Results for 'Practice of science'

965 found
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  1. Everyday Practice of Science: Where Intuition and Passion Meeting Objectivity and Logic.Frederick Grinnell - 2008 - New York, USA: Oxford University Press.
    This book describes how scientists bring their own interests and passions to their work, illustrates the dynamics between researchers and the research community ...
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  2. 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 (...)
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  3. Science as Performance: An Investigation of the Practice of Science Via the Lens of Performance Theory.Jenny L. Nielsen - 2022 - Collective Entanglements (Iari).
    While science is often presented as a body of knowledge or collection of passively accumulated facts, science should be examined and experienced as a performed process, a human endeavor connected to the ways we access the world. In this white paper, I briefly introduce the practice of science from the perspective of performance theory. By examining science in the context of performance, we may approach certain key questions about science directly. How do scientists perform (...)
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  4. Perceptions and Practices of Science Teachers about Professional Development at Secondary School Level: A Phenomenological study.Rabia Aslam & Dr Najum Nisa - 2019 - International Journal of Academic Pedagogical Research (IJAPR) 3 (1):9-15.
    Abstract: This study was done to know that how secondary school teachers of science interprets the experiences which they gained from professional development (PD) in Karachi. And also to know the teachers’ awareness for sense making, and then professional development opportunities to bring changes in their teaching methodology by implementing the knowledge which they gained from PD. Data was collected through five secondary school science teachers of Karachi by purposive sampling technique. In-depth Semi-structured technique were used. After this, (...)
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  5. 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 Weak (...)
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  6. 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 (...)
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  7. Editorial: Theoretical and Practical Issues in the Epistemology of Science Journalism.Carrie Figdor - 2022 - Frontiers in Communication 7 (868849):1-2.
    This Editorial summarizes the papers in a Frontiers in Communication Research Topic that looks at science journalism’s mediating role between the production of scientific knowledge and its public uptake. The four papers in the Research Topic consider science communication and journalism from the perspective of philosophy of science and epistemology. Framing the Research Topic is a conceptual analysis of the multiple aims of science communication and an assessment of empirical evidence to date regarding whether these aims (...)
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  8. 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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  9. 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 (...)
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  10. Lakatos' Undone Work: The Practical Turn and the Division of Philosophy of Mathematics and Philosophy of Science - Introduction to the Special Issue on Lakatos’ Undone Work.Sophie Nagler, Hannah Pillin & Deniz Sarikaya - 2022 - Kriterion - Journal of Philosophy 36:1-10.
    We give an overview of Lakatos’ life, his philosophy of mathematics and science, as well as of this issue. Firstly, we briefly delineate Lakatos’ key contributions to philosophy: his anti-formalist philosophy of mathematics, and his methodology of scientific research programmes in the philosophy of science. Secondly, we outline the themes and structure of the masterclass Lakatos’ Undone Work – The Practical Turn and the Division of Philosophy of Mathematics and Philosophy of Science, which gave rise to this (...)
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  11. 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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  12. Philosophy of Science.Rani Lill Anjum & Elena Rocca - 2024 - Palgrave.
    This textbook is a comprehensive, engaging, and user-friendly introduction to philosophy of science written by a philosopher and a scientist. By exploring traditional debates within philosophy of science, as well as analysing contemporary scientific controversies for philosophical bias, the reader is invited to reflect upon how philosophical assumptions influence scientific theory, methods, and practice. -/- Key features: -/- - Is an accessible introduction to philosophy of science written by a philosopher and a scientist. - Includes some (...)
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  13. 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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  14. History and scientific practice in the construction of an adequate philosophy of science: revisiting a Whewell/Mill debate.Aaron D. Cobb - 2011 - Studies in History and Philosophy of Science Part A 42 (1):85-93.
    William Whewell raised a series of objections concerning John Stuart Mill’s philosophy of science which suggested that Mill’s views were not properly informed by the history of science or by adequate reflection on scientific practices. The aim of this paper is to revisit and evaluate this incisive Whewellian criticism of Mill’s views by assessing Mill’s account of Michael Faraday’s discovery of electrical induction. The historical evidence demonstrates that Mill’s reconstruction is an inadequate reconstruction of this historical episode and (...)
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  15. Theory and Practice of Contrast: Integrating Science, Art and Philosophy.Mariusz Stanowski - 2021 - London: Crc Press.
    The book Theory and Practice of Contrast completes, corrects and integrates the foundations of science and humanities, which include: theory of art, philosophy (aesthetics, epistemology, ontology, axiology), cognitive science, theory of information, theory of complexity and physics. Through the integration of these distant disciplines, many unresolved issues in contemporary science have been clarified or better understood, among others: defining impact (contrast) and using this definition in different fields of knowledge; understanding what beauty/art is and what our (...)
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  16. Research Data Preservation Practices of Library and Information Science Faculties.A. Subaveerapandiyan & Anuradha Maurya - 2022 - Defence Journal of Library and Information Science Technology 42 (4):259-264.
    Digitisation of research data is widely increasing all around the world because it needs more and development of enormous digital technologies. Data curation services are starting to offer many libraries. Research data curation is the collective invaluable and reusable information of the researchers. Collected data preservation is more important. The majority of the higher education institutes preserved the research data for their students and researchers. It is stored for a long time using various formats. It is called research data preservation. (...)
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  17. Better than Best: Epistemic Landscapes and Diversity of Practice in Science.Jingyi Wu - forthcoming - Philosophy of Science.
    When solving a complex problem in a group, should group members always choose the best available solution that they are aware of? In this paper, I build simulation models to show that, perhaps surprisingly, a group of agents who individually randomly follow a better available solution than their own can end up outperforming a group of agents who individually always follow the best available solution. This result has implications for the feminist philosophy of science and social epistemology.
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  18. Guest Editorial: Philosophy of Science in Practice and Practical Realism.Endla Lõhkivi & Rein Vihalemm - 2012 - Studia Philosophica Estonica 5 (2):1-6.
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  19. 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 element of the (...)
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  20. Towards a New Ethos of Science or a Reform of the Institution of Science? Merton Revisited and the Prospects of Institutionalizing the Research Values of Openness and Mutual Responsiveness.Rene Von Schomberg, Carl Mitcham, Sabina Leonelli, Fuchs Lukas, Alfred Nordmann & Monica Edwards-Schachter - 2024 - Novation 1 (6):1-33.
    In this article, I will explore how the underlying research values of ‘openness’ and ‘mutual responsiveness’, which are central to open science practices, can be integrated into a new ethos of science. Firstly, I will revisit Robert Merton's early contribution to this issue, examining whether the ethos of science should be understood as a set of norms for scientists to practice ‘good’ science or as a set of research values as a functional requirement of the (...)
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  21. 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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  22. 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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  23. 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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  24. 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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  25. 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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  26. Scientific Temper: Virtues of Science in early 20th Century India.Abhijeet Bardapurkar - 2019 - Current Science 117 (10):1571-1573.
    Science is not possible in the absence of epistemic values (truth, simplicity), but what are the moral condi- tions (good, right) that secure these epistemic values in a just prosperous society? The question of value of science is not separate from the question of values in science-education. In the study of science and values, we have to ask two complementary questions: what are the values that science is expected to bring to educa- tion, and what (...)
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  27. Karl Popper: Philosophy of Science.Brendan Shea - 2011 - In James Fieser & Bradley Dowden (eds.), Internet Encyclopedia of Philosophy. Routledge.
    Karl Popper (1902-1994) was one of the most influential philosophers of science of the 20th century. He made significant contributions to debates concerning general scientific methodology and theory choice, the demarcation of science from non-science, the nature of probability and quantum mechanics, and the methodology of the social sciences. His work is notable for its wide influence both within the philosophy of science, within science itself, and within a broader social context. Popper’s early work attempts (...)
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  28. 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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  29.  48
    The benefits of acquiring interactional expertise: Why (some) philosophers of science should engage scientific communities.Kathryn S. Plaisance - 2020 - Studies in History and Philosophy of Science Part A 83:53-62.
    Philosophers of science are increasingly arguing for and addressing the need to do work that is socially and scientifically engaged. However, we currently lack well-developed frameworks for thinking about how we should engage other expert communities and what the epistemic benefits are of doing so. In this paper, I draw on Collins and Evans' concept of ‘interactional expertise’ – the ability to speak the language of a discipline in the absence of an ability to practice – to consider (...)
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  30. Science Fiction: Science, Vaihinger and Spengler's Fictionalist Philosophy of Science.Gregory Morgan Swer - 2021 - In David Engels, Gerd Morgenthaler & Max Otte (eds.), Oswald Spengler in an Age of Globalisation. Berlin/Lüdinghausen: Manuscriptum. pp. 197-225.
    Oswald Spengler is best known as a philosopher of history. However, one can trace in volume one of his The Decline of the West a sustained consideration of philosophical issues pertaining to the nature and practice of science that I suggest can be considered to be a philosophy of science. Not only has Spengler’s philosophy of science been largely overlooked, so too has its peculiar fictionalist character. By elaborating on the fictionalist character of Spengler’s scientific views (...)
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  31. 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 (...)
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  32. Continental Philosophy of Science.Babette Babich - 2007 - In Constantin V. Boundas (ed.), The Edinburgh Companion to the Twentieth Century Philosophies. Edinburgh. University of Edinburgh Press. pp. 545--558.
    Continental philosophies of science tend to exemplify holistic themes connecting order and contingency, questions and answers, writers and readers, speakers and hearers. Such philosophies of science also tend to feature a fundamental emphasis on the historical and cultural situatedness of discourse as significant; relevance of mutual attunement of speaker and hearer; necessity of pre-linguistic cognition based in human engagement with a common socio-cultural historical world; role of narrative and metaphor as explanatory; sustained emphasis on understanding questioning; truth seen (...)
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  33. (1 other version)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 (...)
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  34. Thinking Outside-In: Feminist Standpoint Theory As Epistemology, Methodology, And Philosophy Of Science.Catherine Hundleby - 2020 - In Kristen Intemann & Sharon Crasnow (eds.), The Routledge Handbook of Feminist Philosophy of Science. New York, NY: Routledge. pp. 89-103.
    A feminist standpoint addresses the ideals or norms and attendant practices involved in science and knowledge with a mind to lived experiences of oppression. That such matters of social context and awareness of that context influence the ability of individual people to know their worlds constitutes the Situated Knowledge Thesis (Intemann 2016; Wylie 2003). Situated knowledges provide the evidence and inspiration for the central epistemological tenet of feminist standpoint theory. Individuals and liberatory communities obtain the epistemic advantage of a (...)
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  35. 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 (...)
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  36. History and Sociology of Science.Géraldine Delley & Sébastien Plutniak - 2018 - In Sandra L. López Varela (ed.), The Encyclopedia of Archaeological Sciences.
    The relationship between archaeology and other sciences has only recently become a research topic for sociologists and historians of science. From the 1950s to the present day, different approaches have been taken and the aims of research studies have changed considerably. Besides methodological textbooks, which aim at advancing archaeological knowledge, historians of archaeology have tackled this question by exploring the development of archaeology as a scientific discipline. More recently, collaborations between archaeologists and other scientists have been examined as a (...)
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  37. 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 (...)
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  38. The Kuhnian Image of Science: Time for a Decisive Transformation?Moti Mizrahi (ed.) - 2017 - London: Rowman & Littlefield.
    More than 50 years after the publication of Thomas Kuhn’s seminal book, The Structure of Scientific Revolutions, this volume assesses the adequacy of the Kuhnian model in explaining certain aspects of science, particularly the social and epistemic aspects of science. One argument put forward is that there are no good reasons to accept Kuhn’s incommensurability thesis, according to which scientific revolutions involve the replacement of theories with conceptually incompatible ones. Perhaps, therefore, it is time for another “decisive transformation (...)
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  39.  19
    Making Philosophy of Science More Socially Relevant Vol. 177.Kathryn S. Plaisance & Carla Fehr (eds.) - 2010 - Springer.
    This special issue advances arguments for an examples of socially relevant and socially engaged philosophy of science. -/- The introduction (Fehr & Plaisance) provides an argument for a more socially relevant philosophy of science (SRPOS). Their aims 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 (...)
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  40. Understanding the Progress of Science.C. D. McCoy - 2022 - In Insa Lawler, Kareem Khalifa & Elay Shech (eds.), Scientific Understanding and Representation: Modeling in the Physical Sciences. New York, NY: Routledge. pp. 353-369.
    Philosophical debates on how to account for the progress of science have traditionally divided along the realism-anti-realism axis. Relatively recent developments in epistemology, however, have opened up a new knowledge-understanding axis to the debate. This chapter presents a novel understanding-based account of scientific progress that takes its motivation from problem-solving practices in science. Problem-solving is characterized as a means of measuring degree of understanding, which is argued to be the principal epistemic (or cognitive) aim of science, over (...)
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  41. Critical remarks on current practices of data article publishing: Issues, challenges, and recommendations.Quan-Hoang Vuong, Viet-Phuong La & Minh-Hoang Nguyen - 2024 - Data Science and Informetrics 4 (2):1-14.
    The contribution of the data paper publishing paradigm to the knowledge generation and validation processes is becoming substantial and pivotal. In this paper, through the information-processing perspective of Mindsponge Theory, we discuss how the data article publishing system serves as a filtering mechanism for quality control of the increasingly chaotic datasphere. The overemphasis on machine-actionality and technical standards presents some shortcomings and limitations of the data article publishing system, such as the lack of consideration of humanistic values, radical race for (...)
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  42. The tragedy of the canon; or, path dependence in the history and philosophy of science.Agnes Bolinska & Joseph D. Martin - 2021 - Studies in History and Philosophy of Science Part A 89 (C):63-73.
    We have previously argued that historical cases must be rendered canonical before they can plausibly serve as evidence for philosophical claims, where canonicity is established through a process of negotiation among historians and philosophers of science (Bolinska and Martin, 2020). Here, we extend this proposal by exploring how that negotiation might take place in practice. The working stock of historical examples that philosophers tend to employ has long been established informally, and, as a result, somewhat haphazardly. The composition (...)
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  43. A Neurathian Conception of the Unity of Science.Angela Potochnik - 2011 - Erkenntnis 74 (3):305-319.
    An historically important conception of the unity of science is explanatory reductionism, according to which the unity of science is achieved by explaining all laws of science in terms of their connection to microphysical law. There is, however, a separate tradition that advocates the unity of science. According to that tradition, the unity of science consists of the coordination of diverse fields of science, none of which is taken to have privileged epistemic status. This (...)
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  44. The Reality of the Practice of Crisis Management in the Union of Health Work Committees in Gaza In Light of the Corona Pandemic.Muhammad K. Hamdan, Mansour A. Mansour, Mazen J. Al Shobaki, Samy S. Abu-Naser & Suliman A. El Talla - 2021 - International Journal of Academic Management Science Research (IJAMSR) 5 (4):141-148.
    The aim of the research is to identify the reality of the practice of crisis management in light of The Corona Pandemic, and to achieve the research objectives, the researchers used the descriptive and analytical approach using the comprehensive survey method for the total research community, which numbered (110) individuals, while (90) were recovered: That the level of crisis management practice came with a relative weight (75.60%). Among the most important recommendations made by the research: Work to disburse (...)
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  45. 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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  46. The Future of Science.Hossein Shirkhani - manuscript
    This article has been written about the explanation of the scientific affair. There are the philosophical circles that a philosopher must consider their approaches. Postmodern thinkers generally refuse the universality of the rational affair. They believe that the experience cannot reach general knowledge. They emphasize on the partial and plural knowledge. Any human being has his knowledge and interpretation. The world is always becoming. Diversity is an inclusive epistemological principle. Naturally, in such a state, the scientific activity is a non-sense (...)
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  47. The institutional stabilization of philosophy of science and its withdrawal from social concerns after the Second World War.Fons Dewulf - 2020 - British Journal for the History of Philosophy 29 (5):935-953.
    In this paper, I criticize the thesis that value-laden approaches in American philosophy of science were marginalized in the 1960s through the editorial policy at Philosophy of Science and funding practices at the National Science Foundation. I argue that there is no available evidence of any normative restriction on philosophy of science as a domain of inquiry which excluded research on the relation between science and society. Instead, I claim that the absence of any exemplary, (...)
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  48. On the practice of integrated STEM education as “poiesis”.Sarıtaş Davut, Özcan Hasan & Adúriz-Bravo Agustín - 2023 - Stem Education Review 1:1-15.
    The value of science partly lies on the development of useful products for humanity’s needs, but basic sciences cannot be said the “protagonists” of their obtention. Human history shows that these processes occur as a result of interactions between science and technology, mathematics, and engineering, as well as ethics and aesthetics. This network of disciplinary relationships facilitating the impact of scientific knowledge on human lives is at the center of discussions in the field of Science, Technology, Engineering, (...)
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  49. Socializing naturalized philosophy of science.Stephen M. Downes - 1993 - Philosophy of Science 60 (3):452-468.
    I propose an approach to naturalized philosophy of science that takes the social nature of scientific practice seriously. I criticize several prominent naturalistic approaches for adopting "cognitive individualism", which limits the study of science to an examination of the internal psychological mechanisms of scientists. I argue that this limits the explanatory capacity of these approaches. I then propose a three-level model of the social nature of scientific practice, and use the model to defend the claim that (...)
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    Pathways of influence: understanding the impact of philosophy of science in scientific domains.Kathryn S. Plaisance, Jay Michaud & John McLevey - 2021 - Synthese 199:4865–4896.
    Philosophy of science has the potential to enhance scientific practice, science policy, and science education; moreover, recent research indicates that many philosophers of science think we ought to increase the broader impacts of our work. Yet, there is little to no empirical data on how we are supposed to have an impact. To address this problem, our research team interviewed 35 philosophers of science regarding the impact of their work in science-related domains. We (...)
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