Results for 'science education research'

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  1. European Science Education Research Association SERA is a new association formed at the European Conference on Research in Science Education held in Leeds, En.Philip Adey - 1996 - Science & Education 5:407-409.
     
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  2.  8
    Research Doctorate Programs in the United States: Continuity and Change.Marvin L. Goldberger, Brendan A. Maher, Pamela Ebert Flattau, Committee for the Study of Research-Doctorate Programs in the United States & Conference Board of Associated Research Councils - 1995 - National Academies Press.
    Doctoral programs at U.S. universities play a critical role in the development of human resources both in the United States and abroad. This volume reports the results of an extensive study of U.S. research-doctorate programs in five broad fields: physical sciences and mathematics, engineering, social and behavioral sciences, biological sciences, and the humanities. Research-Doctorate Programs in the United States documents changes that have taken place in the size, structure, and quality of doctoral education since the widely used (...)
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  3.  14
    Off-time higher education as a risk factor in identity formation.War Konrad Educational Research Institute, Radosław Kaczan & Małgorzata Rękosiewicz - 2013 - Polish Psychological Bulletin 44 (3):299-309.
    One of the important determinants of development during the transition to adulthood is the undertaking of social roles characteristic of adults, also in the area of finishing formal education, which usually coincides with beginning fulltime employment. In the study discussed in this paper, it has been hypothesized that continuing full-time education above the age of 26, a phenomenon rarely observed in Poland, can be considered as an unpunctual event that may be connected with difficulties in the process of (...)
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    An Assessment of Research-Doctorate Programs in the United States: Mathematical and Physical Sciences.Lyle V. Jones, Gardner Lindzey, Porter E. Coggeshall & Conference Board of the Associated Research Councils - 1982 - National Academies Press.
    The quality of doctoral-level chemistry (N=145), computer science (N=58), geoscience (N=91), mathematics (N=115), physics (N=123), and statistics/biostatistics (N=64) programs at United States universities was assessed, using 16 measures. These measures focused on variables related to: program size; characteristics of graduates; reputational factors (scholarly quality of faculty, effectiveness of programs in educating research scholars/scientists, improvement in program quality during the last 5 years); university library size; research support; and publication records. Chapter I discusses prior attempts to assess quality (...)
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  5.  8
    An Assessment of Research-Doctorate Programs in the United States: Biological Sciences.Lyle V. Jones, Gardner Lindzey, Porter E. Coggeshall & Conference Board of the Associated Research Councils - 1982 - National Academies Press.
    The quality of doctoral-level biochemistry (N=139), botany (N=83), cellular/molecular biology (N=89), microbiology (N=134), physiology (N=101), and zoology (N=70) programs at United States universities was assessed, using 16 measures. These measures focused on variables related to: (1) program size; (2) characteristics of graduates; (3) reputational factors (scholarly quality of faculty, effectiveness of programs in educating research scholars/scientists, improvement in program quality during the last 5 years); (4) university library size; (5) research support; and (6) publication records. Chapter I discusses (...)
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  6.  28
    Philosophy, history and social science: Educational research and the Leuven project.Andrew Davis - 2009 - Journal of Philosophy of Education 43 (4):649-656.
    Beyond Empiricism: On Criteria for Educational Research.Paul Smeyers and Marc Depaepe (eds), Leuven, Leuven University Press, 2003. Pp. 269. Pb.€29.
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  7. On the role and use of “theory” in science education research: A response to Johnston, Southerland, and Sowell.Fouad Abd‐El‐Khalick & Valarie L. Akerson - 2007 - Science Education 91 (1):187-194.
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  8.  15
    Educational research as science?Darrell Patrick Rowbottom - unknown
    What makes educational research scientific? And should we be worried whether it is? This chapter approaches these questions from a philosophical perspective, while also introducing some relevant work from twentieth-century philosophy of science. It discusses scientific method, confirmation, the distinction between theory and observation, the aim of science, and the relative merits of qualitative and quantitative approaches.
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  9.  28
    Phenomenology as a Potential Methodology for Subjective Knowing in Science Education Research.Oscar Koopman - 2015 - Indo-Pacific Journal of Phenomenology 15 (1):1-10.
    This paper charts the journey that led to the author's discovery of phenomenology as a potential research methodology in the field of science education, and describes the impact on his own thinking and approach of his encounters with the work of Husserl and Heidegger, Merleau-Ponty and Van Manen. Drawing on this theoretical framework, the author argues that, as a methodology for investigating scientific thinking in relation to life experience, learning and curriculum design, phenomenology not only provides a (...)
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  10. Issues of heterogeneity and cultural diversity in science education and science education research.Ingo Eilks, Silvija Markic, David di Fuccia & Bernd Ralle - 2012 - In Sylvija Markic, Ingo Eilks, David Di Fuccia & Bernd Ralle (eds.), Issues of heterogeneity and cultural diversity in science education and science education research: a collection of invited papers inspired by the 21st Symposium on Chemical and Science Education held at the University of Dortmund, May 17-19, 2012. Aachen: Shaker Verlag.
     
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  11. 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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  12. Science education for sustainability: teaching learning processes with science researchers and trainee teachers.E. Camino, G. Barbiero & D. Marchetti - 2009 - In Donald Gray, Laura Colucci-Gray & Elena Camino (eds.), Science, society, and sustainability: education and empowerment for an uncertain world. New York: Routledge. pp. 119--153.
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  13. The role of Rasch analysis when conducting science education research utilizing multiple‐choice tests.William J. Boone & Kathryn Scantlebury - 2006 - Science Education 90 (2):253-269.
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  14. Positionality of African Americans and a theoretical accommodation of it: Rethinking science education research.Eileen R. Carlton Parsons - 2008 - Science Education 92 (6):1127-1144.
     
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  15.  11
    Science Education and Student Diversity: Synthesis and Research Agenda ‐ By Okhee Lee and Aurolyn Luykx.Michael J. Reiss - 2008 - British Journal of Educational Studies 56 (4):485-486.
  16. Summary of Research in Science Education-1991.R. Duschl - 1993 - Science Education 77.
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  17.  3
    Issues of heterogeneity and cultural diversity in science education and science education research: a collection of invited papers inspired by the 21st Symposium on Chemical and Science Education held at the University of Dortmund, May 17-19, 2012.Sylvija Markic, Ingo Eilks, David Di Fuccia & Bernd Ralle (eds.) - 2012 - Aachen: Shaker Verlag.
  18. Credentialing foreign researchers in science education: Development or dependence?Nelio Bizzo - 1996 - Science Education 80 (1):85-88.
  19. Attitude research in science education: Contemporary models and methods.Frank E. Crawley & Thomas R. Koballa - 1994 - Science Education 78 (1):35-55.
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  20.  32
    The future of educational research in the context of the social sciences: A special case?Rosemary Deem - 1996 - British Journal of Educational Studies 44 (2):143-158.
    The paper examines the future prospects for educational research as conducted in UK universities and colleges of higher education in the light of current general changes in the organisation, funding and culture of higher education, and in respect of specific changes in the initial and in service training of teachers. It includes a critical examination of the claim made by some educational researchers that their research constitutes a special case, differentiated from other social science and (...)
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  21.  28
    Science education, conceptual change and breaking with everyday experience.James W. Garrison & Michael L. Bentley - 1990 - Studies in Philosophy and Education 10 (1):19-35.
    Science educators and those who investigate science learning have tended, for good reason, to focus their attention on students' conceptual development, Such a focus is, however, too narrow to provide full and proper understanding of the complexities of original science learning. Recently developmental cognitive psychologists have called on the work of postpositivistic philosophers of science, especially Thomas Kuhn, to bolster their research into conceptual development in science acquisition. What these psychologists have not recognized is (...)
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  22.  40
    The politics of inquiry: Education research and the "culture of science" (review).David Hursh - 2011 - Education and Culture 27 (1):73-77.
    Baez and Boyle provide evidence that educational research is inherently political and shapes how we look at the world, what research questions we ask, and what counts as a valid answer. They show how those who hold powerful governmental and academic positions advocate for and limit funding to research that is positivistic and elevates the natural sciences above all other forms of science. Such an approach not only marginalizes other forms of science but also slights (...)
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  23.  9
    From everyday science to science education: How science and technology studies inspired curriculum design and classroom research.Wolff-Michael Roth - 1997 - Science & Education 6 (4):373-396.
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  24.  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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  25.  16
    Educational Research as a Form of Democratic Rationality.John Elliott - 2006 - Journal of Philosophy of Education 40 (2):169-185.
    Educational Research is commonly regarded as a rational pursuit aimed at the production of objective knowledge. Researchers are expected to avoid value bias by detaching themselves from the normative conceptions of education that shape practice in schools and classrooms, and by casting themselves in the role of the impartial spectator. It is assumed that, as a rational pursuit, educational research is not directly concerned with changing practice but simply with discovering facts about it.This paper claims that it (...)
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  26.  46
    Educational research as a form of democratic rationality.John Elliott - 2006 - Journal of Philosophy of Education 40 (2):169–185.
    Educational Research is commonly regarded as a rational pursuit aimed at the production of objective knowledge. Researchers are expected to avoid value bias by detaching themselves from the normative conceptions of education that shape practice in schools and classrooms, and by casting themselves in the role of the impartial spectator. It is assumed that, as a rational pursuit, educational research is not directly concerned with changing practice but simply with discovering facts about it.This paper claims that it (...)
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  27.  26
    The Future of Educational Research in the Context of the Social Sciences: A Special Case?Rosemary Deem - 1996 - British Journal of Educational Studies 44 (2):143-158.
    The paper examines the future prospects for educational research as conducted in UK universities and colleges of higher education in the light of current general changes in the organisation, funding and culture of higher education, and in respect of specific changes in the initial and in service training of teachers. It includes a critical examination of the claim made by some educational researchers that their research constitutes a special case, differentiated from other social science and (...)
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  28.  21
    Using social theory in educational research: a practical guide.Mark Dressman - 2008 - London: Taylor & Francis Group.
    This title introduces the major schools of social theory, their basic concepts, and their general applicability to educational issues.
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  29.  15
    Emile’s inquiry-based science education.Georgia Dimopoulou & Renia Gasparatou - 2024 - Journal of Philosophy of Education 58 (1):58-71.
    Over the past decades, science education researchers have suggested Inquiry-Based Science Education (IBSE) teaching interventions for science classes. In this article, we argue that IBSE’s basic principles can be traced back to Jean-Jacques Rousseau’s work Emile or On Education (1762). First, we will look at IBSE’s rationale. Then we will turn to Emile and outline Rousseau’s educational ideas concerning science education. We will show that Rousseau’s suggested practices for science education (...)
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  30.  33
    Against methodocentrism in educational research.John A. Weaver & Nathan Snaza - 2017 - Educational Philosophy and Theory 49 (11):1055-1065.
    This essay defines and critiques ‘methodocentrism’, the belief that predetermined research methods are the determining factor in the validity and importance of educational research. By examining research in science studies and posthumanism, the authors explain how this methodocentrism disenables research from taking account of problems and non-human actants that are presumed to be of no importance or value in existing social science research methodologies, both qualitative and quantitative. Building from a critique of these (...)
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  31.  28
    Educational Research: Language and Content. Lessons in Publication Policies from the Low Countries.Paul Smeyers & Bas Levering - 2000 - British Journal of Educational Studies 48 (1):70 - 81.
    Owing to the growing internationalisation of research, educational researchers in the Netherlands are increasingly expected to publish through the medium of the English language. Though this undoubtedly benefits the communication between scholars, there are also side-effects. This paper discusses problematic issues from three perspectives: (i) the use of a non-native language for communication between scholars in the area of education; (ii) the use either exclusively, or not, of a publication record of such publications for purposes of recruitment and (...)
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  32. Philosophy of educational research.Richard Pring - 2004 - New York: Continuum.
    Three issues features as the central themes throughout this book: the nature of social science in general; the nature of educational enquiry in particular; and ...
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  33.  11
    Responsible Research and Innovation Actions in Science Education, Gender and Ethics: Cases and Experiences.Fernando Ferri, Ned Dwyer, Saša Raicevich, Patrizia Grifoni, Husne Altiok, Hans Thor Andersen, Yiannis Laouris & Cecilia Silvestri (eds.) - 2018 - Cham: Springer Verlag.
    This book gathers case studies presented at the International Conference on Responsible Research and Innovation in Science, Innovation and Society. It highlights European initiatives and projects in various domains and contexts, each of which explores how to create guidelines and good practices for Responsible Research and Innovation and how to promote them among citizens, industry stakeholders, policy and decision makers, research funders and educational institutions to foster their adoption as a potential benchmark in establishing RRI processes. (...)
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  34.  11
    A Co-word Analysis of Selected Science Education Literature: Identifying Research Trends of Scaffolding in Two Decades.Tzu-Chiang Lin, Kai-Yu Tang, Shu-Sheng Lin, Miao-Li Changlai & Ying-Shao Hsu - 2022 - Frontiers in Psychology 13.
    This study aims to identify research trends of scaffolding in the field of science education. To this end, both descriptive analysis and co-word analysis were conducted to examine the selected articles published in the Social Science Citation Index journals from 2000 to 2019. A total of 637 papers were retrieved as research samples through rounds of searching in Web of Science database. Overall, this study reveals a growing trend of science educators' academic publications (...)
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  35. A summary of research in science education‐1989. Part I.Dale R. Baker - 1991 - Science Education 75 (3):255-304.
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  36. A summary of research in science education‐1989. Part II.Dale R. Baker - 1991 - Science Education 75 (3):305-354.
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  37. A summary of research in science education‐1989. Part III.Dale R. Baker - 1991 - Science Education 75 (3):355-370.
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  38. The new production of knowledge: the dynamics of science and research in contemporary societies.Michael Gibbons (ed.) - 1994 - Thousand Oaks, Calif.: SAGE Publications.
    As we approach the end of the twentieth century, the ways in which knowledge--scientific, social, and cultural--is produced are undergoing fundamental changes. In The New Production of Knowledge, a distinguished group of authors analyze these changes as marking the transition from established institutions, disciplines, practices, and policies to a new mode of knowledge production. Identifying such elements as reflexivity, transdisciplinarity, and heterogeneity within this new mode, the authors consider their impact and interplay with the role of knowledge in social relations. (...)
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  39. In Baker, DR (1991). A summary of research in science education-1989.N. N. Crawley - 1989 - Science Education 75 (3):1-35.
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  40.  17
    A Summary of Research in Science Education‐1990.Fred Finley, Frances Lawrenz & Patricia Heller - 1992 - Science Education 76 (3):239-281.
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  41.  23
    Spanish Jesuits in the Philippines: Geophysical Research and Synergies between Science, Education and Trade, 1865–1898.Aitor Anduaga - 2014 - Annals of Science 71 (4):497-521.
    SummaryIn 1865, Spanish Jesuits founded the Manila Observatory, the earliest of the Far East centres devoted to typhoon and earthquake studies. Also on Philippine soil and under the direction of the Jesuits, in 1884 the Madrid government inaugurated the first Meteorological Service in the Spanish Kingdom, and most probably in the Far East. Nevertheless, these achievements not only went practically unnoticed in the historiography of science, but neither does the process of geophysical dissemination that unfolded fit in with the (...)
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  42. Editorial: Celebrating 90 years of science education: Reflections on the gold standard and ways of promoting good research.Nancy W. Brickhouse - 2006 - Science Education 90 (1):1-7.
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  43. Reclaiming Metaphysical Truth for Educational Research.Robert Archer - 2002 - British Journal of Educational Studies 50 (3):339 - 362.
    It is not uncommon in educational research and social science in general either to eschew the word truth or to put it in scare quotes in order to signify scepticism about it. After the initial wave of relativism in the philosophy of natural science, a second wave has developed in social science with the rise of postmodernism and poststructuralism. The tendency here is to relativise truth or to bracket out questions of truth. In contradistinction, this paper (...)
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  44. ©FacultyofEducation,UniversityofCalgary,1999 Science Education Without Pressure.Joseph Agassi - unknown
    The traditional, dogmatic educational sys tem was reinforced by the addition of science instruction to its curriculum. Three errors are reinforced by this move and the subsequent split of the system into streams. a) Pressure is confused with coercion, b) Interactive study is confused with assigned e x e r c i s e s a n d w i t h s e l f- instruction, and c) Aptitude (disposition) is confused with talent (ability). Reform must begin in (...)
     
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  45.  54
    Complexity and educational research: A critical reflection.Lesley Kuhn - 2008 - Educational Philosophy and Theory 40 (1):177–189.
    Judgements concerning proper or appropriate educational endeavour, methods of investigation and philosophising about education necessarily implicate perspectives, values, assumptions and beliefs. In recent years ideas from the complexity sciences have been utilised in many domains including psychology, economics, architecture, social science and education. This paper addresses questions concerning the appropriateness of utilising complexity science in educational research as well as issues relating to the ways in which complexity might be engaged. I suggest that, just like (...)
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  46.  8
    Can we integrate qualitative and quantitative research in science education?Mansoor Niaz - 1997 - Science & Education 6 (3):291-300.
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  47.  42
    Critical Pragmatist and the Reconnection of Science and Values in Educational Research.Walter Feinberg - 2012 - European Journal of Pragmatism and American Philosophy 4 (1):222-240.
    Randomized field experiments, which in the United States has been proposed as the gold standard of educational research, is dismissed by some critics as "positivistic". Although this dismissal over identifies positivism with a specific research method, the larger point is accurate: the "gold standard" is often insensitive to local situations and human value and philosophical positivism supports and en-courages this insensitivity. In this paper I examine the way positivism is limited in terms of its understanding of the role (...)
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  48. Towards renewed research questions from the outcomes of the European project Labwork in Science Education.Marie‐Geneviève Séré - 2002 - Science Education 86 (5):624-644.
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  49.  24
    A summary of research in science education—1987. Part 1.John R. Staver, Larry G. Enochs, Owen J. Koeppe, Diane McGrath, Hilary McLellan, J. Steve Oliver, Lawrence C. Scharmann & Emmett L. Wright - 1989 - Science Education 73 (3):243-292.
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  50.  31
    A summary of research in science education—1986. Part III.James A. Shymansky & William C. Kyle - 1988 - Science Education 72 (3):349-402.
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