图书简介
This inaugural handbook documents the distinctive research field that utilizes history and philosophy in investigation of theoretical, curricular and pedagogical issues in the teaching of science and mathematics. It is contributed to by 130 researchers from 30 countries; it provides a logically structured, fully referenced guide to the ways in which science and mathematics education is,爄nformed by the history and philosophy of these disciplines, as well as by the philosophy of education more generally. The first handbook to cover the field, it lays down a much-needed marker of progress to date and provides a platform for informed and coherent future analysis and research of the subject.
The publication comes at a time of heightened worldwide concern over the standard of science and mathematics education, attended by fierce debate over how best to reform curricula and enliven student engagement in the subjects. There is a growing recognition among educators and policy makers that the learning of science must dovetail with learning about science; this handbook is uniquely positioned as a locus for the discussion.
The handbook features sections on pedagogical, theoretical, national, and biographical research, setting the literature of each tradition in its historical context.營t reminds readers at a crucial juncture that there has been a long and rich tradition of historical and philosophical engagements with science and mathematics teaching, and that lessons can be learnt from these engagements for the resolution of current theoretical, curricular and pedagogical questions that face teachers and administrators. Science educators will be grateful for this unique, encyclopaedic handbook, Gerald Holton, Physics Department, Harvard University燭his handbook gathers the fruits of over thirty years? research by a growing international and cosmopolitan community Fabio Bevilacqua, Physics Department, University of Pavia
INTRODUCTION, MICHAEL R. MATTHEWS.- Part I: PEDAGOGICAL STUDIES.- Physics.- MICHAEL R. MATTHEWS, Pendulum Motion: A Case Study in How History and Philosophy can Contribute to Science Education.- COLIN F. GAULD, Using History to Teach Mechanics.- IGAL GALILI , Teaching Optics: A Historico-Philosophical Perspective.- JENARO GUISASOLA, Teaching and Learning Electricity: The Relations between Macroscopic Level Observations and Microscopic Level Theories.- OLIVIA LEVRINI, The Role of History and Philosophy in Research on Teaching and Learning of Relativity.- ILEANA M. GRECA & OLIVAL FREIRE Jr, Meeting the Challenge: Quantum Physics in Introductory Physics Courses.- MANUEL BÄCHTOLD & MURIEL GUEDJ, Teaching Energy Informed by the History and Epistemology of the Concept with Implications for Teacher Education.- UGO BESSON, Teaching about Thermal Phenomena and Thermodynamics: The Contribution of History and Philosophy of Science.- Chemistry.- SIBEL ERDURAN & EBRU MUGALOGLU, Philosophy of Chemistry in Chemical Education: Recent Trends and Future Directions.- KEVIN C. DE BERG, The Place of the History of Chemistry in the Teaching and Learning of Chemistry.- JOSÉ ANTONIO CHAMIZO & ANDONI GARRITZ, Historical Teaching of Atomic and Molecular Structure.- Biology.- KOSTAS KAMPOURAKIS & ROSS NEHM, History and Philosophy of Science and the Teaching of Evolution: Students? Conceptions and Explanations.- ROSS NEHM & KOSTAS KAMPOURAKIS, History and Philosophy of Science and the Teaching of Macroevolution.- NIKLAS M. GERICKE & MIKE U. SMITH, 21st Century Genetics and Genomics: Contributions of HPS -Informed Research and Pedagogy.- CHARBEL N. EL-HANI, ANA MARIA R. DE ALMEIDA, GILBERTO C. BOMFIM, LEYLA M. JOAQUIM, JOÃO CARLOS M. MAGALHÃES, LIA M. N. MEYER, MAIANA A. PITOMBO & VANESSA C. DOS SANTOS, The Contribution of History and Philosophy to the Problem of Hybrid Views about Genes in Genetics Teaching.- Ecology.- AGELIKI LEFKADITI, KOSTAS KORFIATIS, & TASOS HOVARDAS, Contextualizing the Teaching and Learning of Ecology: Historical and Philosophical Considerations.- Earth Sciences.- GLENN DOLPHIN & JEFF DODICK, Teaching Controversies in Earth Science: The Role of History and Philosophy of Science.- Astronomy.- HORACIO TIGNANELLI & YANN BENÉTREAU-DUPIN, Perspectives of History and Philosophy on Teaching Astronomy .- Cosmology.- HELGE KRAGH, The Science of the Universe: Cosmology and Science Education.- Mathematics.- MICHAEL N. FRIED, History of Mathematics in Mathematics Education.- STUART ROWLANDS, Philosophy and the Secondary School Mathematics Classroom.- EDUARD GLAS, A Role for Quasi-Empiricism in Mathematics Education.- KATHLEEN MICHELLE CLARK, History of Mathematics in Teacher Education.- JUDITH V. GRABINER, The Role of Mathematics in Liberal Arts Education.- TINNE HOFF KJELDSEN & JESSICA CARTER, The Role of History and Philosophy in University Mathematics Education.- UFFE THOMAS JANKVIST, Use of Primary Sources in the Teaching and Learning of Mathematics.- Part II: THEORETICAL STUDIES.- (a) Features of Science and Education.- DEREK HODSON, Nature of Science in the Science Curriculum: Origin, Development and Shifting Emphases.- NORMAN G. LEDERMAN, STEPHEN A. BARTOS & JUDITH S. LEDERMAN, The Development, Use, and Interpretation of Nature of Science Assessments.- GÜROL IRZIK & ROBERT NOLA, New Directions for Nature of Science Research.- PETER SLEZAK, Constructivism in Science Education.- JIM MACKENZIE, RON GOOD & JAMES ROBERT BROWN, Postmodernism and Science Education: An Appraisal.- ANA C. COULÓ, Philosophical Dimensions of Social and Ethical Issues in School Science Education: Values in Science and in Science Classrooms.- GÁBOR ZEMPLÉN & GÁBOR KUTROVÁTZ, Social Studies of Science and Science Teaching.- ISMO KOPONEN & SUVI TALA, Generative Modeling in Physics and in Physics
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