Results for 'progress in science'

961 found
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  1. Symmetry and Reformulation: On Intellectual Progress in Science and Mathematics.Josh Hunt - 2022 - Dissertation, University of Michigan
    Science and mathematics continually change in their tools, methods, and concepts. Many of these changes are not just modifications but progress---steps to be admired. But what constitutes progress? This dissertation addresses one central source of intellectual advancement in both disciplines: reformulating a problem-solving plan into a new, logically compatible one. For short, I call these cases of compatible problem-solving plans "reformulations." Two aspects of reformulations are puzzling. First, reformulating is often unnecessary. Given that we could already solve (...)
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  2. 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 (...)
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  3. Achieving Cumulative Progress In Understanding Crime: Some Insights from the Philosophy of Science.Jacqueline Anne Sullivan - forthcoming - Psychology, Crime and Law.
    Crime is a serious social problem, but its causes are not exclusively social. There is growing consensus that explaining and preventing it requires interdisciplinary research efforts. Indeed, the landscape of contemporary criminology includes a variety of theoretical models that incorporate psychological, biological and sociological factors. These multi-disciplinary approaches, however, have yet to radically advance scientific understandings of crime and shed light on how to manage it. In this paper, using conceptual tools on offer in the philosophy of science in (...)
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  4. 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 (...)
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  5. Progress in economics: Lessons from the spectrum auctions.Anna Alexandrova & Robert Northcott - 2009 - In Don Ross & Harold Kincaid (eds.), The Oxford Handbook of Philosophy of Economics. New York: Oxford University Press. pp. 306--337.
    The 1994 US spectrum auction is now a paradigmatic case of the successful use of microeconomic theory for policy-making. We use a detailed analysis of it to review standard accounts in philosophy of science of how idealized models are connected to messy reality. We show that in order to understand what made the design of the spectrum auction successful, a new such account is required, and we present it here. Of especial interest is the light this sheds on the (...)
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  6. (1 other version)Future progress in artificial intelligence: A survey of expert opinion.Vincent C. Müller & Nick Bostrom - 2016 - In Vincent C. Müller (ed.), Fundamental Issues of Artificial Intelligence. Cham: Springer. pp. 553-571.
    There is, in some quarters, concern about high–level machine intelligence and superintelligent AI coming up in a few decades, bringing with it significant risks for humanity. In other quarters, these issues are ignored or considered science fiction. We wanted to clarify what the distribution of opinions actually is, what probability the best experts currently assign to high–level machine intelligence coming up within a particular time–frame, which risks they see with that development, and how fast they see these developing. We (...)
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  7.  95
    The modern synthesis and “Progress” in evolution: a view from the journal literature.Charles H. Pence - 2024 - History and Philosophy of the Life Sciences 46 (4):39.
    The concept of “progress” in evolutionary theory and its relationship to a putative notion of “Progress” in a global, normatively loaded sense of “change for the better” have been the subject of debate since Darwin admonished himself in a marginal note to avoid using the terms ‘higher’ and ‘lower.’ While an increase in some kind of complexity in the natural world might seem self-evident, efforts to explicate this trend meet notorious philosophical difficulties. Numerous historians pin the Modern Synthesis (...)
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  8. Future progress in artificial intelligence: A poll among experts.Vincent C. Müller & Nick Bostrom - 2014 - AI Matters 1 (1):9-11.
    [This is the short version of: Müller, Vincent C. and Bostrom, Nick (forthcoming 2016), ‘Future progress in artificial intelligence: A survey of expert opinion’, in Vincent C. Müller (ed.), Fundamental Issues of Artificial Intelligence (Synthese Library 377; Berlin: Springer).] - - - In some quarters, there is intense concern about high–level machine intelligence and superintelligent AI coming up in a few dec- ades, bringing with it significant risks for human- ity; in other quarters, these issues are ignored or considered (...)
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  9. 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 (...), over and against knowledge. This account is then defended against knowledge reductionism by showing how each plays an important and distinctive role in science. (shrink)
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  10. Conceptions of scientific progress in scientific practice: an empirical study.Moti Mizrahi - 2021 - Synthese 199 (1-2):2375-2394.
    The aim of this paper is to contribute to the debate over the nature of scientific progress in philosophy of science by taking a quantitative, corpus-based approach. By employing the methods of data science and corpus linguistics, the following philosophical accounts of scientific progress are tested empirically: the semantic account of scientific progress, the epistemic account of scientific progress, and the noetic account of scientific progress. Overall, the results of this quantitative, corpus-based study (...)
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  11. Measuring progress in robotics: Benchmarking and the ‘measure-target confusion’.Vincent C. Müller - 2019 - In Fabio Bonsignorio, John Hallam, Elena Messina & Angel P. Del Pobil (eds.), Metrics of sensory motor coordination and integration in robots and animals. Springer. pp. 169-179.
    While it is often said that robotics should aspire to reproducible and measurable results that allow benchmarking, I argue that a focus on benchmarking can be a hindrance for progress in robotics. The reason is what I call the ‘measure-target confusion’, the confusion between a measure of progress and the target of progress. Progress on a benchmark (the measure) is not identical to scientific or technological progress (the target). In the past, several academic disciplines have (...)
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  12. Is There Progress in Philosophy? The Case for Taking History Seriously.Peter P. Slezak - 2018 - Philosophy 93 (4):529-555.
    In response to widespread doubts among professional philosophers (Russell, Horwich, Dietrich, McGinn, Chalmers), Stoljar argues for a ‘reasonable optimism’ about progress in philosophy. He defends the large and surprising claim that ‘there is progress on all or reasonably many of the big questions.’ However, Stoljar’s caveats and admitted avoidance of historical evidence permits overlooking persistent controversies in philosophy of mind and cognitive science that are essentially unchanged since the 17th Century. Stoljar suggests that his claims are commonplace (...)
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  13. The Flight to Reference, or How Not to Make Progress in the Philosophy of Science.Michael A. Bishop & Stephen P. Stich - 1998 - Philosophy of Science 65 (1):33-49.
    The flight to reference is a widely-used strategy for resolving philosophical issues. The three steps in a flight to reference argument are: (1) offer a substantive account of the reference relation, (2) argue that a particular expression refers (or does not refer), and (3) draw a philosophical conclusion about something other than reference, like truth or ontology. It is our contention that whenever the flight to reference strategy is invoked, there is a crucial step that is left undefended, and that (...)
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  14. We need progress in ideas about how to achieve progress.Nicholas Maxwell - 2018 - Metascience 27 (2).
    Steven Pinker's book Enlightenment NOW is in many ways a terrific book, from which I have learnt much. But it is also deeply flawed. Science and reason are at the heart of the book, but the conceptions that Steven Pinker defends are damagingly irrational. And these defective conceptions of science and reason, as a result of being associated with the Enlightenment Programme for the past two or three centuries, have been responsible, in part, for the genesis of the (...)
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  15. Inference Belief and Interpretation in Science.Avijit Lahiri - manuscript
    This monograph is an in-depth and engaging discourse on the deeply cognitive roots of human scientific quest. The process of making scientific inferences is continuous with the day-to-day inferential activity of individuals, and is predominantly inductive in nature. Inductive inference, which is fallible, exploratory, and open-ended, is of essential relevance in our incessant efforts at making sense of a complex and uncertain world around us, and covers a vast range of cognitive activities, among which scientific exploration constitutes the pinnacle. Inductive (...)
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  16. Model Transfer in Science.Catherine Herfeld - 2024 - In Tarja Knuuttila, Natalia Carrillo & Rami Koskinen (eds.), The Routledge Handbook of Philosophy of Scientific Modeling. New York, NY: Routledge.
    A conspicuous feature of contemporary modelling practices is the use of the same mathematical forms and modelling methods across different scientific domains. This model transfer raises many philosophical questions concerning, for example, the exact object of transfer, the relationship between the model and the target domain, the specific challenges such transfer confronts, and the ways in which model transfer relates to scientific progress. While the interest in studying model transfer has increased among philosophers of science in recent years, (...)
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  17. The Tannhäuser Gate. Architecture in science fiction films of the second half of the 20th and the beginning of the 21st century as a component of utopian and dystopian projections of the future.Cezary Wąs - 2018 - Quart. Kwartalnik Instytutu Historii Sztuki Uniwersytetu Wrocławskiego 49 (3):83-109.
    The Tannhäuser Gate. Architecture in science fiction films of the second half of the 20th and the beginning of the 21st century as a component of utopian and dystopian projections of the future. -/- The films of science fiction genre from the second half of the 20th and early 21st century contained many visions of the future, which were at the same time a reflection on the achievements and deficiencies of modern times. In 1960s, cinematographic works were dominated (...)
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  18. Overdetermined problems in science.Andrew Lugg - 1978 - Studies in History and Philosophy of Science Part A 9 (1):1-18.
    The purpose of this paper is to draw attention to a pattern of development, the significance of which has not been generally recognized. This pattern is characterized by an initial occurrence of what I shall call an overdetermined problem - i.e. a problem with no solution compatible with accepted belief and practice - followed by a resolution of the problem which relies on and exploits a change in what was previously taken as given.
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  19. How should we promote transient diversity in science?Jingyi Wu & Cailin O’Connor - 2023 - Synthese 201 (2):1-24.
    Diversity of practice is widely recognized as crucial to scientific progress. If all scientists perform the same tests in their research, they might miss important insights that other tests would yield. If all scientists adhere to the same theories, they might fail to explore other options which, in turn, might be superior. But the mechanisms that lead to this sort of diversity can also generate epistemic harms when scientific communities fail to reach swift consensus on successful theories. In this (...)
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  20. Scientific progress without increasing verisimilitude: In response to Niiniluoto.Darrell Patrick Rowbottom - 2015 - Studies in History and Philosophy of Science Part A 51:100-104.
    First, I argue that scientific progress is possible in the absence of increasing verisimilitude in science’s theories. Second, I argue that increasing theoretical verisimilitude is not the central, or primary, dimension of scientific progress. Third, I defend my previous argument that unjustified changes in scientific belief may be progressive. Fourth, I illustrate how false beliefs can promote scientific progress in ways that cannot be explicated by appeal to verisimilitude.
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  21. An Intrinsic Theory of Quantum Mechanics: Progress in Field's Nominalistic Program, Part I.Eddy Keming Chen - manuscript
    In this paper, I introduce an intrinsic account of the quantum state. This account contains three desirable features that the standard platonistic account lacks: (1) it does not refer to any abstract mathematical objects such as complex numbers, (2) it is independent of the usual arbitrary conventions in the wave function representation, and (3) it explains why the quantum state has its amplitude and phase degrees of freedom. -/- Consequently, this account extends Hartry Field’s program outlined in Science Without (...)
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  22. Decolonising Science in Canada: A Work in Progress.Jeff Kochan - 2018 - Social Epistemology Review and Reply Collective 7 (11):42-47.
    This paper briefly highlights a small part of the work being done by Indigenous groups in Canada to integrate science into their ways of knowing and living with nature. Special attention is given to a recent attempt by Mi'kmaw educators in Unama'ki (Cape Breton, Nova Scotia) to overcome suspicion of science among their youth by establishing an 'Integrative Science' (Toqwa'tu'kl Kjijitaqnn, or 'bringing our knowledges together') degree programme at Cape Breton University. The goal was to combine Indigenous (...)
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  23. An alternative to the traditional model? Laudan on disagreement and consensus in science.Andrew Lugg - 1986 - Philosophy of Science 53 (3):419-424.
    Criticism of Larry Laudan's views on disagreement and progress in science.
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  24. TRUTH, LAWS AND THE PROGRESS OF SCIENCE.Mauro Dorato - 2011 - Manuscrito 34 (1):185-204.
    In this paper I analyze the difficult question of the truth of mature scientific theories by tackling the problem of the truth of laws. After introducing the main philosophical positions in the field of scientific realism, I discuss and then counter the two main arguments against realism, namely the pessimistic metainduction and the abstract and idealized character of scientific laws. I conclude by defending the view that well-confirmed physical theories are true only relatively to certain values of the variables that (...)
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  25. How to Progress Quickly by Taking Shortcuts in Vietnamese Social Sciences?Minh-Hoang Nguyen - manuscript
    The term – “đi tắt, đón đầu,” whose translation is “to gain a head start by taking a shortcut,” has been regularly mentioned by Vietnamese policymakers in the recent years as a means to successfully adopt the Industrial Revolution 4.0. Being inspired by the term and my recent contribution to a book, I argue that Vietnamese Social Sciences is also be able “to gain a head start by taking a shortcut" by adopting open movement and promoting interdisciplinary research.
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  26. Science and Progress: Some Recent Views.Louis Caruana - 2002 - Gregorianum 83 (1):145-163.
    Philosophical reflection on the idea of progress is undergoing a recent revival, especially because of renewed interest in the broad implications of the theory of biological evolution and in its applicability to epistemology. In this paper, the main interest lies with the following two questions: What kind of word is ‘progress’? Does it refer to a process that can be detected empirically? In the first section, three ways of understanding biological progress are evaluated. It is shown that (...)
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  27. The Beginning of the World in Science and Religion. A Possibility of Synthesis?Gregory Bugajak - 1999 - In Niels Henrik Gregersen, Ulf Görman & Ch Wassermann (eds.), Studies in Science and Theology, vol. 5(1997): The Interplay Between Scientific and Theological Worldviews, part I, Labor et Fides, Genève 1999. pp. 33–42.
    The beginning of the world seems to be a subject of investigations of contemporary sciences on the one hand, and a part of the religious truth on the other. Technical and scientific progress is conducive to constructing new models of the world and inspires modification or rejection of existing ones. The aim of the first part of this paper is to show some problems, among others methodological, theoretical and interpretational, that arise on account of current scientific theories. Certain basic (...)
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  28. Science and Philosophy of Color in the Modern Age.Jacob Browning & Zed Adams - 2021 - In Anders Steinvall & Sarah Streets (eds.), Cultural History of Color in the Modern Age. Bloomsbury. pp. 21-38.
    The study of color expanded rapidly in the 20th century. With this expansion came fragmentation, as philosophers, physicists, physiologists, psychologists, and others explored the subject in vastly different ways. There are at least two ways in which the study of color became contentious. The first was with regard to the definitional question: what is color? The second was with the location question: are colors inside the head or out in the world? In this chapter, we summarize the most prominent answers (...)
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  29. Progress and Historical Reflection in Philosophy.Thomas Grundmann - 2018 - In Marcel van Ackeren (ed.), Philosophy and the Historical Perspective. Oxford: Oxford University Press. pp. 51-68.
    What is the epistemic significance of reflecting on a discipline’s past for making progress in that discipline? I assume that the answer to this question negatively correlates with that discipline’s degree of progress over time. If and only if a science is progressive, then what people think or argue in that discipline ceases to be up-to-date. In this paper, I will distinguish different dimensions of disciplinary progress and consequently argue that veritic progress, i.e. collective convergence (...)
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  30. Genetic Epistemology and Piaget's Philosophy of Science: Piaget vs. Kuhn on Scientific Progress.Jonathan Y. Tsou - 2006 - Theory and Psychology 16 (2):203-224.
    This paper concerns Jean Piaget's (1896–1980) philosophy of science and, in particular, the picture of scientific development suggested by his theory of genetic epistemology. The aims of the paper are threefold: (1) to examine genetic epistemology as a theory concerning the growth of knowledge both in the individual and in science; (2) to explicate Piaget's view of ‘scientific progress’, which is grounded in his theory of equilibration; and (3) to juxtapose Piaget's notion of progress with Thomas (...)
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  31. Moral Progress, Knowledge and Error: Do People Believe in Moral Objectivity?Thomas Pölzler, Lieuwe Zijlstra & Jacob Dijkstra - forthcoming - Philosophical Psychology.
    A prevalent assumption in metaethics is that people believe in moral objectivity. If this assumption were true then people should believe in the possibility of objective moral progress, objective moral knowledge, and objective moral error. We developed surveys to investigate whether these predictions hold. Our results suggest that, neither abstractly nor concretely, people dominantly believe in the possibility of objective moral progress, knowledge and error. They attribute less objectivity to these phenomena than in the case of science (...)
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  32. (1 other version)The science of belief: A progress report.Nicolas Porot & Eric Mandelbaum - forthcoming - WIREs Cognitive Science 1.
    The empirical study of belief is emerging at a rapid clip, uniting work from all corners of cognitive science. Reliance on belief in understanding and predicting behavior is widespread. Examples can be found, inter alia, in the placebo, attribution theory, theory of mind, and comparative psychological literatures. Research on belief also provides evidence for robust generalizations, including about how we fix, store, and change our beliefs. Evidence supports the existence of a Spinozan system of belief fixation: one that is (...)
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  33. Issues in the theoretical foundations of climate science.Joel Katzav & Wendy S. Parker - 2018 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 63:141-149.
    The theoretical foundations of climate science have received little attention from philosophers thus far, despite a number of outstanding issues. We provide a brief, non-technical overview of several of these issues – related to theorizing about climates, climate change, internal variability and more – and attempt to make preliminary progress in addressing some of them. In doing so, we hope to open a new thread of discussion in the emerging area of philosophy of climate science, focused on (...)
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  34. Objectivity in the Natural Sciences [Chapter 3 of Objectivity].Guy Axtell - 2015 - In Objectivity. Polity Press, 2015. Introduction and T. of Contents. Polity; Wiley. pp. 69-108.
    Chapter 3 surveys objectivity in the natural sciences. Thomas Kuhn problematized the logicist understanding of the objectivity or rationality of scientific change, providing a very different picture than that of the cumulative or step-wise progress of theoretical science. Theories often compete, and when consensus builds around one competitor it may be for a variety of reasons other than just the direct logical implications of experimental successes and failures. Kuhn pitted the study of the actual history of science (...)
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  35. Disagreement, progress, and the goal of philosophy.Arnon Keren - 2023 - Synthese 201 (2):1-22.
    Modest pessimism about philosophical progress is the view that while philosophy may sometimes make some progress, philosophy has made, and can be expected to make, only very little progress (where the extent of philosophical progress is typically judged against progress in the hard sciences). The paper argues against recent attempts to defend this view on the basis of the pervasiveness of disagreement within philosophy. The argument from disagreement for modest pessimism assumes a teleological conception of (...)
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  36. A Tale of Three Theories: Feyerabend and Popper on Progress and the Aim of Science.Luca Tambolo - 2015 - Studies in History and Philosophy of Science Part A 51:33-41.
    In this paper, three theories of progress and the aim of science are discussed: the theory of progress as increasing explanatory power, advocated by Popper in The logic of scientific discovery ; the theory of progress as approximation to the truth, introduced by Popper in Conjectures and refutations ; the theory of progress as a steady increase of competing alternatives, which Feyerabend put forward in the essay “Reply to criticism. Comments on Smart, Sellars and Putnam” (...)
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  37. Progress on Environment, Health and Growth in Urban Areas of Developing Countries.Van Quy Khuc - manuscript
    Developing countries have seen rapid economic growth, but they have also faced unprecedented environmental challenges, including air pollution, water pollution, land pollution, waste pollution, etc. Take air pollution as an example. It is alarming that 99 percent of the world’s population breathes polluted air. Air pollution is deemed a “quiet killer”, giving rise to numerous consequences ranging from health and psychological impacts to economic and social costs. For example, air pollution annually causes roughly 7 million premature deaths and an economic (...)
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  38. 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 (...)
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  39. Realism, Progress and the Historical Turn.Howard Sankey - 2017 - Foundations of Science 22 (1):201-214.
    The contemporary debate between scientific realism and anti-realism is conditioned by a polarity between two opposing arguments: the realist’s success argument and the anti-realist’s pessimistic induction. This polarity has skewed the debate away from the problem that lies at the source of the debate. From a realist point of view, the historical approach to the philosophy of science which came to the fore in the 1960s gave rise to an unsatisfactory conception of scientific progress. One of the main (...)
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  40. (1 other version)Has Science Established that the Cosmos is Physically Comprehensible?Nicholas Maxwell - 2013 - In Recent Advances in Cosmology. Nova Science Publishers. pp. 1-56.
    Most scientists would hold that science has not established that the cosmos is physically comprehensible – i.e. such that there is some as-yet undiscovered true physical theory of everything that is unified. This is an empirically untestable, or metaphysical thesis. It thus lies beyond the scope of science. Only when physics has formulated a testable unified theory of everything which has been amply corroborated empirically will science be in a position to declare that it has established that (...)
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  41. (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 (...)
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  42. Would Disagreement Undermine Progress?Finnur Dellsén, Insa Lawler & James Norton - 2023 - Journal of Philosophy 120 (3):139-172.
    In recent years, several philosophers have argued that their discipline makes no progress (or not enough in comparison to the “hard sciences”). A key argument for this pessimistic position appeals to the purported fact that philosophers widely and systematically disagree on most major philosophical issues. In this paper, we take a step back from the debate about progress in philosophy specifically and consider the general question: How (if at all) would disagreement within a discipline undermine that discipline’s (...)? We reject two arguments from disagreement to a lack of progress, and spell out two accounts of progress on which progress is compatible with disagreements that persist or increase over time. However, we also argue that disagreement can undermine our ability to tell which developments are progressive (and to what degree). So, while disagreement can indeed be a threat to progress, the precise nature of the threat has not been appreciated. (shrink)
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  43. Does Scientific Progress Consist in Increasing Knowledge or Understanding?Seungbae Park - 2017 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 48 (4):569-579.
    Bird argues that scientific progress consists in increasing knowledge. Dellsén objects that increasing knowledge is neither necessary nor sufficient for scientific progress, and argues that scientific progress rather consists in increasing understanding. Dellsén also contends that unlike Bird’s view, his view can account for the scientific practices of using idealizations and of choosing simple theories over complex ones. I argue that Dellsén’s criticisms against Bird’s view fail, and that increasing understanding cannot account for scientific progress, if (...)
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  44. Scientific Progress and Democratic Society through the Lens of Scientific Pluralism.Theptawee Chokvasin - 2023 - Suranaree Journal of Social Science 17 (2):Article ID e268392 (pp. 1-15).
    Background and Objectives: In this research article, the researcher addresses the issue of creating public understanding in a democratic society about the progress of science, with an emphasis on pluralism from philosophers of science. The idea that there is only one truth and that there are just natural laws awaiting discovery by scientists has historically made it difficult to explain scientific progress. This belief motivates science to develop theories that explain the unity of science, (...)
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  45. Retrieving Philosophy in Management and Organization Science.Julian Friedland - 2016 - Philosophy of Management 15 (2):161-169.
    Like any social science, management and organization sits astride two literary and epistemic disciplines; the empirical and the conceptual. I argue that emphasizing the former to the detriment of the latter, as is often the case in management and organization research, creates a conceptual blindness that compromises progress in the field. I show how adopting a more philosophically attuned methodology buttresses the conceptual tools of management and organization research via deduction, induction, normative grounding, and overcoming the illusion of (...)
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  46. Metaphysics of Science and the Closedness of Development in Davari's Thought.S. M. Reza Amiri Tehrani - 2023 - Philosophical Investigations 17 (44):787-806.
    Introduction Reza Davari Ardakni, the Iranian contemporary philosopher, distinguishes development from Western modernity; in that it considers modernity as natural and organic changes that Europe has gone through, but sees development as a planned design for implementing modernity in other countries. As a result, the closedness of development concerns only the developing countries, not Western modern ones. Davari emphasizes that the Western modernity has a universality that pertains to a unique reason and a unified world. The only way of thinking (...)
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  47. 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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  48. On Pursuing the Dialogue Between Buddhism and Science in Ways That Distort Neither.Christian Coseru - 2021 - APA Newsletter on Asian and Asian American Philosophers and Philosophies 20 (2):8-15.
    This paper examines two central issues prompted by a recent critique of this Buddhist modernist phenomenon in Evan Thompson’s Why I Am Not a Buddhist: (i) the suitability of evolutionary psychology as a framework of analysis for Buddhist moral psychological ideas; and (iv) whether a Madhyamaka-inspired anti-foundationalism stance can serve as an effective platform for debating the issue of progress in science. The main argument of this paper is that if Buddhism is to enter into a fruitful dialogue (...)
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  49. How Intellectual Communities Progress.Lewis D. Ross - 2021 - Episteme (4):738-756.
    Recent work takes both philosophical and scientific progress to consist in acquiring factive epistemic states such as knowledge. However, much of this work leaves unclear what entity is the subject of these epistemic states. Furthermore, by focusing only on states like knowledge, we overlook progress in intermediate cases between ignorance and knowledge—for example, many now celebrated theories were initially so controversial that they were not known. -/- This paper develops an improved framework for thinking about intellectual progress. (...)
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  50. Scientific progress and idealisation.Insa Lawler - 2022 - In Yafeng Shan (ed.), New Philosophical Perspectives on Scientific Progress. New York: Routledge.
    Intuitively, science progresses from truth to truth. A glance at history quickly reveals that this idea is mistaken. We often learn from scientific theories that turned out to be false. This chapter focuses on a different challenge: Idealisations are deliberately and ubiquitously used in science. Scientists thus work with assumptions that are known to be false. Any account of scientific progress needs to account for this widely accepted scientific practice. It is examined how the four dominant accounts—the (...)
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