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  1. The Magic of Ad Hoc Solutions.Jeroen Smid - 2023 - Journal of the American Philosophical Association 9 (4):724-741.
    When a theory is confronted with a problem such as a paradox, an empirical anomaly, or a vicious regress, one may change part of the theory to solve that problem. Sometimes the proposed solution is considered ad hoc. This paper gives a new definition of ‘ad hoc solution’ as used in both philosophy and science. I argue that a solution is ad hoc if it fails to live up to the explanatory requirements of a theory because the solution is not (...)
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  • Epistemologia gravitației experimentale – Raționalitatea științifică.Nicolae Sfetcu - manuscript
    Evoluția testelor gravitaționale dintr-o perspectivă epistemologică încadrată în conceputul de reconstrucție rațională al lui Imre Lakatos, pe baza metodologiei acestuia a programelor de cercetare. Perioada evaluată este foarte vastă, începând cu filosofia naturală a lui Newton și până la teoriile gravitației cuantice din zilele noastre. Pentru a explica mai rațional evoluția complexă a conceptului de gravitație din ultimul secol, propun o extindere naturală a metodologiei programelor de cercetare pe care o folosesc apoi pe parcursul lucrării. Consider că această abordare oferă (...)
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  • A coherentist conception of ad hoc hypotheses.Samuel Schindler - 2018 - Studies in History and Philosophy of Science Part A 67:54-64.
    What does it mean for a hypothesis to be ad hoc? One prominent account has it that ad hoc hypotheses have no independent empirical support. Others have viewed ad hoc judgements as subjective. Here I critically review both of these views and defend my own Coherentist Conception of Ad hocness by working out its conceptual and descriptive attractions.
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  • Special Theory of Relativity in South Korean High School Textbooks and New Teaching Guidelines.Jinyeong Gim - 2016 - Science & Education 25 (5-6):575-610.
    South Korean high school students are being taught Einstein’s Special Theory of Relativity. In this article, I examine the portrayal of this theory in South Korean high school physics textbooks and discuss an alternative method used to solve the analyzed problems. This examination of how these South Korean textbooks present this theory has revealed two main flaws: First, the textbooks’ contents present historically fallacious backgrounds regarding the origin of this theory because of a blind dependence on popular undergraduate textbooks, which (...)
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  • Popper, Refutation and 'Avoidance' of Refutation.Greg Bamford - 1989 - Dissertation, The University of Queensland
    Popper's account of refutation is the linchpin of his famous view that the method of science is the method of conjecture and refutation. This thesis critically examines his account of refutation, and in particular the practice he deprecates as avoiding a refutation. I try to explain how he comes to hold the views that he does about these matters; how he seeks to make them plausible; how he has influenced others to accept his mistakes, and how some of the ideas (...)
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  • Why did Einstein's programme supersede lorentz's? (II).Elie Zahar - 1973 - British Journal for the Philosophy of Science 24 (3):223-262.
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  • Einstein's revolution: A case study in communicative rationality. [REVIEW]Rinat M. Nugayev - 1999 - Foundations of Science 4 (2):155-204.
    The aim of the paper is to demonstratethat Special Relativity and the Early Quantum Theory were created within the same programme of statisticalmechanics, thermodynamics and maxwellianelectrodynamics reconciliation. I shall try to explainwhy classical mechanics and classicalelectrodynamics were ``refuted'''' almost simultaneouslyor, in more suitable terms for the present congress,why did the quantum revolution and the relativisticone both took place at the beginning of the 20-thcentury. I shall argue that the quantum andrelativistic revolutions were simultaneous since theyhad a common origin -- the (...)
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  • The history of quantum mechanics as a decisive argument favoring Einstein over lorentz.R. M. Nugayev - 1985 - Philosophy of Science 52 (1):44-63.
    PHILOSOPHY OF SCIENCE, vol. 52, number 1, pp.44-63. R.M. Nugayev, Kazan State |University, USSR. -/- THE HISTORY OF QUANTUM THEORY AS A DECISIVE ARGUMENT FAVORING EINSTEIN OVER LJRENTZ. -/- Abstract. Einstein’s papers on relativity, quantum theory and statistical mechanics were all part of a single research programme ; the aim was to unify mechanics and electrodynamics. It was this broader program – which eventually split into relativistic physics and quantummmechanics – that superseded Lorentz’s theory. The argument of this paper is (...)
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  • On lorentz's methodology.Arthur I. Miller - 1974 - British Journal for the Philosophy of Science 25 (1):29-45.
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  • The assessment of auxiliary hypotheses.Jarrett Leplin - 1982 - British Journal for the Philosophy of Science 33 (3):235-249.
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  • Ad hoc auxiliary hypotheses and falsificationism.Adolf Grünbaum - 1976 - British Journal for the Philosophy of Science 27 (4):329-362.
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  • Special Relativity as a Step in the Development of the Quantum Programme: Revolution in a Revolution.R. M. Nugayev - 1986 - Centaurus 29 (2):100-109.
    To make out in what way Einstein’s 1905 ‘annus mirabilis’ writings hang together one has to hang on Einstein’s strive for unity evinced in his stubborn attempts to coordinate with one another the basic research traditions of classical physics. Light quanta hypothesis and special theory of relativity turn out to be mere milestones of maxwellian electrodynamics and statistical thermodynamics reconciliation programme. The conception of luminiferous ether was an insurmountable stumbling block for Einstein’s statistical thermodynamics programme in which the leading role (...)
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  • On the Role of the Michelson–Morley Experiment: Einstein in Chicago.Jeroen van Dongen - 2009 - Archive for History of Exact Sciences 63 (6):655-663.
    This article discusses new material, published in volume 12 of the Collected Papers of Albert Einstein, that addresses Einstein’s knowledge of the Michelson–Morley experiment prior to 1905: in a lecture in Chicago in 1921, Einstein referred to the experiment, mentioned when he came upon it and hinted at its influence. Arguments are presented to explain the contrast with Einstein’s later pronouncements on the role of the experiment.
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  • Einstein's debt to lorentz: A reply to Feyerabend and Miller.Elie Zahar - 1978 - British Journal for the Philosophy of Science 29 (1):49-60.
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  • Einstein's discovery of special relativity.Gary Gutting - 1972 - Philosophy of Science 39 (1):51-68.
    This paper discusses the controversy between philosophers of science (e.g. Grünbaum) and historians of science (e.g. Holton) regarding Einstein's discovery of STR. Although Holton is surely correct on the historical point that experimental results (especially the Michelson-Morley experiment) had little influence on Einstein's development of STR, this fact is not sufficient to establish his (and Polanyi's) claim that major scientific discoveries are primarily matters of private, nonspecifiable insights into physical reality. It is possible that Einstein's work was based primarily on (...)
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  • Can we trust Einstein’s accounts of the genesis of special relativity?Olivier Darrigol - 2021 - Studies in History and Philosophy of Science Part A 89 (C):138-154.
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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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  • Comparing Teaching Approaches About Maxwell’s Displacement Current.Ricardo Karam, Debora Coimbra & Maurício Pietrocola - 2014 - Science & Education 23 (8):1637-1661.
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  • How did Lorentz find his theorem of corresponding states?Michel Janssen - 2019 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 67:167-175.
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  • Transformational Fallibilism and the Development of Understanding.Stephen Kemp - 2017 - Social Epistemology 31 (2):192-209.
    This article argues that inquirers should adopt an active orientation to the limits of their knowledge, an approach referred to as “Transformational Fallibilism”. Drawing on the Popperian tradition, this approach treats the fallibility of knowledge as more than a philosophical nicety, rather seeing the questioning of claims, including those that have been successful, as a key way to improve the understandings of inquirers. This is illustrated with reference to the example of Newtonian and Einsteinian understandings of gravity and time in (...)
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  • The Concept of an "Ad Hoc" Hypothesis.Jarrett Leplin - 1975 - Studies in History and Philosophy of Science Part A 5 (4):309.
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  • Einstein's reinterpretation of the Fizeau experiment: How it turned out to be crucial for special relativity.Alejandro Cassini & Marcelo Leonardo Levinas - 2019 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 65 (C):55-72.
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  • (1 other version)An Aspect of the Logic of Discovery.Scott A. Kleiner - 1983 - Southern Journal of Philosophy 21 (4):513-536.
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  • A Real Lorentz-FitzGerald Contraction.Carlos Barceló & Gil Jannes - 2008 - Foundations of Physics 38 (2):191-199.
    Many condensed matter systems are such that their collective excitations at low energies can be described by fields satisfying equations of motion formally indistinguishable from those of relativistic field theory. The finite speed of propagation of the disturbances in the effective fields (in the simplest models, the speed of sound) plays here the role of the speed of light in fundamental physics. However, these apparently relativistic fields are immersed in an external Newtonian world (the condensed matter system itself and the (...)
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  • The radical reinterpretation of Michelson-Morley’s experiment by special relativity.Alejandro Cassini & Leonardo Levinas - 2005 - Scientiae Studia 3 (4):583-596.
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  • (1 other version)An aspect of the logic of discovery.Scott A. Kleiner - 1983 - Southern Journal of Philosophy 21 (4):513-536.
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  • Albert Einstein and Max Wertheimer: A Gestalt Psychologist's View of the Genesis of Special Relativity Theory.Arthur I. Miller - 1975 - History of Science 13 (2):75-103.
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  • Darwin's and Wallace's revolutionary research programme.Scott A. Kleiner - 1985 - British Journal for the Philosophy of Science 36 (4):367-392.
    Research programmes are sets of problems preferred on epistemic grounds and including preferred heuristics for inquiry. Charles Lyell's research programme for biogeograpy includes the problem of explaining the distribution of species constrained by laws governing locomotion and containment of species. Included in the programme are laws governing the supernatural introduction of replacement species. Wallace and Darwin derected arguments against the putative intelligibility of this aspect of Lyell's programme before discovering natural selection, and their defence, at this time of natural laws (...)
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  • Predicting novel facts.Michael R. Gardner - 1982 - British Journal for the Philosophy of Science 33 (1):1-15.
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  • Ad Hoc Hypotheses and the Monsters within.Ioannis Votsis - 2016 - In Vincent C. Müller (ed.), Fundamental Issues of Artificial Intelligence. Cham: Springer.
    Science is increasingly becoming automated. Tasks yet to be fully automated include the conjecturing, modifying, extending and testing of hypotheses. At present scientists have an array of methods to help them carry out those tasks. These range from the well-articulated, formal and unexceptional rules to the semi-articulated and variously understood rules-of-thumb and intuitive hunches. If we are to hand over at least some of the aforementioned tasks to machines, we need to clarify, refine and make formal, not to mention computable, (...)
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  • Conceptual change, cross-theoretical explanation, and the unity of science.Richard M. Burian - 1975 - Synthese 32 (1-2):1 - 28.
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  • Einstein's brand of verificationism.James Robert Brown - 1987 - International Studies in the Philosophy of Science 2 (1):33 – 54.
    (1987). Einstein's brand of verificationism. International Studies in the Philosophy of Science: Vol. 2, No. 1, pp. 33-54. doi: 10.1080/02698598708573301.
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  • Technological Origins of the Einsteinian Revolution.Donald Gillies - 2016 - Philosophy and Technology 29 (2):97-126.
    The Einsteinian revolution, which began around 1905, was one of the most remarkable in the history of physics. It replaced Newtonian mechanics, which had been accepted as completely correct for nearly 200 years, by the special and general theories of relativity. It also eliminated the aether, which had dominated physics throughout the nineteenth century. This paper poses the question of why this momentous scientific revolution began. The suggested answer is in terms of the remarkable series of discoveries and inventions which (...)
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