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Chasing Reality: Strife Over Realism

Toronto: University of Toronto Press (2006)

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  1. The Ontic Account of Scientific Explanation.Carl F. Craver - 2014 - In Marie I. Kaiser, Oliver R. Scholz, Daniel Plenge & Andreas Hüttemann (eds.), Explanation in the special science: The case of biology and history. Dordrecht: Springer. pp. 27-52.
    According to one large family of views, scientific explanations explain a phenomenon (such as an event or a regularity) by subsuming it under a general representation, model, prototype, or schema (see Bechtel, W., & Abrahamsen, A. (2005). Explanation: A mechanist alternative. Studies in History and Philosophy of Biological and Biomedical Sciences, 36(2), 421–441; Churchland, P. M. (1989). A neurocomputational perspective: The nature of mind and the structure of science. Cambridge: MIT Press; Darden (2006); Hempel, C. G. (1965). Aspects of scientific (...)
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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 the Ontology of Spacetime: Substantivalism, Relationism, Eternalism, and Emergence.Gustavo E. Romero - 2017 - Foundations of Science 22 (1):141-159.
    I present a discussion of some issues in the ontology of spacetime. After a characterisation of the controversies among relationists, substantivalists, eternalists, and presentists, I offer a new argument for rejecting presentism, the doctrine that only present objects exist. Then, I outline and defend a form of spacetime realism that I call event substantivalism. I propose an ontological theory for the emergence of spacetime from more basic entities. Finally, I argue that a relational theory of pre-geometric entities can give rise (...)
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  • Why Cognitive Science Needs Philosophy and Vice Versa.Paul Thagard - 2009 - Topics in Cognitive Science 1 (2):237-254.
    Contrary to common views that philosophy is extraneous to cognitive science, this paper argues that philosophy has a crucial role to play in cognitive science with respect to generality and normativity. General questions include the nature of theories and explanations, the role of computer simulation in cognitive theorizing, and the relations among the different fields of cognitive science. Normative questions include whether human thinking should be Bayesian, whether decision making should maximize expected utility, and how norms should be established. These (...)
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  • Realism, Common Sense, and Science.Mario De Caro - 2015 - The Monist 98 (2):197-214.
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  • The Role of Metaphysical Naturalism in Science.Martin Mahner - 2012 - Science & Education 21 (10):1437–1459.
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  • Autism, Neurodiversity, and Equality Beyond the "Normal".Andrew Fenton & Tim Krahn - 2007 - Journal of Ethics in Mental Health 2 (2):2.
    “Neurodiversity” is associated with the struggle for the civil rights of all those diagnosed with neurological or neurodevelopmental disorders. Two basic approaches in the struggle for what might be described as “neuro-equality” are taken up in the literature: There is a challenge to current nosology that pathologizes all of the phenotypes associated with neurological or neurodevelopmental disorders ); there is a challenge to those extant social institutions that either expressly or inadvertently model a social hierarchy where the interests or needs (...)
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  • Bell’s Theorem: Two Neglected Solutions.Louis Vervoort - 2013 - Foundations of Physics 43 (6):769-791.
    Bell’s theorem admits several interpretations or ‘solutions’, the standard interpretation being ‘indeterminism’, a next one ‘nonlocality’. In this article two further solutions are investigated, termed here ‘superdeterminism’ and ‘supercorrelation’. The former is especially interesting for philosophical reasons, if only because it is always rejected on the basis of extra-physical arguments. The latter, supercorrelation, will be studied here by investigating model systems that can mimic it, namely spin lattices. It is shown that in these systems the Bell inequality can be violated, (...)
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  • The Social Model of Disability: Dichotomy between Impairment and Disability.Dimitris Anastasiou & James M. Kauffman - 2013 - Journal of Medicine and Philosophy 38 (4):441-459.
    The rhetoric of the social model of disability is presented, and its basic claims are critiqued. Proponents of the social model use the distinction between impairment and disability to reduce disabilities to a single social dimension—social oppression. They downplay the role of biological and mental conditions in the lives of disabled people. Consequences of denying biological and mental realities involving disabilities are discussed. People will benefit most by recognizing both the biological and the social dimensions of disabilities.
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  • Adversus Singularitates: The Ontology of Space–Time Singularities.Gustavo E. Romero - 2013 - Foundations of Science 18 (2):297-306.
    I argue that there are no physical singularities in space–time. Singular space–time models do not belong to the ontology of the world, because of a simple reason: they are concepts, defective solutions of Einstein’s field equations. I discuss the actual implication of the so-called singularity theorems. In remarking the confusion and fog that emerge from the reification of singularities I hope to contribute to a better understanding of the possibilities and limits of the theory of general relativity.
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  • Parmenides Reloaded.Gustavo E. Romero - 2012 - Foundations of Science 17 (3):291-299.
    I argue for a four dimensional, non-dynamical view of space-time, where becoming is not an intrinsic property of reality. This view has many features in common with the Parmenidean conception of the universe. I discuss some recent objections to this position and I offer a comparison of the Parmenidean space-time with an interpretation of Heraclitus’ thought that presents no major antagonism.
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  • Physics and Philosophy of Physics in the Work of Mario Bunge.Gustavo E. Romero - 2019 - In Michael Robert Matthews (ed.), Mario Bunge: A Centenary Festschrift. Springer. pp. 289-301.
    This brief review of Mario Bunge’s research on physics begins with an analysis of his masterpiece Foundations of Physics, and then it discusses his other contributions to the philosophy of physics. Following that is a summary of his more recent reactions to scientific discoveries in physics and a discussion of his position about non-locality in quantum mechanics, as well as his changing opinions on the nature of spacetime. The paper ends with a brief assessment of Bunge’s legacy concerning the foundations (...)
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  • Systemic materialism.Gustavo E. Romero - 2022 - In Gustavo E. Romero, Javier Pérez-Jara & Lino Camprubí (eds.), Contemporary Materialism: Its Ontology and Epistemology. Springer. pp. 79-107.
    I present a condensed exposé of systemic materialism, a synthesis of materialism and systemism originally proposed by Mario Bunge. Matter is identified with mutability of propertied particulars, and a concrete or material system is defined as an object with composition, structure, mechanism, and environment. I review different aspects of this ontology, and discuss some of its implications for epistemology, ethics, and aesthetics. I also try to identify some problems of this view and offer some ways to overcome the difficulties. I (...)
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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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  • The ontology of General Relativity.Gustavo E. Romero - 2014 - In Mario Novello & Santiago E. Perez Bergliaffa (eds.), Cosmology and Gravitation. Cambridge: Cambridge Scientific Publishers. pp. 177-191.
    I discuss the ontological assumptions and implications of General Relativity. I maintain that General Relativity is a theory about gravitational fields, not about space-time. The latter is a more basic ontological category, that emerges from physical relations among all existents. I also argue that there are no physical singularities in space-time. Singular space-time models do not belong to the ontology of the world: they are not things but concepts, i.e. defective solutions of Einstein’s field equations. I briefly discuss the actual (...)
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  • Evaluating Scientific Research Projects: The Units of Science in the Making.Mario Bunge - 2017 - Foundations of Science 22 (3):455-469.
    Original research is of course what scientists are expected to do. Therefore the research project is in many ways the unit of science in the making: it is the center of the professional life of the individual scientist and his coworkers. It is also the means towards the culmination of their specific activities: the original publication they hope to contribute to the scientific literature. The scientific project should therefore be of central interest to all the students of science, particularly the (...)
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  • Emergence à la Systems Theory: Epistemological Totalausschluss or Ontological Novelty?Poe Yu-ze Wan - 2011 - Philosophy of the Social Sciences 41 (2):178-210.
    In this article, I examine Luhmann’s, Bunge’s and others’ views on emergence, and argue that Luhmann’s epistemological construal of emergence in terms of Totalausschluss (total exclusion) is both ontologically flawed and detrimental to an appropriate understanding of the distinctive features of social emergence. By contrast, Bunge’s rational emergentism, his CESM model, and Wimsatt’s characterization of emergence as nonaggregativity provide a useful framework to investigate emergence. While researchers in the field of social theory and sociology tend to regard Luhmann as the (...)
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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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  • Emergence a la Systems Theory: Epistemological Totalausschluss or Ontological Novelty?P. Y.-Z. Wan - 2011 - Philosophy of the Social Sciences 41 (2):178-210.
    In this article, I examine Luhmann’s, Bunge’s and others’ views on emergence, and argue that Luhmann’s epistemological construal of emergence in terms of Totalausschluss (total exclusion) is both ontologically flawed and detrimental to an appropriate understanding of the distinctive features of social emergence. By contrast, Bunge’s rational emergentism, his CESM model, and Wimsatt’s characterization of emergence as nonaggregativity provide a useful framework to investigate emergence. While researchers in the field of social theory and sociology tend to regard Luhmann as the (...)
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  • A fiction of long standing.Christian Dayé - 2016 - History of the Human Sciences 29 (4-5):35-58.
    There appears to be a widespread belief that the social sciences during the 1950s and 1960s can be characterized by an almost unquestioned faith in a positivist philosophy of science. In contrast, the article shows that even within the narrower segment of Cold War social science, positivism was not an unquestioned doctrine blindly followed by everybody, but that quite divergent views coexisted. The article analyses two ‘techniques of prospection’, the Delphi technique and political gaming, from the perspective of a comprehensive (...)
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  • El constructivismo posmodernista: historia de una doctrina anticientífica.Javier Pamparacuatro Martín - 2020 - Revista de Filosofía 45 (2):375-396.
    El presente estudio trata de ser una aproximación histórica al posmodernismo en una de sus vertientes: el constructivismo, la teoría que defiende que el mundo es construcción social sin correlato objetivo alguno. A través del examen de la genealogía de este perfil, el artículo se propone mostrar que el constructivismo es deudor de diversas tradiciones de pensamiento irracionalista, subjetivista e idealista, y que por ello constituye una doctrina anti y pseudocientífica.
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  • Inverse Problems.Mario Bunge - 2019 - Foundations of Science 24 (3):483-525.
    Although to live is to face problems, the general concept of a problem has been significantly understudied. So much so, that the publication of Polya’s delightful How to Solve It caused quite a stir. And, although the concept of a conceptual problem is philosophical because it is deep and occurs across fields, from mathematics to politics, no philosophers have produced any memorable studies of it. Moreover, the word ‘problem’ is absent from most philosophical reference works. There are plenty of texts (...)
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  • Sufficient Reason and Reason Enough.Gustavo E. Romero - 2016 - Foundations of Science 21 (3):455-460.
    I offer an analysis of the Principle of Sufficient Reason and its relevancy for the scientific endeavour. I submit that the world is not, and cannot be, rational—only some brained beings are. The Principle of Sufficient Reason is not a necessary truth nor a physical law. It is just a guiding metanomological hypothesis justified a posteriori by its success in helping us to unveil the mechanisms that operate in Nature.
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  • The concept of probability in physics: an analytic version of von Mises’ interpretation.Louis Vervoort - manuscript
    In the following we will investigate whether von Mises’ frequency interpretation of probability can be modified to make it philosophically acceptable. We will reject certain elements of von Mises’ theory, but retain others. In the interpretation we propose we do not use von Mises’ often criticized ‘infinite collectives’ but we retain two essential claims of his interpretation, stating that probability can only be defined for events that can be repeated in similar conditions, and that exhibit frequency stabilization. The central idea (...)
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  • L’objectivité scientifique à l’heure de la post-vérité.Laurent Jodoin - 2020 - Mεtascience: Discours Général Scientifique 1:199-219.
    L’objectivité permettrait d’assurer la supériorité de la science par rapport à d’autres modes de connaissance. Elle doit donc être défendue, surtout en cette « ère de post-vérité » où les « faits alternatifs » remplacent les faits avérés, en politique comme ailleurs. Or les attaques proviennent autant de l’extérieur que de l’intérieur de la sphère philosophique. Il convient donc de tenter d’opérer la réconciliation la plus large possible avec deux représentants de clans (très) opposés, Mario Bunge et Bruno Latour. Réinvestissant (...)
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  • The Reinvention of Grand Theories of the Scientific/Scholarly Process.Marion Blute & Paul Armstrong - 2011 - Perspectives on Science 19 (4):391-425.
    This research was inspired by Werner Callebaut's (1993) classic in which he interviewed major contemporary philosophers of science (specifically of biology) at a time when the interdisciplinary label of "science studies" had hardly been invented. The "real" in his title, Taking the Naturalistic Turn: How Real Philosophy of Science is Done, was a playful reference to debates over realism in Philosophy—the title as a whole drawing attention to his intent to study science studies empirically. That, for Callebaut, was "real" philosophy.In (...)
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  • Métascience: Pour un discours général scientifique.François Maurice - 2020 - Mεtascience: Discours Général Scientifique 1:31-77.
    L’humain produit des discours sur le monde : mythologies, religions, mysticismes, philosophies, science. La majorité de ses discours sont de nature transcendante. À la suite d’un clarification conceptuelle fondée sur les notions de réflexion et de discours général, la philosophie apparaît comme un dis- cours général transcendant parmi d’autres ; d’où l’échec de celle-ci à rendre compte du monde et de la science ; d’où la nécessité de disposer d’un discours général non transcendant, un discours général proprement scientifique, une métascience. (...)
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  • Law as a System of Rights: A Critical Perspective.Azadeh Chalabi - 2014 - Human Rights Review 15 (2):117-138.
    The “rhetorical incorporation of human rights terminology” into domestic law is the central concern of this article. Over the last 20 years or so, countries have faced international pressure to conform to human rights standards in order to enjoy legitimacy. However, there is a huge gap between what is legalized as “human rights” in domestic laws and what is set forth as “human rights” in international human rights instruments. Based on this presupposition that a proper incorporation of human rights on (...)
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  • Quantum Mechanics and Inclusive Materialism.Javier Pérez-Jara - 2024 - Philosophies 9 (5):140.
    Since its inception, the intricate mathematical formalism of quantum mechanics has empowered physicists to describe and predict specific physical events known as quantum processes. However, this success in probabilistic predictions has been accompanied by a profound challenge in the ontological interpretation of the theory. This interpretative complexity stems from two key aspects. Firstly, quantum mechanics is a fundamental theory that, so far, is not derivable from any more basic scientific theory. Secondly, it delves into a realm of invisible phenomena that (...)
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  • Dialectics, Complexity,and the Systemic Approach.Poe Yu-ze Wan - 2013 - Philosophy of the Social Sciences 43 (4):411-452.
    This article attempts to assess Mario Bunge’s important but widely neglected criticisms of dialectics. It begins by providing a contextualized interpretation of Friedrich Engels’s metaphysics of the dialectics of nature before embarking on a detailed discussion of Leon Trotsky’s and contemporary “dialectical” scientists’ views on materialist dialectics. It argues that while some of Bunge’s criticisms are eminently sensible, the principles underlying the works of dialectical scientists are compatible with Bunge’s emergentist and systemic approach and can shed light on such issues (...)
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  • El rechazo de Bunge a Hegel, Husserl y Heidegger y su relación con el negacionismo.Rafael Félix Mora Ramirez - 2021 - Revista Filosofía Uis 21 (1):83-101.
    El filósofo Mario Bunge ha sido el más notable investigador de la epistemología en nuestros días. Su preferencia por la ciencia y su rechazo hacia la pseudociencia son evidentes. Así, se reconoce que la filosofía de Bunge fue analítica. En consecuencia, Bunge también manifestó su desacuerdo con aquellas filosofías (en su mayoría continentales) que son anticientíficas o que no hayan promovido el estudio de la ciencia. De este modo, se analizan las razones por las que Bunge rechazó a Hegel, Husserl (...)
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  • Bunge and Harman on the General Theory of Objects.Martìn Orensanz - 2022 - Mεtascience: Scientific General Discourse 2:46-64.
    Although there are significative differences between the philosophies of Mario Bunge and Graham Harman, there are also some fundamental similarities. One of the core features that they have in common is that both of them claim that it is possible to develop a general theory of objects. The former believes that the theory in question is logical-mathematical, while the latter suggests that it is on-tological. Regardless, they agree that all objects have to be considered, no mat-ter if they are real (...)
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  • Mario Bunge’s Scientific Realism.Alberto Cordero - 2012 - Science & Education 21 (10):1419-1435.
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  • Neglecting the social system: clinical neuroimaging and the biological reductionism of addiction.Daniel Z. Buchman - 2007 - Journal of Ethics in Mental Health 2 (2):1-5.
    A main strength of neuroimaging and neuroscience is its reductionist focus on the brain. A limitation is that it runs the possibility of ignoring larger social factors. The brain image may not necessarily indicate the brain’s neuroplastic ‘rewiring’ over time from genomic, epigenetic, environmental and social conditions. These factors are all necessary to understand the diverse nature of our brains, especially complex concerns such as addiction. For addiction to emerge it requires an intersection of genetic, environmental and social influences. It (...)
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  • Reading Measuring Instruments.Mario Bunge - 2010 - Spontaneous Generations 4 (1):85-93.
    The design, maintenance and use of all measuring instruments involve indicators of the thing, property, or event they are expected to detect or measure. And every quantitative indicator is a functional relation between imperceptible and perceptible facts—for example, the “flow” of time and the rotation of a watch’s hands. The empirical test of any quantitative hypothesis involves the translation of the unobservable variables occurring in it into the observable variable(s) in the indicator hypothesis. Yet, indicators have escaped the notice of (...)
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  • (1 other version)On the Ontological Status of Propositional Attitudes.Simón Busch Moreno - 2015 - Revista de Humanidades de Valparaíso 6:109-124.
    The main conclusion of this article is that propositional attitudes are physical brain processes that pertain to language. Hence, propositional attitudes cannot be direct manifestations of our mental states, neither direct representations; instead they must be understood as second-order representations. Thus, propositional attitudes cannot serve for explaining our basic mental activity. Otherwise, propositional attitudes must be understood as language shortcuts used for referring to basic mental states, events or processes.
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  • Theoriegeleitete Bestimmung von Objektmengen und Beobachtungsintervallen am Beispiel des Halleyschen Kometen.Ulrich Gähde - 2012 - Philosophia Naturalis 49 (2):207-224.
    The starting point of the following considerations is a case study concerning the discovery of Halley's comet and the theoretical description of its path. It is shown that the set of objects involved in that system and the time interval during which their paths are observed are determined in a theory dependent way – thereby making use of the very theory later used for that system's theoretical description. Metatheoretical consequences this fact has with respect to the structuralist view of empirical (...)
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  • L’héritage intellectuel de Mario Bunge : entre science et philosophie.Laurent Jodoin - 2010 - Philosophiques 37 (2):439-455.
    Mario Bunge vient tout juste de prendre sa retraite universitaire à l’âge vénérable de 90 ans. Après plus de soixante ans d’enseignement de la physique et de la philosophie, il laisse une oeuvre foisonnante et riche. Son style unique allie des arguments incisifs à la clarté du propos. Sa méthode puise dans le vaste arsenal des sciences, de la physique à la sociologie. Bunge suit en cela l’héritage des Lumières, qui prônait la foi en la raison ainsi qu’un certain réalisme (...)
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  • (1 other version)Mario Bunge’s systemic thesis of truth: implications for research practice and the “reproducibility crisis”.Luis Marone, Javier Lopez de Casenave & Rafael González del Solar - 2019 - Humanities Journal of Valparaiso 14:363-376.
    There are currently serious concerns that published scientific findings often fail to be reproducible, and that some solutions may be gleaned by attending the several methodological and sociological recommendations that could be found in the literature. However, researchers would also arrive at some answers by considering the advice of the philosophy of science, particularly semantics, about theses on truth related to scientific realism. Sometimes scientists understand the correspondence thesis of truth as asserting that the next unique empirical confirmation of a (...)
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  • (1 other version)The synthetic thesis of truth helps mitigate the reproducibility crisis and is an inspiration for predictive ecology.Luis Marone, Javier Lopez de Casenave & Rafael González del Solar - 2019 - Humanities Journal of Valparaiso 14:363-376.
    There are currently serious concerns that published scientific findings often fail to be reproducible, and that some solutions may be gleaned by attending the several methodological and sociological recommendations that could be found in the literature. However, researchers would also arrive at some answers by considering the advice of the philosophy of science, particularly semantics, about theses on truth related to scientific realism. Sometimes scientists understand the correspondence thesis of truth as asserting that the next unique empirical confirmation of a (...)
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  • Does chance hide necessity ? A reevaluation of the debate ‘determinism - indeterminism’ in the light of quantum mechanics and probability theory.Louis Vervoort - 2013 - Dissertation, University of Montreal
    In this text the ancient philosophical question of determinism (“Does every event have a cause ?”) will be re-examined. In the philosophy of science and physics communities the orthodox position states that the physical world is indeterministic: quantum events would have no causes but happen by irreducible chance. Arguably the clearest theorem that leads to this conclusion is Bell’s theorem. The commonly accepted ‘solution’ to the theorem is ‘indeterminism’, in agreement with the Copenhagen interpretation. Here it is recalled that indeterminism (...)
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  • Gretchenfragen an den Naturalisten.Gerhard Vollmer - 2012 - Philosophia Naturalis 49 (2):239-291.
    A philosophical position may be characterized in different ways. Here we try to say how the naturalist answers certain . The questions come from very different areas; the spectrum of subjects is therefore quite mixed. There are, however, aspects of order: We start with (questions about) abstract subjects like logic, mathematics, metaphysics, then turn to problems of realism. And since in general naturalists are realists, the following questions on truth, laws of nature, origin of the universe, cosmology, evolution, body-mind-problem, freedom (...)
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  • Dialectics, Complexity,and the Systemic Approach: Toward a Critical Reconciliation.P. Y.-Z. Wan - 2013 - Philosophy of the Social Sciences 43 (4):411-452.
    This article attempts to assess Mario Bunge’s important but widely neglected criticisms of dialectics. It begins by providing a contextualized interpretation of Friedrich Engels’s metaphysics of the dialectics of nature before embarking on a detailed discussion of Leon Trotsky’s and contemporary “dialectical” scientists’ views on materialist dialectics. It argues that while some of Bunge’s criticisms are eminently sensible, the principles underlying the works of dialectical scientists are compatible with Bunge’s emergentist and systemic approach and can shed light on such issues (...)
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  • A New Definition of Models and Modeling in Chemistry’s Teaching.José A. Chamizo - 2013 - Science & Education 22 (7):1613-1632.
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  • Analytical Sociology: A Bungean Appreciation.Poe Yu-ze Wan - 2012 - Science & Education 21 (10):1545-1565.
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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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  • Making Philosophy of Science Education Practical for Science Teachers.F. J. J. M. Janssen & B. van Berkel - 2015 - Science & Education 24 (3):229-258.
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  • Mεtascience: Scientific General Discourse - No. 2 - Metascientific Ontology.François Maurice - 2022 - Mεtascience: Scientific General Discourse 2:1-260.
    [[THIS IS THE COMPLETE SECOND ISSUE OF MΕTASCIENCE]] -/- This second issue of the journal Mεtascience continues the char acterization of this new branch of knowledge that is metasci ence. If it is new, it is not in a radical sense since Mario Bunge practiced it in an exemplary way, since logical positivists were accused of practicing only a mere metascience, since scientists have always practiced it implicitly, and since some philosophers no longer practice philosophy but rather metascience, but without (...)
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  • Foundations of Information Technology Based on Bunge’s Systemist Philosophy of Reality.Roman Lukyanenko, Veda C. Storey & Oscar Pastor - 2022 - Mεtascience: Scientific General Discourse 2:140-181.
    General ontology is a prominent theoretical foundation for information technology analysis, design, and development. Ontology is a branch of philosophy which studies what exists in reality. A widely used ontology in information systems, especially for conceptual modeling, is the BWW (Bunge–Wand–Weber), which is based on ideas of the philosopher and physicist Mario Bunge, as synthesized by Wand and Weber. The ontology was founded on an early subset of Bunge’s philosophy; however, many of Bunge’s ideas have evolved since then. An important (...)
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  • Sur quelques aspects de l’arrière-plan hyloréaliste scientifique de la chimie des cristaux.Matias Velázquez - 2022 - Mεtascience: Discours Général Scientifique 2:125-161.
    Dans cet article, nous essayons de comprendre comment l’hyloréalisme scientifique de Bunge peut s’accommoder avec plusieurs objets de la chimie des cristaux et leurs propriétés. Nous montrons que plusieurs d’entre eux, constituant le cœur de la discipline, soutiennent l’émergentisme ontologique. Les unités de construction, comme les lacunes, leur potentiel chimique, le nombre quantique cristallographique et plusieurs aspects des propriétés spectroscopiques des électrons 4f dans les cristaux ioniques, sont présentés comme des exemples remarquables d’objets ou de propriétés émergents (ou submergents) rencontrés (...)
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