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  1. The Function of Scientific Concepts.Hyundeuk Cheon - forthcoming - Foundations of Science:1-15.
    The function of concepts must be taken seriously to understand the scientific practices of developing and working with concepts. Despite its significance, little philosophical attention has been paid to the function of concepts. A notable exception is Brigandt (2010), who suggests incorporating the epistemic goal pursued with the concept’s use as an additional semantic property along with the reference and inferential role. The suggestion, however, has at least two limitations. First, his proposal to introduce epistemic goals as the third component (...)
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  • Conceptual Learning and Local Incommensurability: A Dynamic Logic Approach.Corina Strößner - 2022 - Axiomathes 32 (6):1025-1045.
    In recent decades, the logical study of rational belief dynamics has played an increasingly important role in philosophy. However, the dynamics of concepts such as conceptual learning received comparatively little attention within this debate. This is problematic insofar as the occurrence of conceptual change (especially in the sciences) has been an influential argument against a merely logical analysis of beliefs. Especially Kuhn’s ideas about the incommensurability, i.e., untranslatability, of succeeding theories seem to stand in the way of logical reconstruction. This (...)
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  • Cognition, Meaning and Action: Lodz-Lund Studies in Cognitive Science.Piotr Łukowski, Aleksander Gemel & Bartosz Żukowski (eds.) - 2015 - Kraków, Polska: Lodz University Press & Jagiellonian University Press.
    The book is addressed to all readers interested in cognitive science, and especially in research combining a logical analysis with psychological, linguistic and neurobiological approaches. The publication is the result of a collaboration between the Department of Cognitive Science at University of Lodz and the Department of Cognitive Science at Lund University. It is intended to provide a comprehensive presentation of the key research issues undertaken in both Departments, including considerations on meaning, natural language and reasoning, linguistic as well as (...)
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  • A frame-based approach for theoretical concepts.Stephan Kornmesser - 2016 - Synthese 193 (1):145-166.
    According to a seminal paper by Barsalou , frames are attribute-value-matrices for representing exemplars or concepts. Frames have been used as a tool for reconstructing scientific concepts as well as conceptual change within scientific revolutions . In the frame-based representations of scientific concepts developed so far the semantic content of concepts is determined by a set of attribute-specific values. This way of representing semantic content works best for prototype concepts and defined concepts of a conceptual taxonomy satisfying the no-overlap principle. (...)
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  • A Similarity-based Approach Of Kuhn’s No-overlap Principle And Anomalies.Dragoş Bîgu - 2013 - Studies in History and Philosophy of Science Part A 44 (3):330-338.
    In their book Cognitive Structure of Scientific Revolutions, Hanne Andersen, Peter Barker, and Xiang Chen reconstruct Kuhn’s account of conceptual structure and change, based on the dynamic frame model. I argue against their reconstruction of anomalies and of the no-overlap principle and propose a competing model, based on the similarity relation. First, I introduce the concept of psychological distance between objects, and then I show that the conceptual structure of a theory consists of a set of natural families, separated by (...)
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  • Ontological commitments of frame-based knowledge representations.David Hommen - 2019 - Synthese 196 (10):4155-4183.
    In this paper, I shall assess the ontological commitments of frame-based methods of knowledge representation. Frames decompose concepts into recursive attribute-value structures. The question is: are the attribute values in frames to be interpreted as universal properties or rather as tropes? I shall argue that universals realism and trope theory face similar complications as far as non-terminal values, i.e., values which refer to the determinable properties of objects, are concerned. It is suggested that these complications can be overcome if one (...)
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  • From Features via Frames to Spaces: Modeling Scientific Conceptual Change Without Incommensurability or Aprioricity.Frank Zenker - 2014 - In T. Gamerschlag, R. Gerland, R. Osswald & W. Petersen (eds.), Frames and Concept Types: Applications in Language and Philosophy. pp. 69-89.
    The frame model, originating in artificial intelligence and cognitive psychology, has recently been applied to change-phenomena traditionally studied within history and philosophy of science. Its application purpose is to account for episodes of conceptual dynamics in the empirical sciences suggestive of incommensurability as evidenced by “ruptures” in the symbolic forms of historically successive empirical theories with similar classes of applications. This article reviews the frame model and traces its development from the feature list model. Drawing on extant literature, examples of (...)
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  • Kuhn on essentialism and the causal theory of reference.Jouni-Matti Kuukkanen - 2010 - Philosophy of Science 77 (4):544-564.
    The causal theory of reference is often taken to provide a solution to the problems, such as incomparability and referential discontinuity, that the meaning-change thesis raised. I show that Kuhn successfully questioned the causal theory and Putnam's idea that reference is determined via the sameness relation of essences that holds between a sample and other members of a kind in all possible worlds. Putnam's single ‘essential' properties may be necessary but not sufficient to determine membership in a kind category. Kuhn (...)
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  • On Discerning Critical Elements, Relationships and Shifts in Attaining Scientific Terms: The Challenge of Polysemy/Homonymy and Reference.Helge R. Strömdahl - 2012 - Science & Education 21 (1):55-85.
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  • Epistemological and educational issues in teaching practice-oriented scientific research: roles for philosophers of science.Mieke Boon, Mariana Orozco & Kishore Sivakumar - 2022 - European Journal for Philosophy of Science 12 (1):1-23.
    The complex societal challenges of the twenty-first Century require scientific researchers and academically educated professionals capable of conducting scientific research in complex problem contexts. Our central claim is that educational approaches inspired by a traditional empiricist epistemology insufficiently foster the required deep conceptual understanding and higher-order thinking skills necessary for epistemic tasks in scientific research. Conversely, we argue that constructivist epistemologies provide better guidance to educational approaches to promote research skills. We also argue that teachers adopting a constructivist learning theory (...)
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  • Thomas Kuhn’s Philosophy of Language.Paulo Pirozelli - 2020 - Trans/Form/Ação 43 (spe):345-372.
    Thomas Kuhn is mostly known for his contributions to the philosophy of science. However, it was chiefly to investigations in philosophy of language that he dedicated the last part of his career. The aim of this paper is to present a systematic view of Kuhn’s main ideas on this subject. I start by describing his theory of concept, in particular what he says about kind terms. Such terms, acquired in blocks that form contrast sets or “taxonomies,” are learned through ostensible (...)
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  • Towards a Philosophy of the History of Thought?Jouni-Matti Kuukkanen - 2009 - Journal of the Philosophy of History 3 (1):25-54.
    There are a large number of disciplines that are interested in the theoretical aspects of the history of thought. Their perspectives and subjects may vary, but fundamentally they have a common research interest: the history of human thinking and its products. Despite this, they are studied in relative isolation. I argue that having different subjects as specific objects of research, such as political or scientific thinking, is not a valid justification for the separation. I propose the formation of a new (...)
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  • Frames and concepts in the philosophy of science.Stephan Kornmesser - 2018 - European Journal for Philosophy of Science 8 (2):225-251.
    In the philosophy of science, the frame model is used in order to represent and analyze scientific concepts and conceptual change. However, the potential of the frame model is far from being fully exploited: Up to now, the frame model is only applied to a rather small set of different kinds of concepts and important advantages of the frame model for reconstructing and analyzing concepts have been neglected. In this article, we will essentially extend the frame model in the following (...)
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  • Analyzing Theories in the Frame Model.Stephan Kornmesser & Gerhard Schurz - 2020 - Erkenntnis 85 (6):1313-1346.
    The frame model was developed in cognitive psychology and imported into the philosophy of science in order to provide representations of scientific concepts and conceptual taxonomies. The aim of this article is to show that beside the representation of scientific concepts the frame model is an efficient instrument to represent and analyze scientific theories. That is, we aim to establish the frame model as a representation tool for the structure of theories within the philosophy of science. For this, we will (...)
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