Results for 'pedagogy in science education'

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  1.  16
    Constructivism in Science Education: A Philosophical Examination.Michael R. Matthews - 1998 - Springer Verlag.
    Constructivism is one of the most influential theories in contemporary education and learning theory. It has had great influence in science education. The papers in this collection represent, arguably, the most sustained examination of the theoretical and philosophical foundations of constructivism yet published. Topics covered include: orthodox epistemology and the philosophical traditions of constructivism; the relationship of epistemology to learning theory; the connection between philosophy and pedagogy in constructivist practice; the difference between radical and social constructivism, (...)
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  2. Technology‐enhanced inquiry tools in science education: An emerging pedagogical framework for classroom practice.Minchi C. Kim, Michael J. Hannafin & Lynn A. Bryan - 2007 - Science Education 91 (6):1010-1030.
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  3.  8
    Illuminating antiracist pedagogy in nursing education.Kechi Iheduru-Anderson & Roberta Waite - 2022 - Nursing Inquiry 29 (4):e12494.
    In the profession of nursing, whiteness continues to be deeply rooted because of the uncritical recognition of the white racial domination evident within the ranks of nursing leadership. White privilege is exerted in its ascendency and policy-making within the nursing discipline and in the Eurocentric agenda that commands nursing pedagogy. While attention to antiracism has recently increased, antiracism pedagogy in nursing education is nascent. Pedagogical approaches in the nursing profession are essential. Because it encompasses the strategies used (...)
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  4.  25
    On the Tacit Aspects of Science Pedagogy in Higher Education.Ramakrishnan Sitaraman - 2017 - Frontiers in Psychology 8.
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  5.  28
    Modeling Theory in Science Education.Ibrahim A. Halloun - 2006 - Springer.
    This book is the culmination of over twenty years of work toward a pedagogical theory that promotes experiential learning of model-laden theory and inquiry in science.
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  6.  31
    The Value of False Theories in Science Education.Sindhuja Bhakthavatsalam - 2019 - Science & Education 28 (1-2):5-23.
    Teaching false theories goes against the general pedagogical and philosophical belief that we must only teach and learn what is true. In general, the goal of pedagogy is taken to be epistemic: to gain knowledge and avoid ignorance. In this article, I argue that for realists and antirealists alike, epistemological and pedagogical goals have to come apart. I argue that the falsity of a theory does not automatically make it unfit for being taught. There are several good reasons for (...)
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  7.  18
    Animals in Environmental Education: Interdisciplinary Approaches to Curriculum and Pedagogy.Valerie S. Banschbach & Teresa Lloro-Bidart (eds.) - 2019 - Cham: Imprint: Palgrave Macmillan.
    This book explores interdisciplinary approaches to animal-focused curriculum and pedagogy in environmental education, with an emphasis on integrating methods from the arts, humanities, and natural and social sciences. Each chapter, whether addressing curriculum, pedagogy, or both, engages with the extant literature in environmental education and other relevant fields to consider how interdisciplinary curricular and pedagogical practices shed new light on our understandings of and ethical/moral obligations to animals. Embracing theories like intersectionality, posthumanism, Indigenous cosmologies, and significant (...)
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  8.  4
    Some Practical Tools and Methods to Carry Out Transition Pedagogy in Higher Education Institutions.Cécile Renouard, Frédérique Brossard Børhaug, Ronan Le Cornec, Jonathan Dawson, Alexander Federau, Perrine Vandecastele & Nathanaël Wallenhorst - 2023 - In Cécile Renouard, Frédérique Brossard Børhaug, Ronan Le Cornec, Jonathan Dawson, Alexander Federau, David Ries, Perrine Vandecastele & Nathanaël Wallenhorst (eds.), Pedagogy of the Anthropocene Epoch for a Great Transition: A Novel Approach of Higher Education. Springer Verlag. pp. 177-192.
    Teachers may be skeptical about the possibility of implementing transition pedagogy, as outlined in the first part of this book, given the current context of higher education. Here we synthetize therefore the pedagogical tools that we have identified in the courses offered by establishments that have practiced a transition pedagogy for a long time, as well as those being used at the Campus de la Transition since 2018. We also draw on interviews with experts and practitioners, psychologists, (...)
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  9.  5
    Moving toward a spiritual pedagogy in L2 education: Research, practice, and applications.Dongmei Song - 2022 - Frontiers in Psychology 13:978054.
    Spiritual pedagogy (SP) as a new educational theory aims to apply cultural and spiritual values in classroom practices. It has been the focus of research in different fields such as counselling, management, and science in the past decades. However, its application in second/foreign language research and practice has been widely overlooked by L2 researchers, to date. To fill this gap, the present study made an effort to provide a theoretical analysis of the conceptualizations, scientific background, benefits, and practical (...)
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  10.  9
    The Educated Eye Visual Culture and Pedagogy in the Life Sciences.Nancy Anderson & Michael R. Dietrich (eds.) - 2012 - Upne.
    A study of visual culture in the teaching of the life sciences.
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  11.  7
    Science Education and Culture: The Contribution of History and Philosophy of Science.Fabio Bevilacqua, Enrico Giannetto & Michael Matthews - 2001 - Springer.
    This anthology contains selected papers from the 'Science as Culture' conference held at Lake Como, and Pavia University Italy, 15-19 September 1999. The conference, attended by about 220 individuals from thirty countries, was a joint venture of the International History, Philosophy and Science Teaching Group (its fifth conference) and the History of Physics and Physics Teaching Division of the European Physical Society (its eighth conference). The magnificient Villa Olmo, on the lakeshore, provided a memorable location for the presentors (...)
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  12. Integrating Ethics into Computer Science Education: Multi-, Inter-, and Transdisciplinary Approaches.Trystan S. Goetze - 2023 - Proceedings of the 54Th Acm Technical Symposium on Computer Science Education V. 1 (Sigcse 2023).
    While calls to integrate ethics into computer science education go back decades, recent high-profile ethical failures related to computing technology by large technology companies, governments, and academic institutions have accelerated the adoption of computer ethics education at all levels of instruction. Discussions of how to integrate ethics into existing computer science programmes often focus on the structure of the intervention—embedded modules or dedicated courses, humanists or computer scientists as ethics instructors—or on the specific content to be (...)
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  13.  6
    Truth in Science and ‘Truth’ in Religion: An Enquiry into Student Views on Different Types of Truth-Claim.Christina Easton - 2019 - In Berry Billingsley, Keith Chappell & Michael J. Reiss (eds.), Science and Religion in Education. Springer Verlag. pp. 123-139.
    Using focus groups, this small-scale, qualitative study investigated the way that students tend to think about religious truth-claims as compared to other types of truth-claim. All the student participants conceived of religious truth-claims as ‘opinions’, to be contrasted with the certain, indisputable ‘facts’ of science. For many students, it was the lack of empirical verification, as well as the existence of disagreement, which meant religious beliefs were relegated to this position. If these findings are generalisable, then there are implications (...)
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  14.  9
    Innovative Pedagogy and Design-Based Research on Flipped Learning in Higher Education.Li Zhao, Wei He & Yu-Sheng Su - 2021 - Frontiers in Psychology 12.
    In order for higher education to provide students with up-to-date knowledge and relevant skillsets for their continued learning, it needs to keep pace with innovative pedagogy and cognitive sciences to ensure inclusive and equitable quality education for all. An adequate implementation of flipped learning, which can offer undergraduates education that is appropriate in a knowledge-based society, requires moving from traditional educational models to innovative pedagogy integrated with a playful learning environment (PLE) supported by information and (...)
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  15. Everyday Scientific Imagination: A Qualitative Study of the Uses, Norms, and Pedagogy of Imagination in Science.Michael Stuart - 2019 - Science & Education 28 (6-7):711-730.
    Imagination is necessary for scientific practice, yet there are no in vivo sociological studies on the ways that imagination is taught, thought of, or evaluated by scientists. This article begins to remedy this by presenting the results of a qualitative study performed on two systems biology laboratories. I found that the more advanced a participant was in their scientific career, the more they valued imagination. Further, positive attitudes toward imagination were primarily due to the perceived role of imagination in problem-solving. (...)
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  16.  8
    Posthuman Pedagogies in Practice: Arts Based Approaches for Developing Participatory Futures.Annouchka Bayley - 2018 - Cham: Springer Verlag.
    This book investigates transdisciplinary, arts-based approaches to developing innovative and pertinent higher education pedagogy. Introducing timely critical thinking strategies, the author addresses some of the key issues facing educators today in an increasingly complex digital, technological and ecological world. The author combines emerging ideas in the New Materialism and Posthumanism schools of thought with arts-based teaching and learning, including Practice-as-Research, for Social Science contexts, thus exploring how this approach can be used to productively create new pedagogical strategies. (...)
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  17.  12
    Critical Pedagogy in the New Normal.Christopher Ryan Maboloc - 2020 - Voices in Bioethics 6.
    Photo by Thought Catalog on Unsplash INTRODUCTION The coronavirus pandemic is a challenge to educators, policy makers, and ordinary people. In facing the threat from COVID-19, school systems and global institutions need “to address the essential matter of each human being and how they are interacting with, and affected by, a much wider set of biological and technical conditions.”[1] Educators must grapple with the societal issues that come with the intent of ensuring the safety of the public. To some, “these (...)
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  18.  47
    The Inclusion of the Nature of Science in Nine Recent International Science Education Standards Documents.Joanne Olson - 2018 - Science & Education 27 (7-8):637-660.
    Understanding the nature of science has long been a desired outcome of science education, despite ongoing disagreements about the content, structure, and focus of NOS expectations. Addressing the concern that teachers likely focus only on student learning expectations appearing in standards documents, this study examines the current state of NOS in science education standards documents from nine diverse countries to determine the overt NOS learning expectations that appeared, NOS statements provided near those learning expectations, but (...)
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  19.  11
    Karl Marx’s thoughts on critical pedagogy, reproduction, and aesthetic literacy in STEAM education and praxis.Feng Gan & Qiong Bai - 2023 - Educational Philosophy and Theory 55 (13):1513-1525.
    This article sheds new light on Karl Marx’s theoretical legacy to promote educational philosophy and theory in science, technology, engineering, arts, and mathematics (STEAM) education. Accordingly, this article selects Marxian thought as an exemplar case to elaborate critical pedagogy and aesthetics and culminate with an overview of the Marxian approach to the theoretical underpinnings of STEAM education. Hence, the article critically reviews Marx’s original works and earlier Marxian scholars’ contributions to extending critical pedagogy and its (...)
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  20.  16
    Does Science Education Need the History of Science?Graeme Gooday, John M. Lynch, Kenneth G. Wilson & Constance K. Barsky - 2008 - Isis 99 (2):322-330.
    ABSTRACT This essay argues that science education can gain from close engagement with the history of science both in the training of prospective vocational scientists and in educating the broader public about the nature of science. First it shows how historicizing science in the classroom can improve the pedagogical experience of science students and might even help them turn into more effective professional practitioners of science. Then it examines how historians of science (...)
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  21.  25
    Does Science Education Need the History of Science?Graeme Gooday, John M. Lynch, Kenneth G. Wilson & Constance K. Barsky - 2008 - Isis 99 (2):322-330.
    ABSTRACT This essay argues that science education can gain from close engagement with the history of science both in the training of prospective vocational scientists and in educating the broader public about the nature of science. First it shows how historicizing science in the classroom can improve the pedagogical experience of science students and might even help them turn into more effective professional practitioners of science. Then it examines how historians of science (...)
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  22.  12
    Nancy Anderson and Michael R. Dietrich The Educated Eye: Visual Culture and Pedagogy in the Life Sciences. Hanover: Dartmouth College Press, 2012. Pp. viii+318. ISBN 978-1-61168-044-7. $39.95. [REVIEW]David Rudge - 2013 - British Journal for the History of Science 46 (4):734-735.
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  23.  10
    Nancy Anderson;, Michael Dietrich . The Educated Eye: Visual Culture and Pedagogy in the Life Sciences. viii + 318 pp., illus., app., index. Hanover, N.H.: Dartmouth College Press, 2012. $85 ; $39.95. [REVIEW]Anna Maerker - 2015 - Isis 106 (1):208-209.
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  24.  12
    Organization of the Educational Process on Natural Science Training in Higher Education Institutions on the Basis of Innovation and Heuristics.Valentyna Bilyk, Serhii Yashchuk, Tetiana Marchak, Serhii Tkachenko & Viktoriia Goncharova - 2021 - Postmodern Openings 12 (2).
    The relentless informational variability in the field of natural sciences, today's need for the training of highly competent, versatile, apologetic future specialists, as well as the low motivation of psychology students to teach natural disciplines, was established by us in the process of their questioning, require the search for new, non-standard solutions in the organization of natural science training of future psychologists in institutions of higher education. We believe that one of the effective ways to solve this problem (...)
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  25. Educational technologies and the teaching of ethics in science and engineering.Michael C. Loui - 2005 - Science and Engineering Ethics 11 (3):435-446.
    To support the teaching of ethics in science and engineering, educational technologies offer a variety of functions: communication between students and instructors, production of documents, distribution of documents, archiving of class sessions, and access to remote resources. Instructors may choose to use these functions of the technologies at different levels of intensity, to support a variety of pedagogies, consistent with accepted good practices. Good pedagogical practices are illustrated in this paper with four examples of uses of educational technologies in (...)
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  26.  21
    Ecohumanities Pedagogy: An Experiment in Environmental Education through Radical Service-Learning.Kelly A. Parker - 2012 - Contemporary Pragmatism 9 (1):223-251.
    The ecohumanist/service-learning approach to environmental education provides a bridge between science and public policy on the one hand, and direct civic action on the other. This pedagogy appears to be a promising way to engage students and to extend the reach of environmental education beyond the classroom. This paper surveys the philosophical context for ecohumanities pedagogy, relates the key moments of teaching such a course, describes specific outcomes, and offers practical advice for those who might (...)
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  27.  7
    The Paradigm of Unity in Prenatal Education and Pedagogy.Dorota Kornas-Biela - 2014 - Journal for Perspectives of Economic Political and Social Integration 19 (1-2):193-206.
    The traditional approach to the relation between parents and their prenatal child presents the child as a fetus, a mainly passive recipient of the mother’s vital biological resources. Contemporary prenatal psychology and pedagogy recognizes this relationship in a quite different perspective: the prenatal child is a member of the family and may be seen as an active member of the wider family as a community, extended to grandparents and other relatives. Between parents and their child in the womb exists (...)
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  28.  53
    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 is quite different (...)
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  29.  22
    Teaching Pastoral Theology as a Pedagogically Oriented Discipline in the Educational Institutions of the Orthodox Church in Ukraine.Tetiana Tverdokhlib - 2019 - International Letters of Social and Humanistic Sciences 87:1-12.
    Publication date: 2 May 2019 Source: Author: Tetiana Tverdokhlib The article focuses on the pedagogical component in the content of Pastoral Theology in the Ukrainian educational institutions of the Orthodox Church, which were included in the system of religious education of the Russian Empire at the beginning of the nineteenth century – at the end of the 1860's. Basing on the studied works “On Positions of Parish Presbyters” by the bishop of the Smolensk Parfenii and the Archbishop of Mogilev, (...)
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  30.  62
    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 serve (...)
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  31.  9
    Kuhn in the Classroom, Lakatos in the Lab: Science Educators Confront the Nature-of-Science Debate.Karen Sullenger & Steven Turner - 1999 - Science, Technology, and Human Values 24 (1):5-30.
    Programs for the reform of K-12 science teaching today usually insist that science teachers must introduce their students to the nature of science, as well as to scientific content. The academic field of science studies, however, evinces no consensus about what the nature of science really is. This article examines how science educators and educational researchers have drawn on the fragmented teachings of science studies about the nature of science, and how they (...)
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  32. Teaching science in museums: The pedagogy and goals of museum educators.Lynn Uyen Tran - 2007 - Science Education 91 (2):278-297.
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  33. 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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  34.  14
    Lessons for Teaching Social Science Research Methods in Higher Education: Synthesis of the Literature 2014-2020.Melanie Nind & Angeliki Katramadou - 2023 - British Journal of Educational Studies 71 (3):241-266.
    The underdevelopment of a pedagogical culture for research methods education and the lack of a body of knowledge with the potential to influence practice have been highlighted by previous studies. This systematic review explores the pedagogic approaches and strategies evident in recent literature (2014–2020) on teaching social science research methods in higher education. It synthesises 55 papers offering a detailed rationale for the approach and strategies employed in doctoral/post-doctoral education. While dispersed across journals, there is a (...)
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  35.  68
    Scheffler Revisited on the Role of History and Philosophy of Science in Science Teacher Education.R. Michael Matthews - 1997 - Studies in Philosophy and Education 16 (1/2):159-173.
    Twenty-five years ago Israel Scheffler argued for the inclusion of philosophy of science in the preparation of science teachers. It was part of his wider argument for the inclusion of courses in the philosophy of the discipline in programmes that are preparing people to teach that discipline. For the most part Scheffler's suggestion, at least as far as science education is concerned, went unheeded. Pleasingly, in recent times there has been some rapprochement between these fields. This (...)
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  36. Ethics in education: contemporary perspectives on research, pedagogy and leadership.Carla Solvason & Geoffrey Elliott (eds.) - 2023 - [Cambridge, England]: Ethics International Press Ltd, UK.
    It is critically important for emerging professionals in education to be sensitised to the ethical and moral responsibilities of their practice throughout their training and beyond. There is a wide disparity in contemporary practice in this regard, which points to a need for greater clarity and consistency in our thinking about ethics within education. Ethics in Education attempts to meet this need, and will be a valuable resource for students, teachers and researchers in education, health and (...)
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  37. Education for the Heart and Mind: Feminist Pedagogy and the Religion and Science Curriculum.Joyce Nyhof-Young - 2000 - Zygon 35 (2):441-452.
    Feminist educators and theorists are stretching the boundaries of what it means to do religion and science. They are also expanding the theoretical and practical frameworks through which we might present curricula in thosefields. In this paper, I reflect on the implications of feminist pedagogies for the interdisciplinary field of religion and science. I begin with a brief discussion of feminist approaches to education and the nature of the feminist classroom as a setting for action. Next, I (...)
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  38.  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 serve (...)
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  39.  24
    Argumentation in School Science: Breaking the Tradition of Authoritative Exposition Through a Pedagogy that Promotes Discussion and Reasoning.Shirley Simon Katherine Richardson - 2009 - Argumentation 23 (4):469-493.
    The value of argumentation in science education has become internationally recognised and has been the subject of many research studies in recent years. Successful introduction of argumentation activities in learning contexts involves extending teaching goals beyond the understanding of facts and concepts, to include an emphasis on cognitive and metacognitive processes, epistemic criteria and reasoning. The authors focus on the difficulties inherent in shifting a tradition of teaching from one dominated by authoritative exposition to one that is more (...)
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  40.  11
    Cognitive Technologies in Pedagogical and Natural Science Training for Future Psychologists in Post-Pandemic Education.Valentyna Bilyk, Olena Matvienko, Oksana Zinko, Solomiia Hanushchyn & Kateryna Vasylenko - 2021 - Postmodern Openings 12 (1Sup1):323-334.
    In conditions of post-pandemic reality, the creation of optimal psychological and pedagogical conditions for the formation of future specialists, raising the level of their professional training, socialization and adaptation to work in the work collective requires appropriate psychological support, the development of cognitive and psychological support technologies for the constructive implementation of practical social psychological assistance in the pedagogical process, as well as the use of modern cognitive-psychological approaches by teachers, the development of psychological recommendations on the style of pedagogical (...)
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  41.  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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  42.  21
    Historical and Pedagogical Perspectives on Entertainment, Popularization and Learning in Science.Jürgen Teichmann, Art Stinner & Falk Riess - 2007 - Science & Education 16 (6):511.
  43. Pedagogic Thinking That Grounds E-Learning for Secondary School Science Students in New Zealand.Robert Keith Shaw - 2007 - E-Learning and Digital Media 4 (4):471-481.
    Course designers adopted a language-learners approach to the online teaching of New Zealand secondary school students in the subject of astronomy. This was possible because the curriculum for astronomy that was in 2004 established as a part of New Zealand's national curriculum was specifically designed to engage underachieving students in science and technology. A criterion-referenced assessment regime was established and an Internet platform was built specifically to facilitate this form of assessment. This platform contrasts with the norm-referenced assessment programmes (...)
     
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  44.  19
    Replication and Pedagogy in the History of Psychology VI: Egon Brunswik on Perception and Explicit Reasoning.Jeremy Athy, Jeff Friedrich & Eileen Delany - 2008 - Science & Education 17 (5):537-546.
  45.  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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  46. Philosophical Beliefs on Education and Pedagogical Practices Among Teachers in San Roque, Mabini, Bohol.Joshua Relator - 2024 - Psychology and Education: A Multidisciplinary Journal 17 (1):49-58.
    The philosophies of education serve as the guide of the teachers in handling the teaching-learning process. However, a belief will remain as a belief unless it is practiced. This study aimed to find the relationship between the philosophical beliefs and practices of the 30 teachers of the schools in San Roque, Mabini, Bohol - San Roque Elementary School and San Roque National High School, S.Y. 2019-2020. The study utilized a quantitative method descriptive survey research design. The research instrument used (...)
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  47.  5
    Education, theory and pedagogies of change in a global landscape: interdisciplinary perspectives on the role of theory in doctoral research.Victoria Perselli (ed.) - 2016 - New York, NY: Palgrave-Macmillan.
    Where does theory come from in educational research - and how is it operationalized in diverse, interdisciplinary contexts and professional settings? This volume examines the places and spaces of theory in the work of nine pre- to post-doctoral scholars, whose narratives transport us across a wide range of interdisciplinary themes and fields of inquiry from Irigaray on mothering in higher education to Jamison among Danish engineering undergraduates; from Te Whariki in a New Zealand kindergarten to ren wen in contemporary (...)
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  48.  16
    Alister M c grath and education in science and religion.Andrew Pinsent - 2022 - Zygon 57 (1):223-232.
    Zygon®, Volume 57, Issue 1, Page 223-232, March 2022.
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  49. Dr. Theodosius Dobzhansky is a native Russian who came to the united states at the age of 27 and remained to become a united states citizen ten years later. Twenty-eight years later he received the national medal of science from president Lyndon B. fohnson. He Began his teaching career at the university of leningrad in 1924 and his trip to. [REVIEW]Education Board - 1969 - In John D. Roslansky & Ernan McMullin (eds.), The uniqueness of man. London,: North-Holland Pub. Co.. pp. 42.
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  50. Inquiry in science education: Intemational perspectives.F. Abd-Ei-Khalick, S. Boujaoude, N. G. Lederman, R. Mamilok-Naaman, A. Hofstein & M. Niaz - 2004 - Science Education 88:397-419.
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