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Scientific Materialism

Springer (2011)

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  1. On Mario Bunge’s Definition of System and System Boundary.Andrew M. Cavallo - 2012 - Science & Education 21 (10):1595-1599.
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  • The Systemist Emergentist View of Mahner and Bunge on ‘Species as Individuals’: What Use for Science and Education?Pierre Deleporte - 2012 - Science & Education 21 (10):1535-1544.
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  • Gravitational Waves and Spacetime.Mario Bunge - 2018 - Foundations of Science 23 (2):399-403.
    The recent detection of gravitational waves by the LIGO team has rightly been hailed as “the crowning achievemen of classical physics”. This detection, which came at the end of a decade-long quest, involved 950 investigators, and cost around one billion US dollars, was the scientific star of the year 2015. What, if any, is the philosophical impact of this scientific breakthrough, which Albert Einstein had anticipated one century earlier? To answer this question we start by examining the central equations of (...)
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  • Comment on Apostol's paper.Mario Bunge - 1985 - Studies in East European Thought 29 (2):137-138.
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  • Comment on Apostol's paper.Mario Bunge - 1985 - Studies in Soviet Thought 29 (2):137-138.
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  • Analytical Sociology: A Bungean Appreciation.Poe Yu-ze Wan - 2012 - Science & Education 21 (10):1545-1565.
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  • Complexity-based Theories of Emergence: Criticisms and Constraints.Kari L. Theurer - 2014 - International Studies in the Philosophy of Science 28 (3):277-301.
    In recent years, many philosophers of science have attempted to articulate a theory of non-epistemic emergence that is compatible with mechanistic explanation and incompatible with reductionism. The 2005 account of Fred C. Boogerd et al. has been particularly influential. They argued that a systemic property was emergent if it could not be predicted from the behaviour of less complex systems. Here, I argue that Boogerd et al.'s attempt to ground emergence in complexity guarantees that we will see emergence, but at (...)
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  • Science and worldviews in the marxist tradition.C. D. Skordoulis - 2008 - Science & Education 17 (6):559-571.
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  • From Change to Spacetime: An Eleatic Journey.Gustavo E. Romero - 2013 - Foundations of Science 18 (1):139-148.
    I present a formal ontological theory where the basic building blocks of the world can be either things or events. In any case, the result is a Parmenidean worldview where change is not a global property. What we understand by change manifests as asymmetries in the pattern of the world-lines that constitute 4-dimensional existents. I maintain that such a view is in accord with current scientific knowledge.
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  • The Devaluation of the Subject in Popper’s Theory of World 3.Zuzana Parusniková - 2016 - Philosophy of the Social Sciences 46 (3):304-317.
    Popper proposed his theory of objective knowledge to eliminate subjectivist epistemologies. Popper’s objectivism culminated in the theory of the autonomous World 3 characterized by its independence from the subjective factors belonging to World 2. I argue that Popper did not succeed in unifying his idea of the autonomy of knowledge with the requirement of the creative role of the critical subject in cognition. Moreover, his effort to desubjectivize knowledge undermined the vital importance of the critical activity that ensures the dynamism (...)
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  • Kotarbiński as a scientific realist.Ilkka Niiniluoto - 2002 - Erkenntnis 56 (1):63-82.
    Tadeusz Kotarbiski is widely recognized as a major philosopher of theLvov–Warsaw school. His reism, which is a contribution to semantics andontology, is still discussed and debated, and his most original creation, praxiology,has grown into an entire research field. However, Kotarbiski's philosophy ofscience has not received much attention by later commentators. This paper attemptsto correct this situation by considering the hypothesis that Kotarbiski succeededalready in 1929 in formulating a position that can be regarded as an early version ofscientific realism. Unlike most (...)
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  • Mario Bunge, Systematic Philosophy and Science Education: An Introduction.Michael R. Matthews - 2012 - Science & Education 21 (10):1393-1403.
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  • Mario Bunge (1919–2020): Conjoining Philosophy of Science and Scientific Philosophy.Martin Mahner - 2021 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (1):3-23.
    The leitmotif of Mario Bunge’s work was that the philosophy of science should be informed by a comprehensive scientific philosophy, and vice versa; with both firmly rooted in realism and materialism. Now Bunge left such a big oeuvre, comprising more than 70 books and hundreds of articles, that it is impossible to review it in its entirety. In addition to biographical remarks, this obituary will therefore restrict itself to some select issues of his philosophy: his scientific metaphysics, his philosophy of (...)
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  • 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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  • On Some Features of the Scientific Hylorealistic Background of Crystal Chemistry.Matias Velázquez - 2022 - Mεtascience: Scientific General Discourse 2:96-128.
    In this paper, we try to understand how Bunge’s scientific hylorealism can fit with several crystal chemistry’s objects and their properties. It is found that many of them, lying at the very core of this discipline, bring support to ontologi-cal emergentism. Building units, such as vacancies, their chemical potential, the crystal quantum number and many aspects of the spectroscopic properties of 4f electrons in ionic crystals, are presented as striking examples of emergent (or submergent) objects or properties encountered in the (...)
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