Results for 'Structure of scientific research'

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  1. The Structure of Scientific Research in F. Bacon’s New Atlantis.Athanasios Raftopoulos - 1995 - Neusis 3:55-73.
     
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  2.  66
    On the hermeneutic fore-structure of scientific research.Dimitri Ginev - 1999 - Continental Philosophy Review 32 (2):143-168.
    The paper provides an overview of the hermeneutic and phenomenological context from which the idea of a “constitutional analysis” of science originated. It analyzes why the approach to “hermeneutic fore-structure of scientific research” requires to transcend the distinction between the context of justification and the context of discovery. By incorporating this approach into an integral “postmetaphysical philosophy of science”, I argue that one can avoid the radical empiricism of recent science studies, while also preventing the analysis of (...)
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  3.  36
    The very structure of scientific research mitigates against developing products to help the environment, the poor, and the hungry.Martha Crouch - 1991 - Journal of Agricultural and Environmental Ethics 4 (2):151-158.
    From the arguments I have presented, I hope it is clear that the distinction between basic and applied research is tenuous. Certain areas of research and methods may be favoured over others because of intrinsic biases, which are predictive of the type of application possible. Believing in the neutrality of pure knowledge is like wearing blinders: scientists need not be too concerned about the way in which the knowledge they generate is used. In my own case, this belief (...)
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  4. The Structure of Scientific Revolutions.Thomas Samuel Kuhn - 1962 - Chicago: University of Chicago Press. Edited by Otto Neurath.
    A scientific community cannot practice its trade without some set of received beliefs. These beliefs form the foundation of the "educational initiation that prepares and licenses the student for professional practice". The nature of the "rigorous and rigid" preparation helps ensure that the received beliefs are firmly fixed in the student's mind. Scientists take great pains to defend the assumption that scientists know what the world is like...To this end, "normal science" will often suppress novelties which undermine its foundations. (...)
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  5.  33
    Two Accounts of the Hermeneutic Fore-structure of Scientific Research.Dimitri Ginev - 2012 - International Studies in the Philosophy of Science 26 (4):423-445.
    In this article, I examine various aspects of the application of Heidegger's motif of interpretative articulation (the core phenomenological motif of existential analytic) to the constitutional analysis of meaningful objects in scientific research that are contextually ready-to-hand. It is my contention that not only the concepts of the ‘fore-structure of understanding’ and the ‘as-structure of interpretation’, but also the extended concepts of the ‘hermeneutic fore-structure of meaning constitution’ and ‘characteristic hermeneutic situation’ are the keys to (...)
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  6.  29
    The very structure of scientific research does not mitigate against developing products to help the environment, the poor, and the hungry.Roger N. Beachy - 1991 - Journal of Agricultural and Environmental Ethics 4 (2):159-165.
  7.  39
    The Structure of Scientific Revolutions: 50th Anniversary Edition.Thomas S. Kuhn & Ian Hacking - 2012 - University of Chicago Press.
    A good book may have the power to change the way we see the world, but a great book actually becomes part of our daily consciousness, pervading our thinking to the point that we take it for granted, and we forget how provocative and challenging its ideas once were—and still are. _The Structure of Scientific Revolutions _is that kind of book. When it was first published in 1962, it was a landmark event in the history and philosophy of (...)
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  8.  33
    The Structure of Scientific Theories.Mario H. Otero - 1979 - Philosophy and Phenomenological Research 40 (1):148-150.
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  9. The Aims and Structures of Ecological Research Programs.William Bausman - 2019 - Philosophical Topics 47 (1):1-20.
    Neutral Theory is controversial in ecology. Ecologists and philosophers have diagnosed the source of the controversy as: its false assumption that individuals in different species within the same trophic level are ecologically equivalent, its conflict with Competition Theory and the adaptation of species, its role as a null hypothesis, and as a Lakatosian research programme. In this paper, I show why we should instead understand the conflict at the level of research programs which involve more than theory. The (...)
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  10.  66
    Kuhn's The Structure of Scientific Revolutions at 60.K. Brad Wray (ed.) - 2024 - Cambridge University Press.
    Thomas Kuhn's The Structure of Scientific Revolutions has sold more than one million copies since its publication in 1962, is one of the most cited academic books of all time, and continues to be read and studied today. This volume of new essays evaluates the significance of Kuhn's classic book in its changing historical context, including its initial reception and its lasting effects. The essays explore the range of ideas which Kuhn made popular with his influential philosophy of (...)
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  11.  8
    Research Doctorate Programs in the United States: Continuity and Change.Marvin L. Goldberger, Brendan A. Maher, Pamela Ebert Flattau, Committee for the Study of Research-Doctorate Programs in the United States & Conference Board of Associated Research Councils - 1995 - National Academies Press.
    Doctoral programs at U.S. universities play a critical role in the development of human resources both in the United States and abroad. This volume reports the results of an extensive study of U.S. research-doctorate programs in five broad fields: physical sciences and mathematics, engineering, social and behavioral sciences, biological sciences, and the humanities. Research-Doctorate Programs in the United States documents changes that have taken place in the size, structure, and quality of doctoral education since the widely used (...)
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  12.  48
    The Future of The Structure of Scientific Revolutions.K. Brad Wray - 2013 - Topoi 32 (1):75-79.
    I examine the value and limitations of Kuhn’s Structure of Scientific Revolutions. In the interests of developing a social epistemology of science, I argue that we should draw on Kuhn’s later work, published in The Road since Structure. There, Kuhn draws attention to the important role that specialty formation plays in resolving crises in science, a topic he did not discuss in Structure. I argue that we need to develop a better understanding of specialty research (...)
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  13.  33
    Abductive inferences and the structure of scientific knowledge.M. D. Bybee - 1996 - Argumentation 10 (1):25-46.
    The received theories of epistemology identify abductive inferences with the cognitive patterns of speculation (hypothesis formation) and insist that they cannot verify or confirm hypotheses. I criticize various descriptions of abduction, offer a structural analysis of abductive inference,, characterize abduction without alluding to its putative role in inquiry, and then demonstrate that some abductions do provide evidence and that not all scientific hypotheses derive from abductive inferences. This result challenges those notions of scientific k knowledge that dismiss some (...)
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  14. The Future of The Structure of Scientific Revolutions.K. Brad Wray - 2013 - Topoi 32 (1):75-79.
    I examine the value and limitations of Kuhn’s Structure of Scientific Revolutions. In the interests of developing a social epistemology of science, I argue that we should draw on Kuhn’s later work, published in The Road since Structure. There, Kuhn draws attention to the important role that specialty formation plays in resolving crises in science, a topic he did not discuss in Structure. I argue that we need to develop a better understanding of specialty research (...)
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  15.  9
    The structure of scientific knowledge and its levels.S. Lebedev - 2016 - Journal of Philosophical Researchжурнал Философских Исследований 2 (1):1-1.
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  16.  7
    The Structure of Scientific Thought: An Introduction to Philosophy of Science.Edward H. Madden - 1968 - Houghton Mifflin.
  17.  4
    The Structure of Scientific Thought; An Introduction to Philosophy of Science.Paul W. Hagensick - 1961 - Philosophy and Phenomenological Research 21 (3):417-418.
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  18.  62
    The Structure of Scientific Theories. [REVIEW]A. W. W. - 1975 - Review of Metaphysics 29 (2):358-359.
    This impressive volume presents the results of a symposium on the structure of scientific theories held at the University of Illinois, Urbana, on March 26-29, 1969; lest this create the wrong impression, let it be noted at the outset that the volume is much more than a collection of papers. Indeed, when one takes into account Frederick Suppe’s book-length introduction, the editing of the critical comments, the extensive bibliography, and the fine index, the work must be seen as (...)
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  19.  44
    Reconfiguring the centre: The structure of scientific exchanges between colonial India and Europe.Dhruv Raina - 1996 - Minerva 34 (2):161-176.
    The “centre-periphery” relationship historically structured scientific exchanges between metropolis and province, between the fount of empire and its outposts. But the exchange, if regarded merely as a one-way flow of scientific information, ignores both the politics of knowledge and the nature of its appropriation. Arguably, imperial structures do not entirely determine scientific practices and the exchange of knowledge. Several factors neutralise the over-determining influence of politics—and possibly also the normative values of science—on scientific practice.In examining these (...)
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  20.  99
    The Cognitive Structure of Scientific Revolutions.Peter Barker - 2011 - Erkenntnis 75 (3):445-465.
    For historical epistemology to succeed, it must adopt a defensible set of categories to characterise scientific activity over time. In historically orientated philosophy of science during the twentieth century, the original categories of theory and observation were supplemented or replaced by categories like paradigm, research program and research tradition. Underlying all three proposals was talk about conceptual systems and conceptual structures, attributed to individual scientists or to research communities, however there has been little general agreement on (...)
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  21.  77
    The Influence of James B. Conant on Kuhn’s Structure of Scientific Revolutions.K. Brad Wray - 2016 - Hopos: The Journal of the International Society for the History of Philosophy of Science 6 (1):1-23.
    I examine the influence of James B. Conant on the writing of Kuhn’s Structure of Scientific Revolutions. By clarifying Conant’s influence on Kuhn, I also clarify the influence that others had on Kuhn’s thinking. And by identifying the various influences that Conant had on Kuhn’s view of science, I identify Kuhn’s most original contributions in Structure. On the one hand, I argue that much of the framework and many of the concepts that figure in Structure were (...)
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  22.  16
    Science Teaching as Educational Interrogation of Scientific Research.Dimitri Ginev - 2013 - Educational Philosophy and Theory 45 (5):584-597.
    The main argument of this article is that science teaching based on a pedagogy of questions is to be modeled on a hermeneutic conception of scientific research as a process of the constitution of texts. This process is spelled out in terms of hermeneutic phenomenology. A text constituted by scientific practices is at once united by a hermeneutic fore-structure and scattered in a diversity of spaces of representation. The educational questioning that should reveal the interpretative aspects (...)
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  23. MADDEN , The Structure of Scientific Thought. [REVIEW]Davis Davis - 1960 - Philosophy and Phenomenological Research 21:417.
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  24.  14
    Structure of the digital scientific revolution.Sławomir Grzegorz Leciejewski - 2018 - Philosophical Problems in Science 64:117-136.
    Nowadays, computers are in common use, both in experimental and theoretical research. It is worth considering if the implementation of a new, universal research tool has significantly changed the science of the end of 20th century. The crucial question which I will try to answer is if computers have revolutionized the scientific research. In order to find the answer, I will describe modern digitally aided science, taking into consideration the research conducted in the greatest elementary (...)
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  25. Structures in scientific cognition: A synopsis of structures in science. Heuristic patterns based on cognitive structures. An advanced textbook in neo-classical philosophy of science.Theo A. F. Kuipers - 2005 - Poznan Studies in the Philosophy of the Sciences and the Humanities 84 (1):23-92.
    The philosophy of science has lost its self-confidence. Structures in Science (2001) is an advanced textbook that explicates, updates and integrates the best insights of logical empiricism and its main critics. This "neo-classical approach" aims at providing heuristic patterns for research.The book introduces four ideal types of research programs (descriptive, explanatory, design and explicative) and reanimates the distinction between observational laws and proper theories without assuming a theory-free language. It explicates various patterns of explanation by subsumption and specification (...)
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  26.  11
    Factors contributing to the promotion of moral competence in nursing.Johanna Wiisak, Minna Stolt, Michael Igoumenidis, Stefania Chiappinotto, Chris Gastmans, Brian Keogh, Evelyne Mertens, Alvisa Palese, Evridiki Papastavrou, Catherine Mc Cabe, Riitta Suhonen & on Behalf of the Promocon Consortium - forthcoming - Nursing Ethics.
    Ethics is a foundational competency in healthcare inherent in everyday nursing practice. Therefore, the promotion of qualified nurses’ and nursing students’ moral competence is essential to ensure ethically high-quality and sustainable healthcare. The aim of this integrative literature review is to identify the factors contributing to the promotion of qualified nurses’ and nursing students’ moral competence. The review has been registered in PROSPERO (CRD42023386947) and reported according to the PRISMA guideline. Focusing on qualified nurses’ and nursing students’ moral competence, a (...)
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  27.  16
    The logical foundations of scientific theories. Languages, Structures, and Models.Decio Krause & Jonas R. B. Arenhart - 2016 - Nova Iorque, NY, EUA: Routledge. Edited by Becker Arenhart & R. Jonas.
    This book addresses the logical aspects of the foundations of scientific theories. Even though the relevance of formal methods in the study of scientific theories is now widely recognized and regaining prominence, the issues covered here are still not generally discussed in philosophy of science. The authors focus mainly on the role played by the underlying formal apparatuses employed in the construction of the models of scientific theories, relating the discussion with the so-called semantic approach to (...) theories. The book describes the role played by this metamathematical framework in three main aspects: considerations of formal languages employed to axiomatize scientific theories, the role of the axiomatic method itself, and the way set-theoretical structures, which play the role of the models of theories, are developed. The authors also discuss the differences and philosophical relevance of the two basic ways of aximoatizing a scientific theory, namely Patrick Suppes’ set theoretical predicates and the "da Costa and Chuaqui" approach. This book engages with important discussions of the nature of scientific theories and will be a useful resource for researchers and upper-level students working in philosophy of science. (shrink)
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  28.  94
    The Sociology of Scientific Disciplines: On the Genesis and Stability of the Disciplinary Structure of Modern Science.Rudolf Stichweh - 1992 - Science in Context 5 (1):3-15.
    The ArgumentThis essay attempts to show the decisive importance of the “scientific discipline” for any historical or sociological analysis of modern science. There are two reasons for this:1. A discontinuity can be observed at the beginning of modern science: the “discipline,” which up until that time had been a classificatorily generated unit of the ordering of knowledge for purposes of instruction in schools and universities, develops into a genuine and concrete social system of scientific communication. Scientific disciplines (...)
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  29.  9
    Frederick Suppe "The Structure of Scientific Theories". [REVIEW]Mario H. Otero - 1979 - Philosophy and Phenomenological Research 40 (1):148.
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  30.  51
    The Structure of Value: Foundations of Scientific Axiology.Antonio S. Cua - 1968 - Philosophy and Phenomenological Research 28 (3):451-452.
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  31.  26
    The Aims and Structures of Research Projects That Use Gene Regulatory Information with Evolutionary Genetic Models.Steve Elliott - 2017 - Dissertation, Arizona State University
    At the interface of developmental biology and evolutionary biology, the very criteria of scientific knowledge are up for grabs. A central issue is the status of evolutionary genetics models, which some argue cannot coherently be used with complex gene regulatory network (GRN) models to explain the same evolutionary phenomena. Despite those claims, many researchers use evolutionary genetics models jointly with GRN models to study evolutionary phenomena. This dissertation compares two recent research projects in which researchers jointly use the (...)
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  32. Moral rural : beliefs in a changing rural world.Angel Paniagua, Spanish Council for Scientific Research, Csic, Madrid & Spain - 2014 - In Miranda Fuller (ed.), Psychology of morality: new research. Hauppauge, New York: Nova Science Publishers.
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  33.  30
    Cumulative change in scientific production: Research technologies and the structuring of new knowledge.Joseph Howard Spear - 2004 - Perspectives on Science 12 (1):55-85.
    : This paper seeks to contribute to the development of a sociological understanding of scientific change. It first presents a conceptual framework for defining and understanding the conditions that give rise to episodes of cumulative change (both as the selective reconstruction of events and as the patterned structuring of innovations over time and across different settings). It argues that one of the most powerful structuring mechanisms is the existence of standardized research technologies. Then, the development of electroencephalography (EEG) (...)
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  34.  43
    Kuhn’s Lowell lectures: Thomas S. Kuhn: The quest for physical theory: problems in the methodology of scientific research, ed. George A. Reisch. Boston: The M. I. T. Libraries, Department of Distinctive Collections, 2021, xxxvi+169pp, $12.99 PB. [REVIEW]Vasso Kindi - 2021 - Metascience 30 (3):383-386.
    The Quest for Physical Theory (QPT) comprises the eight Lowell lectures that Kuhn gave on Tuesdays and Fridays in March 1951 in the Lecture Hall of the Boston Library. He was 28 years old at the time, a member of the Harvard Society of Fellows, a recent Harvard PhD in Physics (1949), and an instructor in the general-education course on science set up by James Conant, Harvard’s President. Kuhn seized the opportunity of the Lowell Lectures to present his new, and (...)
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  35.  40
    Interpretation and the structure of space in scientific theory and in perception.Patrick A. Heelan - 1986 - Research in Phenomenology 16 (1):187-199.
  36. “Intrinsically” or just “Instrumentally” Valuable? On Structural Types of Values of Scientific Knowledge.Peter P. Kirschenmann - 2001 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 32 (2):237-256.
    Debates about scientific (though rarely about otherforms of) knowledge, research policies or academic trainingoften involve a controversy about whether scientificknowledge possesses just “instrumental” value or also “intrinsic” value. Questioning this common simpleopposition, I scrutinize the issues involved in terms of agreater variety of structural types of values attributableto (scientific) knowledge. (Intermittently, I address thepuzzling habit of attributing “intrinsic” value to quitedifferent things, e.g. also to nature, in environmentalethics.) After some remarks on relevant broader philosophicaldebates about scientific (...)
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  37.  38
    “It is Very Difficult for us to Separate Ourselves from this System”: Views of European Researchers, Research Managers, Administrators and Governance Advisors on Structural and Institutional Influences on Research Integrity.Mari-Rose Kennedy, Zuzana Deans, Ilaria Ampollini, Eric Breit, Massimiano Bucchi, Külliki Seppel, Knut Jørgen Vie & Ruud ter Meulen - 2023 - Journal of Academic Ethics 21 (3):471-495.
    Research integrity is fundamental to the validity and reliability of scientific findings, and for ethical conduct of research. As part of PRINTEGER (Promoting Integrity as an Integral Dimension of Excellence in Research), this study explores the views of researchers, research managers, administrators, and governance advisors in Estonia, Italy, Norway and UK, focusing specifically on their understanding of institutional and organisational influences on research integrity.A total of 16 focus groups were conducted. Thematic analysis of the (...)
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  38.  3
    The Significance of Philosophical Anthropology in Determining the Methodology of Modern Scientific Research.O. N. Kubalskyi - 2023 - Anthropological Measurements of Philosophical Research 24:37-45.
    _Purpose._ This research involves revealing the methodological significance of the anthropological understanding of values for conducting modern scientific research. _Theoretical basis._ Philosophical anthropology acts as an epistemological basis for answers to ontological questions that are part of the structure of such problems in modern science as the construction of a scientific picture of the world, the ordering of data of natural attitude, and anthropocosmism. The ontological basis for the formation of the anthropological theory of values (...)
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  39. The structure of scientific inference.Mary B. Hesse - 1974 - [London]: Macmillan.
  40. The emerging structure of the Extended Evolutionary Synthesis: where does Evo-Devo fit in?Alejandro Fábregas-Tejeda & Francisco Vergara-Silva - 2018 - Theory in Biosciences 137.
    The Extended Evolutionary Synthesis (EES) debate is gaining ground in contemporary evolutionary biology. In parallel, a number of philosophical standpoints have emerged in an attempt to clarify what exactly is represented by the EES. For Massimo Pigliucci, we are in the wake of the newest instantiation of a persisting Kuhnian paradigm; in contrast, Telmo Pievani has contended that the transition to an EES could be best represented as a progressive reformation of a prior Lakatosian scientific research program, with (...)
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  41. Philosophy of Scientific Theories. The First Essay: Names and Realities.Vladimir Kuznetsov & O. Gabovіch - 2023 - Kyiv: Naukova Dumka. Edited by Tetyana Gardashuk.
    The English Synopsis is after the text of the book. The book presents an original and generalizing substantive vision of the philosophy of science through the prism of a detailed analysis of the polysystem structure of scientific theories. Theories are considered, firstly, as complex specialized forms of developed scientific thinking about the realities studied by natural science, secondly, as constantly improving tools for producing new knowledge in interaction with experimental research, and thirdly, as carriers of ordered (...)
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  42. Civilizational structure of regional integration organizations.Sergii Sardak & Y. Prysiazhniuk S. Sardak, S. Radziyevska - 2019 - Przegląd Strategiczny 12:59-79.
    The paper advances a new comprehensive complex approach to the investigation of the civilizational aspects in the development of regional associations of countries. The research starts with the overview of historical dimensions of the civilizational approach and the contribution of the founding scholars to its development. It continues with the analysis of the scientific and methodological input of the followers and the critics of this approach. The authors suggest their theoretical approach to the identification of the modern local (...)
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  43.  7
    Processes of Inclusion, Cultures of Calculation, Structures of Power: Scientific Citizenship and the Royal Commission on Genetic Modification.Joanna Goven - 2006 - Science, Technology, and Human Values 31 (5):565-598.
    The significance of political-economic context for scientific citizenship is argued through an analysis of New Zealand’s Royal Commission on Genetic Modification. My intention is not to provide an account of why the commission came to the decisions it did but to illustrate how the political-economic context and the culture of regulatory science both exacerbate public concerns about unacknowledged uncertainty and commercial influence and make it difficult for those concerns to influence the outcomes of public dialogues. The discursive flexibility of (...)
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  44.  15
    We’re Only in It for the Money : The Financial Structure of STEM and STEAM Research.Karen François, Kathleen Coessens & Jean Paul Van Bendegem - 2018 - In Paul Smeyers & Marc Depaepe (eds.), Educational Research: Ethics, Social Justice, and Funding Dynamics. Springer Verlag. pp. 261-274.
    The development of the philosophy of science in the twentieth century has created a framework where issues concerning funding dynamics can be easily accommodated. It combines the historical-philosophical approach of Thomas Kuhn. The University of Chicago Press, Chicago, [1962] ) with the sociological approach of Robert K. Merton The sociology of science. Theoretical and empirical investigations. The University of Chicago Press, Chicago, pp 267–278, [1942] ), linking the ‘exact’ sciences to economy and politics. Out of this came a new domain, (...)
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  45. Humanities’ metaphysical underpinnings of late frontier scientific research.Alcibiades Malapi-Nelson - 2014 - Humanities 214 (3):740-765.
    The behavior/structure methodological dichotomy as locus of scientific inquiry is closely related to the issue of modeling and theory change in scientific explanation. Given that the traditional tension between structure and behavior in scientific modeling is likely here to stay, considering the relevant precedents in the history of ideas could help us better understand this theoretical struggle. This better understanding might open up unforeseen possibilities and new instantiations, particularly in what concerns the proposed technological modification (...)
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  46. Cognitive Structures in Scientific Inquiry: Essays in Debate with Theo Kuipers. Volume 2.Roberto Festa, Atocha Aliseda & Jeanne Peijnenburg (eds.) - 2005 - Rodopi.
    This book is the second of two volumes devoted to the work of Theo Kuipers, a leading Dutch philosopher of science. Philosophers and scientists from all over the world, thirty seven in all, comment on Kuipers’ philosophy, and each of their commentaries is followed by a reply from Kuipers. The present volume is devoted to Kuipers’ neo-classical philosophy of science, as laid down in his Structures in Science . Kuipers defends a dialectical interaction between science and philosophy in that he (...)
     
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  47.  40
    Structured Development and Promotion of a Research Field: Hormesis in Biology, Toxicology, and Environmental Regulatory Science.Paul Mushak & Kevin C. Elliott - 2015 - Kennedy Institute of Ethics Journal 25 (4):335-367.
    The ability of powerful and well-funded interest groups to steer scientific research in directions that advance their goals has become a significant social concern. This ability is increasingly being recognized in the peer-reviewed literature and in the findings of deliberative expert consensus committees. For example, there is increasing recognition that efforts to address climate change have been stymied in part by a powerful network of conservative foundations, which fund think tanks and other organizations that constitute a “climate change (...)
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  48.  9
    The structure of the life world of a modern person: traditional views and an alternative view.Natalya Alexandrovna Popkova - 2021 - Kant 41 (4):176-182.
    The purpose of the study is to substantiate and develop the author's model of the structure of the life world of a modern person based on the analysis of fundamental sociophilosophical ideas about the structuring of the human life world. The scientific novelty consists in generalizing the views of various representatives of the phenomenological direction on the human life world and structuring the life world of a modern person, taking into account such factors as the socio-biological nature of (...)
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  49.  10
    Newton’s Physics and the Conceptual Structure of the Scientific Revolution.Z. Bechler - 2012 - Springer.
    Three events, which happened all within the same week some ten years ago, set me on the track which the book describes. The first was a reading of Emile Meyerson works in the course of a prolonged research on Einstein's relativity theory, which sent me back to Meyerson's Ident ity and Reality, where I read and reread the striking chapter on "Ir rationality". In my earlier researches into the origins of French Conven tionalism I came to know similar views, (...)
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  50. How to judge scientific research articles.Hennie Lotter - 2000 - South African Journal for Language Teaching 34.
    How should scientists judge the quality of research articles? In this article I present general criteria for judging the scientific value of a research report submitted for publication. These criteria can improve the quality of research articles and produce fair referee reports that are scientifically justifiable. My view is based on four fundamental rules that guide all good science. These rules ought to determine whether scientific research reports merit publication in scientific journals. The (...)
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