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  1. International Handbook of Research in History, Philosophy and Science Teaching.Michael R. Matthews (ed.) - 2014 - Springer.
    This inaugural handbook documents the distinctive research field that utilizes history and philosophy in investigation of theoretical, curricular and pedagogical issues in the teaching of science and mathematics. It is contributed to by 130 researchers from 30 countries; it provides a logically structured, fully referenced guide to the ways in which science and mathematics education is, informed by the history and philosophy of these disciplines, as well as by the philosophy of education more generally. The first handbook to cover the (...)
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  • Bateson's Process Ontology for Psychological Practice.Julien Tempone-Wiltshire & Tra-ill Dowie - 2023 - Process Studies 52 (1):95–116.
    The work of Gregory Bateson offers a metaphysical basis for a “process psychology,” that is, a view of psychological practice and research guided by an ontology of becoming—identifying change, difference, and relationship as the basic elements of a foundational metaphysics. This article explores the relevance of Bateson's recursive epistemology, his re-conception of the Great Chain of Being, a first-principles approach to defining the nature of mind, and understandings of interaction and difference, pattern and symmetry, interpretation and context. Bateson's philosophical contributions (...)
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  • Schwinger and the ontology of quantum field theory.Edward MacKinnon - 2007 - Foundations of Science 12 (4):295-323.
    An epistemological interpretation of quantum mechanics hinges on the claim that the distinctive features of quantum mechanics can be derived from some distinctive features of an observational basis. Old and new variations of this theme are listed. The program has a limited success in non-relativistic quantum mechanics. The crucial issue is how far it can be extended to quantum field theory without introducing significant ontological postulates. A C*-formulation covers algebraic quantum field theory, but not the standard model. Julian Schwinger’s anabatic (...)
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  • The ontological autonomy of the chemical world.Olimpia Lombardi & Martín Labarca - 2004 - Foundations of Chemistry 7 (2):125-148.
    In the problem of the relationship between chemistry and physics, many authors take for granted the ontological reduction of the chemical world to the world of physics. The autonomy of chemistry is usually defended on the basis of the failure of epistemological reduction: not all chemical concepts and laws can be derived from the theoretical framework of physics. The main aim of this paper is to argue that this line of argumentation is not strong enough for eliminate the idea of (...)
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  • A Novel Approach to Emergence in Chemistry.Alexandru Manafu - 2015 - In Eric Scerri & L. McIntyre (eds.), Philosophy of Chemistry. Growth of a New Discipline. Boston Studies in the Philosophy and History of Science. Volume 306. Berlin: Springer. pp. 39-55.
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  • Acerca del estatuto ontológico de los fonones.Hernan Lucas Accorinti & Sebastian Fortin - 2020 - Principia: An International Journal of Epistemology 24 (2).
    A los cristales se los describe como a una red de átomos que puede vibrar alrededor de su posición de equilibrio. Sin embargo, el hecho de que la energía de estas ondas esté cuantificada sugiere una analogía con el campo electromagnético. En analogía con el fotón se define al fonón. Generalmente se concibe al fonón como a una cuasi-partícula, es decir, como a un instrumento matemático útil en los cálculos pero sin una existencia propia. En este trabajo estudiamos el estatuto (...)
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  • Emergence and reduction in chemistry: Ontological or epistemological concepts?Lee McIntyre - 2007 - Synthese 155 (3):337-343.
    In this paper I argue that the ontological interpretation of the concepts of reduction and emergence is often misleading in the philosophy of science and should nearly always be eschewed in favor of an epistemological interpretation. As a paradigm case, an example is drawn from the philosophy of chemistry to illustrate the drawbacks of “ontological reduction” and “ontological emergence,” and the virtues of an epistemological interpretation of these concepts.
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  • Emergence and Reduction in Science. A Case Study.Alexandru Manafu - unknown
    The past decade or so has witnessed an increase in the number of philosophical discussions about emergence and reduction in science. However, many of these discussions (though not all) remain too abstract and theoretical, and are wanting with respect to concrete examples taken from the sciences. This dissertation studies the topics of reduction and emergence in the context of a case study. I focus on the case of chemistry and investigate how emergentism can help us secure the autonomy of this (...)
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  • From Corpuscles to Elements: Chemical Ontologies from Van Helmont to Lavoisier.Marina Paola Banchetti-Robino - 2014 - In Eric Scerri & Lee McIntyre (eds.), Philosophy of Chemistry: Growth of a New Discipline. Springer. pp. 141-154.
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  • Laws and Explanations in Biology and Chemistry: Philosophical Perspectives and Educational Implications.Zoubeida R. Dagher & Sibel Erduran - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1203-1233.
    This chapter utilises scholarship in philosophy of biology and philosophy of chemistry to produce meaningful implications for biology and chemistry education. The primary purpose for studying philosophical literature is to identify different perspectives on the nature of laws and explanations within these disciplines. The goal is not to resolve ongoing debates about the nature of laws and explanations but to consider their multiple forms and purposes in ways that promote deep and practical understanding of biological and chemical knowledge in educational (...)
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  • Chromium photophysics – a prototypical case history.Leslie S. Forster - 2006 - Foundations of Chemistry 8 (3):243-254.
    Science, in general, and chemistry in particular advances by methods that are difficult to codify. The availability of theories (models) and instrumentation play an important role but indefinable motivations to study individual phenomena are also involved. The area of chromium photophysics has a rich history that spans 150 years. A case history of the progression from the natural history stage to its present state reveals the way in which several factors that are common to much physical science research interact.
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  • The orbital: a pivotal concept in the relationship between chemistry and physics? A comment to the work by Fortin and coauthors.Giovanni Villani, Elena Ghibaudi & Luigi Cerruti - 2017 - Foundations of Chemistry 20 (2):89-97.
    The present work is a comment of a recent paper by Fortin and coauthors in which the authors propose the introduction of Bohmian mechanics in the philosophy of chemistry and the use of standard quantum mechanics as a mere instrument of prediction. This way would allow overcoming the obstacles found in linking molecular chemistry and quantum mechanics. Starting from some remarks on the orbital concept, we highlight and discuss some general issues that need to be taken into account when two (...)
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  • How natural can ontology be?Sharon L. Crasnow - 2000 - Philosophy of Science 67 (1):114-132.
    Arthur Fine's Natural Ontological Attitude (NOA) is intended to provide an alternative to both realism and antirealism. I argue that the most plausible meaning of "natural" in NOA is "nonphilosophical," but that Fine comes to NOA through a particular conception of philosophy. I suggest that instead of a natural attitude we should adopt a philosophical attitude. This is one that is self-conscious, pragmatic, pluralistic, and sensitive to context. I conclude that when scientific realism and antirealism are viewed with a philosophical (...)
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  • On the alleged non-existence of orbitals.Peter Mulder - 2010 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 41 (2):178-182.
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  • The case of phonons: explanatory or ontological priority.Hernán Lucas Accorinti, Sebastian Fortin, Manuel Herrera & Jesús Alberto Jaimes Arriaga - unknown
    Recent discussions about the microstructure of materials generally focus on the ontological aspects of the molecular structure. However, there are many types of substances that cannot be studied by means of the concept of molecule, for example, salts. For the quantum treatment of these substances, a new particle, called phonon, is introduced. Phonons are generally conceived as a pseudo-particle, that is, a mathematical device necessary to perform calculations but which does not have a "real" existence. In this context, the aim (...)
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  • About the Independence of Models with respect to Theories: a case study of quantum chemistry.Hernán Lucas Accorinti & Juan Camilo Martínez - unknown
    Thesemanticviewofscientifictheoriesassumesthedependenceofmodelsontheories.Someauthorschal- lenge that assumption by means of the study of certain models conceived as phenomenological. On the basis of the analysis of atomic and molecular models in quantum chemistry, in this article we will argue for an independence of models from theories, which cannot be interpreted as merely historical and context relative. Those models shows a conceptual independence that is constitutive of the modeling process; such independence cannot be conceived as a result of a contingent deficiency of the theory used, (...)
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  • The relationship between chemistry and physics from the perspective of Bohmian mechanics.Sebastian Fortin, Olimpia Lombardi & Juan Camilo Martínez - unknown
    Although during the last decades the philosophy of chemistry has greatly extended its thematic scope, the main difficulties appear in the attempt to link the chemical description of atoms and molecules and the description supplied by quantum mechanics. The aim of this paper is to analyze how the difficulties that threaten the continuous conceptual link between molecular chemistry and quantum mechanics can be overcome or, at least, moderated from the perspective of BM. With this purpose, in “The quantum-mechanical challenges” section (...)
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