Results for 'history of science, nature of science, science education'

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  1. A History of Science Approach to the Nature of Science.Nahum Kipnis - 2000 - In W. McComas (ed.), The Nature of Science in Science Education: Rationales and Strategies. pp. 177-196.
    I subordinated the discussion of historical and philosophical issues of science to learning scientific concepts, superimposing them so as to make them inseparable. The topics of units are the same as in regular science courses, such as "electrical conductors and nonconductors," and the goal is the same: to formulate the laws of phenomena. The difference is in the ways the unit is taught. I have found that understanding of a concept improves if it is "rediscovered" with active participation (...)
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  2. The Nature of Evolutionary Biology: At the Borderlands Between Historical and Experimental Science.Massimo Pigliucci - 2013 - In Kostas Kampourakis (ed.), The Philosophy of Biology: A Companion for Educators. Springer.
    The scientific status of evolutionary theory seems to be more or less perennially under question. I am not referring here (just) to the silliness of young Earth creation- ism (Pigliucci 2002; Boudry and Braeckman 2010), or even of the barely more intel- lectually sophisticated so-called Intelligent Design theory (Recker 2010; Brigandt this volume), but rather to discussions among scientists and philosophers of science concerning the epistemic status of evolutionary theory (Sober 2010). As we shall see in what follows, this (...)
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  3. A Natural History of Natural Theology: The Cognitive Science of Theology and Philosophy of Religion.Helen De Cruz & Johan De Smedt - 2015 - Cambridge, Massachusetts: MIT Press.
    [from the publisher's website] Questions about the existence and attributes of God form the subject matter of natural theology, which seeks to gain knowledge of the divine by relying on reason and experience of the world. Arguments in natural theology rely largely on intuitions and inferences that seem natural to us, occurring spontaneously—at the sight of a beautiful landscape, perhaps, or in wonderment at the complexity of the cosmos—even to a nonphilosopher. In this book, Helen De Cruz and Johan De (...)
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  4. The fact of evolution: Implications for Science education.James R. Hofmann & Bruce H. Weber - 2003 - Science & Education 12 (8):729-760.
    Creationists who object to evolution in the science curriculum of public schools often cite Jonathan Well’s book Icons of Evolution in their support (Wells 2000). In the third chapter of his book Wells claims that neither paleontological nor molecular evidence supports the thesis that the history of life is an evolutionary process of descent from preexisting ancestors. We argue that Wells inappropriately relies upon ambiguities inherent in the term ‘Darwinian’ and the phrase ‘Darwin’s theory’. Furthermore, he does not (...)
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  5. The Nature of Climate Science: Challenges for the Development of Climate Change Science Literacy in Education.Raymond Ndubisi Anyanwu - 2019 - Africa International Journal of Multidisciplinary Research 2 (5).
    Despite raising awareness and promoting knowledge and skills-development for education about climate change, efforts by the education sector to promote the development of climate change science literacy in schools is challenged by the nature of climate science. We illuminated the nature of climate science by analysing literature on the nature of science that foregrounds discussions in climate science, and found that climate science involves mostly complex systems and problems; the (...)
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  6. Prospective Science Teachers’ Levels of Understanding Science after Experiencing Explicit-Reflective Instruction: Hermeneutical Perspective.Davut Sarıtaş - 2020 - Journal of Bayburt Education Faculty (BAYEF) 15 (29):222-250.
    In this study, we aimed to investigate how prospective science teachers, who participated in a series of explicit-reflective activities for NOS teaching, understood "science in a social and cultural context" in the context of a biographical documentary film. We adopted a phenomenological approach. The data were analyzed descriptively by considering the aspects of nature of science and the levels of understanding as defined in Dilthey's hermeneutic approach. In this way, we determined participants’ levels of hermeneutic understanding (...)
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  7. The Relevance of Hume's Natural History of Religion for Cognitive Science of Religion.Helen De Cruz - 2015 - Res Philosophica 92 (3):653-674.
    Hume was a cognitive scientist of religion avant la lettre. His Natural History of Religion (1757 [2007]) locates the origins of religion in human nature. This paper explores similarities between some of his ideas and the cognitive science of religion, the multidisciplinary study of the psychological origins of religious beliefs. It also considers Hume’s distinction between two questions about religion: its foundation in reason (the domain of natural theology and philosophy of religion) and its origin in human (...)
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  8. A quantitative history of Japanese archaeology and natural science.Hisashi Nakao - 2018 - Japanese Journal of Archaeology 6 (1):3-22.
    This study examines the relationship between Japanese archaeology and natural science through a quantitative analysis of the two most authoritative archaeological journals and two other relevant journals in Japan. First, although previous studies have emphasized the impact of the Department of Anthropology at the University of Tokyo on the scientific aspects of Japanese archaeology, results of the present study suggest that its impact has been more limited than previously assumed. Second, while previous studies claimed that research funding by the (...)
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  9. Benefits of using critical thinking in high education.Abduljaleel Alwali - 2011 - Https://Library.Iated.Org/View/ALWALI2011BEN.
    Some people believe that critical thinking is not a modern science, but its roots are old and deeply rooted in the history of philosophy. Its roots date back to Aristotle, the inventor of logic and who was called the first teacher by virtue of this invention. Aristotle was impressed by the language of mathematics and wanted to invent a language to logic similar to the language of Mathematics. What encouraged Aristotle to do so is that Math language is (...)
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  10. 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, (...)
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  11. In praise of natural philosophy: a revolution for thought and life.Nicholas Maxwell - 2012 - Philosophia 40 (4):705-715.
    Modern science began as natural philosophy. In the time of Newton, what we call science and philosophy today – the disparate endeavours – formed one mutually interacting, integrated endeavour of natural philosophy: to improve our knowledge and understanding of the universe, and to improve our understanding of ourselves as a part of it. Profound, indeed unprecedented discoveries were made. But then natural philosophy died. It split into science on the one hand, and philosophy on the other. This (...)
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  12. The Ideological Matrix of Science: Natural Selection and Immunity as Case Studies.Agustin Ostachuk - 2019 - Cosmos and History: The Journal of Natural and Social Philosophy 15 (1):182-213.
    The modern concept of ideology was established by the liberal politician and philosopher Destutt de Tracy, with the objective of creating an all-embracing and general science of ideas, which followed the sensualist and empiricist trend initiated by Locke that culminated in the positivism of Comte. Natural selection and immunity are two key concepts in the history of biology that were strongly based on the Malthusian concept of struggle for existence. This concept wrongly assumed that population grew faster than (...)
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  13. Principles of Information Processing and Natural Learning in Biological Systems.Predrag Slijepcevic - 2021 - Journal for General Philosophy of Science / Zeitschrift für Allgemeine Wissenschaftstheorie 52 (2):227-245.
    The key assumption behind evolutionary epistemology is that animals are active learners or ‘knowers’. In the present study, I updated the concept of natural learning, developed by Henry Plotkin and John Odling-Smee, by expanding it from the animal-only territory to the biosphere-as-a-whole territory. In the new interpretation of natural learning the concept of biological information, guided by Peter Corning’s concept of “control information”, becomes the ‘glue’ holding the organism–environment interactions together. The control information guides biological systems, from bacteria to ecosystems, (...)
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  14. The Beginnings and Nature of Science in Archaic Greece [Počiatky a povaha vedy v archaickom Grécku].Pavol Labuda - 2017 - Cultural History 8 (2):176-199.
    The Beginnings and Nature of Science in Archaic Greece: The aim of the paper is to examine the beginnings and nature of science in the archaic period of ancient Greece. The method of research is historicalphilosophical. It is historical because the interpretation of the birth of science suggested by our approach corresponds with text evidence. And it is philosophical because our reconstruction of the birth of science is able to explain the dynamic nature (...)
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  15. History of Science as a Facilitator for the Study of Physics: A Repertoire of Quantum Theory.Roberto Angeloni - 2018 - Newcastle upon Tyne District, Newcastle upon Tyne, UK: Cambridge Scholars Publishing.
    This proposal serves to enhance scientific and technological literacy, by promoting STEM (Science, Technology, Engineering, and Mathematics) education with particular reference to contemporary physics. The study is presented in the form of a repertoire, and it gives the reader a glimpse of the conceptual structure and development of quantum theory along a rational line of thought, whose understanding might be the key to introducing young generations of students to physics.
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    Gaming with History: How History of Science can be used as a scientific storytelling tool.Dora Dias & José Ferraz-Caetano - 2021 - Hypothesis Historia Periodical 1 (1):33-44.
    Gamification can be a useful tool when engaging young students with science. When designing a new game, it is pivotal that a featured storytelling element can draw students' attention while providing an enjoyable experience. However, building such an insightful science dissemination narrative from scratch is often challenging. As real-life situations are frequently more appealing to students, adding alternative history elements can be helpful when designing such a game. In this paper, we present a novel educational framework to (...)
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  17. A New Theory of Serendipity: Nature, Emergence and Mechanism.Quan-Hoang Vuong (ed.) - 2022 - Berlin, Germany: De Gruyter.
    When you type the word “serendipity” in a word-processor application such as Microsoft Word, the autocorrection engine suggests you choose other words like “luck” or “fate”. This correcting act turns out to be incorrect. However, it points to the reality that serendipity is not a familiar English word and can be misunderstood easily. Serendipity is a very much scientific concept as it has been found useful in numerous scientific discoveries, pharmaceutical innovations, and numerous humankind’s technical and technological advances. Therefore, there (...)
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  18.  83
    Pseudo-Scientific Beliefs and Knowledge of The Nature of Science in PreService Teachers.Kızılcık Hasan - 2022 - International Journal of Research in Education and Science 8 (4):680-712.
    This study aimed to determine the levels of pre-service teachers' nature of science (NOS) knowledge, assess their pseudo-scientific beliefs, and examine the relationship between aspects of their NOS knowledge and these beliefs. It also aimed to determine whether NOS knowledge and pseudo-scientific beliefs depended on the discipline and gender. A survey method was conducted in this study. Data were collected from 215 pre-service teachers who are being educated in different fields in a state university. Two different five-point Likert (...)
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  19. Lucretius and the history of science.Monte Johnson & Catherine Wilson - 2007 - In Stuart Gillespie & Philip R. Hardie (eds.), The Cambridge Companion to Lucretius. Cambridge University Press.
    An overview of the influence of Lucretius poem On the Nature of Things (De Rerum Natura) on the renaissance and scientific revolution of the seventeenth century, and an examination of its continuing influence over physical atomism in the nineteenth and twentieth centuries.
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  20. Review of Reading Natural Philosophy: Essays in the History and Philosophy of Science and Mathematics. [REVIEW]Chris Smeenk - 2005 - Studies in History and Philosophy of Science Part B: Studies in History and Philosophy of Modern Physics 36 (1):194-199.
    Book Review for Reading Natural Philosophy: Essays in the History and Philosophy of Science and Mathematics, La Salle, IL: Open Court, 2002. Edited by David Malament. This volume includes thirteen original essays by Howard Stein, spanning a range of topics that Stein has written about with characteristic passion and insight. This review focuses on the essays devoted to history and philosophy of physics.
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  21. Natural Philosophy or Science in Premodern Epistemic Regimes? The Case of the Astrology of Albert the Great and Galileo Galilei.Scott E. Hendrix - 2011 - Teorie Vědy / Theory of Science 33 (1):111-132.
    Scholarly attempts to analyze the history of science sometime suffer from an imprecise use of terms. In order to understand accurately how science has developed and from where it draws its roots, researchers should be careful to recognize that epistemic regimes change over time and acceptable forms of knowledge production are contingent upon the hegemonic discourse informing the epistemic regime of any given period. In order to understand the importance of this point, I apply the techniques of (...)
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  22. Axiomatic Natural Philosophy and the Emergence of Biology as a Science.Hein van den Berg & Boris Demarest - 2020 - Journal of the History of Biology 53 (3):379-422.
    Ernst Mayr argued that the emergence of biology as a special science in the early nineteenth century was possible due to the demise of the mathematical model of science and its insistence on demonstrative knowledge. More recently, John Zammito has claimed that the rise of biology as a special science was due to a distinctive experimental, anti-metaphysical, anti-mathematical, and anti-rationalist strand of thought coming from outside of Germany. In this paper we argue that this narrative neglects the (...)
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  23. The history and philosophy of taxonomy as an information science.Catherine Kendig & Joeri Witteveen - 2020 - History and Philosophy of the Life Sciences 42 (3):1-9.
    We undeniably live in an information age—as, indeed, did those who lived before us. After all, as the cultural historian Robert Darnton pointed out: ‘every age was an age of information, each in its own way’ (Darnton 2000: 1). Darnton was referring to the news media, but his insight surely also applies to the sciences. The practices of acquiring, storing, labeling, organizing, retrieving, mobilizing, and integrating data about the natural world has always been an enabling aspect of scientific work. Natural (...)
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  24. A Survey of Effects of STS Education on the University Students' Moral Development and Epistemological Beliefs: Using DIT and EBI.Hyemin Han - 2006 - Journal of Ethics Education Studies 9:201-217.
    The purpose of this study is to assess effects of STS(Science and Technology Studies) education in natural science colleges and engineering colleges. STS is an interdisciplinary study includes ethics, history, sociology, policy of science and technology; its main purpose is elaborating students' social perspectives on science and technology. In Korea, however, there is few studies related to STS education to improve its educational effects. Therefore, this study will do exploratory investigation effects of STS (...)
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  25. Consilience and Natural Kind Reasoning (in Newton's Argument for Universal Gravitation) in An Intimate Relation. Studies in the History and Philosophy of Science.W. Harper - 1989 - Boston Studies in the Philosophy of Science 116:115-152.
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  26. The Philosophy of Inquiry and Global Problems: The Intellectual Revolution Needed to Create a Better World.Nicholas Maxwell - 2024 - London: Palgrave-Macmillan.
    Bad philosophy is responsible for the climate and nature crises, and other global problems too that threaten our future. That sounds mad, but it is true. A philosophy of science, or of theatre or life is a view about what are, or ought to be, the aims and methods of science, theatre or life. It is in this entirely legitimate sense of “philosophy” that bad philosophy is responsible for the crises we face. First, and in a blatantly (...)
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  27. Friedrich Engels and Dialectics of Nature.Kaan Kangal - 2020 - London, UK: Palgrave Macmillan.
    Reading different or controversial intentions into Marx and Engels’ works has been a common but somewhat unquestioned practice in the history of Marxist scholarship. Engels’ Dialectics of Nature, a torso for some and a great book for others, is a case in point. The entire Engels debate separates into two opposite views: Engels the contaminator of Marx’s “new materialism” vs. Engels the self-educated genius of dialectical materialism. What Engels, unlike Marx, has not enjoyed so far is a critical (...)
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  28. Hume's Natural Philosophy and Philosophy of Physical Science.Matias Slavov - 2020 - London: Bloomsbury Academic.
    This book contextualizes David Hume's philosophy of physical science, exploring both Hume's background in the history of early modern natural philosophy and its subsequent impact on the scientific tradition.
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  29. Science of Nature: Garcia de Orta as a Philosopher of Science.Koshy Tharakan & Alito Siqueira - 2009 - In Anabela Mendes (ed.), Garcia de Orta and Alexander von Humboldt: Across the East and the West. Universidade Católica Editora. pp. 31--38.
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  30. Scientific Realism in the Wild: An Empirical Study of Seven Sciences and History and Philosophy of Science.James R. Beebe & Finnur Dellsén - 2020 - Philosophy of Science 87 (2):336-364.
    We report the results of a study that investigated the views of researchers working in seven scientific disciplines and in history and philosophy of science in regard to four hypothesized dimensions of scientific realism. Among other things, we found that natural scientists tended to express more strongly realist views than social scientists, that history and philosophy of science scholars tended to express more antirealist views than natural scientists, that van Fraassen’s characterization of scientific realism failed to (...)
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  31.  38
    Philosophy is not a science: Margaret Macdonald on the nature of philosophical theories.Peter West - forthcoming - Hopos: The Journal of the International Society for the History of Philosophy of Science.
    Margaret Macdonald was at the institutional heart of analytic philosophy in Britain in the mid-twentieth century. Yet, her views on the nature of philosophical theories diverge quite considerably from those of many of her contemporaries. In this paper, I focus on her 1953 article ‘Linguistic Philosophy and Perception’, a provocative paper in which Macdonald argues that the value of philosophical theories is more akin to that of poetry or art than science or mathematics. I do so for two (...)
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  32. Kuhn, Normativity and History and Philosophy of Science.Howard Sankey - 2012 - Epistemologia:103-111.
    This paper addresses the relationship between the history and philosophy of science by way of the issue of epistemic normativity. After brief discussion of the relationship between history and philosophy of science in Kuhn’s own thinking, the paper focuses on the implications of the history of science for epistemic normativity. There may be historical evidence for change of scientific methodology, which may seem to support a position of epistemic relativism. However, the fact that the (...)
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  33. Making Philosophy of Science Relevant for Science Students.Henrik Kragh Sørensen - 2012 - Centre for Science Studies, University of Aarhus.
    Since 2004, it has been mandated by law that all Danish undergraduate university programmes have to include a compulsory course on the philosophy of science for that particular program. At the Faculty of Science and Technology, Aarhus University, the responsibility for designing and running such courses were given to the Centre for Science Studies, where a series of courses were developed aiming at the various bachelor educations of the Faculty. Since 2005, the Centre has been running a (...)
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  34. Science and comics: from popularization to the discipline of Comics Studies.O. Hudoshnyk & Oleksandr P. Krupskyi - 2022 - History of Science and Technology 12 (2):210-230.
    Modern scientific communication traditionally uses visual narratives, such as comics, for education, presentation of scientific achievements to a mass audience, and as an object of research. The article offers a three-level characterization of the interaction of comic culture and science in a diachronic aspect. Attention is focused not only on the chronological stages of these intersections, the expression of the specifics of the interaction is offered against the background of scientific and public discussions that accompany the comics–science (...)
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  35. 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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  36. Philosophy of Physics.Mario Bacelar Valente - 2012 - History and Philosophy of Science and Technology - EOLSS.
    Philosophy of Physics has emerged recently as a scholarly important subfield of philosophy of science. However outside the small community of experts it is not a well-known field. It is not clear even to experts the exact nature of the field: how much philosophical is it? What is its relation to physics? In this work it is presented an overview of philosophy of physics that tries to answer these and other questions.
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  37. Interdisciplinarity and insularity in the diffusion of knowledge: an analysis of disciplinary boundaries between philosophy of science and the sciences.John McLevey, Alexander V. Graham, Reid McIlroy-Young, Pierson Browne & Kathryn Plaisance - 2018 - Scientometrics 1 (117):331-349.
    Two fundamentally different perspectives on knowledge diffusion dominate debates about academic disciplines. On the one hand, critics of disciplinary research and education have argued that disciplines are isolated silos, within which specialists pursue inward-looking and increasingly narrow research agendas. On the other hand, critics of the silo argument have demonstrated that researchers constantly import and export ideas across disciplinary boundaries. These perspectives have different implications for how knowledge diffuses, how intellectuals gain and lose status within their disciplines, and how (...)
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  38. The Nature of Darwin’s Support for the Theory of Natural Selection.Elisabeth A. Lloyd - 1983 - Philosophy of Science 50 (1):112-129.
    When natural selection theory was presented, much active philosophical debate, in which Darwin himself participated, centered on its hypothetical nature, its explanatory power, and Darwin's methodology. Upon first examination, Darwin's support of his theory seems to consist of a set of claims pertaining to various aspects of explanatory success. I analyze the support of his method and theory given in the Origin of Species and private correspondence, and conclude that an interpretation focusing on the explanatory strengths of natural selection (...)
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  39. Review of Raffaele Pisano, Joseph Agassi, and Daria Drozdova, Hypotheses and Perspectives in the History and Philosophy of Science: Homage to Alexandre Koyré 1892-1964[REVIEW]Marco Crosa - 2022 - Sophia Philosophical Review (1):28-35.
    The work is a collection of 21 papers with at the center the figure of Alexander Koyré. From the reading several understanding keys emerge each interconnecting and overlapping with the others. Far from considering my analysys the ultimate I believe it will help the readers on accessing the entire collection that might shows itself quite complex for the variety of the topics which are addressed.
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  40. 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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  41. Josiah Parsons Cooke Jr.: Epistemology in the Service of Science, Pedagogy, and Natural Theology.Stephen M. Contakes & Christopher Willard Kyle - 2011 - Hyle 17 (1):1 - 23.
    Josiah Parsons Cooke established chemistry education at Harvard University, initiated an atomic weight research program, and broadly impacted American chemical education through his students, the introduction of laboratory instruction, textbooks, and influence on Harvard's admissions requirements. The devoutly Unitarian Cooke also articulated and defended a biogeochemical natural theology, which he defended by arguing for commonalities between the epistemologies of science and religion. Cooke's pre-Mendeleev classification scheme for the elements and atomic weight research were motivated by his interest (...)
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  42. Hume, the Philosophy of Science and the Scientific Tradition.Matias Slavov - 2018 - 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 (...)
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  43. Suicidal Utopian Delusions in the 21st Century: Philosophy, Human Nature and the Collapse of Civilization-- Articles and Reviews 2006-2017 2nd Edition Feb 2018.Michael Starks - 2016 - Las Vegas, USA: Reality Press.
    This collection of articles was written over the last 10 years and edited to bring them up to date (2019). All the articles are about human behavior (as are all articles by anyone about anything), and so about the limitations of having a recent monkey ancestry (8 million years or much less depending on viewpoint) and manifest words and deeds within the framework of our innate psychology as presented in the table of intentionality. As famous evolutionist Richard Leakey says, it (...)
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  44. Methodology of the Sciences.Lydia Patton - 2015 - In Michael Forster & Kristin Gjesdal (eds.), The Oxford Handbook of German Philosophy in the Nineteenth Century. Oxford University Press. pp. 594-606.
    In the growing Prussian university system of the early nineteenth century, "Wissenschaft" (science) was seen as an endeavor common to university faculties, characterized by a rigorous methodology. On this view, history and jurisprudence are sciences, as much as is physics. Nineteenth century trends challenged this view: the increasing influence of materialist and positivist philosophies, profound changes in the relationships between university faculties, and the defense of Kant's classification of the sciences by neo-Kantians. Wilhelm Dilthey's defense of the independence (...)
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  45. Hume's Methodology and the Science of Human Nature.Vadim V. Vasilyev - 2013 - History of Philosophy Yearbook 2012:62-115.
    In this paper I try to explain a strange omission in Hume’s methodological descriptions in his first Enquiry. In the course of this explanation I reveal a kind of rationalistic tendency of the latter work. It seems to contrast with “experimental method” of his early Treatise of Human Nature, but, as I show that there is no discrepancy between the actual methods of both works, I make an attempt to explain the change in Hume’s characterization of his own methods. (...)
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  46. The rise of logical empiricist philosophy of science and the fate of speculative philosophy of science.Joel Katzav & Krist Vaesen - 2022 - Hopos: The Journal of the International Society for the History of Philosophy of Science 12 (2):000-000.
    This paper contributes to explaining the rise of logical empiricism in mid-twentieth century (North) America and to a better understanding of American philosophy of science before the dominance of logical empiricism. We show that, contrary to a number of existing histories, philosophy of science was already a distinct subfield of philosophy, one with its own approaches and issues, even before logical empiricists arrived in America. It was a form of speculative philosophy with a concern for speculative metaphysics, normative (...)
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  47. Philosophy of Science, Psychiatric Classification, and the DSM.Jonathan Y. Tsou - 2019 - In Bluhm Robyn & Tekin Serife (eds.), The Bloomsbury Companion to the Philosophy of Psychiatry. 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 (...)
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  48. Improving Epistemological Beliefs and Moral Judgment Through an STS-Based Science Ethics Education Program.Hyemin Han & Changwoo Jeong - 2014 - Science and Engineering Ethics 20 (1):197-220.
    This study develops a Science–Technology–Society (STS)-based science ethics education program for high school students majoring in or planning to major in science and engineering. Our education program includes the fields of philosophy, history, sociology and ethics of science and technology, and other STS-related theories. We expected our STS-based science ethics education program to promote students’ epistemological beliefs and moral judgment development. These psychological constructs are needed to properly solve complicated moral and (...)
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  49. Werner Heisenberg’s Position on a Hypothetical Conception of Science.Gregor Schiemann - 2009 - In Michael Heidelberger & Gregor Schiemann (eds.), The Significance of the Hypothetical in Natural Science. De Gruyter. pp. 251-268.
    Werner Heisenberg made an important – and as yet insufficiently researched – contribution to the transformation of the modern conception of science. This transformation involved a reassessment of the status of scientific knowledge from certain to merely hypothetical – an assessment that is widely recognized today. I examine Heisenberg’s contribution in particular by taking his conception of “closed theories” as an example according to which the established physical theories have no universal and exclusive, but only a restricted validity. Firstly, (...)
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  50. The Science of Breath and the Philosophy of the Tatwas, Tr. From the Sansk., with Explanatory Essays on Nature's Finer Forces by R. Prasád.Rama Science & Prasad - 1890
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