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  1. Overview of modern philosophy of science.Oleksandr Gabovich & Volodymyr Kuznetsov - 2022 - Filosofska Dumka (Philosophical Thought) 2:137-154.
    Varieties of modern philosophies of mathematical and natural sciences are represented. Specific features of those sciences are analyzed on the basis of graph classifications of the respective philosophies. The importance of reconstructions of practical theories is emphasized for all kinds of philosophies of science used by them. The first part outlines the purpose of the article and considers subject and theoretical, the se- cond — evaluative, nominal, theoretical-reconstructive and linguistic-reconstructive classifica- tions of philosophies of science. The conclusions are made about (...)
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  • MODIFIED STRUCTURE-NOMINATIVE RECONSTRUCTION OF PRACTICAL PHYSICAL THEORIES AS A FRAME FOR THE PHILOSOPHY OF PHYSICS.Vladimir Kuznetsov - forthcoming2021 - Epistemological studies in Philosophy, Social and Political Sciences 4 (1):20-28.
    Physical theories are complex and necessary tools for gaining new knowledge about their areas of application. A distinction is made between abstract and practical theories. The last are constantly being improved in the cognitive activity of professional physicists and studied by future physicists. A variant of the philosophy of physics based on a modified structural-nominative reconstruction of practical theories is proposed. Readers should decide whether this option is useful for their understanding of the philosophy of physics, as well as other (...)
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  • Variables of Scientific Concept Modeling and Their Formalization.Vladimir Kuznetsov - 2009 - In В.И Маркин (ed.), Philosophy of mathematics: current problems. Proceedings of the second international conference (Философия математики: актуальные проблемы. Тезисы второй международной конференции). pp. 268-270.
    There are no universally adopted answers to the natural questions about scientific concepts: What are they? What is their structure? What are their functions? How many kinds of them are there? Do they change? Ironically, most if not all scientific monographs or articles mention concepts, but the scientific studies of scientific concepts are rare in occurrence. It is well known that the necessary stage of any scientific study is constructing the model of objects in question. Many years logical modeling was (...)
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  • Semantic information and the network theory of account.Luciano Floridi - 2012 - Synthese 184 (3):431-454.
    The article addresses the problem of how semantic information can be upgraded to knowledge. The introductory section explains the technical terminology and the relevant background. Section 2 argues that, for semantic information to be upgraded to knowledge, it is necessary and sufficient to be embedded in a network of questions and answers that correctly accounts for it. Section 3 shows that an information flow network of type A fulfils such a requirement, by warranting that the erotetic deficit, characterising the target (...)
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  • Representing Relations between Physical Concepts.Vladimir Kuznetsov - 2004 - Communication and Cognition: An Interdisciplinary Quarterly Journal 2004 (37):105-135.
    The paper has three objectives: to expound a set-theoretical triplet model of concepts; to introduce some triplet relations (symbolic, logical, and mathematical formalization; equivalence, intersection, disjointness) between object concepts, and to instantiate them by relations between certain physical object concepts.
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  • Die Tripelstruktur der Begriffe.W. Balzer & V. Kuznetsov - 2010 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 41 (1):21 - 43.
    Wir stellen ein präzises Modell der wissenschaftlichen Begriffs-theorie vor, in dem die Beschreibungs-, die Wirklichkeits- und die mengentheoretische Ebene verknüpft werden. Einerseits wird ein allgemeiner Rahmen für die Gesamtheit der Begriffe, andererseits die „lokale” Struktur eines Begriffs beschrieben. Wir spezialisieren diesen Rahmen auf wissenschaftliche Begriffe, wissenschaftliche Theorien, und auf die zugehörigen strukturalistischen, wissenschaftstheoretischen Konstruktionen. We introduce a precise model for the theory of concepts in philosophy of science. In this model we connect the level of description, the level of reality (...)
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  • Reevaluating scientific progress as a problem resolution.Damián Islas - 2014 - Azafea: Revista de Filosofia 16:133-147.
    “Problem-solving” as a criterion of scientific progress defended by Thomas S. Kuhn and Larry Laudan, respectively, has been criticized by several authors. Recently, Alexander Bird has suggested that problem-solving as a criterion of scientific progress is regressive and anti-intuitive. In this text I reassess Kuhn, Laudan and Bird’s positions and I show that Bird’s arguments are untenable.
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