Results for 'critical multicultural science education'

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  1.  49
    Indian Experiences with Science: Considerations for History, Philosophy, and Science Education.Sundar Sarukkai - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1691-1719.
    This chapter explores how perspectives on science drawn from Indian experiences can contribute to the interface between history and philosophy of science (HPS) and science education (SE). HPS is encoded in science texts in the various presuppositions that underlie both the content and the way the content is presented. Thus, a deeper engagement with contemporary work in HPS will be of great significance to science teaching. By drawing on the notion of multicultural origins (...)
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  2. Multicultural science education: Perspectives, definitions, and research agenda.Mary M. Atwater & Joseph P. Riley - 1993 - Science Education 77 (6):661-668.
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  3. Comments on multicultural science education.Ron Good - 1995 - Science Education 79 (3):335-336.
     
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  4.  17
    Epistemic universalism and the shortcomings of curricular multicultural science education.Sherry A. Southerland - 2000 - Science & Education 9 (3):289-307.
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  5. In search of a rationale for multicultural science education.Derek Hodson - 1993 - Science Education 77 (6):685-711.
     
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  6.  8
    Knowledge Production and Power in an Online Critical Multicultural Teacher Education Course.Ramona Maile Cutri, Erin Feinauer Whiting & Eric Ruiz Bybee - forthcoming - Educational Studies:1-12.
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  7. A critique of Hodson's “in search of a rationale for multicultural science education”.Harvey Williams - 1994 - Science Education 78 (5):515-519.
     
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  8. A critique of Hodson in search of a rationale for multicultural science-education-response.D. Hodson - 1994 - Science Education 78 (5):521-525.
     
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  9. Learning to teach in a diverse setting: A case study of a multicultural science education enthusiast.Julie A. Luft, Jacki Bragg & Chris Peters - 1999 - Science Education 83 (5):527-543.
     
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  10.  20
    The hypothesis of incommensurability and multicultural education.Tim Mcdonough - 2009 - Journal of Philosophy of Education 43 (2):203-221.
    This article describes the logical and rhetorical grounds for a multicultural pedagogy that teaches students the knowledge and skills needed to interact creatively in the public realm betwixt and between cultures. I begin by discussing the notion of incommensurability. I contend that this hypothesis was intended to perform a particular rhetorical task and that the assumption that it is descriptive of a condition to which intercultural interactions are necessarily subjected is an unwarranted extension of the hypothesis as originally conceived. (...)
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  11.  8
    The Hypothesis of Incommensurability and Multicultural Education.Tim Mcdonough - 2009 - Journal of Philosophy of Education 43 (2):203-221.
    This article describes the logical and rhetorical grounds for a multicultural pedagogy that teaches students the knowledge and skills needed to interact creatively in the public realm betwixt and between cultures. I begin by discussing the notion of incommensurability. I contend that this hypothesis was intended to perform a particular rhetorical task and that the assumption that it is descriptive of a condition to which intercultural interactions are necessarily subjected is an unwarranted extension of the hypothesis as originally conceived. (...)
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  12. Science education for out‐of‐school adults: A critical challenge in lifelong science education.J. Preston Prather & John W. Shrum - 1987 - Science Education 71 (5):691-699.
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  13.  33
    The Extra Strand of the Māori Science Curriculum.Georgina Stewart - 2011 - Educational Philosophy and Theory 43 (10):1175-1182.
    This paper comments on the process of re-development of the Maori-medium Science (Pūtaiao) curriculum, as part of overall curriculum development in Aotearoa New Zealand. A significant difference from the English Science curriculum was the addition of an ‘extra strand’ covering the history and philosophy of science. It is recommended that this strand be taught by means of narratives (i.e. using ‘narrative pedagogy’) in order to avoid a superficial didacticism that succumbs to the traditional notion of science (...)
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  14.  28
    The role of teacher education in preparing teachers for critical multicultural citizenship.Antonio J. Castro - 2014 - Journal of Social Studies Research 38 (4):189-203.
    This article examines the influence of a teacher education program designed to promote aspects of critical multicultural citizenship on the views of preservice teachers’ concerning citizenship education for culturally diverse contexts. The findings are based on a case study of four minority preservice teachers who attended a large research university in the Southwest and who expressed beliefs related to critical multicultural citizenship. Two questions guided this study: Where did participants acquire their views on citizenship (...)
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  15. Critical thinking and science education.Sharon Bailin - 2002 - Science & Education 11 (4):361-375.
  16.  35
    Defining" science" in a multicultural world: Implications for science education.William W. Cobern & Cathleen C. Loving - 2001 - Science Education 85 (1):50-67.
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  17.  44
    Science Education as Emancipatory: The case of Roy Bhaskar's philosophy of meta‐Reality.Michalinos Zembylas - 2006 - Educational Philosophy and Theory 38 (5):665–676.
    In this essay, I argue that Roy Bhaskar's philosophy of meta‐Reality creates the middle way to theorize emancipation in critical science education: between empiricism and idealism on the one hand, and naïve realism and relativism, on the other hand. This theorization offers possibilities to transcend the usual dichotomies and dualisms that are often perpetuated in some feminist and multiculturalist accounts of critical science education. Further, meta‐Reality suggests a radically new way to re‐visit the suspect (...)
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  18.  16
    Science Education as Emancipatory: The case of Roy Bhaskar's philosophy of meta‐Reality.Michalinos Zembylas - 2006 - Educational Philosophy and Theory 38 (5):665-676.
    In this essay, I argue that Roy Bhaskar's philosophy of meta‐Reality creates the middle way to theorize emancipation in critical science education: between empiricism and idealism on the one hand, and naïve realism and relativism, on the other hand. This theorization offers possibilities to transcend the usual dichotomies and dualisms that are often perpetuated in some feminist and multiculturalist accounts of critical science education. Further, meta‐Reality suggests a radically new way to re‐visit the suspect (...)
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  19.  51
    Philosophical Inquiry and Critical Thinking in Primary and Secondary Science Education.Tim Sprod - 2014 - In Michael R. Matthews (ed.), International Handbook of Research in History, Philosophy and Science Teaching. Springer. pp. 1531-1564.
    If Lipman’s claim that philosophy is the discipline whose central concern is thinking is true, then any attempt to improve students’ scientific critical thinking ought to have a philosophical edge. This chapter explores that position. -/- The first section addresses the extent to which critical thinking is general – applicable to all disciplines – or contextually bound, explores some competing accounts of what critical thinking actually is and considers the extent to which scientific thinking builds on, or (...)
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  20. The rationality of science, critical thinking, and science education.Harvey Siegel - 1989 - Synthese 80 (1):9 - 41.
    This paper considers two philosophical problems and their relation to science education. The first involves the rationality of science; it is argued here that the traditional view, according to which science is rational because of its adherence to (a non-standard conception of) scientific method, successfully answers one central question concerning science''s rationality. The second involves the aims of education; here it is argued that a fundamental educational aim is the fostering of rationality, or its (...)
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  21.  28
    Religious Education's Representation of 'Religions' and 'Cultures'.Robert Jackson - 1995 - British Journal of Educational Studies 43 (3):272-289.
    Multicultural education was attacked by antiracists in Britain in the 1980s. Although it is arguable that not all of the criticisms were valid, the debate raises questions about the efficacy of religious education in countering racism. The paper argues that a lack of analysis of the concepts 'religions' and 'cultures' in British RE has led to a representation of religious traditions which essentialises them, playing down their internal diversity, and which assumes a 'closed' view of cultures. A (...)
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  22.  13
    The Virtuous Citizen: Patriotism in a Multicultural Society.Tim Soutphommasane - 2012 - Cambridge University Press.
    What does it mean to be a citizen in a multicultural society? And what role must patriotism play in defining our relationship with our country and fellow citizens? In The Virtuous Citizen Tim Soutphommasane answers these questions with a critical defence of liberal nationalism. Considering a range of contemporary political debates from Europe, North America and Australia, over issues including multiculturalism, national history, civic education and immigration, Soutphommasane argues that a love of country should be valued alongside (...)
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  23.  15
    Education deform: bright people sometimes say stupid things about education.James M. Kauffman - 2002 - Lanham, Md.: Scarecrow Press.
    According to James M. Kauffman, too much of what is said today about educational reform is nonsense that shortchanges students, parents, and taxpayers. This deforms education rather than reforming it. The primary objective of this book is to help teachers, teacher educators, policy makers, and parents think more critically about current rhetoric about education. Reason and science in the enlightenment tradition are more helpful in reforming and improving education than political agendas. Reform should focus on instruction. (...)
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  24. Foreword: Multicultural issues and perspectives on science education.Glen Aikenhead - 1993 - Science Education 77 (6):659-660.
     
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  25.  36
    Science education and moral education.Holmes Rolston - 1988 - Zygon 23 (3):347-355.
    Both science and ethics are embedded in cultural traditions where truths are shared through education; both need competent critics educated within such traditions. Education in both ought to be directed although moral education demands levels of responsible agency that science education does not. Evolutionary science often carries an implicit or explicit understanding of who and what humans are, one which may not be coherent with the implicit or explicit human self‐understanding in moral (...). The latter in turn may not be coherent with classical human self‐understandings. Moral education may enlighten and elevate the human nature that has evolved biologically. (shrink)
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  26.  22
    Critical Rationalism and Educational Discourse.Gerhard Zecha (ed.) - 1999 - Rodopi.
    Critical Rationalism has become an influential philosophy in many areas including a great number of scientific disciplines. Yet only few studies have been devoted to the role of the philosophy of Sir Karl Popper in the vast field of education. This volume undertakes to fill this gap. Leading scholars in the educational science and in the philosophy of education have critically written for this volume in an attempt to elaborate Popper's methodological and socio-political views and confront (...)
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  27.  22
    Philosophy of science, critical thinking and science education.Peter Davson-Galle - 2004 - Science & Education 13 (6):503-517.
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  28.  61
    Lyotard, postmodernism and science education: A rejoinder to Zembylas.Roland M. Schulz - 2007 - Educational Philosophy and Theory 39 (6):633–656.
    Although postmodernist thought has become prominent in some educational circles, its influence on science education has until recently been rather minor. This paper examines the proposal of Michalinos Zembylas, published earlier in this journal, that Lyotardian postmodernism should be applied to science educational reform in order to achieve the much sought after positive transformation. As a preliminary to this examination several critical points are raised about Lyotard's philosophy of education and philosophy of science which (...)
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  29. Fallacies and student discourse: Conceptualizing the role of critical thinking in science education.Dana L. Zeidler, Norman G. Lederman & Stephen C. Taylor - 1992 - Science Education 76 (4):437-450.
     
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  30.  78
    Gaston Bachelard: Critic of Science and the Imagination.Cristina Chimisso - 2001 - Routledge.
    In this new study, Cristina Chimisso explores the work of the French Philosopher of Science, Gaston Bachelard by situating it within French cultural life of the first half of the century. The book is introduced by a study - based on an analysis of portraits and literary representations - of how Bachelard's admirers transformed him into the mythical image of the Philosopher, the Patriarch and the 'Teacher of Happiness'. Such a projected image is contrasted with Bachelard's own conception of (...)
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  31.  40
    Postcolonial interventions within science education: Using postcolonial ideas to reconsider cultural diversity scholarship.Lyn Carter - 2006 - Educational Philosophy and Theory 38 (5):677–691.
    In this paper, I utilise key postcolonial perspectives on multiculturalism and boundaries to reconsider some of science education's scholarship on cultural diversity in order to extend the discourses and methodologies of science education. I begin with a brief overview of postcolonialism that argues its ability to offer theoretical insights to help revise science education's philosophical frameworks in the face of the newly intercivilisational encounters of contemporaneity. I then describe the constructs of multiculturalism, and borders (...)
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  32.  14
    Postcolonial Interventions Within Science Education: Using postcolonial ideas to reconsider cultural diversity scholarship.Lyn Carter - 2006 - Educational Philosophy and Theory 38 (5):677-691.
    In this paper, I utilise key postcolonial perspectives on multiculturalism and boundaries to reconsider some of science education's scholarship on cultural diversity in order to extend the discourses and methodologies of science education. I begin with a brief overview of postcolonialism that argues its ability to offer theoretical insights to help revise science education's philosophical frameworks in the face of the newly intercivilisational encounters of contemporaneity. I then describe the constructs of multiculturalism, and borders (...)
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  33. Knowledge, Belief, and Science Education.Waldomiro Silva-Filho, Charbel El-Hani & Tiago Ferreira - 2016 - Science & Education 25 (7 - 8):775-794.
    This article intends to show that the defense of “understanding” as one of the major goals of science education can be grounded on an anti-reductionist perspective on testimony as a source of knowledge. To do so, we critically revisit the discussion between Harvey Siegel and Alvin Goldman about the goals of science education, especially where it involves arguments based on the epistemology of testimony. Subsequently, we come back to a discussion between Charbel N. El-Hani and Eduardo (...)
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  34.  16
    Here is the Other, Coming/Come In: An Examination of Spain's Contemporary Multicultural Music Education Discourses.Antía González Ben - 2018 - Philosophy of Music Education Review 26 (2):118.
    Abstract:In the last two decades, Spain’s general music education curriculum has moved beyond the exaltation of so-called Western art music to also include some instances of non-Western musical traditions. This process of diversification is often articulated as entirely positive. The present paper interrogates such discourses, following a post-structural, socio-historical approach. It looks into the circumstances surrounding the emergence of Spain’s multicultural music education as a field of study, paying special attention to the inherent limitations and (contradictory) effects (...)
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  35.  22
    Critical Thinking and the Goals of Science Education.Mark Weinstein - 1992 - Inquiry: Critical Thinking Across the Disciplines 9 (1):3-3.
  36.  8
    (Post) Modern Science (education): Propositions and Alternative Paths.John A. Weaver, Peter Michael Appelbaum & Marla Morris - 2001 - Peter Lang Incorporated, International Academic Publishers.
    These original essays offer new perspectives for science educators, curriculum theorists, and cultural critics on science education, French post-structural thought, and the science debates. Included in this book are chapters on the work of Bruno Latour, Michel Serres, and Jean Baudrillard, plus chapters on postmodern approaches to science education and critiques of modern scientific assumptions in curriculum development.
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  37.  11
    Lyotard, Postmodernism and Science Education: A Rejoinder To Zembylas.Roland M. Schulz - 2007 - Educational Philosophy and Theory 39 (6):633-656.
    Although postmodernist thought has become prominent in some educational circles, its influence on science education has until recently been rather minor. This paper examines the proposal of Michalinos Zembylas, published earlier in this journal, that Lyotardian postmodernism should be applied to science educational reform in order to achieve the much sought after positive transformation. As a preliminary to this examination several critical points are raised about Lyotard's philosophy of education and philosophy of science which (...)
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  38.  51
    Kuhn versus Popper on Science Education: A Response to Richard Bailey.Darrell Patrick Rowbottom - unknown
    In a recent contribution to Learning for Democracy, Richard Bailey argues that Thomas Kuhn advocated an indoctrinatory model of science education, which is fundamentally authority-based. While agreeing with Bailey’s conclusion, this article suggests that Kuhn was attempting to solve an important problem which Bailey only touches on – how to ensure that science students do not become hypercritical. It continues by offering a critical rationalist solution to this problem, arguing that paradigms qua exemplars should be historical (...)
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  39. Knowledge, Belief, and Science Education.Waldomiro Silva Filho, Tiago Ferreira & El-Hani Charbel - 2016 - Canadian Journal of Bioethics / Revue canadienne de bioéthique (00):1-21.
    This article intends to show that the defense of ‘‘understanding’’ as one of the major goals of science education can be grounded on an anti-reductionist perspective on testimony as a source of knowledge. To do so, we critically revisit the discussion between Harvey Siegel and Alvin Goldman about the goals of science education, especially where it involves arguments based on the epistemology of testimony. Subsequently, we come back to a discussion between Charbel N. El-Hani and Eduardo (...)
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  40.  22
    Knowledge, Belief, and Science Education.Tiago Alfredo S. Ferreira, Charbel N. El-Hani & Waldomiro José da Silva-Filho - 2016 - Science & Education 25 (7-8):775-794.
    This article intends to show that the defense of “understanding” as one of the major goals of science education can be grounded on an anti-reductionist perspective on testimony as a source of knowledge. To do so, we critically revisit the discussion between Harvey Siegel and Alvin Goldman about the goals of science education, especially where it involves arguments based on the epistemology of testimony. Subsequently, we come back to a discussion between Charbel N. El-Hani and Eduardo (...)
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  41.  9
    Epistemology and Science Education: Understanding the Evolution Vs. Intelligent Design Controversy.Roger S. Taylor & Michel Ferrari (eds.) - 2010 - Routledge.
    How is epistemology related to the issue of teaching science and evolution in the schools? Addressing a flashpoint issue in our schools today, this book explores core epistemological differences between proponents of intelligent design and evolutionary scientists, as well as the critical role of epistemological beliefs in learning science. Preeminent scholars in these areas report empirical research and/or make a theoretical contribution, with a particular emphasis on the controversy over whether intelligent design deserves to be considered a (...)
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  42.  5
    Epistemology and Science Education: Understanding the Evolution Vs. Intelligent Design Controversy.Roger S. Taylor & Michel Ferrari (eds.) - 2011 - Routledge.
    How is epistemology related to the issue of teaching science and evolution in the schools? Addressing a flashpoint issue in our schools today, this book explores core epistemological differences between proponents of intelligent design and evolutionary scientists, as well as the critical role of epistemological beliefs in learning science. Preeminent scholars in these areas report empirical research and/or make a theoretical contribution, with a particular emphasis on the controversy over whether intelligent design deserves to be considered a (...)
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  43.  22
    Critical Incidents in the Reflective Practice of Science Teacher Education Science Teacher Training.Osbaldo Turpo-Gebera, Rocio Diaz-Zavala, Pedro Mango-Quispe, Rey Araujo-Castillo & Yvan Delgado-Sarmiento - 2023 - Human Review. International Humanities Review / Revista Internacional de Humanidades 21 (2):505-515.
    The analysis of critical incidents in the pre-professional practice of teacher training is essential to promote reflection. Building upon this notion, the urgent need for a reflective practice in the training of science teachers is addressed. In this context, future educators are instructed in the preparation of reports that highlight the critical incidents experienced in their pedagogical work. From these perspectives, reflective practice emerges as a fundamental resource to solidify their identity and pedagogical mastery by incorporating experiences (...)
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  44.  42
    Open-mindedness in science education.Guilherme Brambatti Guzzo & Guilherme Duarte Garcia - 2015 - Think 14 (41):99-103.
    Critical thinking is widely regarded as one of the main objectives of education in general terms, and also of science education. The idea of thinking critically, that is, to evaluate adequately and eventually embrace a certain claim only if there are good reasons for it, however, seems to contradict some popular conceptions about other educational ideal: open-mindedness. The purpose of this essay is to discuss how critical thinking and open-mindedness are not exclusionary ideals, and how (...)
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  45. Why Machine-Information Metaphors are Bad for Science and Science Education.Massimo Pigliucci & Maarten Boudry - 2011 - Science & Education 20 (5-6):471.
    Genes are often described by biologists using metaphors derived from computa- tional science: they are thought of as carriers of information, as being the equivalent of ‘‘blueprints’’ for the construction of organisms. Likewise, cells are often characterized as ‘‘factories’’ and organisms themselves become analogous to machines. Accordingly, when the human genome project was initially announced, the promise was that we would soon know how a human being is made, just as we know how to make airplanes and buildings. Impor- (...)
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  46. The Parallels Between Philosophical Inquiry and Scientific Inquiry: Implications for science education.Gilbert Burgh & Kim Nichols - 2012 - Educational Philosophy and Theory 44 (10):1045-1059.
    The ‘community of inquiry’ as formulated by C. S. Peirce is grounded in the notion of communities of discipline-based inquiry engaged in the construction of knowledge. The phrase ‘transforming the classroom into a community of inquiry’ is commonly understood as a pedagogical activity with a philosophical focus to guide classroom discussion. But it has a broader application. Integral to the method of the community of inquiry is the ability of the classroom teacher to actively engage in the theories and practices (...)
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  47.  40
    The Unbearable Lightness of Representing ‘Reality’ in Science Education: A response to Schulz.Michalinos Zembylas - 2008 - Educational Philosophy and Theory 40 (4):494-514.
    This article responds to Schulz's criticisms of an earlier paper published in Educational Philosophy and Theory. The purpose in this paper is to clarify and extend some of my earlier arguments, to indicate what is unfortunate (i.e. what is lost) from a non‐charitable, modernist reading of Lyotardian postmodernism (despite its weaknesses), and to suggest what new directions are emerging in science education from efforts to move beyond an either/or dichotomy of foundationalism and relativism.
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  48.  21
    On Art, Science, Education and the Human Factor.Agnes Nobel - 1998 - Journal of Human Values 4 (2):149-154.
    This paper, based on the recent UNESCO report Our Cultural Diversity, makes a plea for including art as an integral part of culture. Serious doubts are raised about the long-term effects oflopsided scientific-technical education. The pioneering but neglected ideas of Goethe, Schiller, Steiner, Tagore and Read on the role of art in total human development have been discussed. According to the author, the critical innovation in the sphere of education is now going to be on the borders (...)
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  49.  56
    Levinas and an ethics for science education.David W. Blades - 2006 - Educational Philosophy and Theory 38 (5):647–664.
    Despite claims that STS science education promotes ethical responsibility, this approach is not supported by a clear philosophy of ethics. This paper argues that the work of Emmanuel Levinas provides an ethics suitable for an STS science education. His concept of the face of the Other redefines education as learning from the other, rather than about the other. Extrapolating the face of the Other to the non‐human world suggests an ethics for science education (...)
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  50.  3
    Levinas and an Ethics for Science Education.David W. Blades - 2006 - Educational Philosophy and Theory 38 (5):647-664.
    Despite claims that STS(E) science education promotes ethical responsibility, this approach is not supported by a clear philosophy of ethics. This paper argues that the work of Emmanuel Levinas provides an ethics suitable for an STS(E) science education. His concept of the face of the Other redefines education as learning from the other, rather than about the other. Extrapolating the face of the Other to the non‐human world suggests an ethics for science education (...)
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