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Scientific progress

Synthese 45 (3):427 - 462 (1980)

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  1. Why philosophy needs a concept of progress.James Norton - 2023 - Metaphilosophy 54 (1):3-16.
    This paper defends the usefulness of the concept of philosophical progress and the common assumption that philosophy and science aim to make the same, or a comparable, kind of progress. It does so by responding to Yafeng Shan's (2022) arguments that the wealth of research on scientific progress is not applicable or useful to philosophy, and that philosophy doesn't need a concept of progress at all. It is ultimately argued that while Shan's arguments are not successful, they reveal the way (...)
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  • Introduction: Philosophical Analyses of Scientific Progress.Yafeng Shan - 2022 - In New Philosophical Perspectives on Scientific Progress. New York: Routledge. pp. 1-9.
    Scientific progress is a hot topic in the philosophy of science. However, as yet we lack a comprehensive philosophical examination of scientific progress. First, the recent debate pays too much attention to the epistemic approach and the semantic approach. Shan’s new functional approach and Dellsén’s noetic approach are still insufficiently assessed. Second, there is little in-depth analysis of the progress in the history of the sciences. Third, many related philosophical issues are still to be explored. For example, what are the (...)
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  • The Functional Approach: Scientific Progress as Increased Usefulness.Yafeng Shan - 2022 - In New Philosophical Perspectives on Scientific Progress. New York: Routledge. pp. 46-61.
    The functional approach to scientific progress has been mainly developed by Kuhn, Lakatos, Popper, Laudan, and more recently by Shan. The basic idea is that science progresses if key functions of science are fulfilled in a better way. This chapter defends the function approach. It begins with an overview of the two old versions of the functional approach by examining the work of Kuhn, Laudan, Popper, and Lakatos. It then argues for Shan’s new functional approach, in which scientific progress is (...)
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  • Désuétude et neuroplasticité.Sacha Behrend & Marie Michon - 2022 - Philosophia Scientiae 26 (1):11-28.
    The history of science is often understood as a succession of theories. However, this conception of the history of science does not do justice to the complexity of the dynamics implemented in scientific development. To illustrate this, we focus on a type of phenomena that cannot be described as a simple linear succession : the desuetude of certain theories and particularly the temporary desuetude of the theory of neuroplasticity. We argue that studying this theory reveals some of the inadequacies of (...)
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  • Simple Models in Complex Worlds: Occam’s Razor and Statistical Learning Theory.Falco J. Bargagli Stoffi, Gustavo Cevolani & Giorgio Gnecco - 2022 - Minds and Machines 32 (1):13-42.
    The idea that “simplicity is a sign of truth”, and the related “Occam’s razor” principle, stating that, all other things being equal, simpler models should be preferred to more complex ones, have been long discussed in philosophy and science. We explore these ideas in the context of supervised machine learning, namely the branch of artificial intelligence that studies algorithms which balance simplicity and accuracy in order to effectively learn about the features of the underlying domain. Focusing on statistical learning theory, (...)
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  • What Is the Basic Unit of Scientific Progress? A Quantitative, Corpus-Based Study.Moti Mizrahi - 2022 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 53 (4):441-458.
    This paper presents the results of an empirical study following up on Mizrahi (2021). Using the same methods of text mining and corpus analysis used by Mizrahi (2021), we test empirically a philosophical account of scientific progress that Mizrahi (2021) left out of his empirical study, namely, the so-called functional-internalist account of scientific progress according to which the aim or goal or scientific research is to solve problems. In general, our results do not lend much empirical evidence in support of (...)
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  • Understanding scientific progress: the noetic account.Finnur Dellsén - 2021 - Synthese 199 (3-4):11249-11278.
    What is scientific progress? This paper advances an interpretation of this question, and an account that serves to answer it. Roughly, the question is here understood to concern what type of cognitive change with respect to a topic X constitutes a scientific improvement with respect to X. The answer explored in the paper is that the requisite type of cognitive change occurs when scientific results are made publicly available so as to make it possible for anyone to increase their understanding (...)
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  • Thinking about Progress: From Science to Philosophy.Finnur Dellsén, Insa Lawler & James Norton - 2022 - Noûs 56 (4):814-840.
    Is there progress in philosophy? If so, how much? Philosophers have recently argued for a wide range of answers to these questions, from the view that there is no progress whatsoever to the view that philosophy has provided answers to all the big philosophical questions. However, these views are difficult to compare and evaluate, because they rest on very different assumptions about the conditions under which philosophy would make progress. This paper looks to the comparatively mature debate about scientific progress (...)
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  • Sulla concezione noetica del progresso scientifico.Fabio Sterpetti - 2017 - Paradigmi. Rivista di Critica Filosofica 35 (3):135-155.
    Le principali concezioni del progresso scientifico sono tre: la concezione epistemica, secondo cui il progresso si verifica quando si verifica un incremento della conoscenza; la concezione semantica, secondo cui il progresso si verifica quando vi è un incremento delle verità; la concezione problem-solving, secondo cui il progresso si verifica quando si verifica un incremento del numero dei problemi che si è in grado di risolvere. La concezione epistemica è ritenuta la più compatibile con una prospettiva realista. Di recente, Dellsén ha (...)
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  • The Noetic Account of Scientific Progress and the Factivity of Understanding.Fabio Sterpetti - 2018 - In David Danks & Emiliano Ippoliti (eds.), Building Theories: Heuristics and Hypotheses in Sciences. Cham: Springer International Publishing.
    There are three main accounts of scientific progress: 1) the epistemic account, according to which an episode in science constitutes progress when there is an increase in knowledge; 2) the semantic account, according to which progress is made when the number of truths increases; 3) the problem-solving account, according to which progress is made when the number of problems that we are able to solve increases. Each of these accounts has received several criticisms in the last decades. Nevertheless, some authors (...)
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  • Understanding the Progress of Science.C. D. McCoy - 2022 - In Insa Lawler, Kareem Khalifa & Elay Shech (eds.), Scientific Understanding and Representation: Modeling in the Physical Sciences. New York, NY: Routledge. pp. 353-369.
    Philosophical debates on how to account for the progress of science have traditionally divided along the realism-anti-realism axis. Relatively recent developments in epistemology, however, have opened up a new knowledge-understanding axis to the debate. This chapter presents a novel understanding-based account of scientific progress that takes its motivation from problem-solving practices in science. Problem-solving is characterized as a means of measuring degree of understanding, which is argued to be the principal epistemic (or cognitive) aim of science, over and against knowledge. (...)
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  • Underconsideration in Space-time and Particle Physics.J. Brian Pitts - unknown
    The idea that a serious threat to scientific realism comes from unconceived alternatives has been proposed by van Fraassen, Sklar, Stanford and Wray among others. Peter Lipton's critique of this threat from underconsideration is examined briefly in terms of its logic and its applicability to the case of space-time and particle physics. The example of space-time and particle physics indicates a generic heuristic for quantitative sciences for constructing potentially serious cases of underdetermination, involving one-parameter family of rivals T_m that work (...)
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  • Scientific progress: Four accounts.Finnur Dellsén - 2018 - Philosophy Compass 13 (11):e12525.
    Scientists are constantly making observations, carrying out experiments, and analyzing empirical data. Meanwhile, scientific theories are routinely being adopted, revised, discarded, and replaced. But when are such changes to the content of science improvements on what came before? This is the question of scientific progress. One answer is that progress occurs when scientific theories ‘get closer to the truth’, i.e. increase their degree of truthlikeness. A second answer is that progress consists in increasing theories’ effectiveness for solving scientific problems. A (...)
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  • Scientific Progress, Understanding, and Knowledge: Reply to Park.Finnur Dellsén - 2018 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 49 (3):451-459.
    Dellsén (2017) has recently argued for an understanding-based account of scientific progress, the noetic account, according to which science (or a particular scientific discipline) makes cognitive progress precisely when it increases our understanding of some aspect of the world. Dellsén contrasts this account with Bird’s (2007, 2015) epistemic account, according to which such progress is made precisely when our knowledge of the world is increased or accumulated. In a recent paper, Park (2017) criticizes various aspects of Dellsén’s account and his (...)
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  • Truth and Scientific Change.Gila Sher - 2017 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 48 (3):371-394.
    The paper seeks to answer two new questions about truth and scientific change: What lessons does the phenomenon of scientific change teach us about the nature of truth? What light do recent developments in the theory of truth, incorporating these lessons, throw on problems arising from the prevalence of scientific change, specifically, the problem of pessimistic meta-induction?
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  • Scientific progress: Knowledge versus understanding.Finnur Dellsén - 2016 - Studies in History and Philosophy of Science Part A 56 (C):72-83.
    What is scientific progress? On Alexander Bird’s epistemic account of scientific progress, an episode in science is progressive precisely when there is more scientific knowledge at the end of the episode than at the beginning. Using Bird’s epistemic account as a foil, this paper develops an alternative understanding-based account on which an episode in science is progressive precisely when scientists grasp how to correctly explain or predict more aspects of the world at the end of the episode than at the (...)
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  • (1 other version)A confutation of convergent realism.Larry Laudan - 1981 - Philosophy of Science 48 (1):19-49.
    This essay contains a partial exploration of some key concepts associated with the epistemology of realist philosophies of science. It shows that neither reference nor approximate truth will do the explanatory jobs that realists expect of them. Equally, several widely-held realist theses about the nature of inter-theoretic relations and scientific progress are scrutinized and found wanting. Finally, it is argued that the history of science, far from confirming scientific realism, decisively confutes several extant versions of avowedly 'naturalistic' forms of scientific (...)
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  • (2 other versions)Scientific Progress: By-Whom or For-Whom?Finnur Dellsén - 2022 - Studies in History and Philosophy of Science Part A 97 (C):20-28.
    When science makes cognitive progress, who or what is it that improves in the requisite way? According to a widespread and unchallenged assumption, it is the cognitive attitudes of scientists themselves, i.e. the agents by whom scientific progress is made, that improve during progressive episodes. This paper argues against this assumption and explores a different approach. Scientific progress should be defined in terms of potential improvements to the cognitive attitudes of those for whom progress is made, i.e. the receivers rather (...)
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  • Scientific Understanding, Fictional Understanding, and Scientific Progress.Seungbae Park - 2020 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 51 (1):173–184.
    The epistemic account and the noetic account hold that the essence of scientific progress is the increase in knowledge and understanding, respectively. Dellsén (2018) criticizes the epistemic account (Park, 2017a) and defends the noetic account (Dellsén, 2016). I argue that Dellsén’s criticisms against the epistemic account fail, and that his notion of understanding, which he claims requires neither belief nor justification, cannot explain scientific progress, although it can explain fictional progress in science-fiction.
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  • Judicial Greatness and the Duties of a Judge.Omri Ben-Zvi - 2016 - Law and Philosophy 35 (6):615-654.
    This paper addresses the phenomenon of judicial greatness by developing a general concept of greatness and applying it to law. Under the view offered in the paper, greatness is connected to theoretical or methodological diversification. When applied to adjudication, this means that great judges are revered because they successfully make a prima facie case for their novel adjudicative methods. This is not a judicial duty but rather a voluntary project. However, once a judge succeeds in making such a prima facie (...)
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  • Optimistic realism about scientific progress.Ilkka Niiniluoto - 2017 - Synthese 194 (9):3291-3309.
    Scientific realists use the “no miracle argument” to show that the empirical and pragmatic success of science is an indicator of the ability of scientific theories to give true or truthlike representations of unobservable reality. While antirealists define scientific progress in terms of empirical success or practical problem-solving, realists characterize progress by using some truth-related criteria. This paper defends the definition of scientific progress as increasing truthlikeness or verisimilitude. Antirealists have tried to rebut realism with the “pessimistic metainduction”, but critical (...)
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  • Imperialism, Progress, Developmental Teleology, and Interdisciplinary Unification.Steve Clarke & Adrian Walsh - 2013 - International Studies in the Philosophy of Science 27 (3):341-351.
    In a previous article in this journal, we examined John Dupré's claim that ‘scientific imperialism’ can lead to ‘misguided’ science being considered acceptable. Here, we address criticisms raised by Ian J. Kidd and Uskali Mäki against that article. While both commentators take us to be offering our own account of scientific imperialism that goes beyond that developed by Dupré, and go on to criticise what they take to be our account, our actual ambitions were modest. We intended to ‘explicate the (...)
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  • Theory Status, Inductive Realism, and Approximate Truth: No Miracles, No Charades.Shelby D. Hunt - 2011 - International Studies in the Philosophy of Science 25 (2):159 - 178.
    The concept of approximate truth plays a prominent role in most versions of scientific realism. However, adequately conceptualizing ?approximate truth? has proved challenging. This article argues that the goal of articulating the concept of approximate truth can be advanced by first investigating the processes by which science accords theories the status of accepted or rejected. Accordingly, this article uses a path diagram model as a visual heuristic for the purpose of showing the processes in science that are involved in determining (...)
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  • On the aim of the theory of verisimilitude.I. A. Kieseppä - 1996 - Synthese 107 (3):421 - 438.
    J. P. Z. Bonilla's methodological approach to truthlikeness is evaluated critically. On a more general level, various senses in which the theory of truthlikeness could be seen as a theory concerned with methodology are distinguished, and it is argued that providing speical sciences with methodological tools is unrealistic as an aim of the theory of verisimilitude. Rather, when developing this theory, one should rest contnet with the more modest aim of conceptual analysis, or of providing explications for the relational concept (...)
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  • Philosophy of science in finland: 1970–1990. [REVIEW]Ilkka Niiniluoto - 1993 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 24 (1):147 - 167.
    This paper gives a survey of the philosophy of science in Finland during the two decades 1970-90. Topics covered include the background (earlier studies by Eino Kaila, G. H. von Wright, and Jaakko Hintikka), the main areas of research (inductive logic, probability, truthlikeness, scientific theory, theory change, scientific realism, explanation and action, foundations of special disciplines), and the cultural impact of science studies.
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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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  • Disagreement and Progress in Philosophy and in Empirical Sciences.Işık Sarıhan - forthcoming - Social Epistemology.
    The fact that philosophy has not made much progress in finding answers to its big questions is often demonstrated with a comparison to natural sciences. Some have recently argued that the state of progress in philosophy is not so different than the sciences: there are many unresolved big questions in the sciences too, and philosophy has made progress on its smaller questions just like the sciences. I argue that this comparison is misleading: the situation in the two fields looks similar (...)
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  • Structural Correspondence Between Organizational Theories.Herman Aksom & Svitlana Firsova - 2021 - Philosophy of Management 20 (3):307-336.
    Organizational research constitutes a differentiated, complex and fragmented field with multiple contradicting and incommensurable theories that make fundamentally different claims about the social and organizational reality. In contrast to natural sciences, the progress in this field can’t be attributed to the principle of truthlikeness where theories compete against each other and only best theories survive and prove they are closer to the truth and thus demonstrate scientific knowledge accumulation. We defend the structural realist view on the nature of organizational theories (...)
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  • A Hybrid Account of Scientific Progress: Finding Middle Ground Between the Epistemic and the Noetic Accounts.Clara Goebel - 2019 - Kriterion - Journal of Philosophy 33 (3):1-16.
    Whereas the progressive nature of science is widely recognised, specifying the standards of scientific progress has been subject to philosophical debate since the enlightenment. Recently, Ilkka Niiniluoto, Alexander Bird, and Finnur Dellsén have revived this debate by setting forward a semantic, epistemic and noetic account of scientific progress respectively. I argue that none of these accounts is satisfactory. The semantic and epistemic accounts might advance necessary conditions for scientific progress, namely an accumulation of true, justified, and non-Gettiered beliefs, but fail (...)
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  • On Mizrahi’s Argument Against Stanford’s Instrumentalism.Fabio Sterpetti - 2019 - Axiomathes 29 (2):103-125.
    Mizrahi’s argument against Stanford’s challenge to scientific realism is analyzed. Mizrahi’s argument is worth of attention for at least two reasons: unlike other criticisms that have been made to Stanford’s view so far, Mizrahi’s argument does not question any specific claim of Stanford’s argument, rather it puts into question the very coherence of Stanford’s position, because it argues that since Stanford’s argument rests on the problem of the unconceived alternatives, Stanford’s argument is self-defeating. Thus, if Mizrahi’s argument is effective in (...)
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  • Scientific progress as increasing verisimilitude.Ilkka Niiniluoto - 2014 - Studies in History and Philosophy of Science Part A 46:73-77.
    According to the foundationalist picture, shared by many rationalists and positivist empiricists, science makes cognitive progress by accumulating justified truths. Fallibilists, who point out that complete certainty cannot be achieved in empirical science, can still argue that even successions of false theories may progress toward the truth. This proposal was supported by Karl Popper with his notion of truthlikeness or verisimilitude. Popper’s own technical definition failed, but the idea that scientific progress means increasing truthlikeness can be expressed by defining degrees (...)
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  • (1 other version)What is theoretical progress of science?Juha Saatsi - 2019 - Synthese 196 (2):611-631.
    The epistemic conception of scientific progress equates progress with accumulation of scientific knowledge. I argue that the epistemic conception fails to fully capture scientific progress: theoretical progress, in particular, can transcend scientific knowledge in important ways. Sometimes theoretical progress can be a matter of new theories ‘latching better onto unobservable reality’ in a way that need not be a matter of new knowledge. Recognising this further dimension of theoretical progress is particularly significant for understanding scientific realism, since realism is naturally (...)
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  • Buddhist Fictionalism.Mario D’Amato - 2013 - Sophia 52 (3):409-424.
    Questions regarding what exists are central to various forms of Buddhist philosophy, as they are to many traditions of philosophy. Interestingly, there is perhaps a clearer consensus in Buddhist thought regarding what does not exist than there may be regarding precisely what does exist, at least insofar as the doctrine of anātman (no self, absence of self) is taken to be a fundamental Buddhist doctrine. It may be noted that many forms of Mahāyāna Buddhist philosophy in particular are considered to (...)
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  • What shall we do with verisimilitude?Ilkka Niiniluoto - 1982 - Philosophy of Science 49 (2):181-197.
    Popper distinguishes the problems of theoretical and pragmatic preference between rival theories, but he claims that there is a common non-inductive solution to both of them, viz. the "best-tested theory", or the theory with the highest degree of corroboration. He further suggests that the degrees of corroboration serve as indicators of verisimilitude. One may therefore raise the question whether the recent theory of verisimilitude gives a general non-inductive solution to the problem of theoretical preference. This paper argues that this is (...)
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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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  • The worlds of fiction and the worlds of science: A comparative study.Veikko Rantala & Liselotte Wiesenthal - 1989 - Synthese 78 (1):53 - 86.
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  • A measure for the distance between an interval hypothesis and the truth.Roberto Festa - 1986 - Synthese 67 (2):273 - 320.
    The problem of distance from the truth, and more generally distance between hypotheses, is considered here with respect to the case of quantitative hypotheses concerning the value of a given scientific quantity.Our main goal consists in the explication of the concept of distance D(I, ) between an interval hypothesis I and a point hypothesis . In particular, we attempt to give an axiomatic foundation of this notion on the basis of a small number of adequacy conditions.
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  • Non-invasive Brain Stimulation: A Paradigm Shift in Understanding Brain Oscillations.Johannes Vosskuhl, Daniel Strüber & Christoph S. Herrmann - 2018 - Frontiers in Human Neuroscience 12.
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  • Progress: Metaphysical and otherwise.Robert Wachbroit - 1986 - Philosophy of Science 53 (3):354-371.
    Realism about progress--that progress consists in the obtaining of some metaphysical relation between a sequence of theories and the world--is often thought to be required by realism about the representational character of theories. The purpose of this paper is to show how one can be a realist about theories without being a realist about progress. The result is a view that cannot be at odds with what the history of science shows.
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  • Desuetude and Neuroplasticity.Sacha Michon Behrend - 2022 - Philosophia Scientiae 26:11-28.
    L’histoire des sciences est souvent comprise comme une succession de théories, les nouvelles supplantant les anciennes. Or cette conception de l’histoire des sciences ne rend pas justice à la complexité des dynamiques à l’œuvre dans le développement scientifique. Pour illustrer cela, nous nous intéressons à un type de phénomènes qui ne peut pas être décrit comme relevant d’une simple succession linéaire : la désuétude de certaines théories. Nous portons notre attention sur un cas particulier : la désuétude temporaire qui a (...)
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  • Interpreting quantum nonlocality as platonic information.James C. Emerson - unknown
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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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  • (1 other version)Verisimilitude vs. legisimilitude.Ilkka Niiniluoto - 1983 - Studia Logica 42 (2-3):315 - 329.
    The recent theories of truthlikeness have not paid attention to the distinction between lawlike and accidental generalizations. L.J. Cohen has expressed this by saying that science aims at legisimilitude rather than verisimilitude. G. Oddie has given a reply to Cohen by defining the notion of legisimilitude in terms of higher-order logics. This paper gives a different reply to Cohen by treating laws as physically necessary generalizations and by defining the notion of legisimilitude as closeness to a suitably chosen lawlike sentence.
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  • Vérisimilarité et méthodologie poppérienne.Gérald Lafleur - 1989 - Dialogue 28 (3):365-.
    Le présent article veut (1) montrer que la théorie qualitative de la vérisimilarité exposée par Karl R. Popper dansConjectures and RefutationsetObjective Knowledgeest compatible avec sa méthode des conjectures, corroborations et réfutations; (2) faire voir pourquoi cette théorie apparaît néanmoins trop forte d'un point de vue intuitif; (3) montrer comment le système poppérien permet de contourner la preuve formelle présentée par Pavel Tichy en 1974 à l'encontre de la théorie qualitative de la vérisimilarité; (4) proposer une nouvelle définition de la vérisimilarité (...)
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  • Conceptual dependence of verisimilitude.Jiří Raclavský - 2007 - Organon F: Medzinárodný Časopis Pre Analytickú Filozofiu 14 (3):334-353.
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  • Horizon for Scientific Practice: Scientific Discovery and Progress.James A. Marcum - 2010 - International Studies in the Philosophy of Science 24 (2):187-215.
    In this article, I introduce the notion of horizon for scientific practice (HSP), representing limits or boundaries within which scientists ply their trade, to facilitate analysis of scientific discovery and progress. The notion includes not only constraints that delimit scientific practice, e.g. of bringing experimentation to a temporary conclusion, but also possibilities that open up scientific practice to additional scientific discovery and to further scientific progress. Importantly, it represents scientific practice as a dynamic and developmental integration of activities to investigate (...)
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  • A ciência como valor cultural” e “A ciência em uma sociedade livre.Ilkka Niiniluoto & Vinícius Carvalho da Silva - 2024 - Trans/Form/Ação 47 (6):e02400254.
    Born in Helsinki in 1946, lkka Niiniluoto received a master’s degree in mathematics in 1968 and a doctorate in theoretical philosophy in 1974 from the University of Helsinki. He was Associate Professor of Foundations of Mathematics from 1973 to 1977 and Professor of Theoretical Philosophy from 1977 to 2014. His prolific academic career includes positions as president of important philosophical societies and rector of the University of Helsinki. His main works are Is Science Progressive? (1984), Truthlikeness (1987), Critical Scientific Realism (...)
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  • A Critique of the Constitutive Role of Truthlikeness in the Similarity Approach.Carlotta Piscopo & Mauro Birattari - 2010 - Erkenntnis 72 (3):379-386.
    The similarity approach stands as a significant attempt to defend scientific realism from the attack of the pessimistic meta-induction. The strategy behind the similarity approach is to shift from an absolute notion of truth to the more flexible one of truthlikeness. Nonetheless, some authors are not satisfied with this attempt to defend realism and find that the notion of truthlikeness is not fully convincing. The aim of this paper is to analyze and understand the reasons of this dissatisfaction. Our thesis (...)
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