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  1. Bohmian Mechanics and the Quantum Revolution. [REVIEW]Sheldon Goldstein - 1996 - Synthese 107 (1):145 - 165.
    When I was young I was fascinated by the quantum revolution: the transition from classical definiteness and determinism to quantum indeterminacy and uncertainty, from classical laws that are indifferent, if not hostile, to the human presence, to quantum laws that fundamentally depend upon an observer for their very meaning. I was intrigued by the radical subjectivity, as expressed by Heisenberg’s assertion [3] that “The idea of an objective real world whose smallest parts exist objectively in the same sense as stones (...)
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  • Logic of discovery or psychology of invention?Elie Zahar - 1983 - British Journal for the Philosophy of Science 34 (3):243-261.
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  • Feyerabend on observation and empirical content. [REVIEW]Elie Zahar - 1982 - British Journal for the Philosophy of Science 33 (4):397-408.
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  • The construction of atom models: Eliminative inductivism and its relation to falsificationism.Friedel Weinert - 2000 - Foundations of Science 5 (4):491-531.
    Falsificationism has dominated 20th century philosophy of science. It seemed to have eclipsed all forms of inductivism. Yet recent debates have revived a specific form of eliminative inductivism, the basic ideas of which go back to F. Bacon and J.S. Mill. These modern endorsements of eliminative inductivism claim to show that progressive problem solving is possible using induction, rather than falsification as a method of justification. But this common ground between falsificationism and eliminative inductivism has not led to a detailed (...)
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  • Hypothetical, not Fictional Worlds.Friedel Weinert - 2016 - Kairos 17 (1):110-136.
    This paper critically analyzes the fiction-view of scientific modeling, which exploits presumed analogies between literary fiction and model building in science. The basic idea is that in both fiction and scientific modeling fictional worlds are created. The paper argues that the fiction-view comes closest to certain scientific thought experiments, especially those involving demons in science and to literary movements like naturalism. But the paper concludes that the dissimilarities prevail over the similarities. The fiction-view fails to do justice to the plurality (...)
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  • Quantum Theory of International Relations: Approaches and Possible Gains.Jakub Tesař - 2015 - Human Affairs 25 (4):486-502.
    This paper considers the possible application of quantum theory in political studies, especially in international relations. We introduce our classification based on three logical ways of how to connect areas so remote: through the relation of identity, analogy and metaphor which reflects three basic epistemic positions. Next, we review existing work against this classification before moving on to consider some of the uses and potential gains offered by quantum mind hypothesis, quantum models of reasoning and decisionmaking, and quantum metaphor.
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  • Institutionalizing Ethical Innovation in Organizations: An Integrated Causal Model of Moral Innovation Decision Processes.E. Günter Schumacher & David M. Wasieleski - 2013 - Journal of Business Ethics 113 (1):15-37.
    This article answers several calls—coming as well from corporate governance practitioners as from corporate governance researchers—concerning the possibility of complying simultaneously with requirements of innovation and ethics. Revealing the long-term orientation as the variable which permits us to link the principal goal of organization, being “survival,” with innovation and ethic, the article devises a framework for incorporating ethics into a company’s processes and strategies for innovation. With the principal goal of organizations being “survival” in the long-term, it is assumed that (...)
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  • The Reformation of Science.Rustum Roy - 1981 - Bulletin of Science, Technology and Society 1 (1-2):3-9.
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  • The Contribution of Science to the Emerging Universal Theology.Rustum Roy - 1989 - Bulletin of Science, Technology and Society 9 (3):312-319.
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  • George Boole's 'conditions of possible experience' and the quantum puzzle.Itamar Pitowsky - 1994 - British Journal for the Philosophy of Science 45 (1):95-125.
    In the mid-nineteenth century George Boole formulated his ‘conditions of possible experience’. These are equations and ineqaulities that the relative frequencies of events must satisfy. Some of Boole's conditions have been rediscovered in more recent years by physicists, including Bell inequalities, Clauser Horne inequalities, and many others. In this paper, the nature of Boole's conditions and their relation to propositional logic is explained, and the puzzle associated with their violation by quantum frequencies is investigated in relation to a variety of (...)
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  • Quantum mechanics and realism.Peter Kosso - 2000 - Foundations of Science 5 (1):47-60.
    Quantum mechanics is usually presented as a challenge to scientific realism, but I will argue that the details of quantum mechanics actually support realism. I will first present some basic quantum mechanical concepts and results, including the Einstein-Podolsky-Rosen (EPR) experiment and Bell's theorem, and do it in a way that everyone can understand. I will then use the physics to inform the philosophy, showing that quantum mechanics provides evidence to support epistemological realism.
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  • Reviews. [REVIEW]Scott A. Kleiner - 1987 - British Journal for the Philosophy of Science 38 (2):261-265.
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  • Review essay: Bohmian mechanics and the quantum revolution. [REVIEW]Sheldon Goldstein - 1996 - Synthese 107 (1):145 - 165.
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  • Imre Lakatos.Paul Feyerabend - 1975 - British Journal for the Philosophy of Science 26 (1):1-18.
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  • Forewords for the Special Issue ‘Pilot-wave and Beyond: Louis de Broglie and David Bohm’s Quest for a Quantum Ontology’.Aurélien Drezet - 2023 - Foundations of Physics 53 (3):1-9.
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  • Principles, laws, theories and the metaphysics of science.Craig Dilworth - 1994 - Synthese 101 (2):223 - 247.
    In this paper an outline of a metaphysical conception of modern science is presented in which a fundamental distinction is drawn between scientific principles, laws and theories. On this view, ontologicalprinciples, rather than e.g. empirical data, constitute the core of science. The most fundamental of these principles are three in number, being, more particularly (A) the principle of the uniformity of nature, (B) the principle of the perpetuity of substance, and (C) the principle of causality.These three principles set basic constraints (...)
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  • Space, Time and Causality, by J. R. Lucas. [REVIEW]Kenneth Denbigh - 1987 - British Journal for the Philosophy of Science 38 (2):259-261.
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  • Compressibility, Laws of Nature, Initial Conditions and Complexity.Sergio Chibbaro & Angelo Vulpiani - 2017 - Foundations of Physics 47 (10):1368-1386.
    We critically analyse the point of view for which laws of nature are just a mean to compress data. Discussing some basic notions of dynamical systems and information theory, we show that the idea that the analysis of large amount of data by means of an algorithm of compression is equivalent to the knowledge one can have from scientific laws, is rather naive. In particular we discuss the subtle conceptual topic of the initial conditions of phenomena which are generally incompressible. (...)
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  • QBism Is Not So Simply Dismissed.Ali Barzegar - 2020 - Foundations of Physics 50 (7):693-707.
    QBism is one of the main candidates for an epistemic interpretation of quantum mechanics. According to QBism, the quantum state or the wavefunction represents the subjective degrees of belief of the agent assigning the state. But, although the quantum state is not part of the furniture of the world, quantum mechanics grasps the real via the Born rule which is a consistency condition for the probability assignments of the agent. In this paper, we evaluate the plausibility of recent criticism of (...)
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  • On the Physical Reality of Quantum Waves.Gennaro Auletta & Gino Tarozzi - 2004 - Foundations of Physics 34 (11):1675-1694.
    The main interpretations of the quantum-mechanical wave function are presented emphasizing how they can be divided into two ensembles: The ones that deny and the other ones that attribute a form of reality to quantum waves. It is also shown why these waves cannot be classical and must be submitted to the restriction of the complementarity principle. Applying the concept of smooth complementarity, it is shown that there can be no reason to attribute reality only to the events and not (...)
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  • Free Will, Causality, and Neuroscience.Bernard Feltz, Marcus Missal & Andrew Cameron Sims (eds.) - 2019 - Leiden: Brill.
    This book aims to show that recent developments in neuroscience permit a defense of free will. Through language, human beings can escape strict biological determinism.
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  • Bohmian mechanics.Sheldon Goldstein - 2008 - Stanford Encyclopedia of Philosophy.
    Bohmian mechanics, which is also called the de Broglie-Bohm theory, the pilot-wave model, and the causal interpretation of quantum mechanics, is a version of quantum theory discovered by Louis de Broglie in 1927 and rediscovered by David Bohm in 1952. It is the simplest example of what is often called a hidden variables interpretation of quantum mechanics. In Bohmian mechanics a system of particles is described in part by its wave function, evolving, as usual, according to Schrödinger's equation. However, the (...)
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  • A Pluralism Worth Having: Feyerabend's Well-Ordered Science.Jamie Shaw - 2018 - Dissertation, University of Western Ontario
    The goal of this dissertation is to reconstruct, critically evaluate, and apply the pluralism of Paul Feyerabend. I conclude by suggesting future points of contact between Feyerabend’s pluralism and topics of interest in contemporary philosophy of science. I begin, in Chapter 1, by reconstructing Feyerabend’s critical philosophy. I show how his published works from 1948 until 1970 show a remarkably consistent argumentative strategy which becomes more refined and general as Feyerabend’s thought matures. Specifically, I argue that Feyerabend develops a persuasive (...)
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  • Freedom and chance.Mark Wulff Carstensen - unknown
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  • The computable universe: from prespace metaphysics to discrete quantum mechanics.Martin Leckey - 1997 - Dissertation, Monash University
    The central motivating idea behind the development of this work is the concept of prespace, a hypothetical structure that is postulated by some physicists to underlie the fabric of space or space-time. I consider how such a structure could relate to space and space-time, and the rest of reality as we know it, and the implications of the existence of this structure for quantum theory. Understanding how this structure could relate to space and to the rest of reality requires, I (...)
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  • Approximation versus Idealization: The Kepler-Newton-Case.Hans Rott - unknown
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  • Duality without dualism.Timothy Eastman - 2004 - In T. E. Eastman & H. Keeton (eds.), Physics and Whitehead: Quantum, Process, and Experience. Suny Press. pp. 14--30.
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