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  1. Quantum mechanics based on position.Ralph H. Young - 1980 - Foundations of Physics 10 (1-2):33-56.
    The only observational quantity which quantum mechanics needs to address islocation. The typical primitive observation on a microsystem (e.g., photon) isdetection at alocation (e.g., by a photomultiplier “looking at” a grating). To analyze an experiment, (a) form a conceptual ensemble of replicas of it, (b) assign a wave function (in “position representation”) to its initial condition, (c) evolve the wave function by the Schrödinger equation (known, once and for all, as a function of the system's composition), (d) compute the probability (...)
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  • Evolution of Intelligence and the Human Fifth Dimension.Shing Yiu Yip - 2013 - World Futures 69 (1):29 - 44.
    ?Information? has been postulated by the Daoist theory of Qi-energy fields system to be encoded and inherent in the Qi-energy complex (Qi) since the beginning of time. This became the origin of intelligence when it was passed onto humankind. This abstract entity is extended as a concept of ?quantum information/intelligence? (QI) when correlated with quantum physics. Human psychic power, spread over interconnected biological to cosmic spatial fields, would constitute a new Fifth Dimension, woven into the fabric of space and time. (...)
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  • Some epistemological and methodological issues in clinical research.Benjamin B. Wolman - 1966 - Inquiry: An Interdisciplinary Journal of Philosophy 9 (1-4):171 – 184.
    Epistemological realism was postulated as a prolegomenon to clinical research. Observation of single cases must precede any effort for generalization. Observation of men by men is always a field process. In clinical research the experimenter exercises a great amount of power over the subject, thus a naive empirical approach and operationism may be misleading. Clinical theory must be coated in a language different from empirical data and enable the formation of causal chains of events.
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  • Models in science and mental models in scientists and nonscientists.William F. Brewer - 2001 - Mind and Society 2 (2):33-48.
    This paper examines the form of mental representation of scientific theories in scientists and nonscientists. It concludes that images and schemas are not the appropriate form of mental representation for scientific theories but that mental models and perceptual symbols do seem appropriate for representing physical/mechanical phenomena. These forms of mental representation are postulated to have an analogical relation with the world and it is this relationship that gives them strong explanatory power. It is argued that the construct of naïve theories (...)
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  • Conditions of Rationality for Scientific Research.Paul Weingartner - 2019 - Kriterion - Journal of Philosophy 33 (2):67-118.
    The purpose of this paper is to discuss conditions of rationality for scientific research (SR) where "conditions" are understood as "necessary conditions". This will be done in the following way: First, I shall deal with the aim of SR since conditions of rationality (for SR) are to be understood as necessary means for reaching the aim (goal) of SR. Subsequently, the following necessary conditions will be discussed: Rational Communication, Methodological Rules, Ideals of Rationality and its Realistic Aspects, Methodological and Ontological (...)
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  • Modernist creativity and the construction of reality in Einstein and kandinsky.Charles P. Webel - 2007 - World Futures 63 (7):526 – 557.
    In this article, I limn the remarkable ascent of Albert Einstein and Wassily Kandinsky into our cultural pantheon. I depict how both figures mastered and transcended their respective fields, and how they called into question long-established disciplinary assumptions and practices. I also demonstrate how the creative works of Einstein and Kandinsky constructed, and were constructed by, the reality we now call "modern.".
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  • Needed: A historico-dynamical view of theory change.Satosi Watanabe - 1975 - Synthese 32 (1-2):113 - 134.
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  • Insuperable difficulties: Einstein's statistical road to molecular physics.Jos Uffink - 2006 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 37 (1):36-70.
  • The significance of a non-reductionist ontology for the discipline of mathematics: A historical and systematic analysis. [REVIEW]D. F. M. Strauss - 2010 - Axiomathes 20 (1):19-52.
    A Christian approach to scholarship, directed by the central biblical motive of creation, fall and redemption and guided by the theoretical idea that God subjected all of creation to His Law-Word, delimiting and determining the cohering diversity we experience within reality, in principle safe-guards those in the grip of this ultimate commitment and theoretical orientation from absolutizing or deifying anything within creation. In this article my over-all approach is focused on the one-sided legacy of mathematics, starting with Pythagorean arithmeticism (“everything (...)
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  • The Significance of a Non-Reductionist Ontology for the Discipline of Physics: A Historical and Systematic Analysis.D. F. M. Strauss - 2010 - Axiomathes 20 (1):53-80.
    An overview of the history of the concept of matter highlights the fact that alternative modes of explanation were successively employed. With the discovery of irrational numbers the initial conviction of the Pythagorean School collapsed and was replaced by an exploration of space as a principle of understanding. This legacy dominated the medieval period and had an after-effect well into modernity—for both Descartes and Kant still characterized matter in spatial terms. However, even before Galileo the mechanistic world view slowly entered (...)
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  • The Dynamical Approach as Practical Geometry.Syman Stevens - 2015 - Philosophy of Science 82 (5):1152-1162.
    This article introduces Harvey Brown and Oliver Pooley’s ‘dynamical approach’ to special relativity, and argues that it may be construed as a relationalist form of Einstein’s ‘practical geometry’. This construal of the dynamical approach is shown to be compatible with related chapters of Brown’s text and also with recent descriptions of the dynamical approach by Pooley and others.
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  • Theory of reality.Henry Pierce Stapp - 1977 - Foundations of Physics 7 (5-6):313-323.
    Bell's theorem is used to guide the formulation of a unified theory of reality that incorporates the basic principles of relativistic quantum theory.
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  • The Other Einstein: Einstein Contra Field Theory.John Stachel - 1993 - Science in Context 6 (1):275-290.
    The ArgumentBesides the well-known advocate of unified field theories, there was “another Einstein,” who was skeptical of the continuum as a foundational element in physics. This paper presents evidence for the existence of this “other Einstein,” and of the debate between the two Einsteins that lasted most of Einstein's life.
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  • Spacetime and future quantum theory.Henry P. Stapp - 1988 - Foundations of Physics 18 (8):833-849.
    Space and time are discussed in connection with the future of quantum theory.
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  • Quantum nonlocality.Henry P. Stapp - 1988 - Foundations of Physics 18 (4):427-448.
    It is argued that the validity of the predictions of quantum theory in certain spincorrelation experiments entails a violation of Einstein's locality idea that no causal influence can act outside the forward light cone. First, two preliminary arguments suggesting such a violation are reviewed. They both depend, in intermediate stages, on the idea that the results of certain unperformed experiments are physically determinate. The second argument is entangled also with the problem of the meaning of “physical reality.” A new argument (...)
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  • EPR and Bell's theorem: A critical review. [REVIEW]Henry P. Stapp - 1991 - Foundations of Physics 21 (1):1-23.
    The argument of Einstein, Podolsky, and Rosen is reviewed with attention to logical structure and character of assumptions. Bohr's reply is discussed. Bell's contribution is formulated without use of hidden variables, and efforts to equate hidden variables to realism are critically examined. An alternative derivation of nonlocality that makes no use of hidden variables, microrealism, counterfactual definiteness, or any other assumption alien to orthodox quantum thinking is described in detail, with particular attention to the quartet or broken-square question.
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  • Interpretation of the hydrodynamical formalism of quantum mechanics.Sebastiano Sonego - 1991 - Foundations of Physics 21 (10):1135-1181.
    The hydrodynamical formalism for the quantum theory of a nonrelativistic particle is considered, together with a reformulation of it which makes use of the methods of kinetic theory and is based on the existence of the Wigner phase-space distribution. It is argued that this reformulation provides strong evidence in favor of the statistical interpretation of quantum mechanics, and it is suggested that this latter could be better understood as an almost classical statistical theory. Moreover, it is shown how, within this (...)
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  • Tuning up mind's pattern to nature's own idea: Eddington's early twenties case for variational derivatives.Ivahn Smadja - 2010 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 41 (2):128-145.
    This paper sets out to show how Eddington's early twenties case for variational derivatives significantly bears witness to a steady and consistent shift in focus from a resolute striving for objectivity towards “selective subjectivism” and structuralism. While framing his so-called “Hamiltonian derivatives” along the lines of previously available variational methods allowing to derive gravitational field equations from an action principle, Eddington assigned them a theoretical function of his own devising in The Mathematical Theory of Relativity (1923). I make clear that (...)
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  • Conventionalism In Reid’s ‘geometry Of Visibles’.Edward Slowik - 2003 - Studies in History and Philosophy of Science Part A 34 (3):467-489.
    The subject of this investigation is the role of conventions in the formulation of Thomas Reid’s theory of the geometry of vision, which he calls the ‘geometry of visibles’. In particular, we will examine the work of N. Daniels and R. Angell who have alleged that, respectively, Reid’s ‘geometry of visibles’ and the geometry of the visual field are non-Euclidean. As will be demonstrated, however, the construction of any geometry of vision is subject to a choice of conventions regarding the (...)
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  • Bohr as a Phenomenological Realist.Towfic Shomar - 2008 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 39 (2):321-349.
    There is confusion among scholars of Bohr as to whether he should be categorized as an instrumentalist (see Faye 1991) or a realist (see Folse 1985). I argue that Bohr is a realist, and that the confusion is due to the fact that he holds a very special view of realism, which did not coincide with the philosophers’ views. His approach was sometimes labelled instrumentalist and other times realist, because he was an instrumentalist on the theoretical level, but a realist (...)
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  • Information vs. entropy vs. probability.Orly Shenker - 2019 - European Journal for Philosophy of Science 10 (1):1-25.
    Information, entropy, probability: these three terms are closely interconnected in the prevalent understanding of statistical mechanics, both when this field is taught to students at an introductory level and in advanced research into the field’s foundations. This paper examines the interconnection between these three notions in light of recent research in the foundations of statistical mechanics. It disentangles these concepts and highlights their differences, at the same time explaining why they came to be so closely linked in the literature. In (...)
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  • Foundation of statistical mechanics: The auxiliary hypotheses.Orly Shenker - 2017 - Philosophy Compass 12 (12):e12464.
    Statistical mechanics is the name of the ongoing attempt to explain and predict certain phenomena, above all those described by thermodynamics on the basis of the fundamental theories of physics, in particular mechanics, together with certain auxiliary assumptions. In another paper in this journal, Foundations of statistical mechanics: Mechanics by itself, I have shown that some of the thermodynamic regularities, including the probabilistic ones, can be described in terms of mechanics by itself. But in order to prove those regularities, in (...)
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  • "Coordinative definition" and Reichenbach's semantic framework: A reassessment.Lionel Stefan Shapiro - 1994 - Erkenntnis 41 (3):287 - 323.
    Reichenbach's Philosophy of Space and Time (1928) avoids most of the logical positivist pitfalls it is generally held to exemplify, notably both conventionalism and verificationism. To see why, we must appreciate that Reichenbach's interest lies in how mathematical structures can be used to describe reality, not in how words like 'distance' acquire meaning. Examination of his proposed "coordinative definition" of congruence shows that Reichenbach advocates a reductionist analysis of the relations figuring in physical geometry (contrary to common readings that attribute (...)
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  • Reduction: the Cheshire cat problem and a return to roots.Kenneth F. Schaffner - 2006 - Synthese 151 (3):377-402.
    In this paper, I propose two theses, and then examine what the consequences of those theses are for discussions of reduction and emergence. The first thesis is that what have traditionally been seen as robust, reductions of one theory or one branch of science by another more fundamental one are a largely a myth. Although there are such reductions in the physical sciences, they are quite rare, and depend on special requirements. In the biological sciences, these prima facie sweeping reductions (...)
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  • Interpretations of the quantum theory.Ralph Schiller - 1962 - Synthese 14 (1):5 - 16.
  • Anthropology, Polanyi, and afropentecostal ritual: A scientific and theological epistemology of participation.Craig Scandrett-Leatherman - 2008 - Zygon 43 (4):909-923.
    The 1904 World's Fair in St. Louis sponsored both an International Congress of Arts and Sciences aimed at unity of knowledge and an anthropology exhibit of diverse peoples. Jointly these represented a quest for unifying knowledge in a diverse world that was fractured by isolated specializations and segregated peoples. In historical perspective, the Congress's quest for knowledge is overshadowed by Ota Benga who was part of the anthropology exhibit. The 1904 World's Fair can be viewed as a Euro-American ritual, a (...)
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  • The replacement of time.Steven F. Savitt - 1994 - Australasian Journal of Philosophy 72 (4):463 – 474.
  • The Failure to Perform a Loophole-Free Test of Bell’s Inequality Supports Local Realism.Emilio Santos - 2004 - Foundations of Physics 34 (11):1643-1673.
    It is argued that the long standing failure to show an uncontroversial, loophole-free, empirical violation of a Bell inequality should be interpreted as a support to local realism. After defining realism and locality, this as relativistic causality, the performed experimental tests of Bell’s inequalities are commented. It is pointed out that, without any essential modification of quantum mechanics, the theory might be compatible with local realism.
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  • Towards a Realistic Interpretation of Quantum Mechanics Providing a Model of the Physical World.Emilio Santos - 2015 - Foundations of Science 20 (4):357-386.
    It is argued that a realistic interpretation of quantum mechanics is possible and useful. Current interpretations, from “Copenhagen” to “many worlds” are critically revisited. The difficulties for intuitive models of quantum physics are pointed out and possible solutions proposed. In particular the existence of discrete states, the quantum jumps, the alleged lack of objective properties, measurement theory, the probabilistic character of quantum physics, the wave–particle duality and the Bell inequalities are analyzed. The sketch of a realistic picture of the quantum (...)
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  • Interpretation of the quantum formalism and Bell's theorem.Emilio Santos - 1991 - Foundations of Physics 21 (2):221-241.
    It is argued that quantum mechanics must be interpreted according to the Copenhagen interpretation. Consequently the formalism must be used in a purely operational way. The relation between realism, hidden variables, and the Bell inequalities is discussed. The proof of impossibility of local hidden-variables theories (Bell's theorem) is criticized on the basis that the quantum mechanical states violating local realism are not physically realizable states.“Einstein had great difficulty in reaching a sharp formulation of Bohr's meaning. What hope then for the (...)
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  • The philosophy of Hans Reichenbach.Wesley C. Salmon - 1977 - Synthese 34 (1):5 - 88.
  • Response to Rodrigues and Rosa on the twin paradox.Mendel Sachs - 1989 - Foundations of Physics 19 (12):1525-1528.
    This paper responds briefly to the criticism of Rodrigues and Rosa on my earlier analysis of the twin paradox. The main point that I have emphasized (and that the authors have not refuted, either logically or mathematically) is the error in directly identifying anabstract measure relative to a reference frame [and its transformations to all other possible reference frames in which the laws of nature are to be compared (such as temporal and spatial measures)], with aphysical extension and duration of (...)
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  • On Einstein's later view of the twin paradox.Mendel Sachs - 1985 - Foundations of Physics 15 (9):977-980.
    It is shown that Einstein abandoned his earlier view that there are material consequences, such as asymmetric aging, implied by the space-time transformations of transformations of relativity theory.
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  • Elementary particle physics from general relativity.Mendel Sachs - 1981 - Foundations of Physics 11 (3-4):329-354.
    This paper presents a qualitative comparison of opposing views of elementary matter—the Copenhagen approach in quantum mechanics and the theory of general relativity. It discusses in detail some of their main conceptual differences, when each theory is fully exploited as a theory of matter, and it indicates why each of these theories, at its presently accepted state, is incomplete without the other. But it is then argued on logical grounds that they cannot be fused, thus indicating the need for a (...)
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  • Einstein, Cassirer, and General Covariance — Then and Now.T. A. Ryckman - 1999 - Science in Context 12 (4):585-619.
    The ArgumentRecent archival research has brought about a new understanding of the import of Einstein's puzzling remarks (1916) attributing a physical meaning to general covariance. Debates over the scope and meaning of general covariance still persist, even within physics. But already in 1921 Cassirer identified the significance of general covariance as a novel stage in the development of the criterion of objectivity within physics; an account of this development, and its implications, is the primary task undertaken in his monograph of (...)
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  • Conditio sine qua non? Zuordnung in the early epistemologies of Cassirer and Schlick.T. A. Ryckman - 1991 - Synthese 88 (1):57 - 95.
    In early major works, Cassirer and Schlick differently recast traditional doctrines of the concept and of the relation of concept to intuitive content along the lines of recent epistemological discussions within the exact sciences. In this, they attempted to refashion epistemology by incorporating as its basic principle the notion of functional coordination, the theoretical sciences' own methodological tool for dispensing with the imprecise and unreliable guide of intuitive evidence. Examining their respective reconstructions of the theory of knowledge provides an axis (...)
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  • Explicit dissipative structures.Otto E. Rössler - 1987 - Foundations of Physics 17 (7):679-688.
    Dissipative structures consisting of a few macrovariables arise out of a sea of reversible microvariables. Unexpected residual effects of the massive underlying reversibility, on the macrolevel, cannot therefore be excluded. In the age of molecular-dynamics simulations, explicit dissipative structures like excitable systems (“explicit observers”) can be generated in a computer from first reversible principles. A class of classical, 1-D Hamiltonian systems of chaotic type is considered which has the asset that the trajectorial behavior in phase space can be understood geometrically. (...)
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  • Einstein and Relativity: What Price Fame?David E. Rowe - 2012 - Science in Context 25 (2):197-246.
    ArgumentEinstein's initial fame came in late 1919 with a dramatic breakthrough in his general theory of relativity. Through a remarkable confluence of events and circumstances, the mass media soon projected an image of the photogenic physicist as a bold new revolutionary thinker. With his theory of relativity Einstein had overthrown outworn ideas about space and time dating back to Newton's day, no small feat. While downplaying his reputation as a revolutionary, Einstein proved he was well cast for the role of (...)
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  • Four philosophical issues essential for good science teaching.Fritz Rohrlich - 1988 - Educational Philosophy and Theory 20 (2):1–6.
  • The meaning of time in the theory of relativity and “Einstein's later view of the Twin Paradox”.Waldyr A. Rodrigues & Marcio A. F. Rosa - 1989 - Foundations of Physics 19 (6):705-724.
    The purpose of the present paper is to reply to a misleading paper by M. Sachs entitled “Einstein's later view of the Twin Paradox” (TP) (Found. Phys. 15, 977 (1985)). There, by selecting some passages from Einstein's papers, he tried to convince the reader that Einstein changed his mind regarding the asymmetric aging of the twins on different motions. Also Sachs insinuates that he presented several years ago “convincing mathematical arguments” proving that the theory of relativity does not predict asymmetrical (...)
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  • Realism, positivism, instrumentalism, and quantum geometry.Eduard Prugovečki - 1992 - Foundations of Physics 22 (2):143-186.
    The roles of classical realism, logical positivism, and pragmatic instrumentalism in the shaping of fundamental ideas in quantum physics are examined in the light of some recent historical and sociological studies of the factors that influenced their development. It is shown that those studies indicate that the conventionalistic form of instrumentalism that has dominated all the major post-World War II developments in quantum physics is not an outgrowth of the Copenhagen school, and that despite the “schism” in twentieth century physics (...)
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  • On the general covariance and strong equivalence principles in quantum general relativity.Eduard Prugovečki - 1994 - Foundations of Physics 24 (7):989-1076.
    The various physical aspects of the general relativistic principles of covariance and strong equivalence are discussed, and their mathematical formulations are analyzed. All these aspects are shown to be present in classical general relativity, although no contemporary formulation of canonical or covariant quantum gravity has succeeded to incorporate them all. This has, in part, motivated the recent introduction of a geometro-stochastic framework for quantum general relativity, in which the classical frame bundles that underlie the formulation of parallel transport in classical (...)
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  • Is There an Incommensurability between Superseding Theories? On the Validity of the Incommensurability Thesis.A. Polikarov - 1993 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 24 (1):127 - 146.
    According to the Incommensurability Thesis (IT) superseding scientific theories (paradigms) are incommensurable. Unlike many authors we do not discuss whether there is a relationship of this kind. We take for granted that this may be the case, and see the problem in the endeavour to establish the domain of validity of the IT. The notion incommensurability (Ic) is derivative from the concepts of scientific paradigm (P) and scientific revolution (R). There are several concepts of P, as well as various conceptions (...)
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  • Revolutions in science and refinements in the analysis of causation.Joseph C. Pitt & Morton Tavel - 1977 - Zeitschrift Für Allgemeine Wissenschaftstheorie 8 (1):48-62.
    Summary A sufficient condition for a revolution in physics is a change in the concept of cause. To demonstrate this, we examine three developments in physical theory. After informally characterizing a theory in terms of an heuristic and a set of equations, we show how tensions between these two dimensions lead to the development of alternative theoretical accounts. In each case the crucial move results in a refinement of our account of cause. All these refinements taken together result in the (...)
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  • Hidden Underdetermination: A Case Study in Classical Electrodynamics.Wolfgang Pietsch - 2012 - International Studies in the Philosophy of Science 26 (2):125-151.
    In this article, I present a case study of underdetermination in nineteenth-century electrodynamics between a pure field theory and a formulation in terms of action at a distance. A particular focus is on the question if and how this underdetermination is eventually resolved. It turns out that after a period of overt underdetermination, during which the approaches are developed separately, the two programmes are merged. On the basis of this development, I argue that the original underdetermination survives in hidden form (...)
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  • The Copernican character of Einstein's cosmology.Allen Harder - 1972 - Annals of Science 29 (4):339-347.
  • Sobre o encontro casual de Norbert Wiener com Albert Einstein em uma viagem de trem.Michel Paty & Olival Freire Júnior - 2005 - Scientiae Studia 3 (4):621-634.
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  • Introdução a três textos de Einstein sobre a geometria, a teoria física e a experiência.Michel Paty - 2005 - Scientiae Studia 3 (4):641-662.
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  • A noção de determinismo na física e seus limites.Michel Paty - 2004 - Scientiae Studia 2 (4):465-492.
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  • Gödel and philosophical idealism.Charles Parsons - 2010 - Philosophia Mathematica 18 (2):166-192.
    Kurt Gödel made many affirmations of robust realism but also showed serious engagement with the idealist tradition, especially with Leibniz, Kant, and Husserl. The root of this apparently paradoxical attitude is his conviction of the power of reason. The paper explores the question of how Gödel read Kant. His argument that relativity theory supports the idea of the ideality of time is discussed critically, in particular attempting to explain the assertion that science can go beyond the appearances and ‘approach the (...)
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