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  1. Time as Relative.Denis Corish - 2015 - Philosophy 90 (3):369-391.
    Philosophical development of Leibniz's view that time is merely earlier–later order is necessary because neither Leibniz nor modern followers sufficiently answered the Newtonian charge that order does not give quantity. Logically, order is transitive, quantity, as in distance, is not. Quantity, as well as order, is naturally assumed in Newton's absolute time, so that to declare the mere relative order sufficient is to have to show how quantity can arise for it. The modern theory of the continuum, perfectly applicable to (...)
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  • Science, society and rationality.David E. Cooper - 1995 - History of the Human Sciences 8 (2):109-115.
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  • Merleau-Ponty’s Phenomenology as a Hermeneutic Framework for Quantum Mechanics.Leonardo Colletti & Pablo Pellegrini - 2020 - Axiomathes 30 (1):49-68.
    We propose a synthetic description of Merleau-Ponty’s phenomenology with the aim of providing physicists and philosophers with an alternative linguistic and conceptual framework to address the logical and ontological problematics emerged in quantum mechanics. Phenomenology’s cognitive devices such as the dynamical relationship between object and horizon, the presumptive synthesis and the constitution of an ontology based on the indivisibility of object and subject, not only show hermeneutic efficacy when applied to the study of human perception, but may prove to be (...)
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  • Theoretical Equivalence as Interpretative Equivalence.Kevin Coffey - 2014 - British Journal for the Philosophy of Science 65 (4):821-844.
    The problem of theoretical equivalence is traditionally understood as the problem of specifying when superficially dissimilar accounts of the world are reformulations of a single underlying theory. One important strategy for answering this question has been to appeal to formal relations between theoretical structures. This article presents two reasons to think that such an approach will be unsuccessful and suggests an alternative account of theoretical equivalence, based on the notion of interpretive equivalence, in which the problem is merely an instance (...)
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  • The Plausibility of Galileo's Tidal Theory.Martin Clutton-Brock & David Topper - 2011 - Centaurus 53 (3):221-235.
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  • Reflex theory, cautionary tale: misleading simplicity in early neuroscience.M. Chirimuuta - 2021 - Synthese 199 (5-6):12731-12751.
    This paper takes an integrated history and philosophy of science approach to the topic of "simplicity out of complexity". The reflex theory was a framework within early twentieth century psychology and neuroscience which aimed to decompose complex behaviours and neural responses into simple reflexes. It was controversial in its time, and did not live up to its own theoretical and empirical ambitions. Examination of this episode poses important questions about the limitations of simplifying strategies, and the relationship between simplification and (...)
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  • As posições de Newton, Locke e Berkeley sobre a natureza da gravitação.Silvio Seno Chibeni - 2013 - Scientiae Studia 11 (4):811-839.
    Ao defender, nos Princípios matemáticos de filosofia natural, a existência de uma força de gravitação universal, Newton desencadeou uma onda de dúvidas e objeções filosóficas. Suas próprias declarações sobre a natureza da gravitação não são facilmente interpretáveis como formando um conjunto consistente de opiniões. Por um lado, logo após fornecer as três definições de "quantidades de forças centrípetas" (Defs. 6-8), Newton observa que está tratando tais forças "matematicamente", sem se pronunciar sobre sua realidade física. Mas, por outro lado, no Escólio (...)
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  • In Favor of Laws that Are Not C eteris Paribus After All.Nancy Cartwright - 2002 - Erkenntnis 57 (3):425Ð439.
    Opponents of ceteris paribus laws are apt to complain that the laws are vague and untestable. Indeed, claims to this effect are made by Earman, Roberts and Smith in this volume. I argue that these kinds of claims rely on too narrow a view about what kinds of concepts we can and do regularly use in successful sciences and on too optimistic a view about the extent of application of even our most successful non-ceteris paribus laws. When it comes to (...)
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  • Chemical atomism: a case study in confirmation and ontology.Joshua D. K. Brown - 2015 - Synthese 192 (2):453-485.
    Quine, taking the molecular constitution of matter as a paradigmatic example, offers an account of the relation between theory confirmation and ontology. Elsewhere, he deploys a similar ontological methodology to argue for the existence of mathematical objects. Penelope Maddy considers the atomic/molecular theory in more historical detail. She argues that the actual ontological practices of science display a positivistic demand for “direct observation,” and that fulfillment of this demand allows us to distinguish molecules and other physical objects from mathematical abstracta. (...)
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  • Rethinking Causation for Data‐intensive Biology: Constraints, Cancellations, and Quantized Organisms.Douglas E. Brash - 2020 - Bioessays 42 (7):1900135.
    Complex organisms thwart the simple rectilinear causality paradigm of “necessary and sufficient,” with its experimental strategy of “knock down and overexpress.” This Essay organizes the eccentricities of biology into four categories that call for new mathematical approaches; recaps for the biologist the philosopher's recent refinements to the causation concept and the mathematician's computational tools that handle some but not all of the biological eccentricities; and describes overlooked insights that make causal properties of physical hierarchies such as emergence and downward causation (...)
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  • Rethinking Causation for Data‐intensive Biology: Constraints, Cancellations, and Quantized Organisms.Douglas E. Brash - 2020 - Bioessays 42 (7):1900135.
    Complex organisms thwart the simple rectilinear causality paradigm of “necessary and sufficient,” with its experimental strategy of “knock down and overexpress.” This Essay organizes the eccentricities of biology into four categories that call for new mathematical approaches; recaps for the biologist the philosopher's recent refinements to the causation concept and the mathematician's computational tools that handle some but not all of the biological eccentricities; and describes overlooked insights that make causal properties of physical hierarchies such as emergence and downward causation (...)
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  • Time in Classical and Relativistic Physics.Gordon Belot - 2013 - In Adrian Bardon & Heather Dyke (eds.), A Companion to the Philosophy of Time. Chichester, UK: Blackwell. pp. 185-200.
    This is a short, nontechnical introduction to features of time in classical and relativistic physics and their representation in the four-dimensional geometry of spacetime. Topics discussed include: the relativity of simultaneity in special and general relativity; the ‘twin paradox’ and differential aging effects in special and general relativity; and time travel in general relativity.
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  • Newton’s Conceptual Argument for Absolute Space.Ori Belkind - 2007 - International Studies in the Philosophy of Science 21 (3):271 – 293.
    While many take Newton's argument for absolute space to be an inference to the best explanation, some argue that Newton is primarily concerned with the proper definition of true motion, rather than with independent existence of spatial points. To an extent the latter interpretation is correct. However, all prior interpretations are mistaken in thinking that 'absolute motion' is defined as motion with respect to absolute space. Newton is also using this notion to refer to the quantity of motion (momentum). This (...)
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  • Dust, Time and Symmetry.Gordon Belot - 2005 - British Journal for the Philosophy of Science 56 (2):255-291.
    Two symmetry arguments are discussed, each purporting to show that there is no more room for a preferred division of spacetime into instants of time in general relativistic cosmology than in Minkowski spacetime. The first argument is due to Gödel, and concerns the symmetries of his famous rotating cosmologies. The second turns upon the symmetries of a certain space of relativistic possibilities. Both arguments are found wanting.
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  • Scientific Theories and Philosophical Stances: Themes from van Fraassen.Claus Beisbart & Michael Frauchiger (eds.) - 2024 - De Gruyter.
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  • A pragmatic analysis of idealizations in physics.William F. Barr - 1974 - Philosophy of Science 41 (1):48-64.
    A brief discussion is offered of what it means to say that a set of statements provides D-N explanation with special emphasis given to approximative D-N explanation. An idealized theory is seen to provide approximative D-N explanation. An ideal case provides explanation only if postulates are offered which connect the ideal antecedent condition with actual conditions. Such postulates will help in accounting for deviations between what the consequent of the ideal case entails and what actually occurs. Three ways are presented (...)
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  • Neutral Monism Reconsidered.Erik C. Banks - 2010 - Philosophical Psychology 23 (2):173-187.
    Neutral monism is a position in metaphysics defended by Mach, James, and Russell in the early twentieth century. It holds that minds and physical objects are essentially two different orderings of the same underlying neutral elements of nature. This paper sets out some of the central concepts, theses and the historical background of ideas that inform this doctrine of elements. The discussion begins with the classic neutral monism of Mach, James, and Russell in the first part of the paper, then (...)
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  • Alan Hirshfeld, Eureka Man: The Life and Legacy of Archimedes.A. K. T. Assis - 2011 - Science & Education 20 (1):83-87.
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  • The metaphysics of laws: dispositionalism vs. primitivism.Mauro Dorato & Michael Esfeld - 2014 - In T. Bigaj & C. Wuthrich (eds.), Metaphysics and Science (tentative title). Poznan Studies.
    The paper compares dispositionalism about laws of nature with primitivism. It argues that while the distinction between these two positions can be drawn in a clear-cut manner in classical mechanics, it is less clear in quantum mechanics, due to quantum non-locality. Nonetheless, the paper points out advantages for dispositionalism in comparison to primitivism also in the area of quantum mechanics, and of contemporary physics in general.
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  • Teleology and Realism in Leibniz's Philosophy of Science.Nabeel Hamid - 2019 - In Vincenzo De Risi (ed.), Leibniz and the Structure of Sciences: Modern Perspectives on the History of Logic, Mathematics, Epistemology. Springer. pp. 271-298.
    This paper argues for an interpretation of Leibniz’s claim that physics requires both mechanical and teleological principles as a view regarding the interpretation of physical theories. Granting that Leibniz’s fundamental ontology remains non-physical, or mentalistic, it argues that teleological principles nevertheless ground a realist commitment about mechanical descriptions of phenomena. The empirical results of the new sciences, according to Leibniz, have genuine truth conditions: there is a fact of the matter about the regularities observed in experience. Taking this stance, however, (...)
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  • Experimentos Mentales y Filosofías de Sillón.Rodrigo González (ed.) - 2017 - Santiago, Chile: Bravo y Allende.
    Los experimentos mentales son dispositivos epistémicos de la imaginación, o de análisis de problemas filosóficos, que recorren las fronteras de aquella, desde el sillón. Dichas fronteras tocan dilemas perennes de la filosofía: cuestiones de la metafísica, como el tiempo, el espacio y la realidad, el problema de la libertad y el determinismo, la naturaleza de la mente, la identidad personal, los argumentos acerca del significado, las posibilidades, fuentes y condiciones del conocimiento, las relaciones entre discurso y lógica, la ética, cuestiones (...)
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  • Inertia and determinism.Jason Zimba - 2008 - British Journal for the Philosophy of Science 59 (3):417-428.
    Suppose all of the particles in the universe should happen to come to rest at the same time, in positions so arranged that all of the forces on every particle balance to zero at that time. What would happen next? Or rather, what does Newtonian mechanics say will happen next? Preface Inertia and Stasis 2.1 Stating the Law of Inertia more precisely 2.2 The stasis scenario Indeterministic Examples 3.1 Abstract example 3.2 Second example Non-Lipschitz Forces and Determinism Beyond the Stasis (...)
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  • Absolute space and conventionalism.David Zaret - 1979 - British Journal for the Philosophy of Science 30 (3):211-226.
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  • Mach, Einstein, and the rise of modern science.Elie Zahar - 1977 - British Journal for the Philosophy of Science 28 (3):195-213.
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  • Biology and the social sciences.Edward O. Wilson - 1990 - Zygon 25 (3):245-262.
    The sciences may be conceptualized as a hierarchy ranked by level of organization (e.g., many‐body physics ranks above particle physics). Each science serves as an antidiscipline for the science above it; that is, between each pair, tense but creative interplay is inevitable. Biology has advanced through such tension between its subdisciplines and now can serve as an antidiscipline for the social sciences—for anthropology, for example, by examining the connection between cultural and biological evolution; for psychology, by addressing the nature of (...)
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  • Fundamental and Emergent Geometry in Newtonian Physics.David Wallace - 2020 - British Journal for the Philosophy of Science 71 (1):1-32.
    Using as a starting point recent and apparently incompatible conclusions by Saunders and Knox, I revisit the question of the correct spacetime setting for Newtonian physics. I argue that understood correctly, these two versions of Newtonian physics make the same claims both about the background geometry required to define the theory, and about the inertial structure of the theory. In doing so I illustrate and explore in detail the view—espoused by Knox, and also by Brown —that inertial structure is defined (...)
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  • Making Time: A Study in the Epistemology of Measurement.Eran Tal - 2016 - British Journal for the Philosophy of Science 67 (1):297-335.
    This article develops a model-based account of the standardization of physical measurement, taking the contemporary standardization of time as its central case study. To standardize the measurement of a quantity, I argue, is to legislate the mode of application of a quantity concept to a collection of exemplary artefacts. Legislation involves an iterative exchange between top-down adjustments to theoretical and statistical models regulating the application of a concept, and bottom-up adjustments to material artefacts in light of remaining gaps. The model-based (...)
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  • Racionalidad de la inducción como minimización entrópica.Ignacio Sols - 2016 - Scientia et Fides 4 (2):461-482.
    Rationality of induction as entropic minimization: In favour of a fundamental aspect of the epistemology of Mariano Artigas –his commitment to the quest for truth on the part of the scientific theory– I argue about the rationality of the process of induction, both the induction of general laws from particular facts of experience and the inference of postulates from the experimental laws which form the empirical basis of the theory. This is argued by showing that we minimize the entropy of (...)
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  • A Constructivist View of Newton’s Mechanics.H. G. Solari & M. A. Natiello - 2018 - Foundations of Science 24 (2):1-35.
    In the present essay we attempt to reconstruct Newtonian mechanics under the guidance of logical principles and of a constructive approach related to the genetic epistemology of Piaget and García. Instead of addressing Newton’s equations as a set of axioms, ultimately given by the revelation of a prodigious mind, we search for the fundamental knowledge, beliefs and provisional assumptions that can produce classical mechanics. We start by developing our main tool: the no arbitrariness principle, that we present in a form (...)
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  • Quantum Mechanics and the Principle of Maximal Variety.Lee Smolin - 2016 - Foundations of Physics 46 (6):736-758.
    Quantum mechanics is derived from the principle that the universe contain as much variety as possible, in the sense of maximizing the distinctiveness of each subsystem. The quantum state of a microscopic system is defined to correspond to an ensemble of subsystems of the universe with identical constituents and similar preparations and environments. A new kind of interaction is posited amongst such similar subsystems which acts to increase their distinctiveness, by extremizing the variety. In the limit of large numbers of (...)
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  • When scale is surplus.David Sloan & Sean Gryb - 2021 - Synthese 199 (5-6):14769-14820.
    We study a long-recognised but under-appreciated symmetry called dynamical similarity and illustrate its relevance to many important conceptual problems in fundamental physics. Dynamical similarities are general transformations of a system where the unit of Hamilton’s principal function is rescaled, and therefore represent a kind of dynamical scaling symmetry with formal properties that differ from many standard symmetries. To study this symmetry, we develop a general framework for symmetries that distinguishes the observable and surplus structures of a theory by using the (...)
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  • Hume’s Thoroughly Relationist Ontology of Time.Matias Slavov - 2021 - Metaphysica 22 (2):173-188.
    I argue that Hume’s philosophy of time is relationist in the following two senses. 1) Standard definition of relationism. Time is a succession of indivisible moments. Hence there is no time independent of change. Time is a relational, not substantial feature of the world. 2) Rigid relationism. There is no evidence of uniform natural standard for synchronization of clocks. No absolute temporal metric is available. There are countless times, and no time is privileged. Combining 1) and 2) shows that Hume’s (...)
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  • Beyond Descartes: Panpsychism revisited. [REVIEW]David Skrbina - 2006 - Axiomathes 16 (4):387-423.
    For some two millennia, Western civilization has predominantly viewed mind and consciousness as the private domain of the human species. Some have been willing to extend these qualities to certain animals. And there has been a small but very significant minority of philosophers who have argued that the processes of mind are universal in extent, and resident in all material things.
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  • Thought Experiments and Inertial Motion: A Golden Thread in the Development of Mechanics.Mark Shumelda & James Robert Brown - 2009 - Rivista di Estetica 42:71-96.
    The history of mechanics has been extensively investigated in a number of historical works. The full story from the Greeks and medievals through the Scientific Revolution to the modern era is long and complex. But it is also incomplete. Studies to date have been admirably thorough in putting empirical discoveries into proper perspective and in making clear the great importance of mathematical innovations. But there has been surprisingly little regard for the role of thought experiments in the development of mechanics. (...)
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  • “Filling in”, thought experiments and intuitions.Michael J. Shaffer - 2017 - Episteme 14 (2):255-262.
    Recently Timothy Williamson (2007) has argued that characterizations of the standard (i.e. intuition-based) philosophical practice of philosophical analysis are misguided because of the erroneous manner in which this practice has been understood. In doing so he implies that experimental critiques of the reliability of intuition are based on this misunderstanding of philosophical methodology and so have little or no bearing on actual philosophical practice or results. His main point is that the orthodox understanding of philosophical methodology is incorrect in that (...)
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  • There Is No Conspiracy of Inertia.Ryan Samaroo - 2018 - British Journal for the Philosophy of Science 69 (4):957-982.
    I examine two claims that arise in Brown’s account of inertial motion. Brown claims there is something objectionable about the way in which the motions of free particles in Newtonian theory and special relativity are coordinated. Brown also claims that since a geodesic principle can be derived in Einsteinian gravitation, the objectionable feature is explained away. I argue that there is nothing objectionable about inertia and that while the theorems that motivate Brown’s second claim can be said to figure in (...)
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  • The Dimensionality of Visual Space.William H. Rosar - 2016 - Topoi 35 (2):531-570.
    The empirical study of visual space has centered on determining its geometry, whether it is a perspective projection, flat or curved, Euclidean or non-Euclidean, whereas the topology of space consists of those properties that remain invariant under stretching but not tearing. For that reason distance is a property not preserved in topological space whereas the property of spatial order is preserved. Specifically the topological properties of dimensionality, orientability, continuity, and connectivity define “real” space as studied by physics and are the (...)
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  • Moving Molecules Above the Scientific Horizon: On Perrin’s Case for Realism. [REVIEW]Stathis Psillos - 2011 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 42 (2):339-363.
    This paper aims to cast light on the reasons that explain the shift of opinion—from scepticism to realism—concerning the reality of atoms and molecules in the beginning of the twentieth century, in light of Jean Perrin’s theoretical and experimental work on the Brownian movement. The story told has some rather interesting repercussions for the rationality of accepting the reality of explanatory posits. Section 2 presents the key philosophical debate concerning the role and status of explanatory hypotheses c. 1900, focusing on (...)
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  • Philosophical objections to the kinetic theory.John Nyhof - 1988 - British Journal for the Philosophy of Science 39 (1):81-109.
    Towards the end of the 19th century there were those who wished to see the kinetic theory abandoned. This paper attempts to show that this reaction was primarily due to philosophical objections rather than the result of scientific difficulties encountered by the kinetic theory. First the relevant philosophical background is examined as well as the relation between the kinetic theory and thermodynamics. Next the scientific difficulty known as the specific heats ratio anomaly is discussed and finally Boltzmann's philosophy of science (...)
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  • A causal ontology of objects, causal relations, and various kinds of action.Andrew Newman - 2022 - Synthese 200 (4):1-28.
    The basic kinds of physical causality that are foundational for other kinds of causality involve objects and the causal relations between them. These interactions do not involve events. If events were ontologically significant entities for causality in general, then they would play a role in simple mechanical interactions. But arguments about simple collisions looked at from different frames of reference show that events cannot play a role in simple mechanical interactions, and neither can the entirely hypothetical causal relations between events. (...)
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  • Imagination as a generative source of justification.Kengo Miyazono & Uku Tooming - forthcoming - Noûs.
    One of the most exciting debates in philosophy of imagination in recent years has been over the epistemic use of imagination where imagination epistemically contributes to justifying beliefs and acquiring knowledge. This paper defends “generationism about imagination” according to which imagination is a generative source, rather than a preservative source, of justification. In other words, imagination generates new justification above and beyond prior justification provided by other sources. After clarifying the generation/preservation distinction (Section 2), we present an argument for generationism (...)
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  • Leibniz's two realms revisited.Jeffrey K. McDonough - 2008 - Noûs 42 (4):673-696.
    Leibniz speaks, in a variety of contexts, of there being two realms—a "kingdom of power or efficient causes" and "a kingdom of wisdom or final causes." This essay explores an often overlooked application of Leibniz's famous "two realms doctrine." The first part turns to Leibniz's work in optics for the roots of his view that nature can be seen as being governed by two complete sets of equipotent laws, with one set corresponding to the efficient causal order of the world, (...)
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  • Teaching the Philosophical and Worldview Components of Science.Michael R. Matthews - 2009 - Science & Education 18 (6-7):697-728.
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  • History, philosophy, and science teaching: The present rapprochement.Michael R. Matthews - 1992 - Science & Education 1 (1):11-47.
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  • ``Why study history for science?''.Jane Maienschein - 2000 - Biology and Philosophy 15 (3):339-348.
    David Hull has demonstrated a marvelous ability to annoy everyone who caresabout science (or should), by forcing us to confront deep truths about howscience works. Credit, priority, precularities, and process weave together tomake the very fabric of science. As Hull's studies reveal, the story is bothmessier and more irritating than those limited by a single disciplinaryperspective generally admit. By itself history is interesting enough, andphilosophy valuable enough. But taken together, they do so much in tellingus about science and by puncturing (...)
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  • “Just-so” stories about “inner cognitive Africa”: some doubts about Sorensen's evolutionary epistemology of thought experiments. [REVIEW]James Maffie - 1997 - Biology and Philosophy 12 (2):207-224.
    Roy Sorensen advances an evolutionary explanation of our capacity for thought experiments which doubles as a naturalized epistemological justification. I argue Sorensens explanation fails to satisfy key elements of environmental-selectionist explanations and so fails to carry epistemic force. I then argue that even if Sorensen succeeds in showing the adaptive utility of our capacity, he still fails to establish its reliability and hence epistemic utility. I conclude Sorensens account comes to little more than a just-so story.
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  • The principle of virtual work, counterfactuals, and the avoidance of physics.Marc Lange - 2019 - European Journal for Philosophy of Science 9 (3):1-21.
    Wilson derives various broad philosophical morals from the scientific role played by the Principle of Virtual Work. He argues roughly that PVW conditionals cannot be understood in terms of things as large as possible worlds; that PVW conditionals are peculiar and so cannot be accommodated by general accounts of counterfactuals, thereby reflecting the piecemeal character of scientific practice and standing at odds with the one-size-fits-all approach of “analytic metaphysicians”; and that PVW counterfactuals are not made true partly by natural laws. (...)
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  • Science, metaphysics and method.James Ladyman - 2012 - Philosophical Studies 160 (1):31-51.
    While there are many examples of metaphysical theorising being heuristically and intellectually important in the progress of scientific knowledge, many people wonder how metaphysics not closely informed and inspired by empirical science could lead to rival or even supplementary knowledge about the world. This paper assesses the merits of a popular defence of the a priori methodology of metaphysics that goes as follows. The first task of the metaphysician, like the scientist, is to construct a hypothesis that accounts for the (...)
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  • Principles Supporting the Perceptional Teaching of Physics: A “Practical Teaching Philosophy”.Kaarle Kurki-Suonio - 2011 - Science & Education 20 (3-4):211-243.
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  • Understanding Curved Spacetime.Magdalena Kersting & Rolf Steier - 2018 - Science & Education 27 (7-8):593-623.
    According to general relativity, we live in a four-dimensional curved universe. Since the human mind cannot visualize those four dimensions, a popular analogy compares the universe to a two-dimensional rubber sheet distorted by massive objects. This analogy is often used when teaching GR to upper secondary and undergraduate physics students. However, physicists and physics educators criticize the analogy for being inaccurate and for introducing conceptual conflicts. Addressing these criticisms, we analyze the rubber sheet analogy through systematic metaphor analysis of textbooks (...)
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