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The Structure of Scientific Theories

Critica 11 (31):138-140 (1977)

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  1. Philosophical foundations of neuroeconomics: economics and the revolutionary challenge from neuroscience.Roberto Fumagalli - 2011 - Dissertation, London School of Economics
    This PhD thesis focuses on the philosophical foundations of Neuroeconomics, an innovative research program which combines findings and modelling tools from economics, psychology and neuroscience to account for human choice behaviour. The proponents of Neuroeconomics often manifest the ambition to foster radical modifications in the accounts of choice behaviour developed by its parent disciplines. This enquiry provides a philosophically informed appraisal of the potential for success and the relevance of neuroeconomic research for economics. My central claim is that neuroeconomists can (...)
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  • A study in metaphysics for free will: using models of causality, determinism and supervenience in the search for free will.David Robson - unknown
    We have two main aims: to construct mathematical models for analysing determinism, causality and supervenience; and then to use these to demonstrate the possibility of constructing an ontic construal of the operation of free will - one requiring both the presentation of genuine alternatives to an agent and their selecting between them in a manner that permits the attribution of responsibility. Determinism is modelled using trans-temporal ontic links between discrete juxtaposed universe states and shown to be distinct from predictability. Causality (...)
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  • Wittgenstein versus Carnap on physicalism: a reassessment.David Stern - unknown
    The "standard account" of Wittgenstein’s relations with the Vienna Circle is that the early Wittgenstein was a principal source and inspiration for the Circle’s positivistic and scientific philosophy, while the later Wittgenstein was deeply opposed to the logical empiricist project of articulating a "scientific conception of the world." However, this telegraphic summary is at best only half-true and at worst deeply misleading. For it prevents us appreciating the fluidity and protean character of their philosophical dialogue. In retrospectively attributing clear-cut positions (...)
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  • Neo-Nagelian reduction: a statement, defence, and application.Foad Dizadji-Bahmani - 2011 - Dissertation, London School of Economics
    The thesis proposes, defends, and applies a new model of inter-theoretic reduction, called "Neo-Nagelian" reduction. There are numerous accounts of inter-theoretic reduction in the philosophy of science literature but the most well-known and widely-discussed is the Nagelian one. In the thesis I identify various kinds of problems which the Nagelian model faces. Whilst some of these can be resolved, pressing ones remain. In lieu of the Nagelian model, other models of inter-theoretic reduction have been proposed, chief amongst which are so-called (...)
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  • Natural Kinds as Scientific Models.Luiz Henrique Dutra - 2011 - Boston Studies in the Philosophy of Science 290:141-150.
    The concept of natural kind is center stage in the debates about scientific realism. Champions of scientific realism such as Richard Boyd hold that our most developed scientific theories allow us to “cut the world at its joints” (Boyd, 1981, 1984, 1991). In the long run we can disclose natural kinds as nature made them, though as science progresses improvements in theory allow us to revise the extension of natural kind terms.
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  • Inquiry Teaching and Learning: Philosophical Considerations.Gregory J. Kelly - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1363-1380.
    Inquiry teaching can be viewed as an approach for communicating the knowledge and practices of science to learners. In its various forms inquiry offers potential learning opportunities and poses constraints on what might be available to learn. Philosophical analysis offers ways of understanding inquiry, knowledge, and social practices. This chapter will examine philosophical problems that arise from teaching science as inquiry. Observation, experimentation, measurement, inference, explanation, and modeling pose challenges for novice learners who may not have the conceptual and epistemic (...)
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  • Why It Is Time To Move Beyond Nagelian Reduction.Marie I. Kaiser - 2012 - In D. Dieks, W. J. Gonzalez, S. Hartmann, M. Stöltzner & M. Weber (eds.), Probabilities, Laws, and Structures. The Philosophy of Science in a European Perspective. Heidelberg, GER: Springer. pp. 255-272.
    In this paper I argue that it is finally time to move beyond the Nagelian framework and to break new ground in thinking about epistemic reduction in biology. I will do so, not by simply repeating all the old objections that have been raised against Ernest Nagel’s classical model of theory reduction. Rather, I grant that a proponent of Nagel’s approach can handle several of these problems but that, nevertheless, Nagel’s general way of thinking about epistemic reduction in terms of (...)
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  • Reduction in real life.Peter Godfrey-Smith - 2008 - In Jakob Hohwy & Jesper Kallestrup (eds.), Being Reduced: New Essays on Reduction, Explanation, and Causation. Oxford University Press.
    The main message of the paper is that there is a disconnect between what many philosophers of mind think of as the scientific practice of reductive or reductionist explanation, and what the most relevant scientific work is actually like. I will sketch what I see as a better view, drawing on various ideas in recent philosophy of science. I then import these ideas into the philosophy of mind, to see what difference they make.1 At the end of the paper I (...)
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  • Text and Its Structure.Andrzej Łachwa - 1990 - Studia Semiotyczne—English Supplement 19:118-137.
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  • Probabilities in deBroglie-Bohm Theory: Towards a Stochastic Alternative (Version 0.1 beta).Patrick Dürr & Alexander Ehmann - manuscript
    We critically examine the role and status probabilities, as they enter via the Quantum Equilibrium Hypothesis, play in the standard, deterministic interpretation of deBroglie’s and Bohm’s Pilot Wave Theory (dBBT), by considering interpretations of probabilities in terms of ignorance, typicality and Humean Best Systems, respectively. We argue that there is an inherent conflict between dBBT and probabilities, thus construed. The conflict originates in dBBT’s deterministic nature, rooted in the Guidance Equation. Inquiring into the latter’s role within dBBT, we find it (...)
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  • Metaphysics for Positivists: Mach Versus the Vienna Circle.Erik C. Banks - 2013 - Discipline Filosophiche 23 (1):57-77.
    This article distinguishes between Machian empiricism and the logical positivism of the Vienna Circle and associated philosophers. Mach's natural philosophy was a first order attempt to reform and reorganize physics, not a second order reconstruction of the "language" of physics. Mach's elements were not sense data but realistic events in the natural world and in minds, and Mach admitted unobserved elements as part of his world view. Mach's critique of metaphysics was far more subtle and concerned the elimination of sensory (...)
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  • The interrogative model of inquiry and computer-supported collaborative learning.Kai Hakkarainen & Matti Sintonen - 2002 - Science & Education 11 (1):25-43.
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  • MODIFIED STRUCTURE-NOMINATIVE RECONSTRUCTION OF PRACTICAL PHYSICAL THEORIES AS A FRAME FOR THE PHILOSOPHY OF PHYSICS.Vladimir Kuznetsov - forthcoming2021 - Epistemological studies in Philosophy, Social and Political Sciences 4 (1):20-28.
    Physical theories are complex and necessary tools for gaining new knowledge about their areas of application. A distinction is made between abstract and practical theories. The last are constantly being improved in the cognitive activity of professional physicists and studied by future physicists. A variant of the philosophy of physics based on a modified structural-nominative reconstruction of practical theories is proposed. Readers should decide whether this option is useful for their understanding of the philosophy of physics, as well as other (...)
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  • Simulations are not models.John Simpson - unknown
    The aim of this paper is to argue that simulation is the activity of inferring future states. I argue that simulations instantiate models and that models are complexes of representations, so the inference in question makes use of the relations between the representations in a simulation's associated model. It follows that simulations should not be properly considered to be models in general, despite it being the case that they are commonly treated, or referred to, as being models, or even models (...)
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  • Theoretical status of computational cognitive modeling.Ron Sun - unknown
    This article explores the view that computational models of cognition may constitute valid theories of cognition, often in the full sense of the term ‘‘theory”. In this discussion, this article examines various (existent or possible) positions on this issue and argues in favor of the view above. It also connects this issue with a number of other relevant issues, such as the general relationship between theory and data, the validation of models, and the practical benefits of computational modeling. All the (...)
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  • Introducción: Las concepciones modelísticas y la concepción estructuralista de las teorías.C. Ulises Moulines - 2015 - Metatheoria – Revista de Filosofía E Historia de la Ciencia 5:7--29.
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  • Fiction and scientific representation.Roman Frigg - 2010 - In .
    Understanding scientific modelling can be divided into two sub-projects: analysing what model-systems are, and understanding how they are used to represent something beyond themselves. The first is a prerequisite for the second: we can only start analysing how representation works once we understand the intrinsic character of the vehicle that does the representing. Coming to terms with this issue is the project of the first half of this chapter. My central contention is that models are akin to places and characters (...)
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  • The Semantics of Scientific Theories.Sebastian Lutz - 2014 - In Anna Brożek & Jacek Jadacki (eds.), Księga pamiątkowa Marianowi Przełęckiemu w darze na 90-lecie urodzin. pp. 33-67.
    Marian Przełęcki’s semantics for the Received View is a good explication of Carnap’s position on the subject, anticipates many discussions and results from both proponents and opponents of the Received View, and can be the basis for a thriving research program.
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  • Scientific Pluralism, Consistency Preservation, and Inconsistency Toleration.Otávio Bueno - 2017 - Humana Mente 10 (32):229-245.
    Scientific pluralism is the view according to which there is a plurality of scientific domains and of scientific theories, and these theories are empirically adequate relative to their own respective domains. Scientific monism is the view according to which there is a single domain to which all scientific theories apply. How are these views impacted by the presence of inconsistent scientific theories? There are consistency-preservation strategies and inconsistency-toleration strategies. Among the former, two prominent strategies can be articulated: Compartmentalization and Information (...)
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  • Criteria of Empirical Significance: Foundations, Relations, Applications.Sebastian Lutz - 2012 - Dissertation, Utrecht University
    This dissertation consists of three parts. Part I is a defense of an artificial language methodology in philosophy and a historical and systematic defense of the logical empiricists' application of an artificial language methodology to scientific theories. These defenses provide a justification for the presumptions of a host of criteria of empirical significance, which I analyze, compare, and develop in part II. On the basis of this analysis, in part III I use a variety of criteria to evaluate the scientific (...)
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  • Modelos y aserción empírica: el modelo de doble hélice para la concepción semántica de la ciencia.María de las Mercedes O’Lery - 2016 - Metatheoria – Revista de Filosofía E Historia de la Ciencia 7:17--30.
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  • What are models and why do we need them?Richard E. Grandy - 2003 - Science & Education 12 (8):773-777.
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  • To Save the Semantic View: An Argument for Returning to Suppes' Interpretation.Thomas Cunningham - 2008
    Recent work on the semantic view of scientific theories is highly critical of the position. This paper identifies two common criticisms of the view, describes two popular alternatives for responding to them, and argues those responses do not suffice. Subsequently, it argues that retuning to Patrick Suppes’ interpretation of the position provides the conceptual resources for rehabilitating the semantic view.
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  • Nauka jako racjonalna doxa. Józefa Życińskiego koncepcja nauki i filozofii nauki – poza internalizmem i eksternalizmem.Zbigniew Liana - 2019 - Philosophical Problems in Science 66:147-199.
    Philosophical interests of Joseph Życiński in the domain of the philosophy of science were focused on the debate concerning the nature of science and philosophy of science that followed the Einstein-Planck revolution in science. The unexpected discovery of the philosophical, extra-scientific presuppositions in science, as well as of the extra-rational factors determining the way these presuppositions are accepted in science were to be explained within the meta-scientific framework. It is the aim of this paper to present ˙ Życiński’s diagnosis of (...)
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