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  1. Rationality and Irrationality: Proceeedings of the 23rd International Wittgenstein Symposium, 13-19 August 2000, Kirchberg Am Wechsel.Berit Brogaard & Barry Smith (eds.) - 2001 - Öbv&Hpt.
    This volume consists of the invited papers presented at the 23rd International Wittgenstein Conference held in Kirchberg, Austria in August 2000. Among the topics treated are: truth, psychologism, science, the nature of rational discourse, practical reason, contextualism, vagueness, types of rationality, the rationality of religious belief, and Wittgenstein. Questions addressed include: Is rationality tied to special sorts of contexts? ls rationality tied to language? Is scientific rationality the only kind of rationality? Is there something like a Western rationality? and: Could (...)
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  • On the status and role of instrumental images in contemporary science: some epistemological issues.Hermínio Martins - 2014 - Scientiae Studia 12 (SPE):11-36.
    The controversy over imageless thought versus picture thinking , with the recent reconsideration of model-based reasoning in the physical sciences is briefly examined. The main focus of the article is on the role of instrumentally elicited images in the sciences, especially in the physical sciences, with special reference to optics, experimental particle physics and observational astronomy, against the background of the civilization of digital images, though to some degree every scientific discipline is implicated. Imaging, today chiefly in the mode of (...)
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  • Oltre la fisica normale. Interpretazioni alternative e teorie non standard nella fisica moderna.Isabella Tassani, Gino Tarozzi, Alessandro Afriat, Gennaro Auletta, Stefano Bordoni, Marco Buzzoni, Claudio Calosi, Vincenzo Fano, Alberto Cappi, Giovanni Macchia, Fabio Minazzi & Arcangelo Rossi (eds.) - 2013 - ISONOMIA - Epistemologica.
    Nella sua straordinaria opera scientifica, Franco Selleri si è sempre opposto alla rinuncia alla comprensione della struttura della realtà e della natura degli oggetti fisici, che egli considera come l’elemento caratterizzante delle principali teorie della fisica del Novecento e che è stata stigmatizzata da Karl Popper come tesi della “fine della strada in fisica”. Sin dalla fine degli anni ’60, egli ha sviluppato quella riflessione critica nei confronti delle teorie fondamentali della fisica moderna, in particolar modo della teoria delle particelle (...)
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  • Deconstructing the Physical World: The Substructure of Language.Brendon Hammer - manuscript
    This is Appendix B to the note, Deconstructing the Physical World (DPW). This appendix extends DPW to provide a set of new conceptual tools able inter alia to deliver a systematic, well-structured and highly novel set of insights into: core aspects of how language learning and use might work; what precisely is going on in inverted qualia thought experiments and in relation to the knowledge argument; and how incorporating differentiated forms of qualia into some fundamental ideas about language learning and (...)
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  • The conceptual and the anecdotal history of quantum mechanics.Mara Beller - 1996 - Foundations of Physics 26 (4):545-557.
    The aim of this paper is to combine the intellectual and the psychosocial aspects. blurring the distinction between the conceptual and the anecdotal history of quantum mechanics. The full realization of the importance of such “anecdotal” factors leads to the revision of our understanding of the conceptual development itself. The paper concludes with the suggestion that a major part of numerous inconsistencies in the Copenhagen interpretation of quantum physics are of a psychosocial origin.
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  • Is the relativity of simultaneity a temporal illusion?B. Brogaard & K. Marlow - 2013 - Analysis 73 (4):635-642.
    Tensism holds that the present moment has a special status that sets it apart from the past and the future, independently of perceivers. One of the main objections to this view has been Einstein’s argument from special relativity, which aims at showing that absolute simultaneity is a myth. We argue that the moving observer in a causal variant of Einstein’s original thought experiment is subject to a temporal illusion. Owing to the analogy of the cases, this casts doubt on the (...)
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  • Was heißt moderne Physik?Gregor Schiemann - 1995 - In Hoffmann (ed.), The Emergence of Modern Physics. Proceedings of a Conference Commemorating a Century of Physics. La Goliardica Pavese.
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  • Austrian Origins of Logical Positivism.Barry Smith - 1987 - In Barry Gower (ed.), Logical Positivism in Perspective: Essays on Language, Truth, and Logic. Totowa, NJ, USA: Croom Helm. pp. 35-68.
    Recent work on Austrian philosophy has revealed, hitherto, unsuspected links between Vienna circle positivism on the one hand, and the thought of Franz Brentano and his circle on the other. the paper explores these links, casting light also on the Polish analytic movement, on the development of gestalt psychology, and on the work of Schlick and Neurath.
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  • Epistemic, Evolutionary, and Physical Conditions for Biological Information.H. H. Pattee - 2013 - Biosemiotics 6 (1):9-31.
    The necessary but not sufficient conditions for biological informational concepts like signs, symbols, memories, instructions, and messages are (1) an object or referent that the information is about, (2) a physical embodiment or vehicle that stands for what the information is about (the object), and (3) an interpreter or agent that separates the referent information from the vehicle’s material structure, and that establishes the stands-for relation. This separation is named the epistemic cut, and explaining clearly how the stands-for relation is (...)
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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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  • Austrian Philosophy: The Legacy of Franz Brentano.Barry Smith - 1994 - Chicago: Open Court.
    This book is a survey of the most important developments in Austrian philosophy in its classical period from the 1870s to the Anschluss in 1938. Thus it is intended as a contribution to the history of philosophy. But I hope that it will be seen also as a contribution to philosophy in its own right as an attempt to philosophize in the spirit of those, above all Roderick Chisholm, Rudolf Haller, Kevin Mulligan and Peter Simons, who have done so much (...)
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  • Are theories of imagery theories of imagination? An active perception approach to conscious mental content.Nigel J. T. Thomas - 1999 - Cognitive Science 23 (2):207-245.
    Can theories of mental imagery, conscious mental contents, developed within cognitive science throw light on the obscure (but culturally very significant) concept of imagination? Three extant views of mental imagery are considered: quasi‐pictorial, description, and perceptual activity theories. The first two face serious theoretical and empirical difficulties. The third is (for historically contingent reasons) little known, theoretically underdeveloped, and empirically untried, but has real explanatory potential. It rejects the “traditional” symbolic computational view of mental contents, but is compatible with recentsituated (...)
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  • The multifaceted role of imagination in science and religion. A critical examination of its epistemic, creative and meaning-making functions.Ingrid Malm Lindberg - 2021 - Dissertation, Uppsala University
    The main purpose of this dissertation is to examine critically and discuss the role of imagination in science and religion, with particular emphasis on its possible epistemic, creative, and meaning-making functions. In order to answer my research questions, I apply theories and concepts from contemporary philosophy of mind on scientific and religious practices. This framework allows me to explore the mental state of imagination, not as an isolated phenomenon but, rather, as one of many mental states that co-exist and interplay (...)
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  • Visual imagery and the limits of comprehension.Marc Krellenstein - 1994 - Dissertation, New School for Social Research
    I examined the proposition that there are psychological limits on what scientific problems can be solved, and that these limits may be based on a failure to be able to produce imagable, observation-based models for any possible solution, a position suggested by philosopher Colin McGinn in an argument attempting to prove that the mind-body problem is unsolvable. I examined another likely candidate for an unsolvable problem -- the ultimate origin of the universe (i.e., what might have preceded the Big Bang (...)
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  • (1 other version)The Significance of Evidence-based Reasoning for Mathematics, Mathematics Education, Philosophy and the Natural Sciences.Bhupinder Singh Anand - forthcoming
    In this multi-disciplinary investigation we show how an evidence-based perspective of quantification---in terms of algorithmic verifiability and algorithmic computability---admits evidence-based definitions of well-definedness and effective computability, which yield two unarguably constructive interpretations of the first-order Peano Arithmetic PA---over the structure N of the natural numbers---that are complementary, not contradictory. The first yields the weak, standard, interpretation of PA over N, which is well-defined with respect to assignments of algorithmically verifiable Tarskian truth values to the formulas of PA under the interpretation. (...)
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  • Response by H. H. Pattee to Jon Umerez’s Paper: “Where Does Pattee’s “How Does a Molecule Become a Message?” Belong in the History of Biosemiotics?”. [REVIEW]H. H. Pattee - 2009 - Biosemiotics 2 (3):291-302.
    Umerez’s analysis made me aware of the fundamental differences in the culture of physics and molecular biology and the culture of semiotics from which the new field of biosemiotics arose. These cultures also view histories differently. Considering the evolutionary span and the many hierarchical levels of organization that their models must cover, models at different levels will require different observables and different meanings for common words, like symbol, interpretation, and language. These models as well as their histories should be viewed (...)
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  • Intuition in Mathematics: from Racism to Pluralism.Miriam Franchella - 2022 - Philosophia 50 (3):1055-1091.
    In the nineteenth and twentieth centuries many mathematicians referred to intuition as the indispensable research tool for obtaining new results. In this essay we will analyse a group of mathematicians who interacted with Luitzen Egbertus Jan Brouwer in order to compare their conceptions of intuition. We will see how to the same word “intuition” very different meanings corresponded: they varied from geometrical vision, to a unitary view of a demonstration, to the perception of time, to the faculty of considering concepts (...)
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  • Visualization as a Tool for Understanding.Henk W. de Regt - 2014 - Perspectives on Science 22 (3):377-396.
    The act of understanding is at the heart of all scientific activity; without it any ostensibly scientific activity is as sterile as that of a high school student substituting numbers into a formula. Ordinary language often uses visual metaphors in connection with understanding. When we finally understand what someone is trying to point out to us, we exclaim: “I see!” When someone really understands a subject matter, we say that she has “insight”. There appears to be a link between visualization (...)
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  • Einstein, Inventors, and Invention.Thomas P. Hughes - 1993 - Science in Context 6 (1):25-42.
    The ArgumentAlbert Einstein had more than a passing and trivial involvement with patents and inventions. The historian seeking to fathom Einstein's thought processes would be ill-advised to pass lightly over his years at the Swiss Federal Patent office (1902–1909) and to consider his professional advice-giving about patents and his patenting of his inventions as merely peripheral to his core concerns and cognitive style. Years of reading patents and visualizing the machines, devices, and electromagnetic phenomena described in them is a formative (...)
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  • Imagination's grip on science.Tim Mey - 2006 - Metaphilosophy 37 (2):222-239.
    In part because “imagination” is a slippery notion, its exact role in the production of scientific knowledge remains unclear. There is, however, one often explicit and deliberate use of imagination by scientists that can be (and has been) studied intensively by epistemologists and historians of science: thought experiments. The main goal of this article is to document the varieties of thought experimentation, not so much in terms of the different sciences in which they occur but rather in terms of the (...)
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  • Towards a Refined Depiction of Nature of Science.Igal Galili - 2019 - Science & Education 28 (3-5):503-537.
    This study considers the short list of Nature of Science features frequently published and widely known in the science education discourse. It is argued that these features were oversimplified and a refinement of the claims may enrich or sometimes reverse them. The analysis shows the need to address the range of variation in each particular aspect of NOS and to illustrate these variations with actual events from the history of science in order to adequately present the subject. Another implication of (...)
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  • Is Argument for Conservatives? or Where Do Sparkling New Ideas Come From?Sharon Bailin - 2003 - Informal Logic 23 (1).
    Rorty claims argument is inherently conservative and philosophical progress comes from "sparkling new ideas," not argument. This assumes an untenable opposition between the generation and the evaluation of ideas, with argument relegated to evaluation. New ideas that contribute to progress arise from critical reflection on problems posed by the tradition, and constrained by the criteria governing evaluation. Thinking directed toward the criticism and evaluation of ideas or products is not algorithmic; it has a generative, creative component. An overall assessment in (...)
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  • Have incommensurability and causal theory of reference anything to do with actual science?—Incommensurability, no; causal theory, yes.Arthur I. Miller - 1991 - International Studies in the Philosophy of Science 5 (2):97 – 108.
    I propose to support these replies with actual episodes in late nineteenth and twentieth century physics. The historical record reveals that meaning does change but not in the Kuhnian manner which is tied to descriptive theories of meaning. A necessary part of this discussion is commentary on realist versus antirealist conceptions of science.
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  • Between classical and quantum.Nicolaas P. Landsman - 2007 - Handbook of the Philosophy of Science 2:417--553.
    The relationship between classical and quantum theory is of central importance to the philosophy of physics, and any interpretation of quantum mechanics has to clarify it. Our discussion of this relationship is partly historical and conceptual, but mostly technical and mathematically rigorous, including over 500 references. For example, we sketch how certain intuitive ideas of the founders of quantum theory have fared in the light of current mathematical knowledge. One such idea that has certainly stood the test of time is (...)
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  • From Comparison Between Scientists to Gaining Cultural Scientific Knowledge.Igal Galili - 2016 - Science & Education 25 (1-2):115-145.
    Physics textbooks often present items of disciplinary knowledge in a sequential order of topics of the theory under instruction. Such presentation is usually univocal, that is, isolated from alternative claims and contributions regarding the subject matter in the pertinent scientific discourse. We argue that comparing and contrasting the contributions of scientists addressing similar or the same subject could not only enrich the picture of scientific enterprise, but also possess a special appealing power promoting genuine understanding of the concept considered. This (...)
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  • Methods of Conceptual Change in Science: Imagistic and Analogical Reasoning.Nancy Nersessian - 1990 - Philosophica 45.
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  • Discovering relativity beliefs: Towards a socio-cognitive model for Einstein's relativity theory formation.Andrea Cerroni - 2002 - Mind and Society 3 (1):93-109.
    The research on which the present paper makes a point in aimed at designing a cognitive model of Albert Einstein's discovery that is based on fundamental Einstein's publications and placed, ideally, at a meso-level, between macro-historical and micro-cognitive reconstructions (e.g. protocol analysis). As in a cognitive-historical analysis, we will trace some discovery heuristics in the construction of representations, that are on a continuum with those we employ in ordinary problem solving. Firstly, some theory-specific, reflexive heuristics—named orientative heuristics—are traced: inner perfection, (...)
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  • (4 other versions)Henri Poincaré.Gerhard Heinzmann - forthcoming - Stanford Encyclopedia of Philosophy.
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  • Inquiry: A New Paradigm for Critical Thinking.Mark Battersby (ed.) - 2018 - Windsor, Canada: Windsor Studies in Argumentation.
    This volume reflects the development and theoretical foundation of a new paradigm for critical thinking based on inquiry. The field of critical thinking, as manifested in the Informal Logic movement, developed primarily as a response to the inadequacies of formalism to represent actual argumentative practice and to provide useful argumentative skills to students. Because of this, the primary focus of the field has been on informal arguments rather than formal reasoning. Yet the formalist history of the field is still evident (...)
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  • Seeing the language: a diagrammatic approach to natural discourse.Aránzazu San Ginés - 2012 - Synthese 186 (1):411-439.
    The key idea behind the diagrammatic approach presented in the paper is that the sophisticated mechanisms of human visual construction also play an important role in natural languages. We propose a diagrammatic representation of English, giving examples, translation rules, and semantics. Special attention will be paid to anaphoric phenomena, in particular, the possibility of a uniform treatment of anaphoric pronouns.
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  • Encountering Productive Forms of Complexity in Learning Modern Physics.Olivia Levrini & Paola Fantini - 2013 - Science & Education 22 (8):1895-1910.
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  • Replies to critics.Nader Chokr - 1993 - Social Epistemology 7 (4):369 – 386.
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  • (1 other version)Imagery and meaning, the cognitive science connection.Arthur I. Miller - 1991 - International Studies in the Philosophy of Science 5 (1):35 – 48.
    Abstract Taking the integrated viewpoints of causal theory of reference, cognitive science and the notion of correspondence principles from physics, this paper addresses the problems of creativity, the nature of visual imagery and the manner in which science progresses.
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  • Truth and beauty in scientific reason.James W. Mcallister - 1989 - Synthese 78 (1):25 - 51.
    A rationalist and realist model of scientific revolutions will be constructed by reference to two categories of criteria of theory-evaluation, denominated indicators of truth and of beauty. Whereas indicators of truth are formulateda priori and thus unite science in the pursuit of verisimilitude, aesthetic criteria are inductive constructs which lag behind the progression of theories in truthlikeness. Revolutions occur when the evaluative divergence between the two categories of criteria proves too wide to be recomposed or overlooked. This model of revolutions (...)
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  • Some Mathematical, Epistemological, and Historical Reflections on the Relationship Between Geometry and Reality, Space–Time Theory and the Geometrization of Theoretical Physics, from Riemann to Weyl and Beyond.Luciano Boi - 2019 - Foundations of Science 24 (1):1-38.
    The history and philosophy of science are destined to play a fundamental role in an epoch marked by a major scientific revolution. This ongoing revolution, principally affecting mathematics and physics, entails a profound upheaval of our conception of space, space–time, and, consequently, of natural laws themselves. Briefly, this revolution can be summarized by the following two trends: by the search for a unified theory of the four fundamental forces of nature, which are known, as of now, as gravity, electromagnetism, and (...)
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  • Einstein's brand of verificationism.James Robert Brown - 1987 - International Studies in the Philosophy of Science 2 (1):33 – 54.
    (1987). Einstein's brand of verificationism. International Studies in the Philosophy of Science: Vol. 2, No. 1, pp. 33-54. doi: 10.1080/02698598708573301.
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  • Explanation in scientists and children.William F. Brewer, Clark A. Chinn & Ala Samarapungavan - 1998 - Minds and Machines 8 (1):119-136.
    In this paper we provide a psychological account of the nature and development of explanation. We propose that an explanation is an account that provides a conceptual framework for a phenomenon that leads to a feeling of understanding in the reader/hearer. The explanatory conceptual framework goes beyond the original phenomenon, integrates diverse aspects of the world, and shows how the original phenomenon follows from the framework. We propose that explanations in everyday life are judged on the criteria of empirical accuracy, (...)
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  • La representación visual del conocimiento científico y su característica naturaleza epistémica, heurística y comunicativa.Francisco López Cantos - 2020 - Isegoría 62:91-108.
    This article deals with the nature of the visual representation of knowledge with historical and contemporary examples of the analysis of its defining characteristics as epistemic, heuristic and communicative representation. With this aim along the text we explain the visual material features and their relationship with the elaboration of scientific knowledge. And, finally, we must take into account the status of scientific representation in the complex of contemporary visual culture claiming the urgent need to address this type of particular representation (...)
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  • Representing Experimental Procedures through Diagrams at CERN’s Large Hadron Collider: The Communicatory Value of Diagrammatic Representations in Collaborative Research.Koray Karaca - 2017 - Perspectives on Science 25 (2):177-203.
    In relatively recent years, quite a number of diverse case studies concerning the use of visual displays—such as graphs, diagrams, tables, pictures, drawings, etc.—in both the physical and biological sciences have been offered in the literature of the history and philosophy of science —see, e.g., Miller 1984; Lynch and Woolgar 1990; Baigrie 1996; Pauwels 2006. These case studies have shown that visual representations fulfill important functions in both the theoretical and experimental practices of science, thereby emphasizing the non-verbal dimension of (...)
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  • Laboratory Replication of Scientific Discovery Processes.Yulin Qin & Herbert A. Simon - 1990 - Cognitive Science 14 (2):281-312.
    Fourteen subjects were tape‐recorded while they undertook to find a law to summarize numerical data they were given. The source of the data was not identified, nor were the variables labeled semantically. Unknown to the subjects, the data were measurements of the distances of the planets from the sun and the periods of their revolutions about it—equivalent to the data used by Johannes Kepler to discover his third law of planetary motion.Four of the 14 subjects discovered the same law as (...)
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  • Toward a cognitive psychology of science.Barry Gholson & Arthur Houts - 1989 - Social Epistemology 3 (2):107 – 127.
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  • On the Power of Fine Arts Pictorial Imagery in Science Education.Igal Galili - 2013 - Science & Education 22 (8):1911-1938.
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