Results for 'scientific education'

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  1. Universal Declaration on Bioethics and Human Rights.United Nations Educational, Scientific & Cultural Organization - 2006 - Jahrbuch für Wissenschaft Und Ethik 11 (1).
     
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  2. Preliminary Draft Declaration on Universal Norms on Bioethics.United Nations Educational, Scientific & Cultural Organization - 2005 - Jahrbuch für Wissenschaft Und Ethik 10 (1).
     
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  3.  20
    Universal Declaration on Bioethics and Human Rights.Scientific And Cultural Organization United Nations Educational - 2006 - Jahrbuch für Wissenschaft Und Ethik 11 (1):377-385.
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  4.  10
    Preliminary Draft Declaration on Universal Norms on Bioethics.Scientific And Cultural Organization United Nations Educational - 2005 - Jahrbuch für Wissenschaft Und Ethik 10 (1):381-390.
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  5. Ibn Rushd: faylasūf al-sharq wa-al-gharb: fī al-dhikrá al-miʼawīyah al-thāminah li-wafātih.Miqdad Arafah Mansiyah & Cultural Scientific Organization Arab League Educational (eds.) - 1999 - Tūnis: Jāmiʻat al-Duwal al-ʻArabīyah, al-Munaẓẓamah al-ʻArabīyah lil-Tarbiyah wa-al-Thaqāfah wa-al-ʻUlūm.
     
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  6. Annual Reference Catalog for Optics.Edmund Scientific - forthcoming - Science & Education.
  7.  22
    Animals in scientific education and a reverence for life.Henk Verhoog - 1999 - In Francine L. Dolins (ed.), Attitudes to animals: views in animal welfare. New York: Cambridge University Press.
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  8.  32
    Scientific education versus military training: The influence of Napoleon Bonaparte on the Ecole Polytechnique.Margaret Bradley - 1975 - Annals of Science 32 (5):415-449.
    The influence of Napoleon Bonaparte on the Ecole Polytechnique has long been a matter for debate. In this article, the extent of this influence is illustrated, together with resistance within the school itself to Napoleon's attempts to bend it to his own will and use it for purposes of military adventure. Manuscript material, including Napoleon's own private plans for the reorganization of the school, is reproduced to throw light on his intentions and his own attitudes to education.
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  9. Scientifically educated Sports Sports Philosophy A Plea.Volker Schuermann - 2011 - Philosophische Rundschau 58 (3):203 - 225.
     
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  10.  17
    <> engineering and scientific education conditions us to expect everything, including intelligence, to have a simple, compact explanation. Accordingly,..Marvin Minsky & Patrick H. Winston - unknown
    Engineering and scientific education conditions us to expect everything, including intelligence, to have a simple, compact explanation. Accordingly, when people new to AI ask "What's AI all about," they seem to expect an answer that defines AI in terms of a few basic mathematical laws.
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  11.  18
    The problem of scientific education.Rasoul Nejadmehr - 2017 - Confero: Essays on Education, Philosophy and Politics 5 (1):71-173.
    In this essay, I term the dominant educational paradigm of our time as scientific education and subject it to historical analysis in order to bring its tacit racial, colonial and Eurocentric biases into view. I subsume this cluster of problems under the general heading of “the problem of scientific education”, a problem simultaneously submerged deeply in the invisible background of current education and across its foreground inasmuch as it conditions daily educational practices beyond educators’ awareness. (...)
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  12. William James's scientific education.Paul Jerome Croce - 1995 - History of the Human Sciences 8 (1):9-27.
    William James's disgust for scientific arrogance was not in defiance of his early education in science, but because of it. In particular, James was influenced by the probabilistic method of Charles Darwin's theory of natural selection, especially as interpreted by Charles Sanders Peirce. Peirce, who was James's most immediate scientific influence, maintained an unresolved ambiguity between a probabilistic scientific fallibilism and a confidence in science's quest for certainty, while James emphasized the fallibilism of science as the (...)
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  13. Innovative development of scientifically-educational sphere.E. A. Pushkareva - 2009 - Philosophy of Education 3:28.
     
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  14. III formation scientifique scientific education научное воспитание.НАУЧНОЕ ВОСПИТАНИЕ - 1983 - Paideia 10:111.
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  15.  24
    Towards a history and philosophy of scientific education in practice.Pieter Present - unknown
    Teaching is an important aspect of scientific practice. However, it has only recently become the subject of detailed historical and philosophical analyses. In this paper, I argue that Joseph Rouse’s philosophy of scientific practice has important implications for the study of scientific education. Rouse’s dynamic conception of scientific knowledge entails that education should occupy a central place in our analyses of scientific practices, as it is crucial in guaranteeing their temporal extension and sustenance. (...)
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  16.  26
    Sociology of scientific knowledge and scientific education: Part I.Peter Slezak - 1994 - Science & Education 3 (3):265-294.
  17.  24
    The financial basis of french scientific education and scientific institutions in Paris, 1790–1815.Margaret Bradley - 1979 - Annals of Science 36 (5):451-491.
    In this article an attempt is made to determine what financial support was given between 1790 and 1815 to some of the principal French scientific institutions situated in Paris. Systematic budgeting was not established until after 1815, so it has not been possible to provide a complete picture of development. The financial and economic background have been surveyed, together with some political arguments for and against investment in science and education. Eight institutions have been chosen as representative of (...)
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  18.  8
    A Note On Lavoisier's Scientific Education.Henry Guerlac - 1956 - Isis 47:211-216.
  19.  11
    A Note on Lavoisier's Scientific Education.Henry Guerlac - 1956 - Isis 47 (3):211-216.
  20.  4
    The Triadic Dimension of The Communist Manifesto: Its Implications for Scientific Education in a New Era’s Youth Talent.L. I. Dongming - 2023 - Philosophy Study 13 (4).
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  21.  9
    American and English attitudes to scientific education during the nineteenth-century.Michael D. Stephens & Gordon W. Roderick - 1973 - Annals of Science 30 (4):435-456.
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  22.  12
    Nineteenth century ventures in Liverpool's scientific education.Michael D. Stephens & Gordon W. Roderick - 1972 - Annals of Science 28 (1):61-86.
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  23.  4
    Habermas, Generalization, and State Interests in Scientific Educational Research.Clarence W. Joldersma - 2004 - Philosophy of Education 60:280-283.
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  24. Scientific Realism Versus Antirealism in Science Education.Seungbae Park - 2016 - Santalka: Filosofija, Komunikacija 24 (1):72-81.
    Scientific realists believe both what a scientific theory says about observables and unobservables. In contrast, scientific antirealists believe what a scientific theory says about observables, but not about unobservables. I argue that scientific realism is a more useful doctrine than scientific antirealism in science classrooms. If science teachers are antirealists, they are caught in Moore’s paradox when they help their students grasp the content of a scientific theory, and when they explain a phenomenon (...)
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  25.  65
    Inclusivity in the Education of Scientific Imagination.Michael T. Stuart & Hannah Sargeant - 2024 - In E. Hildt, K. Laas, C. Miller & E. Brey (eds.), Building Inclusive Ethical Cultures in STEM. Springer Verlag. pp. 267-288.
    Scientists imagine constantly. They do this when generating research problems, designing experiments, interpreting data, troubleshooting, drafting papers and presentations, and giving feedback. But when and how do scientists learn how to use imagination? Across 6 years of ethnographic research, it has been found that advanced career scientists feel comfortable using and discussing imagination, while graduate and undergraduate students of science often do not. In addition, members of marginalized and vulnerable groups tend to express negative views about the strength of their (...)
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  26.  30
    Scientific Instruments for Education in Early Twentieth-Century Spain.Pedro Ruiz-Castell - 2008 - Annals of Science 65 (4):519-527.
    Summary 1898 marked a crucial point in the end of the nineteenth-century Spanish crisis. The military defeat ending the Spanish-American War was seen as proof that the country was in terminal decline. With the ideals of regeneration spreading throughout Spanish society, the State became more interested in supporting and sponsoring science and technology, as well as in creating a modern educational system. The resulting reforms reflected this strong interest in scientific education, and consequently, the first decades of the (...)
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  27.  8
    Religious Education as a Scientific Discipline: The Establishment of Religious Education Department at Ankara University Divinity Faculty.Cemal Tosun - 2018 - Dini Araştırmalar 21 (53 (15-06-2018)):9-34.
    Türkiye'de din eğitimi bilimi, Ankara Üniversitesi İlahiyat Fakültesi'ndeki akademik disiplinler içinde doğmuş ve alanın ilk akademisyenleri bu fakültede yetişmiştir. Fakültenin açılışından uzun bir süre sonra kurulan Din Eğitimi Anabilim Dalı, yeni kurulan ilahiyat fakültelerinin din eğitimi akademisyenlerini yetiştirmede öncü rol oynamıştır. Bu makalede, alanında ilk ve lider olmasından dolayı Ankara Üniversitesi İlahiyat Fakültesi üzerine yoğunlaşılarak, din eğitiminin Türkiye'de bilimsel bir disiplin olarak gelişmesi tartışılmaktadır. Ayrıca, Türkiye'deki mevcut din eğitiminin genel kurumsal görünümü ile ilgili bilgi verilmektedir. Araştırmada, din eğitimi bölümünün tarihsel (...)
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  28.  28
    Can educational research be scientific?Wilfred Carr - 1983 - Journal of Philosophy of Education 17 (1):35–43.
    Wilfred Carr; Can Educational Research be Scientific?, Journal of Philosophy of Education, Volume 17, Issue 1, 30 May 2006, Pages 35–43, https://doi.org/10.1111.
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  29.  7
    Teaching Scientific Tasawuf in the Islamic Education System: Exploring Kiai Ahmad Khotib Insights.Hajam Hajam - 2023 - European Journal for Philosophy of Religion 15 (3):131-155.
    This paper constructs the teaching of tasawuf as a scientific methods in the higher education in Indonesia. The inclusion of systematic approach is based on the teaching of tasawuf by Kiai Emet Ahmad Khotib from Cirebon West Java Indonesia. This study implemented habitus research method and historical method that centered on library research. Habitus is the mental or cognitive structure through which people deal with the social world. A person is endowed with a set of internalized schemas through (...)
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  30.  29
    Science education for citizenship: teaching socio-scientific issues.Mary Ratcliffe - 2003 - Philadelphia: Open University Press. Edited by Marcus Grace.
    Explores the teaching and learning of issues relating to the impact of science in society. This title offers practical guidance in devising learning goals and suitable learning and assessment strategies. It helps teachers to provide students with the skills and understanding needed to address these multi-faceted issues.
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  31.  92
    Scientific values and moral education in the teaching of science.Jeffrey Burkhardt - 1999 - Perspectives on Science 7 (1):87-110.
    : Implicit instruction about values occurs throughout scientific communication, whether in the university classroom or in the larger public forum. The concern of this paper is that the kind of values education that occurs includes "reverse moral education," the idea that moral considerations are at best extra scientific if not simply irrational. The (a)moral education that many scientists unwittingly foist on their "students" undergirds the scientific establishment's typical responses to larger social issues: "Huff!" In (...)
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  32.  23
    Education and psychology: Plato, Piaget, and scientific psychology.Kieran Egan - 1983 - London: Teachers College Press, Columbia University.
  33.  8
    Scientific and methodological support of physical education in the framework of FSES-3++.Vadim Sergeevich Denisenko, Ivan Alekseevich Bavtryukov & Tatiana Vasilievna Strelnikova - 2021 - Kant 41 (4):244-251.
    This research is devoted to the study of scientific and methodological aspects of providing students with physical education. The research is based on the works of Russian teachers who have adopted the experience of the new higher education program for bachelor's degree. The starting point for the development of new concepts is the latest edition of the Federal State Educational Standard for Higher Education. The purpose of the study is to analysis of the scientific and (...)
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  34.  4
    Science & society: scientific thought and education for the 21st century.Peter Daempfle - 2014 - Burlington, Massachusetts: Jones & Bartlett Learning.
    Introduction -- The philosophy of science -- Scientific research -- Math gives science power -- The history of science -- Science and society -- Scientific rewards -- Scientific integrity vs. pseudosciences -- An age of optimism -- Roadblocks to science -- Teaching critical thinking -- A modern synthesis -- Science education: the need for good people in science -- Science at risk.
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  35. From scientific literacy to sustainability literacy: an ecological framework for education.Laura Colucci‐Gray, Elena Camino, Giuseppe Barbiero & Donald Gray - 2006 - Science Education 90 (2):227-252.
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  36.  16
    A Scientific Approach to Religious Education in Childhood.Aslihan ATİK - 2019 - Dini Araştırmalar 22 (56):353-369.
    The aim of this study is to create a sample curriculum which aims to explain the belief and belief of Allah, which is one of the most basic concepts of religious education, based on the developmental based life centred religion concept as an alternative to the existing religious education practices, based on the order and functioning of the universe and to explain its functionality. For this purpose, 12 children who have been educated in the 3rd grade in the (...)
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  37.  51
    Education, Enlightenment and Positivism: The Vienna Circle's Scientific World-Conception Revisited.Thomas E. Uebel - 2004 - Science & Education 13 (1-2):41-66.
  38.  8
    Scientific ethos and ethical dimensions of education.Sergey B. Kulikov - 2022 - International Journal of Ethics Education 7 (2):307-324.
    This research examines the ethical dimensions of ethical thought aimed at reflecting fundamentals or leading principles of the production and reproduction of knowledge in science and tertiary education. To achieve research goals, the author of this article evaluates the key assumption that statements in the ethics of science and education are transcendental but do not require a reference to a transcendental or metaphysical subject. The author adheres to the stances by Wittgenstein and Moore and defines ethics in terms (...)
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  39. Scientific standards and colonial education in British India and French Senegal.Michael Adas - 1991 - In Teresa A. Meade & Mark Walker (eds.), Science, Medicine, and Cultural Imperialism. St. Martin's Press. pp. 4--35.
     
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  40. Scientific culture and public education.Cordero Alberto - 2001 - Science & Education 10.
  41.  1
    A scientific approach to our educational cultural problems.Shibdas Ghosh - 1974 - [Calcutta: P. Ghosh.
  42.  4
    Make It Scientific: Theories of Education from Dewey to Gadamer.Paul Fairfield - 2017 - In Babette E. Babich (ed.), Hermeneutic Philosophies of Social Science. Boston: De Gruyter. pp. 295-312.
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  43.  51
    Ethics Teaching in Higher Education for Principled Reasoning: A Gateway for Reconciling Scientific Practice with Ethical Deliberation.Mehmet Aközer & Emel Aközer - 2017 - Science and Engineering Ethics 23 (3):825-860.
    This paper proposes laying the groundwork for principled moral reasoning as a seminal goal of ethics interventions in higher education, and on this basis, makes a case for educating future specialists and professionals with a foundation in philosophical ethics. Identification of such a seminal goal is warranted by the progressive dissociation of scientific practice and ethical deliberation since the onset of a problematic relationship between science and ethics around the mid-19th century, and the extensive mistrust of integrating ethics (...)
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  44. Constructivisms, scientific methods, and reflective judgment in science education.Richard E. Grandy - 2009 - In Harvey Siegel (ed.), The Oxford Handbook of Philosophy of Education. Oxford University Press.
     
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  45.  13
    Education and Psychology: Plato, Piaget and Scientific Psychology.D. W. Hamlyn & Kieran Egan - 1986 - British Journal of Educational Studies 34 (1):113.
  46.  4
    Scientific foundations of education.Thomas Michael Weiss - 1960 - Dubuque, Iowa,: W. C. Brown Co.. Edited by Kenneth H. Hoover.
  47.  16
    Scientific understanding, control of the environment and science education.Seng Piew Loo - 1999 - Science & Education 8 (1):79-88.
  48. The scientific movement in education.Guy Montrose Whipple (ed.) - 1938 - Bloomington, Ill.,: National Society for the Study of Education.
  49.  65
    Feyerabend on politics, education, and scientific culture.Ian James Kidd - 2016 - Studies in History and Philosophy of Science Part A 57:121-128.
    The purpose of this paper is to offer a sympathetic reconstruction of the political thought of Paul Feyerabend. Using a critical discussion of the idea of the ‘free society’ it is suggested that his political thought is best understood in terms of three thematic concerns – liberation, hegemony, and the authority of science – and that the political significance of those claims become clear when they are considered in the context of his educational views. It emerges that Feyerabend is best (...)
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  50. Ethics of scientific research involving people in biological education.Mária Tulenková & Irena Šutiaková - 2012 - Ethics and Bioethics (in Central Europe) 2 (1-2):68-77.
    In the last few years, the area of bioethics has been implemented into university studies. It goes beyond the traditional subject of ethical science and enters into the sphere of medicinal, sociological and also natural sciences. The education process at the Faculty of Humanities and Natural Sciences, University of Prešov, aims to increase the quality and efficiency when preparing teacher trainees at Masters level in didactics of biology. This article offers a quick overview of the implementation of the area (...)
     
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