Results for 'Phiosophy of science'

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  1. Should Scientists Ignore Philosophical Theories of Evidence?Jason Zarri - manuscript
    In his article “Why Philosophical Theories of Evidence Are (and Ought to Be) Ignored by Scientists,” Peter Achinstein argues that philosophical theories of evidence are ignored by scientists because they rest on assumptions which make their concepts of evidence too weak for scientists to work with, or which entail that the truth or falsity of evidential statements can be determined a priori. Given that, as Achinstein argues, the truth of many evidential statements can only be determined empirically, this “a priorist” (...)
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  2. More light and less heat Mirowski on economics and the energy metaphor.D. Wade Hands - 1992 - Philosophy of the Social Sciences 22 (1):97-111.
    Review Article on Mirowski's More Heat Than Light (1989).
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  3. Unity of Science.Tuomas E. Tahko - 2021 - Cambridge: Cambridge University Press.
    Unity of science was once a very popular idea among both philosophers and scientists. But it has fallen out of fashion, largely because of its association with reductionism and the challenge from multiple realisation. Pluralism and the disunity of science are the new norm, and higher-level natural kinds and special science laws are considered to have an important role in scientific practice. What kind of reductionism does multiple realisability challenge? What does it take to reduce one phenomenon (...)
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  4. Philosophy of Science for Sustainability Science.Michiru Nagatsu, Taylor Thiel Davis, C. Tyler DesRoches, Inkeri Koskinen, Miles MacLeod, Milutin Stojanovic & Henrik Thorén - 2020 - Sustainability Science 1 (N/A):1-11.
    Sustainability science seeks to extend scientific investigation into domains characterized by a distinct problem-solving agenda, physical and social complexity, and complex moral and ethical landscapes. In this endeavor it arguably pushes scientific investigation beyond its usual comfort zones, raising fundamental issues about how best to structure such investigation. Philosophers of science have long scrutinized the structure of science and scientific practices, and the conditions under which they operate effectively. We propose a critical engagement between sustainability scientists and (...)
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  5. Philosophy of science in Ukraine.Vladimir Kuznetsov - 2023 - In HPS&ST Newsletter April. pp. 4-12.
    Philosophy of Science; Ukraine; Polysytemic nature of theories; Practical theories; Subsystems of a theory.
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  6. Definite Descriptions and the Gettier Example.Christoph Schmidt-Petri & London School of Economics and Political Science - 2002 - CPNSS Discussion Papers.
    This paper challenges the first Gettier counterexample to the tripartite account of knowledge. Noting that 'the man who will get the job' is a description and invoking Donnellan's distinction between their 'referential' and 'attributive' uses, I argue that Smith does not actually believe that the man who will get the job has ten coins in his pocket. Smith's ignorance about who will get the job shows that the belief cannot be understood referentially, his ignorance of the coins in his pocket (...)
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  7. Philosophy of Science as First Philosophy The Liberal Polemics of Ernest Nagel.Eric Schliesser - 2021 - In Matthias Neuber & Adam Tamas Tuboly (eds.), Ernest Nagel: Philosophy of Science and the Fight for Clarity. Springer.
    This chapter explores Nagel’s polemics. It shows these have a two-fold character: (i) to defend liberal civilization against all kinds of enemies. And (ii) to defend what he calls ‘contextual naturalism.’ And the chapter shows that (i-ii) reinforce each other and undermine alternative political and philosophical programs. The chapter’s argument responds to an influential argument by George Reisch that Nagel’s professional stance represents a kind of disciplinary retreat from politics. In order to respond to Reisch the relationship between Nagel’s philosophy (...)
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  8.  81
    Metaphysics of Science and the Contingency Condition for Heterodox Sciences.S. M. Reza Amiri Tehrani - 2022 - Fundamental Research on Humanities 8 (2):31-54.
    Along with inefficiencies of mainstream sciences to find solutions for world problems, and besides the unpleasant difficulties in human lives due to such matters as poverty and economic gap, environmental pollution and climate change, the question raised is whether alternative sciences are contingent, which could preserve mainstream sciences’ potencies and avoid inefficiencies. Along this, religious incentives also seek ways to compromise sciences with divine learnings. To answer this question and benefit from alternative sciences, the contingency of heterodox sciences has to (...)
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  9. Why the Reward Structure of Science Makes Reproducibility Problems Inevitable.Remco Heesen - 2018 - Journal of Philosophy 115 (12):661-674.
    Recent philosophical work has praised the reward structure of science, while recent empirical work has shown that many scientific results may not be reproducible. I argue that the reward structure of science incentivizes scientists to focus on speed and impact at the expense of the reproducibility of their work, thus contributing to the so-called reproducibility crisis. I use a rational choice model to identify a set of sufficient conditions for this problem to arise, and I argue that these (...)
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  10.  74
    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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  11. 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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  12. Philosophy of science in practice in ecological model building.Luana Poliseli, Jeferson G. E. Coutinho, Blandina Viana, Federica Russo & Charbel N. El-Hani - 2022 - Biology and Philosophy 37 (4):0-0.
    This article addresses the contributions of the literature on the new mechanistic philosophy of science for the scientific practice of model building in ecology. This is reflected in a one-to-one interdisciplinary collaboration between an ecologist and a philosopher of science during science-in-the-making. We argue that the identification, reconstruction and understanding of mechanisms is context-sensitive, and for this case study mechanistic modeling did not present a normative role but a heuristic one. We expect our study to provides useful (...)
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  13. 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 as cascades (...)
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  14. Reconsidering Avicennan Theory of Science: Ṣadr al-Sharīʿa and Taftāzānī’s Discussions of the Issue of the Subject Matter.Kenan Tekin - 2023 - Beytulhikme An International Journal of Philosophy 13 (13:3):17-38.
    Post-classical period witnessed intense debates on aspects of the Avicennan theory of science. Among them one set of discussions concerned the issue of subject matter (mabāhith al-mawdūʿ) in a science. They were raised by Ṣadr al-Sharīʿa (d. 747/1346) in the introduction of his al-Tawḍīh, a commentary on his legal theory text al-Tanqīḥ. Therein, he raised three questions: (1) whether the subject matter of a science can be multiple, (2) what restricting subject matter of a science means, (...)
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  15. Speculative Philosophy of Science vs. Logical Positivism: Preliminary Round.Joel Katzav - forthcoming - In Sander Verhaegh (ed.), American Philosophy and the Intellectual Migration: Pragmatism, Logical Empiricism, Phenomenology, Critical Theory. Berlin: De Gruyter.
    I outline the theoretical framework of, and three research programs within American speculative philosophy of science during the period 1900-1931. One program applies verificationism to research in psychology, one investigates the methodology of research programs, and one analyses scientific explanation and other scientific concepts. The primary sources for my outline are works by Morris Raphael Cohen, Grace Andrus de Laguna, Theodore de Laguna, Edgar Arthur Singer Jr., Harold Robert Smart, and Marie Collins Swabey. I also use my outline to (...)
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  16. Institutional Degeneration of Science.Jüri Eintalu - 2021 - Philosophy Study 11 (2):116-123.
    The scientificity of the research should be evaluated according to the methodology used in the study. However, these are usually the research areas or the institutions that are classified as scientific or non-scientific. Because of various reasons, it may turn out that the scientific institutions are not producing science, while the “non-scientists” are doing real science. In the extreme case, the official science system is entirely corrupt, consisting of fraudsters, while the real scientists have been expelled from (...)
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  17. Images of Science.Howard Duncan & Andrew Lugg - 1988 - Canadian Journal of Philosophy 18 (4):795-804.
    Critical notice of Images of Science by P. M. Churchland and C. A. Hooker.
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  18. The Metaphysics of Science and Aim-Oriented Empiricism: A Revolution for Science and Philosophy.Nicholas Maxwell - 2019 - 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 element of the (...)
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  19. 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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  20. Socially relevant philosophy of science: An introduction.Kathryn S. Plaisance & Carla Fehr - 2010 - Synthese 177 (3):301-316.
    This paper provides an argument for a more socially relevant philosophy of science (SRPOS). Our aims in this paper are to characterize this body of work in philosophy of science, to argue for its importance, and to demonstrate that there are significant opportunities for philosophy of science to engage with and support this type of research. The impetus of this project was a keen sense of missed opportunities for philosophy of science to have a broader social (...)
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  21. Articulating the Aims of Science.Nicholas Maxwell - 1977 - Nature 265 (January 6):2.
    Most scientists and philosophers of science take for granted the standard empiricist view that the basic intellectual aim of science is truth per se. But this seriously misrepresents the aims of scieince. Actually, science seeks explanatory truth and, more generally, important truth. Problematic metaphysical and value assumptions are inherent in the real aims of science. Precisely because these aims are profoundly problematic, they need to be articulated, imaginatively explored and critically assesseed, in order to improve them, (...)
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  22. The diverse aims of science.Angela Potochnik - 2015 - Studies in History and Philosophy of Science Part A 53:71-80.
    There is increasing attention to the centrality of idealization in science. One common view is that models and other idealized representations are important to science, but that they fall short in one or more ways. On this view, there must be an intermediary step between idealized representation and the traditional aims of science, including truth, explanation, and prediction. Here I develop an alternative interpretation of the relationship between idealized representation and the aims of science. In my (...)
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  23. Unity of Science as a Working Hypothesis.Paul Oppenheim & Hilary Putnam - 1958 - Minnesota Studies in the Philosophy of Science 2:3-36.
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  24. The Democratization of Science.Faik Kurtulmus - 2021 - In Inkeri Koskinen, David Ludwig, Zinhle Mncube, Luana Poliseli & Luis Reyes-Galindo (eds.), Global Epistemologies and Philosophies of Science. New York: Routledge. pp. 145-154.
    The democratization of science entails the public having greater influence over science and that influence being shared more equally among members of the public. This chapter will present a thumbnail sketch of the arguments for the democratization of science based on the importance of collectively shaping science’s impact on society, the instrumental benefits of public participation in science, and the need to ensure that the use of science in politics does not undermine collective self-government. (...)
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  25. What Kind of Science is Simulation?Robb Eason, Robert Rosenberger, Trina Kokalis, Evan Selinger & Patrick Grim - 2007 - Journal for Experimental and Theoretical Artificial Intelligence 19:19-28.
    Is simulation some new kind of science? We argue that instead simulation fits smoothly into existing scientific practice, but does so in several importantly different ways. Simulations in general, and computer simulations in particular, ought to be understood as techniques which, like many scientific techniques, can be employed in the service of various and diverse epistemic goals. We focus our attentions on the way in which simulations can function as (i) explanatory and (ii) predictive tools. We argue that a (...)
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  26. Hume, the Philosophy of Science and the Scientific Tradition.Matias Slavov - 2019 - In Angela Michelle Coventry & Alex Sager (eds.), _The Humean Mind_. New York: Routledge. pp. 388-402.
    Although the main focus of Hume’s career was in the humanities, his work also has an observable role in the historical development of natural sciences after his time. To show this, I shall center on the relation between Hume and two major figures in the history of the natural sciences: Charles Darwin (1809–1882) and Albert Einstein (1879–1955). Both of these scientists read Hume. They also found parts of Hume’s work useful to their sciences. Inquiring into the relations between Hume and (...)
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  27. Social Constructivism and Methodology of Science.Gabriel Târziu - 2017 - Synthesis Philosophica 32 (2):449-466.
    Scientific practice is a type of social practice, and every enterprise of knowledge in general exhibits important social dimensions. But should the fact that scientific practice is born out of and tied to the collaborative efforts of the members of a social group be taken to affect the products of these practices as well? In this paper, I will try in to give an affirmative answer to this question. My strategy will be to argue that the aim of science (...)
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  28. The History of Science as a Graveyard of Theories: A Philosophers’ Myth?Moti Mizrahi - 2016 - International Studies in the Philosophy of Science 30 (3):263-278.
    According to the antirealist argument known as the pessimistic induction, the history of science is a graveyard of dead scientific theories and abandoned theoretical posits. Support for this pessimistic picture of the history of science usually comes from a few case histories, such as the demise of the phlogiston theory and the abandonment of caloric as the substance of heat. In this article, I wish to take a new approach to examining the ‘history of science as a (...)
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  29. Unification of Science - Einstein's Missing Steps in E=mc2 and His Missing Link to Quantum Gravity.Rodney Bartlett - 2018 - Beau Bassin, Mauritius: Lambert Academic Publishing.
    A Monograph Dealing With Unification In Relation To Dark Energy, Dark Matter, Cosmic Expansion, E=mc2, Quantum Gravity, "Imaginary" Computers, Creation Of The Infinite And Eternal Universe Using Electronic BITS + PI + "Imaginary" Time, Earthly Education, Science-Religion Union, The Human Condition, Superconductivity, Planetary Fields, How Gravitation Can Boost Health, Space-Time Propulsion From The Emdrive To The Brouwer Fixed-Point Theorem, "Light Matter", Etc. These Effects Were Originally Discussed In Several Short Internet Articles. Table Of Contents Introduction Superconductivity And Planetary Magnetic (...)
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  30. Dilthey on the unity of science.Nabeel Hamid - 2016 - British Journal for the History of Philosophy 24 (4):635-656.
    ABSTRACTThis paper elaborates a conception of the unity of science that emerges in the context of Dilthey’s well-known treatment of the distinction between the Naturwissenschaften and the Geisteswissenschaften. Dilthey’s account of the epistemological foundations of the Geisteswissenschaften presupposes, this paper argues, their continuity with the natural sciences. The unity of the two domains has both a psychological and a biological basis. Whereas the psychological functions at work in scientific thinking, the articulation of which is the task of Dilthey’s proposed (...)
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  31. Toward Philosophy of Science’s Social Engagement.Angela Potochnik & Francis Cartieri - 2013 - Erkenntnis 79 (Suppl 5):901-916.
    In recent years, philosophy of science has witnessed a significant increase in attention directed toward the field’s social relevance. This is demonstrated by the formation of societies with related agendas, the organization of research symposia, and an uptick in work on topics of immediate public interest. The collection of papers that follows results from one such event: a 3-day colloquium on the subject of socially engaged philosophy of science (SEPOS) held at the University of Cincinnati in October 2012. (...)
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  32. History of science and science combined: solving a historical problem in optics—the case of Galileo and his telescope.Giora Hon & Yaakov Zik - 2017 - Archive for History of Exact Sciences 71 (4):337-344.
    The claim that Galileo Galilei transformed the spyglass into an astronomical instrument has never been disputed and is considered a historical fact. However, the question what was the procedure which Galileo followed is moot, for he did not disclose his research method. On the traditional view, Galileo was guided by experience, more precisely, systematized experience, which was current among northern Italian artisans and men of science. In other words, it was a trial-and-error procedure—no theory was involved. A scientific analysis (...)
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  33. The Universe of Science. The Architectonic Ideas of Science, Sciences and Their Parts in Kant.Michael Lewin - 2020 - Kantian Journal 39 (2):26-45.
    I argue that Kant has developed a broad systematic account of the architectonic functionality of pure reason that can be used and advanced in contemporary contexts. Reason, in the narrow sense, is responsible for the picture of a well-ordered universe of science consisting of architectonic ideas of science, sciences and parts of sciences. In the first section (I), I show what Kant means by the architectonic ideas by explaining and interrelating the concepts of (a) the faculty of reason, (...)
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  34. PHILOSOPHY OF SCIENCE. Post-academic paradigm in the era of risk society The Textbook.V. Cheshko - manuscript
    The tutorial is an expanded and revised English version of the Ukrainian edition. (Filosofiya nauky: navch. posib OM Kuzʹ, VF Cheshko - Kharkiv: KHNEU im. S. Kuznetsya, 2017.). -/- .
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  35. 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 time. It is (...)
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  36. From philosophy of science to philosophy of literature (and back) via philosophy of mind. Philip Kitcher’s philosophical pendulum.Bence Nanay - 2013 - Theoria (77):257-264.
    A recent focus of Philip Kitcher’s research has been, somewhat surprisingly in the light of his earlier work, the philosophical analyses of literary works and operas. Some may see a discontinuity in Kitcher’s oeuvre in this respect – it may be difficult to see how his earlier contributions to philosophy of science relate to this much less mainstream approach to philosophy. The aim of this paper is to show that there is no such discontinuity: Kitcher’s contributions to the philosophy (...)
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  37. Philosophy of Science, Psychiatric Classification, and the DSM.Jonathan Y. Tsou - 2019 - In Şerife Tekin & Robyn Bluhm (eds.), The Bloomsbury Companion to Philosophy of Psychiatry. London: Bloomsbury. pp. 177-196.
    This chapter examines philosophical issues surrounding the classification of mental disorders by the Diagnostic and Statistical Manual of Mental Disorders (DSM). In particular, the chapter focuses on issues concerning the relative merits of descriptive versus theoretical approaches to psychiatric classification and whether the DSM should classify natural kinds. These issues are presented with reference to the history of the DSM, which has been published regularly by the American Psychiatric Association since 1952 and is currently in its fifth edition. While the (...)
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  38.  95
    Futures of Science for Policy in Europe: Scenarios and Policy Implications.Rene Von Schomberg - 2023 - Luxembourg: Publications Office of the European Union.
    This policy brief explores important trends for the future of science for policy in Europe and the challenges and opportunities that they present for the development of science for policy ecosystems in the European Union. On the background of an increasing prominence of science in public debates and an increasing willingness of governments to mobilize scientific advice, the policy brief explores trends that shape the practices and processes of information exchange between knowledge actors and policy-makers with the (...)
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  39.  63
    A Framework for Analyzing Broadly Engaged Philosophy of Science.Kathryn S. Plaisance & Kevin C. Elliott - 2021 - Philosophy of Science 88 (4):594-615.
    Philosophers of science are increasingly interested in engaging with scientific communities, policy makers, and members of the public; however, the nature of this engagement has not been systematically examined. Instead of delineating a specific kind of engaged philosophy of science, as previous accounts have done, this article draws on literature from outside the discipline to develop a framework for analyzing different forms of broadly engaged philosophy of science according to two key dimensions: social interaction and epistemic integration. (...)
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  40. Novelty versus Replicability: Virtues and Vices in the Reward System of Science.Felipe Romero - 2017 - Philosophy of Science 84 (5):1031-1043.
    The reward system of science is the priority rule. The first scientist making a new discovery is rewarded with prestige, while second runners get little or nothing. Michael Strevens, following Philip Kitcher, defends this reward system, arguing that it incentivizes an efficient division of cognitive labor. I argue that this assessment depends on strong implicit assumptions about the replicability of findings. I question these assumptions on the basis of metascientific evidence and argue that the priority rule systematically discourages replication. (...)
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  41. Philosophy of Science : the textbook.Valentin Teodorovich Cheshko (ed.) - 2017
    The achievements of classic and modern philosophy and methodology of scienсe have been concisely presented to help future professionals gain the necessary knowledge of modern philosophy and methodology of scientific knowledge in general and socioeconomic branches in particular. For PhD graduate students.
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  42. Physics and the Philosophy of Science – Diagnosis and analysis of a misunderstanding, as well as conclusions concerning biology and epistemology.Rudolf Lindpointner - manuscript
    For two reasons, physics occupies a preeminent position among the sciences. On the one hand, due to its recognized position as a fundamental science, and on the other hand, due to the characteristic of its obvious certainty of knowledge. For both reasons it is regarded as the paradigm of scientificity par excellence. With its focus on the issue of epistemic certainty, philosophy of science follows in the footsteps of classical epistemology, and this is also the basis of its (...)
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  43. Trust of Science as a Public Collective Good.Matthew H. Slater & Emily R. Scholfield - 2022 - Philosophy of Science 89 (5):1044-1053.
    The COVID-19 pandemic and global climate change crisis remind us that widespread trust in the products of the scientific enterprise is vital to the health and safety of the global community. Insofar as appropriate responses to these crises require us to trust that enterprise, cultivating a healthier trust relationship between science and the public may be considered as a collective public good. While it might appear that scientists can contribute to this good by taking more initiative to communicate their (...)
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  44. Philosophy of science in the public interest: Useful knowledge and the common good.Rose-Mary Sargent - unknown
    The standard of disinterested objectivity embedded within the US Data Quality Act (2001) has been used by corporate and political interests as a way to limit the dissemination of scientific research results that conflict with their goals. This is an issue that philosophers of science can, and should, publicly address because it involves an evaluation of the strength and adequacy of evidence. Analysis of arguments from a philosophical tradition that defended a concept of useful knowledge (later displaced by Logical (...)
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  45. Philosophy of Science.Alik Pelman - 2022 - Israel: Open University Press.
    A commissioned 3-volume (800 pages) in-depth introduction to the philosophy of science, peer-reviewed by 11 specialists. (In Hebrew).
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  46. 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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  47. Dismantling the deficit model of science communication using Ludwik Fleck’s theory of thinking collectives.Victoria M. Wang - forthcoming - In Jonathan Y. Tsou, Shaw Jamie & Carla Fehr (eds.), Values, Pluralism, and Pragmatism: Themes from the Work of Matthew J. Brown. Cham: Boston Studies in the Philosophy and History of Science. Springer.
    Numerous societal issues, from climate change to pandemics, require public engagement with scientific research. Such engagement reveals challenges that can arise when experts communicate with laypeople. One of the most common frameworks for framing these communicative interactions is the deficit model of science communication, which holds that laypeople lack scientific knowledge and/or positive attitudes towards science, and that imparting knowledge will fill knowledge gaps, lead to desirable attitude/behavior changes, and increase trust in science. §1 introduces the deficit (...)
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  48. 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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  49. Hobbes on the Order of Sciences: A Partial Defense of the Mathematization Thesis.Zvi Biener - 2016 - Southern Journal of Philosophy 54 (3):312-332.
    Accounts of Hobbes’s ‘system’ of sciences oscillate between two extremes. On one extreme, the system is portrayed as wholly axiomtic-deductive, with statecraft being deduced in an unbroken chain from the principles of logic and first philosophy. On the other, it is portrayed as rife with conceptual cracks and fissures, with Hobbes’s statements about its deductive structure amounting to mere window-dressing. This paper argues that a middle way is found by conceiving of Hobbes’s _Elements of Philosophy_ on the model of a (...)
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  50. Review of “Science and Other Cultures: Issues in Philosophies of Science and Technology”. [REVIEW]Christine A. James - 2004 - Essays in Philosophy 5 (1):182-189.
    Dialogue between feminist and mainstream philosophy of science has been limited in recent years, although feminist and mainstream traditions each have engaged in rich debates about key concepts and their efficacy. Noteworthy criticisms of concepts like objectivity, consensus, justification, and discovery can be found in the work of philosophers of science including Philip Kitcher, Helen Longino, Peter Galison, Alison Wylie, Lorraine Daston, and Sandra Harding. As a graduate student in philosophy of science who worked in both literatures, (...)
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