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Progress and its Problems: Toward a Theory of Scientific Growth

University of California Press (1977)

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  1. The Art of Perception: From the Life World to the Medical Gaze and Back Again.Christian Hick - 1999 - Medicine, Health Care and Philosophy 2 (2):129-140.
    Perceptions are often merely regarded as the basic elements of knowledge. They have, however, a complex structure of their own and are far from being elementary. My paper will analyze two basic patterns of perception and some of the resulting medical implications. Most basically, all object perception is characterized by a mixture of knowledge and ignorance (Husserl). Perception essentially perceives with inner and outer horizons, brought about by the kinesthetic activity of the perceiving subject (Sartre). This first layer of perceptual (...)
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  • Clusters' last stand.Nader Chokr - 1993 - Social Epistemology 7 (4):329 – 353.
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  • Human Reason in Context.Szu-Ting Chen - 2017 - Annals of the Japan Association for Philosophy of Science 26:13-28.
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  • Model-groups as scientific research programmes.Cristin Chall - 2020 - European Journal for Philosophy of Science 10 (1):1-24.
    Lakatos’s methodology of scientific research programmes centres around series of theories, with little regard to the role of models in theory construction. Modifying it to incorporate model-groups, clusters of developmental models that are intended to become new theories, provides a description of the model dynamics within the search for physics beyond the standard model. At the moment, there is no evidence for BSM physics, despite a concerted search effort especially focused around the standard model account of electroweak symmetry breaking. Using (...)
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  • Heuristic Diagrams as a Tool to Teach History of Science.José A. Chamizo - 2012 - Science & Education 21 (5):745-762.
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  • Progress as Approximation to the Truth: A Defence of the Verisimilitudinarian Approach.Gustavo Cevolani & Luca Tambolo - 2013 - Erkenntnis 78 (4):921-935.
    In this paper we provide a compact presentation of the verisimilitudinarian approach to scientific progress (VS, for short) and defend it against the sustained attack recently mounted by Alexander Bird (2007). Advocated by such authors as Ilkka Niiniluoto and Theo Kuipers, VS is the view that progress can be explained in terms of the increasing verisimilitude (or, equivalently, truthlikeness, or approximation to the truth) of scientific theories. According to Bird, VS overlooks the central issue of the appropriate grounding of scientific (...)
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  • Knowledge, Truth and Plausibility.Carlo Cellucci - 2014 - Axiomathes 24 (4):517-532.
    From antiquity several philosophers have claimed that the goal of natural science is truth. In particular, this is a basic tenet of contemporary scientific realism. However, all concepts of truth that have been put forward are inadequate to modern science because they do not provide a criterion of truth. This means that we will generally be unable to recognize a scientific truth when we reach it. As an alternative, this paper argues that the goal of natural science is plausibility and (...)
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  • The scaffolding of psychoanalysis.Peter Caws - 1986 - Behavioral and Brain Sciences 9 (2):229-230.
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  • Why contingencies won't go away.A. Charles Catania & Eliot Shimoff - 1988 - Behavioral and Brain Sciences 11 (3):450.
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  • Teorías y modelos según Klimovsky.Alejandro Cassini - 2011 - Análisis Filosófico 31 (1):69-87.
    En este trabajo me ocupo de la manera en que Klimovsky concibió a las teorías y a los modelos en la ciencia. Comienzo describiendo la concepción hipotético-deductiva de las teorías empíricas de Klimovsky. Luego presento los distintos significados del término "modelo" que Klimovsky distinguió y discuto la manera en que entendió la relación entre teorías y modelos. Después analizo la concepción semántica de las teorías y señalo la ambigüedad de la posición de Klimovsky respecto de ella, a la que no (...)
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  • Wissenschaftsgeschichte, rationale rekonstruktion und die begründung Von methodologien.Martin Carrier - 1986 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 17 (2):201-228.
    The paper exposes the principal procedures of assessing methodological theories. The first one is based on a consensus about the aims of science, the second uses epistemological criteria, and the third checks the adequacy of methodological requirements against the history of science. This third procedure is singled out for a more detailed treatment. It is argued that rational reconstruction constitutes a separate level of historiography and concerns historical explanation. The subject of a rational reconstruction is the methodological explanation of all (...)
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  • The rise of chicago functionalism.Lawrence Richard Carleton - 1982 - Erkenntnis 18 (1):3 - 23.
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  • Problems, Methodology, and Outlaw Science.Lawrence Richard Carleton - 1982 - Philosophy of the Social Sciences 12 (2):143-151.
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  • With a friend like Professor Grünbaum does psychoanalysis need any enemies?Arthur Caplan - 1986 - Behavioral and Brain Sciences 9 (2):228-229.
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  • Formalist rationality: The limitations of Popper's theory of reason.C. A. Hooker - 1981 - Metaphilosophy 12 (3-4):247-264.
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  • Can there be a Bayesian explanationism? On the prospects of a productive partnership.Frank Cabrera - 2017 - Synthese 194 (4):1245–1272.
    In this paper, I consider the relationship between Inference to the Best Explanation and Bayesianism, both of which are well-known accounts of the nature of scientific inference. In Sect. 2, I give a brief overview of Bayesianism and IBE. In Sect. 3, I argue that IBE in its most prominently defended forms is difficult to reconcile with Bayesianism because not all of the items that feature on popular lists of “explanatory virtues”—by means of which IBE ranks competing explanations—have confirmational import. (...)
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  • Making Sense of Non-refuting Anomalies.María Caamaño-Alegre - 2018 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 49 (3):261-282.
    As emphasized by Larry Laudan in developing the notion of non-refuting anomalies, traditional analyses of empirical adequacy have not paid enough attention to the fact that the latter does not only depend on a theory’s empirical consequences being true but also on them corresponding to the most salient phenomena in its domain of application. The purpose of this paper is to elucidate the notion of non-refuting anomaly. To this end, I critically examine Laudan’s account and provide a criterion to determine (...)
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  • A Structural Analysis of the Phlogiston Case.Maria Caamaño - 2009 - Erkenntnis 70 (3):331-364.
    The incommensurability thesis, as introduced by T.S. Kuhn and P.K. Feyerabend, states that incommensurable theories are conceptually incompatible theories which share a common domain of application. Such claim has often been regarded as incoherent, since it has been understood that the determination of a common domain of application at least requires a certain degree of conceptual compatibility between the theories. The purpose of this work is to contribute to the defense of the notion of local or gradual incommensurability, as proposed (...)
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  • Scientific problems and questions from a logical point of view.Mark Burgin & Vladimir Kuznetsov - 1994 - Synthese 100 (1):1 - 28.
    Scientific knowledge systems function as effective and specialized apparatus for formulating, analyzing and solving scientific problems. In science, problems become internal parts of the knowledge systems; thus they acquire new forms and properties in comparison with common-sense problems. Definite theoretical structures connected with problems and questions appear in the theory. Among them are erotetic expressions and languages, calculi and algebras of problems. On the basis of the structure-nominative reconstruction of a theory, the unified treatment of these structures is given. Methods (...)
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  • The Dilemma of Case Studies Resolved: The Virtues of Using Case Studies in the History and Philosophy of Science.Richard M. Burian - 2001 - Perspectives on Science 9 (4):383-404.
    Philosophers of science turned to historical case studies in part in response to Thomas Kuhn's insistence that such studies can transform the philosophy of science. In this issue Joseph Pitt argues that the power of case studies to instruct us about scientific methodology and epistemology depends on prior philosophical commitments, without which case studies are not philosophically useful. Here I reply to Pitt, demonstrating that case studies, properly deployed, illustrate styles of scientific work and modes of argumentation that are not (...)
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  • The Functional Complexity of Scientific Evidence.Matthew J. Brown - 2015 - Metaphilosophy 46 (1):65-83.
    This article sketches the main features of traditional philosophical models of evidence, indicating idealizations in such models that it regards as doing more harm than good. It then proceeds to elaborate on an alternative model of evidence that is functionalist, complex, dynamic, and contextual, a view the author calls dynamic evidential functionalism (DEF). This alternative builds on insights from philosophy of scientific practice, Kuhnian philosophy of science, pragmatist epistemology, philosophy of experimentation, and functionalist philosophy of mind. Along the way, the (...)
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  • De opkomst en de ontwikkeling Van het evolutionisme en de probleemhistorische methode Van vollenhoven.K. A. Bril - 1993 - Philosophia Reformata 58 (1):28-48.
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  • Explanation in scientists and children.William F. Brewer, Clark A. Chinn & Ala Samarapungavan - 1998 - Minds and Machines 8 (1):119-136.
    In this paper we provide a psychological account of the nature and development of explanation. We propose that an explanation is an account that provides a conceptual framework for a phenomenon that leads to a feeling of understanding in the reader/hearer. The explanatory conceptual framework goes beyond the original phenomenon, integrates diverse aspects of the world, and shows how the original phenomenon follows from the framework. We propose that explanations in everyday life are judged on the criteria of empirical accuracy, (...)
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  • Validation of behavioural equations: Can neurobiology help?C. M. Bradshaw - 1994 - Behavioral and Brain Sciences 17 (1):136-137.
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  • General causal models in business ethics: An essay on colliding research traditions. [REVIEW]F. Neil Brady & Mary Jo Hatch - 1992 - Journal of Business Ethics 11 (4):307 - 315.
    The construction of causal models for research in business ethics has become fashionable in recent years. This paper explores four recent proposals, comparing and contrasting their views. The primary purpose of this paper is to expose several confusions inherent in such models and to account for these errors in terms of a failure to distinguish between models as theories and models as representing a research tradition. We conclude with a brief set of recommendations for linking two major research traditions in (...)
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  • Handbook of Evolutionary Thinking in the Sciences.Thomas Heams, Philippe Huneman, Guillaume Lecointre & Marc Silberstein (eds.) - 2015 - Springer.
    The Darwinian theory of evolution is itself evolving and this book presents the details of the core of modern Darwinism and its latest developmental directions. The authors present current scientific work addressing theoretical problems and challenges in four sections, beginning with the concepts of evolution theory, its processes of variation, heredity, selection, adaptation and function, and its patterns of character, species, descent and life. The second part of this book scrutinizes Darwinism in the philosophy of science and its usefulness in (...)
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  • On a computational perspective without substance.Rudolf P. Botha - 1983 - Behavioral and Brain Sciences 6 (3):403-404.
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  • Methodological bases of a progressive mentalism.Rudolf P. Botha - 1980 - Synthese 44 (1):1 - 112.
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  • Theory-choice, transient diversity and the efficiency of scientific inquiry.AnneMarie Borg, Daniel Frey, Dunja Šešelja & Christian Straßer - 2019 - European Journal for Philosophy of Science 9 (2):26.
    Recent studies of scientific interaction based on agent-based models suggest that a crucial factor conducive to efficient inquiry is what Zollman has dubbed ‘transient diversity’. It signifies a process in which a community engages in parallel exploration of rivaling theories lasting sufficiently long for the community to identify the best theory and to converge on it. But what exactly generates transient diversity? And is transient diversity a decisive factor when it comes to the efficiency of inquiry? In this paper we (...)
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  • Bemerkungen zur interpretation, bestätigung und progressivität der frühen matrizenmechanik.Thomas Bonk - 1994 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 25 (1):1 - 15.
    Remarks on Interpretation, Confirmation and Progressiveness of Early Matrix Mechanics. Our note discusses a case study in view of questions of theory-choice. We examine the extent to which the first 'complete, consistent exposition' of matrix mechanics in 1925 can be claimed to be reasonably confirmed, well interpreted and fruitful. Various strategies, by means of deductions and otherwise, by Born, Jordan and Heisenberg to establish these claims are critically assessed. It is shown that the outcome of the Bothe-Geiger experiment does not (...)
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  • The response problem.Robert C. Bolles - 1994 - Behavioral and Brain Sciences 17 (1):135-136.
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  • The bathwater and everything.Robert C. Bolles - 1988 - Behavioral and Brain Sciences 11 (3):449.
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  • Anti-Latour.David Bloor - 1999 - Studies in History and Philosophy of Science Part A 30 (1):81-112.
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  • What is scientific progress?Alexander Bird - 2007 - Noûs 41 (1):64–89.
    I argue that scientific progress is precisely the accumulation of scientific knowledge.
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  • The epistemology of science—a bird’s-eye view.Alexander Bird - 2010 - Synthese 175 (S1):5-16.
    In this paper I outline my conception of the epistemology of science, by reference to my published papers, showing how the ideas presented there fit together. In particular I discuss the aim of science, scientific progress, the nature of scientific evidence, the failings of empiricism, inference to the best (or only) explanation, and Kuhnian psychology of discovery. Throughout, I emphasize the significance of the concept of scientific knowledge.
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  • Estruturas conceituais e estratégias de investigação: modelos representacionais e instanciais, analogias e correspondência.Valter Alnis Bezerra - 2011 - Scientiae Studia 9 (3):585-609.
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  • Notes toward an analysis of conceptual change.Mark Bevir - 2003 - Social Epistemology 17 (1):55 – 63.
    This paper analyses conceptual change. A rejection of pure experience has prompted philosophers of science to adopt a certain perspective from which to view changes of belief. Popper, Kuhn, and others have analysed conceptual change in terms of problems or anomalies, that is, in terms of contingent reasoning about issues posed in the context of an inherited web of belief. This paper explores a more general analysis of conceptual change in dialogue with these philosophers of science. Because changes of belief (...)
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  • Truth in Evidence and Truth in Arguments without Logical Omniscience.Gregor Betz - 2016 - British Journal for the Philosophy of Science 67 (4):1117-1137.
    Science advances by means of argument and debate. Based on a formal model of complex argumentation, this article assesses the interplay between evidential and inferential drivers in scientific controversy, and explains, in particular, why both evidence accumulation and argumentation are veritistically valuable. By improving the conditions for applying veritistic indicators , novel evidence and arguments allow us to distinguish true from false hypotheses more reliably. Because such veritistic indicators also underpin inductive reasoning, evidence accumulation and argumentation enhance the reliability of (...)
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  • Using what you know: A computer-science perspective.Robert C. Berwick - 1983 - Behavioral and Brain Sciences 6 (3):402-403.
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  • Scientific value.Lars Bergström - 1996 - International Studies in the Philosophy of Science 10 (3):189-202.
    Abstract Criteria of scientific value are of different kinds. This paper concerns ultimate criteria, i.e. the axiology of science. Most ultimate criteria are multi?dimensional. This gives rise to an aggregation problem, which cannot be adequately solved with reference to attitudes and behaviour within the scientific community. Therefore, in many cases, there is no fact of the matter as to whether one theory is better than another. This, in turn, creates problems for methodology.
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  • Learning, reward, and cognitive differences.William Bechtel & Adele Abrahamsen - 1988 - Behavioral and Brain Sciences 11 (3):448.
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  • Selection by consequences is a good idea.William M. Baum - 1988 - Behavioral and Brain Sciences 11 (3):447.
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  • How to test normative theories of science.David Baumslag - 2000 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 31 (2):267-275.
    In this paper I discuss how descriptive studies of science, increasingly emphasised by philosophers of science, can be used to test normative theories of science. I claim that we can use cases of scientific practice as counter examples; if the practice of a given scientist can be shown to be justified and it diverges from the prescriptions of a scientific theory then the theory should be rejected. This approach differs from those offered by previous philosophers of science and at the (...)
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  • The theory of the process of explanation generalized to include the inconsistent case.Diderik Batens - 2005 - Synthese 143 (1-2):63 - 88.
    . This paper proposes a generalization of the theory of the process of explanation to include consistent as well as inconsistent situations. The generalization is strong, for example in the sense that, if the background theory and the initial conditions are consistent, it leads to precisely the same results as the theory from the lead paper (Halonen and Hintikka 2004). The paper presupposes (and refers to arguments for the view that) inconsistencies constitute problems and that scientists try to resolve them.
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  • Paraconsistency and its relation to worldviews.Diderik Batens - 1998 - Foundations of Science 3 (2):259-283.
    The paper highlights the import of the paraconsistent movement, list some motivations for its origin, and distinguishes some stands with respect to para-consistency. It then discusses some sources of inconsistency that are specific for worldviews, and the import of the paraconsistent turn for the worldviews enterprise.
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  • On the Epistemological Justification of Pluralism and Tolerance.Diderik Batens - 2000 - Philosophica 65 (1).
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  • Logics for Qualitative Inductive Generalization.Diderik Batens - 2011 - Studia Logica 97 (1):61 - 80.
    The paper contains a survey of (mainly unpublished) adaptive logics of inductive generalization. These defeasible logics are precise formulations of certain methods. Some attention is also paid to ways of handling background knowledge, introducing mere conjectures, and the research guiding capabilities of the logics.
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  • Incommensurability is not a Threat to the Rationality of Science or to the Anti-dogmatic Tradition.Diderik Batens - 1983 - Philosophica 32.
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  • Physics as a Mode of Production.Aristides Baltas - 1993 - Science in Context 6 (2):569-616.
    The ArgumentStarting from the thesis that a science constructs the knowledge of the part of the world allotted to it, the present paper aims at bringing together all the various aspects of physics under a unified conceptual framework — that provided by the Marxian concept “mode of production.” After an introduction providing the initial plausibility grounds for the undertaking, the concept is analyzed into its conceptual elements in Part I of the paper. The analysis presents the reconstruction initiated by Louis (...)
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  • On some structural aspects of physical problems.Aristides Baltas - 1991 - Synthese 89 (2):299 - 320.
    Bachelard's concept of the problématique is used in order to classify physical problems and their interrelations. This classification is effectuated along two dimensions. Along the horizontal dimension, physical problems are divided into the kinds that the different modes of physics' development define. These modes are themselves determined by the interplay among the conceptual system, the object and the experimentation transactions specific to physics. Along the vertical dimension, physical problems are classified according to the different stages of maturation they have to (...)
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