Results for 'Success of Science'

950 found
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  1. Invisible hands and the success of science.K. Brad Wray - 2000 - Philosophy of Science 67 (1):163-175.
    David Hull accounts for the success of science in terms of an invisible hand mechanism, arguing that it is difficult to reconcile scientists' self-interestedness or their desire for recognition with traditional philosophical explanations for the success of science. I argue that we have less reason to invoke an invisible hand mechanism to explain the success of science than Hull implies, and that many of the practices and institutions constitutive of science are intentionally designed (...)
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  2. Grounding the Selectionist Explanation for the Success of Science in the External Physical World.Ragnar van der Merwe - forthcoming - Foundations of Science: DOI: 10.1007/s10699-023-09907-y.
    I identify two versions of the scientific anti-realist’s selectionist explanation for the success of science: Bas van Fraassen’s original and K. Brad Wray’s newer interpretation. In Wray’s version, psycho-social factors internal to the scientific community – viz. scientists’ interests, goals, and preferences – explain the theory-selection practices that explain theory-success. I argue that, if Wray’s version were correct, then science should resemble art. In art, the artwork-selection practices that explain artwork-success appear faddish. They are prone (...)
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  3. The realist and selectionist explanations for the success of science.Seungbae Park - 2022 - Synthese 200 (3):1-12.
    According to realists, theories are successful because they are true, but according to selectionists, theories are successful because they have gone through a rigorous selection process. Wray claims that the realist and selectionist explanations are rivals to each other. Lee objects that they are instead complementary to each other. In my view, Lee’s objection presupposes that the realist explanation is true, and thus it begs the question against selectionists. By contrast, the selectionist explanation invokes a scientific theory, and thus it (...)
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  4. 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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  5. 50 Years of Successful Predictive Modeling Should Be Enough: Lessons for Philosophy of Science.Michael A. Bishop & J. D. Trout - 2002 - Philosophy of Science 69 (S3):S197-S208.
    Our aim in this paper is to bring the woefully neglected literature on predictive modeling to bear on some central questions in the philosophy of science. The lesson of this literature is straightforward: For a very wide range of prediction problems, statistical prediction rules (SPRs), often rules that are very easy to implement, make predictions than are as reliable as, and typically more reliable than, human experts. We will argue that the success of SPRs forces us to reconsider (...)
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  6. Explaining the Success of a Scientific Theory.Timothy D. Lyons - 2003 - Philosophy of Science 70 (5):891-901.
    Scientific realists have claimed that the posit that our theories are (approximately) true provides the best or the only explanation for their success . In response, I revive two non-realists explanations. I show that realists, in discarding them, have either misconstrued the phenomena to be explained or mischaracterized the relationship between these explanations and their own. I contend nonetheless that these non-realist competitors, as well as their realist counterparts, should be rejected; for none of them succeed in explaining a (...)
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  7. The social organisation of science as a question for philosophy of science.Jaana Eigi - 2016 - Dissertation, University of Tartu
    Philosophy of science is showing an increasing interest in the social aspects and the social organisation of science—the ways social values and social interactions and structures play a role in the creation of knowledge and the ways this role should be taken into account in the organisation of science and science policy. My thesis explores a number of issues related to this theme. I argue that a prominent approach to the social organisation of science—Philip Kitcher’s (...)
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  8. Epsilon-ergodicity and the success of equilibrium statistical mechanics.Peter B. M. Vranas - 1998 - Philosophy of Science 65 (4):688-708.
    Why does classical equilibrium statistical mechanics work? Malament and Zabell (1980) noticed that, for ergodic dynamical systems, the unique absolutely continuous invariant probability measure is the microcanonical. Earman and Rédei (1996) replied that systems of interest are very probably not ergodic, so that absolutely continuous invariant probability measures very distant from the microcanonical exist. In response I define the generalized properties of epsilon-ergodicity and epsilon-continuity, I review computational evidence indicating that systems of interest are epsilon-ergodic, I adapt Malament and Zabell’s (...)
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  9. The complexity of science.H. P. P. Lotter - 1999 - Koers 64 (4):499-520.
    In this article I present an alternative philosophy of science based on ideas drawn from the study of complex adaptive systems. As a result of the spectacular expansion in scientific disciplines, the number of scientists and scientific institutions in the twentieth century, I believe science can be characterised as a complex system. I want to interpret the processes of science through which scientists themselves determine what counts as good science. This characterisation of science as a (...)
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  10. Can Kuhn’s Taxonomic Incommensurability Be an Image of Science?Seungbae Park - 2017 - In Moti Mizrahi (ed.), The Kuhnian Image of Science: Time for a Decisive Transformation? London: Rowman & Littlefield. pp. 61–74.
    I criticize Kuhn’s (1962/1970) taxonomic incommensurability thesis as follows. (i) His argument for it is neither deductively sound nor inductively correct. (ii) It clashes with his account of scientific development that employs evolutionary theory. (iii) Even if two successive paradigms are taxonomically incommensurable, they have some overlapping theoretical claims, as selectivists point out. (iv) Since scientific revolutions were rare in the recent past, as historical optimists observe, they will also be rare in the future. Where scientific revolution is rare, taxonomic (...)
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  11. Philosophy of science.Fritz Allhoff -
    Course Description: Science appears to be extraordinarily successful is two crucial respects. First, science apparently serves as an extremely reliable vehicle for arriving at the truth (as contrasted with astrology or palm reading). Second, the methodology of science seems eminently rational (again as opposed to the methodologies of astrology or palm reading). Philosophers have been quite interested in these two apparent virtues of science. Some philosophers think that the two virtues are illusory and that, upon reflection, (...)
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  12. Academic Enablers to Success of Students with Hearing Impairment at the Undergraduate Level.Faisal Amjad & Almas Shoaib - 2024 - Pakistan Social Sciences Review 8 (2):298-310.
    This research examined the academic enablers that help undergraduate students wi hearing impairment (SWHI) succeed in higher education, addressing their uniq obstacles. SWHI students have unique academic challenges that need tailored interventio and support services to improve their education. Promoting diversity and academic succe in higher education requires understanding these obstacles and supports. A census samp of 30 SWHI undergraduates from a private institution was used for a quantitative stud Surveys in sign language were analyzed using SPSS. Descriptive and inferential (...)
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  13. Caveat emptor: Economics and contemporary philosophy of science.D. Wade Hands - 1997 - Philosophy of Science 64 (4):116.
    The relationship between economics and the philosophy of natural science has changed substantially during the last few years. What was once exclusively a one-way relationship from philosophy to economics now seems to be much closer to bilateral exchange. The purpose of this paper is to examine this new relationship. First, I document the change. Second, I examine the situation within contemporary philosophy of science in order to explain why economics might have its current appeal. Third, I consider some (...)
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  14. The Objectivity of Science.Howard Sankey - 2023 - Journal of Philosophical Investigations at University of Tabriz 17 (45):1-10.
    The idea that science is objective, or able to achieve objectivity, is in large part responsible for the role that science plays within society. But what is objectivity? The idea of objectivity is ambiguous. This paper distinguishes between three basic forms of objectivity. The first form of objectivity is ontological objectivity: the world as it is in itself does not depend upon what we think about it; it is independent of human thought, language, conceptual activity or experience. The (...)
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  15. Second Philosophy and Testimonial Reliability: Philosophy of Science for STEM Students.Frank Cabrera - 2021 - European Journal for Philosophy of Science (3):1-15.
    In this paper, I describe some strategies for teaching an introductory philosophy of science course to Science, Technology, Engineering, and Mathematics (STEM) students, with reference to my own experience teaching a philosophy of science course in the Fall of 2020. The most important strategy that I advocate is what I call the “Second Philosophy” approach, according to which instructors ought to emphasize that the problems that concern philosophers of science are not manufactured and imposed by philosophers (...)
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  16. Understanding “Understanding” in Public Understanding of Science.Joanna K. Huxster, Matthew Slater, Jason Leddington, Victor LoPiccolo, Jeffrey Bergman, Mack Jones, Caroline McGlynn, Nicolas Diaz, Nathan Aspinall, Julia Bresticker & Melissa Hopkins - 2017 - Public Understanding of Science 28:1-16.
    This study examines the conflation of terms such as “knowledge” and “understanding” in peer-reviewed literature, and tests the hypothesis that little current research clearly distinguishes between importantly distinct epistemic states. Two sets of data are presented from papers published in the journal Public Understanding of Science. In the first set, the digital text analysis tool, Voyant, is used to analyze all papers published in 2014 for the use of epistemic success terms. In the second set of data, all (...)
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  17. Evaluation on Success of Graduating with Distinction in Higher Education using Fuzzy DEMATEL Method.Mustefa Jibril - 2021 - ACE International Journal of Social Sciences 1 (1):1-5.
    The aim of this study is the evaluation of the Success of Graduating with Distinction in Higher Education (SGDHE) using the fuzzy DEMATEL method. The observation has been done using cause and effect criteria. The 11 cause and 14 effect clusters have been used in this study. The study result of this work shows that all the effects are connected to the given causes and a cause‐effect graph has been generated for each connection. This proposed approach is demonstrated with (...)
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  18. Does the Scientific Community Misconstrue the Nature of Science?Nicholas Maxwell - 2021 - Global Journal of Research and Review 8 (5):83.
    The scientific community takes for granted a view of science that may be called standard empiricism. This holds that the basic intellectual aim of science is truth, nothing being presupposed about the truth, the basic method being to assess theories with respect to evidence. A basic tenet of the view is that science must not accept any thesis about the world as a part of scientific knowledge independent of evidence, let alone in violation of evidence. But physics (...)
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  19. Von Neumann's Methodology of Science: From Incompleteness Theorems to Later foundational Reflections.Giambattista Formica - 2010 - Perspectives on Science 18 (4):480-499.
    In spite of the many efforts made to clarify von Neumann’s methodology of science, one crucial point seems to have been disregarded in recent literature: his closeness to Hilbert’s spirit. In this paper I shall claim that the scientific methodology adopted by von Neumann in his later foundational reflections originates in the attempt to revaluate Hilbert’s axiomatics in the light of Gödel’s incompleteness theorems. Indeed, axiomatics continues to be pursued by the Hungarian mathematician in the spirit of Hilbert’s school. (...)
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  20. Methodological Naturalism and Scientific Success.Yunus Adi Prasetya - 2021 - European Journal for Philosophy of Religion 14 (1):231-256.
    Several metaphysical naturalists argue that the success of science, together with the claim that scientists adhere to methodological naturalism, amounts to strong evidence for metaphysical naturalism. I call this the scientific-success argument. It is argued that the scientific-success argument is similar to the no-miracles argument for realism in philosophy of science. On the no-miracles argument, the success of science is taken as strong evidence that scientific theories are true. Based on this similarity, some (...)
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  21. THE NEW PHILOSOPHY OF SUPERDETERMINISM AND THE ROLE OF SCIENCE.John Bannan - manuscript
    The philosophy of superdeterminism is based on a single scientific fact about the universe, namely that cause and effect in physics are not real. In 2020, accomplished Swedish theoretical physicist, Dr. Johan Hansson published a physics proof using Albert Einstein’s Theory of Special Relativity that our universe is superdeterministic meaning a predetermined static block universe without cause and effect in physics. Some believe that the lack of cause and effect in physics would cripple science, but this is an absurd (...)
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  22. On the Differences between the Classical and the “Western” Marxist Conceptions of Science.Zeyad El Nabolsy - 2022 - Marxism and Sciences 1 (1):193-217.
    This essay aims to provide an account of the differences between what I call the “Classical Marxist” conception of science which was adhered to by Marx and Engels and further developed by Boris Hessen and others on the one hand, and the conception of science which characterizes “Western Marxism” as it developed through the work of the theorists of the Frankfurt School on the other hand. I argue that Western Marxists such as Herbert Marcuse and Max Horkheimer did (...)
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  23. Modeling the Past: Using History of Science to predict alternative scenarios on science-based legislation.José Ferraz-Caetano - 2021 - Hypothesis Historia Periodical 1 (1):60-70.
    In an ever-changing world, when we search for answers on our present challenges, it can be tricky to extrapolate past realities when concerning science-based issues. Climate change, public health or artificial intelligence embody issues on how scientific evidence is often challenged, as false beliefs could drive the design of public policies and legislation. Therefore , how can we foresee if science can tip the scales of political legislation? In this article, we outline how models of historical cases can (...)
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  24. Gregory Bateson on the sense of the unity of science.Terence Rajivan Edward - manuscript
    Anthropologist Gregory Bateson says that a sense of the fundamental unity of science was once achieved by successful specialist scientists expanding into borderline areas of research. I distinguish two ways in which this expansion can occur and note how one of these ways was, from Bateson’s perspective, troublesome for social anthropology.
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  25. Exploring the Professional Trajectories of Bachelor of Science in Business Administration Graduates of San Isidro College: An In-Depth Tracer Study.Aurence Nichole Hallsago & Evan Taja-on - 2023 - School of Education Research Journal 4 (1):152-166.
    The tracer study for the Bachelor of Science in Business Administration (BSBA) degree with Business Economics (BE), Financial Management (FM), Human Resource Management (HRM), and Marketing Management (MM) of the School of Business Administration (SBA) tracks and gathers information about the career outcomes and experiences of graduates of the degree program. This study focuses on determining the employment opportunities pursued by the graduates of 2018–2022, as well as exploring the influence their education from the SBA of San Isidro College (...)
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  26. Kuhn, Normativity and History and Philosophy of Science.Howard Sankey - 2012 - Epistemologia:103-111.
    This paper addresses the relationship between the history and philosophy of science by way of the issue of epistemic normativity. After brief discussion of the relationship between history and philosophy of science in Kuhn’s own thinking, the paper focuses on the implications of the history of science for epistemic normativity. There may be historical evidence for change of scientific methodology, which may seem to support a position of epistemic relativism. However, the fact that the methods of (...) undergo variation does not entail that epistemic justification varies with the methods employed by scientists. In order to arrive at the relativist conclusion, an epistemological argument is required that justification depends upon operative methods. This raises the question of epistemic normativity. Kuhn himself attempted to deal with this question on a number of occasions, but without success. Following brief discussion of Kuhn on this topic, the paper then turns to the treatment of epistemic normativity in the work of Lakatos, Laudan and Worrall. Lakatos and Laudan proposed that particular episodes from the history of science might be employed to adjudicate between alternative theories of method. Such episodes are selected on the basis of value judgements or pre-analytic intuitions, but such value judgements and intuitions are themselves problematic. Laudan later proposed the normative naturalist view that a rule of method is to be evaluated empirically on the basis of its reliability in conducing to a desired cognitive aim. Against this attempt to naturalize meta-methodology, Worrall argued that the normative force of the appeal to past reliability requires an a priori inductive principle. In my view, the problem of epistemic normativity is solved by combining the particularist focus on specific episodes in the history of science with the naturalistic account of the reliability of method. (shrink)
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  27. Cognitive Science of Religion and the Study of Theological Concepts.Helen De Cruz - 2014 - Topoi 33 (2):487-497.
    The cultural transmission of theological concepts remains an underexplored topic in the cognitive science of religion (CSR). In this paper, I examine whether approaches from CSR, especially the study of content biases in the transmission of beliefs, can help explain the cultural success of some theological concepts. This approach reveals that there is more continuity between theological beliefs and ordinary religious beliefs than CSR authors have hitherto recognized: the cultural transmission of theological concepts is influenced by content biases (...)
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  28. Algebra of Theoretical Term Reductions in the Sciences.Dale Jacquette - 2014 - Symposion: Theoretical and Applied Inquiries in Philosophy and Social Sciences 1 (1): 51-67.
    An elementary algebra identifies conceptual and corresponding applicational limitations in John Kemeny and Paul Oppenheim’s (K-O) 1956 model of theoretical reduction in the sciences. The K-O model was once widely accepted, at least in spirit, but seems afterward to have been discredited, or in any event superceeded. Today, the K-O reduction model is seldom mentioned, except to clarify when a reduction in the Kemeny-Oppenheim sense is not intended. The present essay takes a fresh look at the basic mathematics of K-O (...)
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  29. Epistemology of ignorance: the contribution of philosophy to the science-policy interface of marine biosecurity.Anne Schwenkenbecher, Chad L. Hewitt, Remco Heesen, Marnie L. Campbell, Oliver Fritsch, Andrew T. Knight & Erin Nash - 2023 - Frontiers in Marine Science 10:1-5.
    Marine ecosystems are under increasing pressure from human activity, yet successful management relies on knowledge. The evidence-based policy (EBP) approach has been promoted on the grounds that it provides greater transparency and consistency by relying on ‘high quality’ information. However, EBP also creates epistemic responsibilities. Decision-making where limited or no empirical evidence exists, such as is often the case in marine systems, creates epistemic obligations for new information acquisition. We argue that philosophical approaches can inform the science-policy interface. Using (...)
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  30. The Conceptual Access-NeTwORk (CANTOR) Thesis: Theorizing the Development or Success of New Internet-Based Products, Services, or Technologies.La Shun L. Carroll - 2023 - Indonesian Journal of Innovation and Applied Sciences (Ijias) 3 (2):86-98.
    For any new internet-based product, service, or technology to succeed, it must satisfy the criterion of providing access to or creating a network of possible users, products, and services. This is the Conceptual Access-Network (CANTOR) Thesis proposed. In addition to the main issues of success and how and why internet technology evolves, the principle can also meet the objective of explaining what underlies a range of traditional and nontraditional technologies beyond the internet. Through qualitative exploration, the tenets of the (...)
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  31. Consequences of Rorty’s Pragmatism in Science.Nalliely Hernández - 2017 - European Journal of Pragmatism and American Philosophy 9 (2):245-254.
    The aim of this article is to outline a pragmatist image of science following Rorty’s discussions and critics of epistemology and to develop some consequences of it in the philosophical analysis and its relations to culture. I will deal with some aspects of how scientific practice is construed and understood, and also outline the shift in Philosophy of Science from epistemological to ethical-political concerns that are implied in his proposal. I will contend that this perspective suggests an interesting (...)
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  32. Nature, Science, Bayes 'Theorem, and the Whole of Reality‖.Moorad Alexanian - manuscript
    A fundamental problem in science is how to make logical inferences from scientific data. Mere data does not suffice since additional information is necessary to select a domain of models or hypotheses and thus determine the likelihood of each model or hypothesis. Thomas Bayes’ Theorem relates the data and prior information to posterior probabilities associated with differing models or hypotheses and thus is useful in identifying the roles played by the known data and the assumed prior information when making (...)
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    A global taxonomy of interpretable AI: unifying the terminology for the technical and social sciences.Lode Lauwaert - 2023 - Artificial Intelligence Review 56:3473–3504.
    Since its emergence in the 1960s, Artifcial Intelligence (AI) has grown to conquer many technology products and their felds of application. Machine learning, as a major part of the current AI solutions, can learn from the data and through experience to reach high performance on various tasks. This growing success of AI algorithms has led to a need for interpretability to understand opaque models such as deep neural networks. Various requirements have been raised from diferent domains, together with numerous (...)
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  34. Reference, Success and Entity Realism.Howard Sankey - 2012 - Kairos. Revista de Filosofia and Ciência 5:31-42.
    The paper discusses the version of entity realism presented by Ian Hacking in his book, Representing and Intervening. Hacking holds that an ontological form of scientific realism, entity realism, may be defended on the basis of experimental practices which involve the manipulation of unobservable entities. There is much to be said in favour of the entity realist position that Hacking defends, especially the pragmatist orientation of his approach to realism. But there are problems with the position. The paper explores two (...)
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  35. Reducing the Inadvertent Spread of Retracted Science: recommendations from the RISRS report.Jodi Schneider, Nathan D. Woods, Randi Proescholdt & The Risrs Team - 2022 - Research Integrity and Peer Review 7 (1).
    Background Retraction is a mechanism for alerting readers to unreliable material and other problems in the published scientific and scholarly record. Retracted publications generally remain visible and searchable, but the intention of retraction is to mark them as “removed” from the citable record of scholarship. However, in practice, some retracted articles continue to be treated by researchers and the public as valid content as they are often unaware of the retraction. Research over the past decade has identified a number of (...)
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  36. Science and comics: from popularization to the discipline of Comics Studies.O. Hudoshnyk & Oleksandr P. Krupskyi - 2022 - History of Science and Technology 12 (2):210-230.
    Modern scientific communication traditionally uses visual narratives, such as comics, for education, presentation of scientific achievements to a mass audience, and as an object of research. The article offers a three-level characterization of the interaction of comic culture and science in a diachronic aspect. Attention is focused not only on the chronological stages of these intersections, the expression of the specifics of the interaction is offered against the background of scientific and public discussions that accompany the comics–science dialogue (...)
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  37. (1 other version)Vital anti-mathematicism and the ontology of the emerging life sciences: from Mandeville to Diderot.Charles T. Wolfe - 2017 - Synthese:1-22.
    Intellectual history still quite commonly distinguishes between the episode we know as the Scientific Revolution, and its successor era, the Enlightenment, in terms of the calculatory and quantifying zeal of the former—the age of mechanics—and the rather scientifically lackadaisical mood of the latter, more concerned with freedom, public space and aesthetics. It is possible to challenge this distinction in a variety of ways, but the approach I examine here, in which the focus on an emerging scientific field or cluster of (...)
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  38. What Elements of Successful Scientific Theories Are the Correct Targets for “Selective” Scientific Realism?Dean Peters - 2014 - Philosophy of Science 81 (3):377-397.
    Selective scientific realists disagree on which theoretical posits should be regarded as essential to the empirical success of a scientific theory. A satisfactory account of essentialness will show that the (approximate) truth of the selected posits adequately explains the success of the theory. Therefore, (a) the essential elements must be discernible prospectively; (b) there cannot be a priori criteria regarding which type of posit is essential; and (c) the overall success of a theory, or ‘cluster’ of propositions, (...)
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  39. From successful measurement to the birth of a law: Disentangling coordination in Ohm's scientific practice.Michele Luchetti - 2020 - Studies in History and Philosophy of Science Part A 84 (C):119-131.
    In this paper, I argue for a distinction between two scales of coordination in scientific inquiry, through which I reassess Georg Simon Ohm’s work on conductivity and resistance. Firstly, I propose to distinguish between measurement coordination, which refers to the specific problem of how to justify the attribution of values to a quantity by using a certain measurement procedure, and general coordination, which refers to the broader issue of justifying the representation of an empirical regularity by means of abstract mathematical (...)
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  40. 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 against (...)
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  41. The Classification of the Sciences and Cross-disciplinarity.Jaime Nubiola - 2005 - Transactions of the Charles S. Peirce Society 41 (2):271-282.
    In a world of ever growing specialization, the idea of a unity of science is commonly discarded, but cooperative work involving cross-disciplinary points of view is encouraged. The aim of this paper is to show with some textual support that Charles S. Peirce not only identified this paradoxical situation a century ago, but he also mapped out some paths for reaching a successful solution. A particular attention is paid to Peirce's classification of the sciences and to his conception of (...)
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  42. What’s Wrong With Science? Towards a People’s Rational Science of Delight and Compassion, Second Edition.Nicholas Maxwell - 2009 - London: Pentire Press.
    What ought to be the aims of science? How can science best serve humanity? What would an ideal science be like, a science that is sensitively and humanely responsive to the needs, problems and aspirations of people? How ought the institutional enterprise of science to be related to the rest of society? What ought to be the relationship between science and art, thought and feeling, reason and desire, mind and heart? Should the social sciences (...)
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  43. A mug's game? Solving the problem of induction with metaphysical presuppositions.Nicholas Maxwell - 2017 - In Karl Popper, Science and Enlightenment. London: UCL Press.
    This paper argues that a view of science, expounded and defended elsewhere, solves the problem of induction. The view holds that we need to see science as accepting a hierarchy of metaphysical theses concerning the comprehensibility and knowability of the universe, these theses asserting less and less as we go up the hierarchy. It may seem that this view must suffer from vicious circularity, in so far as accepting physical theories is justified by an appeal to metaphysical theses (...)
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  44. Spiritual Wisdom Guaranteed Prescription of Success & Happiness.Dr Ramesh Singh Pal - 2020 - Chennai, Tamil Nadu, India: Notion Press.
    Everything and every word about spirituality have already been said but the practical utility of spiritual wisdom in day to day life to achieve success and live a blissful life is lacking. Spiritual wisdom not only shows us the path of salvation and freedom but also helps us to figure out the solutions for every problem in all walks of human life and civilization. Spirituality is a well-defined, scientific way to get any goal in life whether it is for (...)
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  45. Explanatory Failures of Relative Realism.Seungbae Park - 2015 - Epistemologia 38 (1):16-28.
    Scientific realism (Putnam 1975; Psillos 1999) and relative realism (Mizrahi 2013) claim that successful scientific theories are approximately true and comparatively true, respectively. A theory is approximately true if and only if it is close to the truth. A theory is comparatively true if and only if it is closer to the truth than its competitors are. I argue that relative realism is more skeptical about the claims of science than it initially appears to be and that it can (...)
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  46. Philosophical Management of Stress based on Science and Epicurean Pragmatism: A Pilot Study.Christos Yapijakis, Evangelos D. Protopapadakis & George P. Chrousos - 2022 - Conatus 7 (2):229-242.
    In the first months of the COVID-19 pandemic, we created and implemented from November 2020 to February 2021 a monthly educational pilot program of philosophical management of stress based on Science, Humanism and Epicurean Pragmatism, which was offered to employees of 26 municipalities in the Prefecture of Attica, Greece. The program named “Philosophical Distress Management Operation System” (Philo.Di.M.O.S.) is novel and unique in its kind, as it combines a certain Greek philosophical tradition (Epicurean) that concurs with modern scientific knowledge. (...)
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  47. The commercialization of the biomedical sciences: (mis)understanding bias.Inmaculada de Melo-Martín - 2019 - History and Philosophy of the Life Sciences 41 (3):34.
    The growing commercialization of scientific research has raised important concerns about industry bias. According to some evidence, so-called industry bias can affect the integrity of the science as well as the direction of the research agenda. I argue that conceptualizing industry’s influence in scientific research in terms of bias is unhelpful. Insofar as industry sponsorship negatively affects the integrity of the research, it does so through biasing mechanisms that can affect any research independently of the source of funding. Talk (...)
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  48. The Empirical Interpretation of French Cartesianism: the Académie des Sciences, the Journal des Sçavans and the Relationship with the Royal Society.Nausicaa Elena Milani - 2014 - Noctua 1 (2):312-480.
    The Système de philosophie by Pierre Sylvain Régis can be considered as the achievement both of the scientific liveliness of the Académie des Sciences in the 17th century and of its fruitful relationship with the Royal Society. Since it aims to shape the new conception of the universe in terms of a system, the Système represents one of the most mature achievements of Cartesian philosophy and it is characterized by an empirical interpretation of Descartes’ thought. The Système therefore reflects two (...)
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  49. A Pessimistic Induction against Scientific Antirealism.Seungbae Park - 2014 - Organon F: Medzinárodný Časopis Pre Analytickú Filozofiu 21 (1):3-21.
    There are nine antirealist explanations of the success of science in the literature. I raise difficulties against all of them except the latest one, and then construct a pessimistic induction that the latest one will turn out to be problematic because its eight forerunners turned out to be problematic. This pessimistic induction is on a par with the traditional pessimistic induction that successful present scientific theories will be revealed to be false because successful past scientific theories were revealed (...)
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  50. Model robustness as a confirmatory virtue: The case of climate science.Elisabeth A. Lloyd - 2015 - Studies in History and Philosophy of Science Part A 49:58-68.
    I propose a distinct type of robustness, which I suggest can support a confirmatory role in scientific reasoning, contrary to the usual philosophical claims. In model robustness, repeated production of the empirically successful model prediction or retrodiction against a background of independentlysupported and varying model constructions, within a group of models containing a shared causal factor, may suggest how confident we can be in the causal factor and predictions/retrodictions, especially once supported by a variety of evidence framework. I present climate (...)
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