Results for 'Philosophy of science, scientific method, hypothetico-deductive method'

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  1. Changing Fortunes of the Method of Hypothesis. [REVIEW]Andrew Lugg - 1984 - Erkenntnis 21 (3):433 - 438.
    Review of Larry Laudan, Science and Hypothesis.
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  2. Scientific method.Howard Sankey - 2005 - In Martin Curd & Stathis Psillos (eds.), The Routledge Companion to Philosophy of Science. New York: Routledge. pp. 248-258.
    This is an introductory overview of theories of scientific method.
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  3. Recipes for Science: An Introduction to Scientific Methods and Reasoning (2nd edition).Angela Potochnik, Matteo Colombo & Cory Wright - 2024 - Routledge.
    Scientific literacy is an essential aspect of an undergraduate education. Recipes for Science responds to this need by providing an accessible introduction to the nature of science and scientific methods appropriate for any beginning college student. The book is adaptable to a wide variety of different courses, such as introductions to scientific reasoning, methods courses in scientific disciplines, science education, and philosophy of science. -/- Recipes for Science ​​was first published in 2018, and a thoroughly (...)
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  4. Hypothesis Testing in Scientific Practice: An Empirical Study.Moti Mizrahi - 2020 - International Studies in the Philosophy of Science 33 (1):1-21.
    It is generally accepted among philosophers of science that hypothesis testing is a key methodological feature of science. As far as philosophical theories of confirmation are con...
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  5. The Case Study Method in Philosophy of Science: An Empirical Study.Moti Mizrahi - 2020 - Perspectives on Science 28 (1):63-88.
    There is an ongoing methodological debate in philosophy of science concerning the use of case studies as evidence for and/or against theories about science. In this paper, I aim to make a contribution to this debate by taking an empirical approach. I present the results of a systematic survey of the PhilSci-Archive, which suggest that a sizeable proportion of papers in philosophy of science contain appeals to case studies, as indicated by the occurrence of the indicator words “case (...)
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  6. Philosophy of Science and Scientific Whaling: Lost in Translation.Mohammad Rubaiyat Rahman - manuscript
    Through discussing scientific whaling, the paper brings the necessity of retrieving natural philosophy. The paper’s arguments favor an expanded vision of human encounter with nature, through the lens of natural philosophy, with a priority focus of expanding our imaginations to embrace the vast natural world. -/- There is no doubt that both the philosophy and science, two of the three significant areas of cultural and intellectual engagement (the other one is religion), have gone through changes over (...)
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  7. 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 from (...)
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  8. Philosophy of Science and Metaphysics.Craig Callender - 2011 - In Steven French & Juha Saatsi (eds.), Continuum Companion to the Philosophy of Science. Continuum. pp. 33--54.
    Philosophy of science appears caught in what Einstein (1933) called the ‘eternal antithesis between the two inseparable components of our knowledge – the empirical and the rational’ (p. 271). It wants to employ metaphysical speculation, but impressed with the methods of the subject it studies, it fears overreaching. Philosophy of science thus tries to walk a fine line between scientifically grounded metaphysics and its more speculative cousins. Here I try to draft some of the contour of this boundary.
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  9. The Pioneering Proving Methods as Applied in the Warsaw School of Logic – Their Historical and Contemporary Significance.Urszula Wybraniec-Skardowska - 2024 - History and Philosophy of Logic 45 (2):124-141.
    Justification of theorems plays a vital role in any rational human activity. It is indispensable in science. The deductive method of justifying theorems is used in all sciences and it is the only method of justifying theorems in deductive disciplines. It is based on the notion of proof, thus it is a method of proving theorems. In the Warsaw School of Logic (WSL) – the famous branch of the Lvov-Warsaw School (LWS) – two types of (...)
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  10. What is this thing called Philosophy of Science? A computational topic-modeling perspective, 1934–2015.Christophe Malaterre, Jean-François Chartier & Davide Pulizzotto - 2019 - Hopos: The Journal of the International Society for the History of Philosophy of Science 9 (2):215-249.
    What is philosophy of science? Numerous manuals, anthologies or essays provide carefully reconstructed vantage points on the discipline that have been gained through expert and piecemeal historical analyses. In this paper, we address the question from a complementary perspective: we target the content of one major journal of the field—Philosophy of Science—and apply unsupervised text-mining methods to its complete corpus, from its start in 1934 until 2015. By running topic-modeling algorithms over the full-text corpus, we identified 126 key (...)
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  11. Philosophy of Science: A User's Guide.Adrian Currie & Sophie Veigl (eds.) - forthcoming - MIT Press.
    Thought experiments play a role in science and in some central parts of contemporary philosophy. They used to play a larger role in philosophy of science, but have been largely abandoned as part of the field’s “practice turn”. This chapter discusses possible roles for thought experimentation within a practice-oriented philosophy of science. Some of these roles are uncontroversial, such as exemplification and aiding discovery. A more controversial role is the reliance on thought experiments to justify philosophical claims. (...)
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  12. A New Task for Philosophy of Science.Nicholas Maxwell - 2019 - Metaphilosophy 50 (3):316-338.
    This paper argues that philosophers of science have before them an important new task that they urgently need to take up. It is to convince the scientific community to adopt and implement a new philosophy of science that does better justice to the deeply problematic basic intellectual aims of science than that which we have at present. Problematic aims evolve with evolving knowledge, that part of philosophy of science concerned with aims and methods thus becoming an integral (...)
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  13. An Analysis of the Demarcation Problem in Philosophy of Science and Its Application to Homeopathy.Alper Bilgehan Yardımcı - 2018 - Flsf 1 (25):91-107.
    This paper presents a preliminary analysis of homeopathy from the perspective of the demarcation problem in the philosophy of science. In this context, Popper, Kuhn and Feyerabend’s solution to the problem will be given respectively and their criteria will be applied to homeopathy, aiming to shed some light on the controversy over its scientific status. It then examines homeopathy under the lens of demarcation criteria to conclude that homeopathy is regarded as science by Feyerabend and is considered as (...)
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  14. Philosophical reasoning about science: a quantitative, digital study.Moti Mizrahi & Michael Adam Dickinson - 2022 - Synthese 200 (2).
    In this paper, we set out to investigate the following question: if science relies heavily on induction, does philosophy of science rely heavily on induction as well? Using data mining and text analysis methods, we study a large corpus of philosophical texts mined from the JSTOR database (n = 14,199) in order to answer this question empirically. If philosophy of science relies heavily on induction, just as science supposedly does, then we would expect to find significantly more inductive (...)
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  15. Philosophy of Science and History of Science: A Productive Engagement.Eric Palmer - 1991 - Dissertation, University of California, San Diego
    Philosophy of science and history of science both have a significant relation to science itself; but what is their relation to each other? That question has been a focal point of philosophical and historical work throughout the second half of this century. An analysis and review of the progress made in dealing with this question, and especially that made in philosophy, is the focus of this thesis. Chapter one concerns logical positivist and empiricist approaches to philosophy of (...)
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  16. The Dilemma of Case Studies Resolved: The Virtues of Using Case Studies in the History and Philosophy of Science.Richard M. Burian - 2001 - Perspectives on Science 9 (4):383-404.
    Philosophers of science turned to historical case studies in part in response to Thomas Kuhn's insistence that such studies can transform the philosophy of science. In this issue Joseph Pitt argues that the power of case studies to instruct us about scientific methodology and epistemology depends on prior philosophical commitments, without which case studies are not philosophically useful. Here I reply to Pitt, demonstrating that case studies, properly deployed, illustrate styles of scientific work and modes of argumentation (...)
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  17. Instrumentalist logic of scientific discovery: reflections on Dewey’s method and its metaphysical foundations.Andrii Leonov - 2020 - Actual Problems of Mind. Philosophy Journal 21:2-23.
    In this paper, I attempt to clarify the heart of Dewey’s philosophy: his method (denotative method (DM) / pattern of inquiry (PI)). Despite the traditional understanding of Dewey as anti-foundationalist, I want to show that Dewey did have metaphysical foundations for his method: the principle of continuity or theory of emergentism. I also argue that Dewey’s metaphysical position is better named as ‘cultural emergentism’, rather than his own term ‘cultural naturalism’. What Dewey called ‘common sense’ in (...)
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  18. CRITIQUE OF IMPURE REASON: Horizons of Possibility and Meaning.Steven James Bartlett - 2021 - Salem, USA: Studies in Theory and Behavior.
    PLEASE NOTE: This is the corrected 2nd eBook edition, 2021. ●●●●● _Critique of Impure Reason_ has now also been published in a printed edition. To reduce the otherwise high price of this scholarly, technical book of nearly 900 pages and make it more widely available beyond university libraries to individual readers, the non-profit publisher and the author have agreed to issue the printed edition at cost. ●●●●● The printed edition was released on September 1, 2021 and is now available through (...)
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  19. Anti-Scientism, Conceptual Analysis and High-End Science Journalism.Filip Tvrdý - 2016 - Czech and Slovak Journal of Humanities: Philosophica 3 (1):70-76.
    In Ancient Greece, when philosophy began, it included all the theoretical knowledge. But later, in the time of Aristotle, specialized sciences started to emerge and the scope of philosophy grew smaller and smaller. The question is what to do when philosophy has lost its competence to deal with any relevant topic. The paper discusses three possible views of the relation between philosophy and science: anti-scientism, conceptual analysis and naturalism. All these approaches deal with various disadvantages. For (...)
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  20. Feyerabend’s Philosophy of Science and its Implications for National Development in Africa.Chris O. Akpan - 2005 - Journal of Indian Council of Philosophical Research (JICPR) (4):45-55.
    The thesis of this article is that Feyerabend’s philosophy of science, hinged on his pillar of ‘anarchism’ and ‘anything goes’ can serve as a challenge for scientific and technological development in Africa. Africa has been largely tagged as ‘underdeveloped’ because she has failed to chart her own course of scientific development, and has somewhat felt satisfied playing the dependent role. This work agrees with Feyerabend’s thesis that knowledge (scientific) is a local commodity designed to solve local (...)
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  21. Igwebuike Philosophy of Science and Technology.Kanu Ikechukwu Anthony & Ikechukwu Anthony Kanu - 2020 - AMAMIHE Journal of Applied Philosophy 8 (18):1-15.
    Contrary to the opinion of some scholars which holds that science is independent of particular worldviews in its presuppositions and method, this paper argues that although the presuppositions of science have no worldview content, science may provide evidence that has a bearing on a certain worldview . This dependence on a worldview is what gives science some level of political autonomy ; that is, some kind of scientific citizenship in philosophy that gives credence to a form of (...)
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  22. A New Task for the Philosophy of Science.Nicholas Maxwell - 2019 - Metaphilosophy (3):316-338.
    We philosophers of science have before us an important new task that we need urgently to take up. It is to convince the scientific community to adopt and implement a new philosophy of science that does better justice to the deeply problematic basic intellectual aims of science than that which we have at present. Problematic aims evolve with evolving knowledge, that part of philosophy of science concerned with aims and methods thus becoming an integral part of science (...)
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  23. A critique of Popper's views on scientific method.Nicholas Maxwell - 1972 - Philosophy of Science 39 (2):131-152.
    This paper considers objections to Popper's views on scientific method. It is argued that criticism of Popper's views, developed by Kuhn, Feyerabend, and Lakatos, are not too damaging, although they do require that Popper's views be modified somewhat. It is argued that a much more serious criticism is that Popper has failed to provide us with any reason for holding that the methodological rules he advocates give us a better hope of realizing the aims of science than any (...)
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  24. Chomsky vis-a-vis the Methodology of Science.Thomas Johnston - manuscript
    (1) In the first part of this paper, I review Chomsky's meandering journey from the formalism/mentalism of Syntactic Structures, through several methodological positions, to the minimalist theory of his latest work. Infected with mentalism from first to last, each and every position vitiates Chomsky's repeated claims that his theories will provide useful guidance to later theories in such fields as cognitive psychology and cognitive neuroscience. With the guidance of his insights, he claims, psychologists and neuroscientists will be able to avoid (...)
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  25. New Perspective for the Philosophy of Science: Re-Construction and Definition of New Branches & Hierarchy of Sciences.Refet Ramiz - 2016 - Philosophy Study 6 (7):377-416.
    In this work, author evaluated past theories and perspectives behind the definitions of science and/or branches of science. Also some of the philosophers of science and their specific philosophical interests were expressed. Author considered some type of interactions between some disciplines to determine, to solve the philosophical/scientific problems and to define the possible solutions. The purposes of this article are: (i) to define new synthesis method, (ii) to define new perspective for the philosophy of science, (iii) to (...)
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  26. Philosophy of Science, Network Theory, and Conceptual Change: Paradigm Shifts as Information Cascades.Patrick Grim, Joshua Kavner, Lloyd Shatkin & Manjari Trivedi - forthcoming - In Euel Elliot & L. Douglas Kiel (eds.), Complex Systems in the Social and Behavioral Sciences: Theory, Method, and Application. University of Michigan Press.
    Philosophers have long tried to understand scientific change in terms of a dynamics of revision within ‘theoretical frameworks,’ ‘disciplinary matrices,’ ‘scientific paradigms’ or ‘conceptual schemes.’ No-one, however, has made clear precisely how one might model such a conceptual scheme, nor what form change dynamics within such a structure could be expected to take. In this paper we take some first steps in applying network theory to the issue, modeling conceptual schemes as simple networks and the dynamics of change (...)
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  27. The Need for a Revolution in the Philosophy of Science.Nicholas Maxwell - 2002 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 33 (2):381-408.
    There is a need to bring about a revolution in the philosophy of science, interpreted to be both the academic discipline, and the official view of the aims and methods of science upheld by the scientific community. At present both are dominated by the view that in science theories are chosen on the basis of empirical considerations alone, nothing being permanently accepted as a part of scientific knowledge independently of evidence. Biasing choice of theory in the direction (...)
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  28. The change of scientific knowledge of Thomas Kuhn and Karl Popper.Ayça Solak - 2021 - Dissertation,
    This thesis study is about the leading philosophers of philosophy of science of the twentieth century Karl Popper and Thomas Kuhn and their asserted views about science and scientific knowledge and the method, standard and limit of science. Popper who emphasises the deductive method of science and its standard which should be falsifiable indicates that scientific knowledge should have a testable and falsifiable pattern. Kuhn, on the other hand, discusses the standard of scientificity connected (...)
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  29. The Ambiguous Legacy of Kuhn's Structure for Normative Philosophy of Science.Jonathan Y. Tsou - 2024 - In K. Brad Wray (ed.), Kuhn's The Structure of Scientific Revolutions at 60. Cambridge University Press. pp. 217-234.
    This chapter examines the legacy of Kuhn’s Structure for normative philosophy of science. As an argument regarding the history of 20th century philosophy of science, I contend that the main legacy of Structure was destructive: Structure shifted philosophy of science away from addressing general normative philosophical issues (e.g., the demarcation problem, empirical testability) towards more deflationary and local approaches to normative issues. This is evident in the first generation of post-Structure philosophers of science in the 1980s and (...)
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  30. Philosophy of science in practice and weak scientism together apart.Luana Poliseli & Federica Russo - 2022 - In Moti Mizrahi Mizrahi (ed.), For and Against Scientism: Science, Methodology, and the Future of Philosophy. Lanham: Rowman & Littlefield Publishers. pp. 0-0.
    The term ‘scientism’ has not attracted consensus about its meaning or about its scope of application. In this paper, we consider Mizrahi’s suggestion to distinguish ‘Strong’ and ‘Weak’ scientism, and the consequences this distinction may have for philosophical methodology. While we side with Mizrahi that his definitions help advance the debate, by avoiding verbal dispute and focussing on questions of method, we also have concerns about his proposal as it defends a hierarchy of knowledge production. Mizrahi’s position is that (...)
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  31. Normativity in the Philosophy of Science.Marie I. Kaiser - 2019 - Metaphilosophy 50 (1-2):36-62.
    This paper analyzes what it means for philosophy of science to be normative. It argues that normativity is a multifaceted phenomenon rather than a general feature that a philosophical theory either has or lacks. It analyzes the normativity of philosophy of science by articulating three ways in which a philosophical theory can be normative. Methodological normativity arises from normative assumptions that philosophers make when they select, interpret, evaluate, and mutually adjust relevant empirical information, on which they base their (...)
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  32. Recipes for Science: An Introduction to Scientific Methods and Reasoning.Angela Potochnik, Matteo Colombo & Cory Wright - 2018 - New York: Routledge.
    There is widespread recognition at universities that a proper understanding of science is needed for all undergraduates. Good jobs are increasingly found in fields related to Science, Technology, Engineering, and Medicine, and science now enters almost all aspects of our daily lives. For these reasons, scientific literacy and an understanding of scientific methodology are a foundational part of any undergraduate education. Recipes for Science provides an accessible introduction to the main concepts and methods of scientific reasoning. With (...)
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  33. Spinoza and the Philosophy of Science: Mathematics, Motion, and Being.Eric Schliesser - 1986, 2002
    This chapter argues that the standard conception of Spinoza as a fellow-travelling mechanical philosopher and proto-scientific naturalist is misleading. It argues, first, that Spinoza’s account of the proper method for the study of nature presented in the Theological-Political Treatise (TTP) points away from the one commonly associated with the mechanical philosophy. Moreover, throughout his works Spinoza’s views on the very possibility of knowledge of nature are decidedly sceptical (as specified below). Third, in the seventeenth-century debates over proper (...)
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  34. Collingwood, Pragmatism, and Philosophy of Science.Elena Popa - 2018 - In Karim Dharamsi, Giuseppina D'Oro & Stephen Leach (eds.), Collingwood on Philosophical Methodology. Cham: Springer Verlag. pp. 131-149.
    This paper argues that there are notable similarities between Collingwood’s method of investigating absolute presuppositions and contemporary strands of pragmatism, focusing on two areas - the critique of realism and causation. It is first argued that there are methodological similarities between Collingwood’s argument against realism and his Kantian-inspired critique of metaphysics, and Putnam’s critique of externalism. Regarding causation, it is argued that Collingwood’s view and Price’s pragmatist approach have a common method – investigating causation in the context of (...)
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  35. Scientific Conjectures and the Growth of Knowledge.Sanjit Chakraborty - 2021 - Journal of the Indian Council of Philosophical Research 38 (1):83-101.
    A collective understanding that traces a debate between ‘what is science?’ and ‘what is a science about?’ has an extraction to the notion of scientific knowledge. The debate undertakes the pursuit of science that hardly extravagance the dogma of pseudo-science. Scientific conjectures invoke science as an intellectual activity poured by experiences and repetition of the objects that look independent of any idealist views (believes in the consensus of mind-dependence reality). The realistic machinery employs in an empiricist exposition of (...)
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  36. Digital Literature Analysis for Empirical Philosophy of Science.Oliver M. Lean, Luca Rivelli & Charles H. Pence - 2021 - British Journal for the Philosophy of Science (4):875-898.
    Empirical philosophers of science aim to base their philosophical theories on observations of scientific practice. But since there is far too much science to observe it all, how can we form and test hypotheses about science that are sufficiently rigorous and broad in scope, while avoiding the pitfalls of bias and subjectivity in our methods? Part of the answer, we claim, lies in the computational tools of the digital humanities, which allow us to analyze large volumes of scientific (...)
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  37. The Metaphysics of Science and Aim-Oriented Empiricism: A Revolution for Science and Philosophy.Nicholas Maxwell - 2018 - Cham, Switzerland: Springer Nature.
    This book gives an account of work that I have done over a period of decades that sets out to solve two fundamental problems of philosophy: the mind-body problem and the problem of induction. Remarkably, these revolutionary contributions to philosophy turn out to have dramatic implications for a wide range of issues outside philosophy itself, most notably for the capacity of humanity to resolve current grave global problems and make progress towards a better, wiser world. A key (...)
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  38. Uma Breve Introdução à Filosofia da Ciência em Prática [A Brief Introduction to Philosophy of Science in Practice].Luana Poliseli - 2019 - Perspectiva Filosófica 46 (2):222-241.
    Philosophy of science studies science and the production of scientific knowledge. Usually, philosophical investigations of this field focus mainly on metaphysical, epistemological, and methodological aspects of science. Despite being divided into the general philosophy of science and philosophy of special sciences, philosophy of science, in a general way, is still distant from scientific practice per se. In order to fill this gap, a third subfield has emerged, philosophy of science in practice. This article (...)
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  39. Scientismus, vědecký imperialismus a hranice vědeckého poznání.Filip Tvrdý - 2019 - In Mariana Szapuová, Martin Nuhlíček & Michal Chabada (eds.), Veda, spoločnosť a hodnoty. pp. 21-33.
    The indisputable success of experimental science caused a division in philosophy at the turn of the 21st century. A substantial part of philosophers was inspired by ground-breaking writings of W. V. O. Quine and they followed philosophical naturalism that considers hypothetical-deductive method the most effective or the only way to acquire justified true beliefs. Other philosophers are worried about the hegemony of empirical sciences and warn against excessive ambitions of scientific methodology. Scientism or scientific imperialism (...)
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  40. Walter Dubislav’s Philosophy of Science and Mathematics.Nikolay Milkov - 2016 - Hopos: The Journal of the International Society for the History of Philosophy of Science 6 (1):96-116.
    Walter Dubislav (1895–1937) was a leading member of the Berlin Group for scientific philosophy. This “sister group” of the more famous Vienna Circle emerged around Hans Reichenbach’s seminars at the University of Berlin in 1927 and 1928. Dubislav was to collaborate with Reichenbach, an association that eventuated in their conjointly conducting university colloquia. Dubislav produced original work in philosophy of mathematics, logic, and science, consequently following David Hilbert’s axiomatic method. This brought him to defend formalism in (...)
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  41. 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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  42. Music between Philosophy and Science: The Applicability of Scientific Results to the Philosophy of Music.Sanja Sreckovic - 2019 - Dissertation, University of Belgrade
    The dissertation discusses the relationship between two approaches to researching music: the empirical approach of experimental psychology and cognitive neuroscience, and the speculative approach of philosophical aesthetics of music. The aim of the dissertation is to determine the relationship between problems, conceptual frameworks, and domains of inquiry of the two approaches. The dissertation should answer whether the philosophical and the empirical approach deal with the same, or at least relatable aspects of music. In particular, it should answer whether the results (...)
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  43. Wittgenstein among the sciences: Wittgensteinian investigations into the "scientific method".Rupert J. Read - 2011 - Burlington, VT: Ashgate. Edited by Simon Summers.
    Engaging with the question of the extent to which the so-called human, economic or social sciences are actually sciences, this book moves away from the search for a criterion or definition that will allow us to sharply distinguish the scientific from the non-scientific. Instead, the book favours the pursuit of clarity with regard to the various enterprises undertaken by human beings, with a view to dissolving the felt need for such a demarcation. In other words, Read pursues a (...)
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  44. Hermann Cohen’s History and Philosophy of Science.Lydia Patton - 2004 - Dissertation, Mcgill University
    In my dissertation, I present Hermann Cohen's foundation for the history and philosophy of science. My investigation begins with Cohen's formulation of a neo-Kantian epistemology. I analyze Cohen's early work, especially his contributions to 19th century debates about the theory of knowledge. I conclude by examining Cohen's mature theory of science in two works, The Principle of the Infinitesimal Method and its History of 1883, and Cohen's extensive 1914 Introduction to Friedrich Lange's History of Materialism. In the former, (...)
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  45. Towards Descartes’ Scientific Method: a posteriori Evidence and the Rhetoric of Les Météores.Patrick Brissey - 2018 - In James A. T. Lancaster & Richard Raiswell (eds.), Evidence in the Age of the New Sciences. Cham: Springer. pp. pp. 77-99.
    I argue that Descartes uses his method as evidence in the Discours and Les Météores. I begin by establishing there is a single method in Descartes’ works, using his meteorology as a case study. First, I hold that the method of the Regulae is best explained by two examples: one scientific, his proof of the anaclastic curve (1626), and one metaphysical, his question of the essence and scope of human knowledge (1628). Based on this account, I (...)
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  46. 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 science (...)
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  47. Scientific rationality and scientific method.Dusan Galik - 2009 - Filozofia 64 (1):1-8.
    The aim of the paper is to give a description of the development of understanding scientific method in the history of science and philosophy of science. The thesis is defended that crucial changes in understanding scientific method had fundamental consequences for the development in scientific knowledge, for the position of science in the system of knowledge and for its role in human culture. Basic attitudes to scientific method in contemporary philosophy and (...)
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  48. Scientific Realism in the Wild: An Empirical Study of Seven Sciences and History and Philosophy of Science.James R. Beebe & Finnur Dellsén - 2020 - Philosophy of Science 87 (2):336-364.
    We report the results of a study that investigated the views of researchers working in seven scientific disciplines and in history and philosophy of science in regard to four hypothesized dimensions of scientific realism. Among other things, we found that natural scientists tended to express more strongly realist views than social scientists, that history and philosophy of science scholars tended to express more antirealist views than natural scientists, that van Fraassen’s characterization of scientific realism failed (...)
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  49.  96
    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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  50. The scientific study of passive thinking: Methods of mind wandering research.Samuel Murray, Zachary C. Irving & Kristina Krasich - 2022 - In Felipe de Brigard & Walter Sinnott-Armstrong (eds.), Neuroscience and philosophy. Cambridge, Massachusetts: The MIT Press. pp. 389-426.
    The science of mind wandering has rapidly expanded over the past 20 years. During this boom, mind wandering researchers have relied on self-report methods, where participants rate whether their minds were wandering. This is not an historical quirk. Rather, we argue that self-report is indispensable for researchers who study passive phenomena like mind wandering. We consider purportedly “objective” methods that measure mind wandering with eye tracking and machine learning. These measures are validated in terms of how well they predict self-reports, (...)
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