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  1. Psychophysical scaling: Context and illusion.Stanley Coren - 1992 - Behavioral and Brain Sciences 15 (3):563-564.
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  • Paradigm transitions in mathematics.Claire L. Parkinson - 1987 - Philosophia Mathematica (2):127-150.
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  • The Role of Instruments in Three Chemical’ Revolutions.José Antonio Chamizo - 2014 - Science & Education 23 (4):955-982.
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  • The fifth chemical revolution: 1973–1999.José A. Chamizo - 2017 - Foundations of Chemistry 19 (2):157-179.
    A new chronology is introduced to address the history of chemistry, with educational purposes, particularly for the end of the twentieth century and here identified as the fifth chemical revolution. Each revolution are considered in terms of the Kuhnian notion of ‘exemplar,’ rather than ‘paradigm.’ This approach enables the incorporation of instruments, as well as concepts and the rise of new subdisciplines into the revolutionary process and provides a more adequate representation of such periods of development and consolidation. The fifth (...)
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  • About continuity and rupture in the history of chemistry: the fourth chemical revolution.José A. Chamizo - 2018 - Foundations of Chemistry 21 (1):11-29.
    A layered interpretation of the history of chemistry is discussed through chemical revolutions. A chemical revolution mainly by emplacement, instead of replacement, procedures were identified by: a radical reinterpretation of existing thought recognized by contemporaries themselves, which means the appearance of new concepts and the arrival of new theories; the use of new instruments changed the way in which its practitioners looked and worked in the world and through exemplars, new entities were discovered or incorporated; the opening of new subdisciplines, (...)
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  • A Structural Analysis of the Phlogiston Case.Maria Caamaño - 2009 - Erkenntnis 70 (3):331-364.
    The incommensurability thesis, as introduced by T.S. Kuhn and P.K. Feyerabend, states that incommensurable theories are conceptually incompatible theories which share a common domain of application. Such claim has often been regarded as incoherent, since it has been understood that the determination of a common domain of application at least requires a certain degree of conceptual compatibility between the theories. The purpose of this work is to contribute to the defense of the notion of local or gradual incommensurability, as proposed (...)
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  • Découvertes Médicales et Philosophie de la Nature Humaine.Stefanie Buchenau, Claire Crignon, Marie Gaille, Delphine Kolesnik-Antoine & Anne-Lise Rey - 2013 - Revue de Synthèse 134 (4):537-551.
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  • Accounting for an old inconsistency in the psychophysics of Plateau and Delboeuf.Marc Brysbaert - 1992 - Behavioral and Brain Sciences 15 (3):562-563.
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  • Psychophysical scaling: To describe relations or to uncover a law?Gunnar Borg - 1992 - Behavioral and Brain Sciences 15 (3):561-562.
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  • Psychophysical scaling within an information processing approach?Claude Bonnet - 1992 - Behavioral and Brain Sciences 15 (3):560-561.
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  • Lockhead's view of scaling: Something's fishy here.Stanley J. Bolanowski - 1992 - Behavioral and Brain Sciences 15 (3):560-560.
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  • A View Of The Chemical Revolution Through Contemporary Textbooks: Lavoisier, Fourcroy and Chaptal.Bernadette Bensaude-Vincent - 1990 - British Journal for the History of Science 23 (4):435-460.
    Scientific textbooks are often said to deliver a stereotyped kind of knowledge, which conceals rather than reveals the real making of science. They may, however, alternatively be regarded as of peculiar interest for historians of science. An over-mechanical application of the Kuhnian concepts of ‘scientific revolution’ and ‘normal science’ can lead to the neglect of the internal dynamics of ‘normal science’. Scientific textbooks may provide a better understanding of the process of normalization in science.
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  • Kepler's Laws of Planetary Motion, Before and After Newton's "Principia": an Essay on the Transformation of Scientific Problems.Brian S. Baigrie - 1987 - Studies in History and Philosophy of Science Part A 18 (2):177.
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  • Integration psychophysics is not traditional psychophysics.Norman H. Anderson - 1992 - Behavioral and Brain Sciences 15 (3):559-560.
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  • Perception, apperception and psychophysics.Daniel Algom - 1992 - Behavioral and Brain Sciences 15 (3):558-559.
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  • Kuhn’s Way.Joseph Agassi - 2002 - Philosophy of the Social Sciences 32 (3):394-430.
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  • Laws, Models, and Theories in Biology: A Unifying Interpretation.Pablo Lorenzano - 2020 - In Lorenzo Baravalle & Luciana Zaterka (eds.), Life and Evolution, History, Philosophy and Theory of the Life Sciences. pp. 163-207.
    Three metascientific concepts that have been object of philosophical analysis are the concepts oflaw, model and theory. The aim ofthis article is to present the explication of these concepts, and of their relationships, made within the framework of Sneedean or Metatheoretical Structuralism (Balzer et al. 1987), and of their application to a case from the realm of biology: Population Dynamics. The analysis carried out will make it possible to support, contrary to what some philosophers of science in general and of (...)
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  • (1 other version)Mario Bunge: Epistemology is here to stay.Ricardo J. Gómez - 2020 - Mεtascience: Scientific General Discourse 1:135-158.
    The main claim of this study is that, contrary to Latour’s view about the need to leave aside epistemology to deal with anything valuable about science, Mario Bunge has consistently built up a detailed and thorough epistemology. The argumentative strategy will be to show that (a) it is not true that we have never been modern (b) epistemology is here to stay, and (c) Mario Bunge endorses a strong scientific realism, a brand of materialism, systemism and emergentism, including a moral (...)
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  • (1 other version)Mario Bunge. L’épistémologie est là pour de bon.Ricardo J. Gómez - 2020 - Mεtascience: Discours Général Scientifique 1:177-198.
    Cette étude défend l’idée que, contrairement à l’opinion de Latour sur la nécessité de laisser de côté l’épistémologie pour traiter de tout ce qui a de la valeur pour la science, Mario Bunge a systématiquement construit une épistémologie détaillée et approfondie. La stratégie argumentative consistera à montrer (a) qu’il est faux que nous n’avons jamais été modernes (b) que l’épistémologie est là pour de bon et (c) que Mario Bunge soutient un réalisme scientifique fort, une version du matérialisme, du systémisme (...)
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  • Wonder in the face of scientific revolutions: Adam Smith on Newton's ‘Proof’ of Copernicanism 1.Eric Schliesser - 2005 - British Journal for the History of Philosophy 13 (4):697-732.
    (2005). Wonder in the face of scientific revolutions: Adam Smith on Newton's ‘Proof’ of Copernicanism. British Journal for the History of Philosophy: Vol. 13, No. 4, pp. 697-732. doi: 10.1080/09608780500293042.
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  • Kuhnian Revolutions Revisited.K. Brad Wray - 2007 - Synthese 158 (1):61-73.
    I re-examine Kuhn’s account of scientific revolutions. I argue that the sorts of events Kuhn regards as scientific revolutions are a diverse lot, differing in significant ways. But, I also argue that Kuhn does provide us with a principled way to distinguish revolutionary changes from non-revolutionary changes in science. Scientific revolutions are those changes in science that (1) involve taxonomic changes, (2) are precipitated by disappointment with existing practices, and (3) cannot be resolved by appealing to shared standards. I argue (...)
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  • (1 other version)“The most philosophically of all the sciences”: Karl Popper and physical cosmology.Helge Kragh - unknown
    Problems of scientific cosmology only rarely occur in the works of Karl Popper. Nevertheless, it was a subject that interested him and which he occasionally commented on. What is more important, his general claim of falsifiability as a criterion that demarcates science from non-science has played a significant role in periods of the development of modern physical cosmology. The paper examines the historical contexts of the interaction between cosmology and Popperian philosophy of science. Apart from covering Popper’s inspiration from Einstein (...)
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  • De Volder’s Cartesian Physics and Experimental Pedagogy.Tammy Nyden - 2013 - In Mihnea Dobre Tammy Nyden (ed.), Cartesian Empiricisms. Dordrecht: Springer.
    In 1675, Burchard de Volder (1643–1709) was the first professor to introduce the demonstration of experiment into a university physics course and built the Leiden Physics Theatre to accommodate this new pedagogy. When he requested the funds from the university to build the facility, he claimed that the performance of experiments would demonstrate the “truth and certainty” of the postulates of theoretical physics. Such a claim is interesting given de Volder’s lifelong commitment to Cartesian scientia. This chapter will examine de (...)
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  • (1 other version)“It Ain’t Over ‘til it’s Over”: Rethinking the Darwinian Revolution.Vassiliki Betty Smocovitis - 2005 - Journal of the History of Biology 38 (1):33 - 49.
    This paper attempts a critical examination of scholarly understanding of the historical event referred to as "the Darwinian Revolution." In particular, it concentrates on some of the major scholarly works that have appeared since the publication in 1979 of Michael Ruse's "The Darwinian Revolution: Nature Red in Tooth and Claw." The paper closes by arguing that fruitful critical perspectives on what counts as this event can be gained by locating it in a range of historiographic and disciplinary contexts that include (...)
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  • Cycles and circulation: a theme in the history of biology and medicine.Lucy van de Wiel, Mathias Grote, Peder Anker, Warwick Anderson, Ariane Dröscher, Hans-Jörg Rheinberger, Lynn K. Nyhart, Guido Giglioni, Maaike van der Lugt, Shigehisa Kuriyama, Christiane Groeben, Janet Browne, Staffan Müller-Wille & Nick Hopwood - 2021 - History and Philosophy of the Life Sciences 43 (3):1-39.
    We invite systematic consideration of the metaphors of cycles and circulation as a long-term theme in the history of the life and environmental sciences and medicine. Ubiquitous in ancient religious and philosophical traditions, especially in representing the seasons and the motions of celestial bodies, circles once symbolized perfection. Over the centuries cyclic images in western medicine, natural philosophy, natural history and eventually biology gained independence from cosmology and theology and came to depend less on strictly circular forms. As potent ‘canonical (...)
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  • (1 other version)Carnap, Kuhn, and the History of Science: A Reply to Thomas Uebel.J. C. Pinto de Oliveira - 2015 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 46 (1):215-223.
    The purpose of this article is to respond to Thomas Uebel´s criticisms of my comments regarding the current revisionism of Carnap´s work and its relations to Kuhn. I begin by pointing out some misunderstandings in the interpretation of my article. I then discuss some aspects related to Carnap´s view of the history of science. First, I emphasize that it was not due to a supposed affinity between Kuhn´s conceptions and those of logical positivism that Kuhn was invited to write the (...)
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  • History and philosophy of science rapprochement: Shared methodological framework.Dominika A. Yaneva - 1995 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 26 (1):143 - 152.
    The paper intends to identify some particular basic assumptions, approaches and means of proceeding, which are spontaneously shared by philosophers, sociologists and historians of science, besides the common interchange of meta-notions describing science. To this end, the specific subject matter, scope, meta-cognitive goals and methodological background of each of the three domains of science study is first outlined. Only two shared proceedings are further discussed in details: the objective attitude, called 'playing a stranger', and the historiographers' involvement in demarcational problem (...)
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  • Revisiting the history of relativity: Richard Staley: Einstein’s generation: The origins of the relativity revolution. Chicago: University of Chicago Press, 2008, x+494pp, $38 PB, $98 HB.Lewis Pyenson, Sean F. Johnston, Alberto A. Martínez & Richard Staley - 2011 - Metascience 20 (1):53-73.
    Revisiting the history of relativity Content Type Journal Article DOI 10.1007/s11016-010-9466-4 Authors Lewis Pyenson, Department of History, Western Michigan University, Kalamazoo, MI 49008-5242, USA Sean F. Johnston, School of Interdisciplinary Studies, University of Glasgow, Rutherford-McCowan Building, Dumfries, Glasgow, Scotland G2 0RB, UK Alberto A. Martínez, Department of History, University of Texas at Austin, 1 University Station B7000, Austin, TX 78712-0220, USA Richard Staley, Department of the History of Science, University of Wisconsin-Madison, 226 Bradley Memorial Building, 1225 Linden Drive, Madison, WI (...)
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  • Psychoanalysis and Interdisciplinarity With Non-analytic Psychotherapeutic Approaches Through the Lens of Dialectics.Yael Peri Herzovich & Aner Govrin - 2021 - Frontiers in Psychology 12:697506.
    Psychoanalysis, in its purist mainstream sense, tends to be considered as an isolationist discipline that steers clear of interdisciplinary connections with other psychotherapies. Its drive for purity does not open up to influences that cast as alien and a threat to its core principles. We refer to Hegelian dialectics in an attempt to offer an alternative approach to interdisciplinarity in clinical psychoanalysis. Psychoanalysis entertains a complex dialectical relationship with the major theories it opposes. In this dynamic, psychoanalysis begins by negating (...)
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  • Interpreting the History of Evolutionary Biology through a Kuhnian Prism: Sense or Nonsense?Koen B. Tanghe, Lieven Pauwels, Alexis De Tiège & Johan Braeckman - 2021 - Perspectives on Science 29 (1):1-35.
    Traditionally, Thomas S. Kuhn’s The Structure of Scientific Revolutions (1962) is largely identified with his analysis of the structure of scientific revolutions. Here, we contribute to a minority tradition in the Kuhn literature by interpreting the history of evolutionary biology through the prism of the entire historical developmental model of sciences that he elaborates in The Structure. This research not only reveals a certain match between this model and the history of evolutionary biology but, more importantly, also sheds new light (...)
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  • Should Anyone Care about Scientific Progress?Raphael Sassower - 2020 - Philosophy of the Social Sciences 51 (1):58-90.
    Scientific progress has been understood as synonymous with the growth of knowledge and the advancement of humanity. In this brief survey, this concept is problematized both in rhetorical terms and within the neoliberal framework. Despite the sustained marketing of the scientific community and its funding agencies, the dangers associated with progress are explained and highlighted.
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  • Flogisto versus oxígeno: una nueva reconstrucción y su fundamentación histórica.José L. Falguera & Xavier de Donato-Rodríguez - 2016 - Critica 48 (142):87-116.
    En este trabajo desarrollamos reconstrucciones estructuralistas de las teorías del flogisto, de Priestley, y del oxígeno, de Lavoisier. Nuestra propuesta es una alternativa a la de Caamaño en una pretensión de ajustarnos más a las formulaciones de esas teorías tal y como se dieron históricamente.
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  • Francis Bacon's “VERULAMIUM” the common‐law template of the modern in english science and culture.Harvey Wheeler - 1999 - Angelaki 4 (1):7 – 26.
    (1999). Francis Bacon's “VERULAMIUM” the common‐law template of the modern in english science and culture. Angelaki: Vol. 4, Judging the law, pp. 7-26.
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  • Selecting one attribute for judgment is not an act of stupidity.Robert Teghtsoonian - 1992 - Behavioral and Brain Sciences 15 (3):580-581.
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  • Models of knowing and their relations to our understanding of liberal education.Robert N. Mccauley - 1992 - Metaphilosophy 23 (3):288-309.
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  • Impetus Mechanics as a Physical Argument for Copernicanism Copernicus, Benedetti, Galileo.Michael Wolff - 1987 - Science in Context 1 (2):215-256.
    The ArgumentOne of the earliest arguments for Copernicanism was a widely accepted fact: that on a horizontal plane a body subject to no external resistance can be set in motion by the smallest of all possible forces. This fact was contrary to Aristotelian physics; but it was a physical argument (by abduction) for the possibility of the Copernican world system. For it would be explained if that system was true or at least possible.Galileo argued: only nonviolent motions can be caused (...)
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  • Should the psychophysical model be rejected?Bruce Schneider - 1992 - Behavioral and Brain Sciences 15 (3):579-580.
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  • Keeping the bath water along with the baby: Context effects represent a challenge, not a mortal wound, to the body of psychophysics.Mark Wagner - 1992 - Behavioral and Brain Sciences 15 (3):585-586.
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  • (1 other version)“It Ain’t Over ‘til it’s Over”: Rethinking the Darwinian Revolution.Vassiliki Betty Smocovitis - 2005 - Journal of the History of Biology 38 (1):33-49.
    This paper attempts a critical examination of scholarly understanding of the historical event referred to as "the Darwinian Revolution." In particular, it concentrates on some of the major scholarly works that have appeared since the publication in 1979 of Michael Ruse's "The Darwinian Revolution: Nature Red in Tooth and Claw." The paper closes by arguing that fruitful critical perspectives on what counts as this event can be gained by locating it in a range of historiographic and disciplinary contexts that include (...)
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  • Do we scale “objects” or isolated sensory dimensions?Michel Treisman - 1992 - Behavioral and Brain Sciences 15 (3):581-584.
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  • Relation of sensory scales to physical scales.Richard M. Warren - 1992 - Behavioral and Brain Sciences 15 (3):586-587.
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  • Ceteris paribus laws.J. van Brakel - 1992 - Behavioral and Brain Sciences 15 (3):584-585.
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  • A estrutura conceitual da revolução quí­mica.Paul Thagard, Marcos Rodrigues da Silva & Miriam Giro - 2007 - Princípios 14 (22):265-303.
    Este artigo investiga as mudanças conceituais revolucionárias que ocorreram quando a teoria do flogisto de Stahl foi substituída pela teoria do oxigênio de Lavoisier. Utilizando técnicas extraídas da inteligência artificial, o artigo descreve os estágios cruciais no desenvolvimento conceitual de Lavoisier, de 1772 até 1789. Em seguida, é esboçada uma teoria computacional da mudança conceitual de modo a explicar a descoberta de Lavoisier da teoria do oxigênio e a substituiçáo da teoria do flogisto. Este artigo é uma traduçáo de “The (...)
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  • Reply to Thagard.Don Ross - 1996 - Dialogue 35 (1):161-164.
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  • Lines of Descent: Kuhn and Beyond.Friedel Weinert - 2014 - Foundations of Science 19 (4):331-352.
    Thomas S. Kuhn is famous both for his work on the Copernican Revolution and his ‘paradigm’ view of scientific revolutions. But Kuhn later abandoned the notion of paradigm in favour of a more ‘evolutionary’ view of the history of science. Kuhn’s position therefore moved closer to ‘continuity’ models of scientific progress, for instance ‘chain-of-reasoning’ models, originally championed by D. Shapere. The purpose of this paper is to contribute to the debate around Kuhn’s new ‘developmental’ view and to evaluate these competing (...)
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  • (1 other version)Is There an Incommensurability between Superseding Theories? On the Validity of the Incommensurability Thesis.A. Polikarov - 1993 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 24 (1):127 - 146.
    According to the Incommensurability Thesis (IT) superseding scientific theories (paradigms) are incommensurable. Unlike many authors we do not discuss whether there is a relationship of this kind. We take for granted that this may be the case, and see the problem in the endeavour to establish the domain of validity of the IT. The notion incommensurability (Ic) is derivative from the concepts of scientific paradigm (P) and scientific revolution (R). There are several concepts of P, as well as various conceptions (...)
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