think Popper would like them not to ignore, even if they disagree with him. They are: the primacy of problems; the criticizability of metaphysics (and thus the dubiousness of materialism); how downward causation might be real; how norms should matter to scientists; why dogmatism should be avoided; how genuine (...)
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  • What's in a numeral?David Miller - 1979 - Philosophical Studies 35 (4):323 - 344.
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  • Assessing evolutionary epistemology.Michael Bradie - 1986 - Biology and Philosophy 1 (4):401-459.
    There are two interrelated but distinct programs which go by the name evolutionary epistemology. One attempts to account for the characteristics of cognitive mechanisms in animals and humans by a straightforward extension of the biological theory of evolution to those aspects or traits of animals which are the biological substrates of cognitive activity, e.g., their brains, sensory systems, motor systems, etc. (EEM program). The other program attempts to account for the evaluation of ideas, scientific theories and culture in general by (...)
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  • Sind Ludwigs Chancengewichtungen propensities im Sinne Poppers?Ursula Wegener - 1980 - Zeitschrift Für Allgemeine Wissenschaftstheorie 11 (1):80-85.
    Eine Besonderheit der propensity-Theorie von Popper liegt darin, daß in ihr - im Gegensatz zu anderen Wahrscheinlichkeitstheorien - die Versuchsbedingungen explizit als Argument in der Wahrscheinlichkeitsfunktion erscheinen. Diese Besonderheit teilt sie mit der Ludwigschen Wahrscheinlichkeitstheorie. Diese Gemeinsamkeit legt die Frage nahe, ob sich aus dem Ludwigschen Formalismus die drei Bedingungen herleiten lassen, die nach Popper aus einer adäquaten Axiomatisierung einer propensity-Theorie folgen müssen. Diese Frage ist um so interessanter, als nach Keuth [1] zwei der Adäquatsbedingungen im Widerspruch zu Poppers eigener (...)
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  • Towards an evolutionary pragmatics of science.Asher Idan & Aharon Kantorovich - 1985 - Zeitschrift Für Allgemeine Wissenschaftstheorie 16 (1):47-66.
    Fundamentismus und Skeptizismus-Anarchismus sind zwei entgegengesetzte Positionen in der traditionellen Erkenntnistheorie und in der modernen Wissenschaftstheorie. Zwischen ihnen gibt es einen dritten Standpunkt, den Evolutionismus. Beispiele sind zwei neuere Arbeiten von Putnam und Stegmüller . Im Gegensatz zum logisch-statischen Fundamentismus berücksichtigt der Evolutionismus auch dynamische und naturalistische Ansätze. Stegmüller folgend entlehnen wir in der vorliegenden Untersuchung aus der Sprachphilosophie pragmatische Gesichtspunkte, um die logische Syntax und Semantik, die Werkzeuge des Fundamentismus, zu ersetzen. Wir zeigen die Kraft der Pragmatik bei der (...)
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  • Research guiding principles in modern physics: Case studies in elementary particle physics.K. Gavroglu - 1976 - Zeitschrift Für Allgemeine Wissenschaftstheorie 7 (2):223-248.
    Summary Some case studies in elementary particle physics are presented in this work, that can be used for the critical appraisal of specific criteria which were proposed to account for the development of Heisenberg's work. It is attempted to define the philosophical problems associated with and emerging from the structures of theories, rather than analyse the philosophical aspects of concepts used in elementary particle physics. This necessitates the discussion of the relationship between theory and experiment, and the role of the (...)
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  • The Selfish Goal: Autonomously operating motivational structures as the proximate cause of human judgment and behavior.Julie Y. Huang & John A. Bargh - 2014 - Behavioral and Brain Sciences 37 (2):121-135.
    We propose the Selfish Goal model, which holds that a person's behavior is driven by psychological processes called goals that guide his or her behavior, at times in contradictory directions. Goals can operate both consciously and unconsciously, and when activated they can trigger downstream effects on a person's information processing and behavioral possibilities that promote only the attainment of goal end-states (and not necessarily the overall interests of the individual). Hence, goals influence a person as if the goals themselves were (...)
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  • Popper’s paradoxical pursuit of natural philosophy.Nicholas Maxwell - 2016 - In Jeremy Shearmur & Geoffrey Stokes (eds.), The Cambridge Companion to Popper. Cambridge University Press. pp. 170-207.
    Unlike almost all other philosophers of science, Karl Popper sought to contribute to natural philosophy or cosmology – a synthesis of science and philosophy. I consider his contributions to the philosophy of science and quantum theory in this light. There is, however, a paradox. Popper’s most famous contribution – his principle of demarcation – in driving a wedge between science and metaphysics, serves to undermine the very thing he professes to love: natural philosophy. I argue that Popper’s philosophy of science (...)
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  • Values in science.Ernan McMullin - 2012 - Zygon 47 (4):686-709.
    In this essay, which was his presidential address to the Philosophy of Science Association, Ernan McMullin argued that the watershed between “classic” philosophy of science and the “new” philosophy of science can best be understood by analyzing the change in our perception of the role played by values in science. He begins with some general remarks about the nature of value, goes on to explore some of the historical sources for the claim that judgement in science is value‐laden, and concludes (...)
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  • Sir Karl Popper and education.D. R. McNamara - 1978 - British Journal of Educational Studies 26 (1):24-39.
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  • Karl Popper: Philosophy of Science.Brendan Shea - 2011 - In James Fieser & Bradley Dowden (eds.), Internet Encyclopedia of Philosophy. Routledge.
    Karl Popper (1902-1994) was one of the most influential philosophers of science of the 20th century. He made significant contributions to debates concerning general scientific methodology and theory choice, the demarcation of science from non-science, the nature of probability and quantum mechanics, and the methodology of the social sciences. His work is notable for its wide influence both within the philosophy of science, within science itself, and within a broader social context. Popper’s early work attempts to solve the problem of (...)
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  • Critical rationalism and engineering: ontology.Mark Staples - 2014 - Synthese 191 (10):2255-2279.
    Engineering is often said to be ‘scientific’, but the nature of knowledge in engineering is different to science. Engineering has a different ontological basis—its theories address different entities and are judged by different criteria. In this paper I use Popper’s three worlds ontological framework to propose a model of engineering theories, and provide an abstract logical view of engineering theories analogous to the deductive-nomological view of scientific theories. These models frame three key elements from definitions of engineering: requirements, designs of (...)
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  • When is a reflex not a reflex? The riddle of behavioral-state control.J. A. Hobson, R. Lydic & H. A. Baghdoyan - 1986 - Behavioral and Brain Sciences 9 (3):426-448.
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  • The REM generator: Here, there, and everywhere?Priyattam J. Shiromani & J. Christian Gillin - 1986 - Behavioral and Brain Sciences 9 (3):419-420.
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  • Proposed model of postural atonia in a decerebrate cat.S. Mori & Y. Ohta - 1986 - Behavioral and Brain Sciences 9 (3):415-416.
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