Results for 'Prototype concepts'

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  1.  66
    Conceptual Combination with Prototype Concepts.Edward E. Smith & Daniel N. Osherson - 1984 - Cognitive Science 8 (4):337-361.
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  2. Unification and Explanation: Explanation as a Prototype Concept. A Reply to Weber and van Dyck, Gijsberg, and de Regt.Gerhard Schurz - 2014 - Theoria 29 (1):57-70.
    __In this paper I investigate unification as a virtue of explanation. I the first part of the paper I give a brief exposition of the unification account of Schurz and Lambert and Schurz. I illustrate the advantages of this account in comparison to the older unification accounts of Friedman and Kitcher. In the second part I discuss several comments and objections to the Schurz-Lambert account that were raised by Weber and van Dyck, Gijsberg and de Regt. In the third and (...)
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  3.  40
    Rule and similarity as prototype concepts.Edward E. Smith - 2005 - Behavioral and Brain Sciences 28 (1):34-35.
    There is a continuum between prototypical cases of rule use and prototypical cases of similarity use. A prototypical rule: (1) is explicitly represented, (2) can be verbalized, and (3) requires that the user selectively attend to a few features of the object, while ignoring the others. Prototypical similarity-use requires that: (1) the user should match the object to a mental representation holistically, and (2) there should be no selective attention or inhibition. Neural evidence supports prototypical rule-use. Most models of categorization (...)
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  4.  52
    Unification and Explanation: Explanation as a Prototype Concept.Gerhard Schurz - 2014 - Theoria: Revista de Teoría, Historia y Fundamentos de la Ciencia 29 (1):57-70.
    In this paper I investigate unification as a virtue of explanation. In the first part of the paper (sec. 1-2) I give a brief exposition of the unification account of Schurz and Lambert (1994) and Schurz (1999). I illustrate the advantages of this account in comparison to the older unification accounts of Friedman (1974) and Kitcher (1981). In the second part (sec. 3) I discuss several comments and objections to the Schurz-Lambert account that were raised by Weber and van Dyck (...)
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  5.  48
    Do health professionals have a prototype concept of disease? The answer is no.Bjørn Hofmann - 2017 - Philosophy, Ethics, and Humanities in Medicine 2017 12:1 12 (1):6.
    Health and disease are core concepts in health care and have attracted substantial interest and controversy. In recent and interesting contributions to the debate it has been argued that the challenges with the concept of disease can be resolved by a prototype concept of disease. As a robin is a more prototypical of a bird than a penguin, some diseases are more prototypical than others. If disease is a prototype concept, it would change nosology, but also health (...)
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  6. Prototypes as compositional components of concepts.Guillermo Del Pinal - 2016 - Synthese 193 (9):2899–2927.
    The aim of this paper is to reconcile two claims that have long been thought to be incompatible: that we compositionally determine the meaning of complex expressions from the meaning of their parts, and that prototypes are components of the meaning of lexical terms such as fish, red, and gun. Hypotheses and are independently plausible, but most researchers think that reconciling them is a difficult, if not hopeless task. In particular, most linguists and philosophers agree that is not negotiable; so (...)
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  7. The benefits of prototypes: The case of medical concepts.Cristina Amoretti, Marcello Frixione & Antonio Lieto - 2017 - Reti, Saperi E Linguaggi, The Italian Journal of Cognitive Sciences, 2017 3.
    In the present paper, we shall discuss the notion of prototype and show its benefits. First, we shall argue that the prototypes of common-sense concepts are necessary for making prompt and reliable categorisations and inferences. However, the features constituting the prototype of a particular concept are neither necessary nor sufficient conditions for determining category membership; in this sense, the prototype might lead to conclusions regarded as wrong from a theoretical perspective. That being said, the prototype (...)
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  8.  78
    “Prototypes” and “fuzziness” in the logic of concepts.Gy Fuhrmann - 1988 - Synthese 75 (3):317 - 347.
    Prototypes and fuzziness are regarded in this paper as fundamental phenomena in the inherent logic of concepts whose relationship, however, has not been sufficiently clarified. Therefore, modifications are proposed in the definition of both. Prototypes are defined as the elements possessing maximal degree of membership in the given category such thatthis membership has maximal cognitive efficiency in representing theelement. A modified fuzzy set (m-fuzzy set) is defined on aclass (possibly self-contradictory collection) such that its core (the collection of elements (...)
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  9.  13
    Prototypes in emotion concepts.Paul Wilson & Barbara Lewandowska-Tomaszczyk - 2023 - Lodz Papers in Pragmatics 19 (1):125-143.
    Although we have gained great insight into the variety of cultural influences on emotion concept prototypes from a plethora of studies examining such cross-cultural effects, there has been relatively little academic focus on the nature of emotion concept prototypes within a cultural perspective. Our discussion of the nature of emotion concept prototypes centres on essentialist versus non-essentialist principles. We argue that at a general, decontextualised level, essentialist and non-essentialist principles predict similarity in the structure of emotion concept prototypes. We further (...)
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  10. On the prototype theory of concepts and the definition of art.Thomas Adajian - 2005 - Journal of Aesthetics and Art Criticism 63 (3):231–236.
    It has been claimed that the prototype theory of concepts supports two controversial claims in the philosophy of art: that art cannot be defined, and that the possession of a certain sort of historical narrative is a sufficient but not necessary means of determining the art status of contested works. It is argued here that two sorts of considerations undermine the thesis that prototype theory offers significant support to anti-definitionism and historical narrativism. First, there is reason to (...)
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  11. Concept formation via Hebbian learning : the special case of prototypical causal sequences.Paul M. Churchland - 2010 - In Peter K. Machamer & Gereon Wolters (eds.), Interpretation: Ways of Thinking About the Sciences and the Arts. University of Pittsburgh Press.
     
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  12.  27
    Beyond prototypes and classical definitions: Evidence for a theory-based representation of emotion concepts.Matthias Siemer - 2008 - Cognition and Emotion 22 (4):620-632.
    The question of how people represent emotions is eminently important for a number of different domains of psychological research. The present study tested the assumption that emotion concepts are represented similar to theories in that they are comprised of a set of causally interrelated features. Using emotional scenarios and investigating the emotion concepts of anger, anxiety, and sadness it was found that people's representations of emotion concepts essentially involved the representation of the causal relation of emotion features (...)
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  13.  30
    Extracting prototypes from exemplars What can corpus data tell us about concept representation?Dagmar Divjak & Antti Arppe - 2013 - Cognitive Linguistics 24 (2).
  14. Concepts and prototypes.James A. Hampton - 2000 - Mind and Language 15 (2-3):299-307.
  15.  12
    Are conceptions of motion based on a naive theory or on prototypes?Jack Yates, Margaret Bessman, Martin Dunne, Deeann Jertson, Kaye Sly & Bradley Wendelboe - 1988 - Cognition 29 (3):251-275.
  16. Concepts, prototypes, and information.Richard E. Grandy - 1990 - In Enrique Villanueva (ed.), Information, Semantics, and Epistemology. Blackwell.
  17. Formal Concept Analysis and Prototypes.Jan van Eijck & Joost Zwarts - unknown
    Categorization is probably one of the most central areas in the study of cognition, language and information. However, there is a serious gap running through the semantic treatments of categories and concepts [3]. On one side we find the ’classical’, formal approach, based on logical considerations, that has lent itself well for computational applications. In this approach, concepts are defined in terms of necessary and sufficient conditions. On the other side is an informal approach to categorization that is (...)
     
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  18. Beyond prototypes and frames: The two-tiered concept representation.Ryszard S. Michalski - 1993 - In I. Van Mechelen, J. Hampton, R. Michalski & P. Theuns (eds.), Categories and Concepts: Theoretical Views and Inductive Data Analysis. Academic Press. pp. 145--172.
     
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  19. On the adequacy of prototype theory as a theory of concepts.Daniel N. Osherson & Edward E. Smith - 1981 - Cognition 9 (1):35-58.
  20. Prototypes, Poles, and Topological Tessellations of Conceptual Spaces.Thomas Mormann - 2021 - Synthese 199 (1):3675 - 3710.
    Abstract. The aim of this paper is to present a topological method for constructing discretizations (tessellations) of conceptual spaces. The method works for a class of topological spaces that the Russian mathematician Pavel Alexandroff defined more than 80 years ago. Alexandroff spaces, as they are called today, have many interesting properties that distinguish them from other topological spaces. In particular, they exhibit a 1-1 correspondence between their specialization orders and their topological structures. Recently, a special type of Alexandroff spaces was (...)
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  21.  66
    Quantum and Concept Combination, Entangled Measurements, and Prototype Theory.Diederik Aerts - 2014 - Topics in Cognitive Science 6 (1):129-137.
    We analyze the meaning of the violation of the marginal probability law for situations of correlation measurements where entanglement is identified. We show that for quantum theory applied to the cognitive realm such a violation does not lead to the type of problems commonly believed to occur in situations of quantum theory applied to the physical realm. We briefly situate our quantum approach for modeling concepts and their combinations with respect to the notions of “extension” and “intension” in theories (...)
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  22.  5
    Uncertainty modelling for vague concepts: A prototype theory approach.Jonathan Lawry & Yongchuan Tang - 2009 - Artificial Intelligence 173 (18):1539-1558.
  23.  77
    A reassessment of the shift from the classical theory of concepts to prototype theory.Eric Margolis - 1994 - Cognition 51 (1):73-89.
    A standard view within psychology is that there have been two important shifts in the study of concepts and that each has led to some improvements. The first shift was from the classical theory of concepts to probabilistic theories, including the prototype theory. The second shift was from probabilistic theories to theory-based theories. In this article, I critically evaluate the view that the first shift was a major advance and argue that the prototype theory suffers some (...)
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  24. The red Herring and the pet fish: Why concepts still can't be prototypes.Jerry Fodor & Ernest Lepore - 1996 - Cognition 58 (2):253-70.
    1 There is a Standard Objection to the idea that concepts might be prototypes (or exemplars, or stereotypes): Because they are productive, concepts must be compositional. Prototypes aren't compositional, so concepts can't be prototypes (see, e.g., Margolis, 1994).2 However, two recent papers (Osherson and Smith, 1988; Kamp and Partee, 1995) reconsider this consensus. They suggest that, although the Standard Objection is probably right in the long run, the cases where prototypes fail to exhibit compositionality are relatively exotic (...)
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  25.  32
    On the Adequacy of Prototype Theory as a Theory of Concepts Daniel N. Osherson and Edward E. Smith.Daniel N. Osherson - 1999 - In Eric Margolis & Stephen Laurence (eds.), Concepts: Core Readings. MIT Press. pp. 261.
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  26. Prototypes, Exemplars, and Theoretical & Applied Ethics.John Jung Park - 2011 - Neuroethics 6 (2):237-247.
    Concepts are mental representations that are the constituents of thought. EdouardMachery claims that psychologists generally understand concepts to be bodies of knowledge or information carrying mental states stored in long term memory that are used in the higher cognitive competences such as in categorization judgments, induction, planning, and analogical reasoning. While most research in the concepts field generally have been on concrete concepts such as LION, APPLE, and CHAIR, this paper will examine abstract moral concepts (...)
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  27.  29
    Articulating Context-Dependence: Ad Hoc Cognition in the Prototype Theory of Concepts.José V. Hernández-Conde - 2021 - In Tadeusz Ciecierski & Paweł Grabarczyk (eds.), Context Dependence in Language, Action, and Cognition. De Gruyter. pp. 119-130.
    Recently, Casasanto and Lupyan (2015) have proposed an appealing and daring thesis: there are no context-independent concepts—that is, all concepts are ad hoc concepts. They argue that the seeming stability of concepts is merely due to commonalities across their different instantiations but that, in fact, there is nothing invariant in them. In their view, concepts only exist when they are instantiated for categorizing, communicating, drawing inferences, etc., and those instantiations are produced on the fly from (...)
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  28.  41
    Prototypes, poles, and tessellations: towards a topological theory of conceptual spaces.Thomas Mormann - 2021 - Synthese 199 (1-2):3675-3710.
    The aim of this paper is to present a topological method for constructing discretizations of topological conceptual spaces. The method works for a class of topological spaces that the Russian mathematician Pavel Alexandroff defined more than 80 years ago. The aim of this paper is to show that Alexandroff spaces, as they are called today, have many interesting properties that can be used to explicate and clarify a variety of problems in philosophy, cognitive science, and related disciplines. For instance, recently, (...)
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  29. Composing Prototypes - AISC 18.Antonio Lieto & Gian Luca Pozzato - 2018 - In Antonio Lieto & Gian Luca Pozzato (eds.), Proceedings of AISC 2018, 15th Annual Conference of the Italian Association for Cognitive Sciences The new era of Artificial Intelligence: a cognitive perspective. 27100 Pavia, Province of Pavia, Italy: pp. 8-10.
    Combining typical knowledge to generate novel concepts is an important creative trait of human cognition. Dealing with such ability requires, from an AI perspective, the harmonization of two conflicting requirements that are hardly accommodated in symbolic systems: the need of a syntactic compositionality (typical of logical systems) and that one concerning the exhibition of typicality effects (see Frixione and Lieto, 2012). In this work we provide a logical framework able to account for this type of human-like concept combination. We (...)
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  30. Prototypes and conceptual analysis.William Ramsey - 1992 - Topoi 11 (1):59-70.
    In this paper, I explore the implications of recent empirical research on concept representation for the philosophical enterprise of conceptual analysis. I argue that conceptual analysis, as it is commonly practiced, is committed to certain assumptions about the nature of our intuitive categorization judgments. I then try to show how these assumptions clash with contemporary accounts of concept representation in cognitive psychology. After entertaining an objection to my argument, I close by considering ways in which conceptual analysis might be altered (...)
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  31.  75
    Meaning, prototypes and the future of cognitive science.Jaap van Brakel - 1991 - Minds and Machines 1 (3):233-57.
    In this paper I evaluate the soundness of the prototype paradigm, in particular its basic assumption that there are pan-human psychological essences or core meanings that refer to basic-level natural kinds, explaining why, on the whole, human communication and learning are successful. Instead I argue that there are no particular pan-human basic elements for thought, meaning and cognition, neither prototypes, nor otherwise. To illuminate my view I draw on examples from anthropology. More generally I argue that the prototype (...)
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  32. Prototypical Reasoning About Species and the Species Problem.Yuichi Amitani - 2015 - Biological Theory 10 (4):289-300.
    The species problem is often described as the abundance of conflicting definitions of _species_, such as the biological species concept and phylogenetic species concepts. But biologists understand the notion of species in a non-definitional as well as a definitional way. In this article I argue that when they understand _species_ without a definition in their mind, their understanding is often mediated by the notion of _good species_, or prototypical species, as the idea of ``prototype'' is explicated in cognitive (...)
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  33.  51
    Meaning, prototypes and the future of cognitive science.J. Brakel - 1991 - Minds and Machines 1 (3):233-257.
    In this paper I evaluate the soundness of the prototype paradigm, in particular its basic assumption that there are pan-human psychological essences or core meanings that refer to basic-level natural kinds, explaining why, on the whole, human communication and learning are successful. Instead I argue that there are no particular pan-human basic elements for thought, meaning and cognition, neither prototypes, nor otherwise. To illuminate my view I draw on examples from anthropology. More generally I argue that the prototype (...)
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  34.  69
    The Prototype Resemblance Theory of Disease.K. Sadegh-Zadeh - 2008 - Journal of Medicine and Philosophy 33 (2):106-139.
    In a previous paper the concept of disease was fuzzy-logically analyzed and a sketch was given of a prototype resemblance theory of disease (Sadegh-Zadeh (2000). J. Med. Philos., 25:605–38). This theory is outlined in the present paper. It demonstrates what it means to say that the concept of disease is a nonclassical one and, therefore, not amenable to traditional methods of inquiry. The theory undertakes a reconstruction of disease as a category that in contradistinction to traditional views is not (...)
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  35. Ontologies, Mental Disorders and Prototypes.Maria Cristina Amoretti, Marcello Frixione, Antonio Lieto & Greta Adamo - 2019 - In Matteo Vincenzo D'Alfonso & Don Berkich (eds.), On the Cognitive, Ethical, and Scientific Dimensions of Artificial Intelligence. Springer Verlag. pp. 189-204.
    As it emerged from philosophical analyses and cognitive research, most concepts exhibit typicality effects, and resist to the efforts of defining them in terms of necessary and sufficient conditions. This holds also in the case of many medical concepts. This is a problem for the design of computer science ontologies, since knowledge representation formalisms commonly adopted in this field do not allow for the representation of concepts in terms of typical traits. However, the need of representing (...) in terms of typical traits concerns almost every domain of real world knowledge, including medical domains. In particular, in this article we take into account the domain of mental disorders, starting from the DSM-5 descriptions of some specific mental disorders. On this respect, we favor a hybrid approach to the representation of psychiatric concepts, in which ontology oriented formalisms are combined to a geometric representation of knowledge based on conceptual spaces. (shrink)
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  36.  15
    A Prototype Analysis of the Cultural and Evolutionary Construction of Romantic Love as a Synthesis of Love and Sex.Victor C. de Munck, David B. Kronenfeld & Christopher Manoharan - 2021 - Journal of Cognition and Culture 21 (1-2):25-48.
    Our goal is to use prototype analysis to distinguish the folk or culturally held understandings of love, romantic love, and sex and to specify, from the obtained data, the semantic relationship among these three associated concepts. By considering the semantic distinctions between these three concepts, we come to an unintended insight: if romantic love is a socio-cultural universal it does not appear to have the same evolutionary history as love or sex and this may account for its (...)
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  37. The pet fish and the red herring: why concepts aren't prototypes.Jerry Fodor & Ernest Lepore - 1996 - Cognition 58 (2):243-76.
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  38.  12
    ViSpa (Vision Spaces): A computer-vision-based representation system for individual images and concept prototypes, with large-scale evaluation.Fritz Günther, Marco Marelli, Sam Tureski & Marco Alessandro Petilli - 2023 - Psychological Review 130 (4):896-934.
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  39.  28
    Stacks not fuzzy sets: An ordinal basis for prototype theory of concepts.Gregory V. Jones - 1982 - Cognition 12 (3):281-290.
  40. Are Prototypes and Exemplars Used in Distinct Cognitive Processes?Gualtiero Piccinini & James Virtel - 2010 - Behavioral and Brain Sciences 33 (2-3):226-227.
    Machery’s argument that concepts split into different kinds is bold and inspiring but not fully persuasive. We will focus on the lack of evidence for the fourth tenet of Machery’s..
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  41. Concepts: Core Readings.Eric Margolis & Stephen Laurence (eds.) - 1999 - MIT Press.
    Concepts: Core Readings traces the develoment of one of the most active areas of investigation in cognitive science. This comprehensive volume brings together the essential background readings on concepts from philosophy, psychology, and linguistics, while providing a broad sampling of contemporary research. The first part of the book centers around the fall of the Classical Theory of Concepts in the face of attacks by W.V.O. Quine, Ludwig Wittgenstein, Eleanor Rosch, and others, emphasizing the emergence and development of (...)
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  42.  14
    Islamic Philosophy and Theology: Critical Concepts in Islamic Thought. Legacies, Translations and Prototypes. Vol. 1.Ian Richard Netton (ed.) - 2006 - Routledge.
    Islam, one of the worlds great faiths, was born as a result of the revelation of the Quran to the Prophet Muhammad (c. 570-632) in Arabia. A proper understanding of the Islamic present depends on an accurate knowledge of the way in which Islamic thought developed from medieval times onwards. For instance, Islam evolved a sophisticated theology and set of philosophical systems of its own, which owed something to the impact of Greek thought, but became uniquely Islamic because of the (...)
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  43. Le peuple de Dieu. Un concept de l'Ancien Testament comme archétype et prototype de l'Eglise.Martin Rose - 1987 - Revue de Théologie Et de Philosophie 119 (2):133-147.
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  44. Effects of Best Examples, Critical Attributes, Definitions, and Practice on Concept Acquisition and Prototype Formation.C. Warren McKinney - 1987 - Journal of Social Studies Research 11 (2):1-14.
     
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  45. Effects of Critical Attributes and a Best Example on Fifth-Grade Students' Concept and Prototype Formation.C. Warren McKinney - 1994 - Journal of Social Studies Research 18.
  46.  9
    Commentary on Stotz and Griffiths, Burian, and Waters: Genes, Concepts, DST Implications, and the Possibility of Prototypes.Kenneth Schaffner - 2004 - History and Philosophy of the Life Sciences 26 (1):81 - 90.
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  47. Heterogeneous Proxytypes Extended: Integrating Theory-like Representations and Mechanisms with Prototypes and Exemplars.Antonio Lieto - 2018 - In Advances in Intelligent Systems and Computing, Springer. Springer.
    The paper introduces an extension of the proposal according to which conceptual representations in cognitive agents should be intended as heterogeneous proxytypes. The main contribution of this paper is in that it details how to reconcile, under a heterogeneous representational perspective, different theories of typicality about conceptual representation and reasoning. In particular, it provides a novel theoretical hypothesis - as well as a novel categorization algorithm called DELTA - showing how to integrate the representational and reasoning assumptions of the theory-theory (...)
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  48.  32
    The category and phenomenon of the prototype in the context of the phenomenological-dialectical concept of A. F. Losev and the phenomenology of the poetic imagination of G. Bashlyar. [REVIEW]Viacheslav Dubovitskii - 2022 - Философия И Культура 6:47-65.
    The subject of this research is, first of all, the ontological and phenomenological aspects of the prototype as a category and a kind of phenomenon in the field of art and poetic imagination. The research is carried out mainly on the material of the phenomenological-dialectical concept of A. F. Losev and the phenomenology of the poetic imagination of G. Bashlyar. The historical, philosophical and theological contexts of the concept of the prototype of Losev are revealed. The emphasis is (...)
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  49. Concepts in Physics: A Comparative Cognitive Analysis of Arabic and French Terminologies.Hicham Lahlou - 2021 - Kuala Lumpur, Federal Territory of Kuala Lumpur, Malaysia: Institut Terjemahan & Buku Malaysia Berhad (ITBM).
    This book offers substantial insight into students’ conceptualization of scientific terminology. The current book explores the commonalities and distinctions between Arabic and French physics terms, and the impact of the language disparities on students’ understanding of physics terms. This book adopts a novel approach to the problem of scientific terminology by exploring physics terms’ polysemy, prototypical meanings, and conceptual metaphor and metonymy, which motivates their extension of meaning. The book also investigates how the linguistic discrepancies and other variables affect the (...)
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  50. Representing Concepts by Weighted Formulas.Daniele Porello & Claudio Masolo - 2018 - In Stefano Borgo, Pascal Hitzler & Oliver Kutz (eds.), Formal Ontology in Information Systems - Proceedings of the 10th International Conference, {FOIS} 2018, Cape Town, South Africa, 19-21 September 2018. IOS Press. pp. 55--68.
    A concept is traditionally defined via the necessary and sufficient conditions that clearly determine its extension. By contrast, cognitive views of concepts intend to account for empirical data that show that categorisation under a concept presents typicality effects and a certain degree of indeterminacy. We propose a formal language to compactly represent concepts by leveraging on weighted logical formulas. In this way, we can model the possible synergies among the qualities that are relevant for categorising an object under (...)
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