Imaginative Science Education


Book Description

This book is about imaginative approaches to teaching and learning school science. Its central premise is that science learning should reflect the nature of science, and therefore be approached as an imaginative/creative activity. As such, the book can be seen as an original contribution of ideas relating to imagination and creativity in science education. The approaches discussed in the book are storytelling, the experience of wonder, the development of ‘romantic understanding’, and creative science, including science through visual art, poetry and dramatization. However, given the perennial problem of how to engage students (of all ages) in science, the notion of ‘aesthetic experience’, and hence the possibility for students to have more holistic and fulfilling learning experiences through the aforementioned imaginative approaches, is also discussed. Each chapter provides an in-depth discussion of the theoretical background of a specific imaginative approach (e.g., storytelling, ‘wonder-full’ science), reviews the existing empirical evidence regarding its role in the learning process, and points out its implications for pedagogy and instructional practices. Examples from physical science illustrating its implementation in the classroom are also discussed. In distinguishing between ‘participation in a science activity’ and ‘engagement with science ideas per se’, the book emphasizes the central role of imaginative engagement with science content knowledge, and thus the potential of the recommended imaginative approaches to attract students to the world of science.




Imagination of Science in Education


Book Description

Researchers agree that schools construct a particular image of science, in which some characteristics are featured while others end up in oblivion. The result is that although most children are likely to be familiar with images of heroic scientists such as Einstein and Darwin, they rarely learn about the messy, day-to-day practice of science in which scientists are ordinary humans. Surprisingly, the process by which this imagination of science in education occurs has rarely been theorized. This is all the more remarkable since great thinkers tend to agree that the formation of images — imagination — is at the root of how human beings modify their material world. Hence this process in school science is fundamental to the way in which scientists, being the successful agents in/of science education, actually create their own scientific enterprise once they take up their professional life. One of the first to examine the topic, this book takes a theoretical approach to understanding the process of imagining science in education. The authors utilize a number of interpretive studies in both science and science education to describe and contrast two opposing forces in the imagination of science in education: epicization and novelization. Currently, they argue, the imagination of science in education is dominated by epicization, which provides an absolute past of scientific heroes and peak discoveries. This opens a distance between students and today’s scientific enterprises, and contrasts sharply with the wider aim of science education to bring the actual world of science closer to students. To better understand how to reach this aim, the authors offer a detailed look at novelization, which is a continuous renewal of narratives that derives from dialogical interaction. The book brings together two hitherto separate fields of research in science education: psychologically informed research on students’ images of science and semiotically informed research on images of science in textbooks. Drawing on a series of studies in which children participate in the imagination of science in and out of the classroom, the authors show how the process of novelization actually occurs in the practice of education and outline the various images of science this process ultimately yields.




Imagination in Teaching and Learning


Book Description

Young people learn most readily when their imaginations are engaged and teachers teach most successfully when they are able to see their subject matter from their pupils' point of view. It is, however, difficult to define imagination in practice and even more difficult to make full use of its potential. In this original and stimulating book, Kieran Egan, winner of the prestigous Grawemeyer award for education in 1991, discusses what imagination really means for children and young people in the middle years and what its place should be in the midst of the normal demands of classroom teaching and learning. Egan uses a bright and witty style to move from a brief history of the ways in which imagination has been regarded over the years, through a general discussion of the links between learning and imagination. A selection of sample lesson plans show teachers how they can encourage effective learning through stimulating pupils' imaginations in a variety of curriculum areas, including maths, science, social studies and language work.




A Curriculum of Imagination in an Era of Standardization


Book Description

A Curriculum of Imagination in an Era of Standardization In A Curriculum of Imagination in an Era of Standardization: An Imaginative Dialogue with Maxine Greene and Paulo Freire, a volume in Landscapes of Education [Series Editors: William H. Schubert, University of Illinois at Chicago & Ming Fang He, Georgia Southern University], Robert Lake explores with the reader what is meant by imagination in the work of Maxine Greene and Paulo Freire and their relevance in an era of increasingly standardized and highly scripted practices in the field of education. The author explores how imagination permeates every aspect of life with the intent to develop capacity with the readers to look beyond the taken-for-granted, to question the normal, to develop various ways of knowing, seeing, feeling, and to imagine and act upon possibilities for positive social and educational change. The principal aspect of the work illustrated in this book that distinguishes it from other work is that an “imaginary” dialogue between Maxine Greene and Paulo Freire runs through the book using actual citations from their work. Each chapter starts with such a dialogue interspersed with the works of others and the author’s critical autobiographical reflections. With a brief overview of the socio-cultural evolution of imagination from pre-literate times to the present, the author explores some of the current iterations of imagination including the eugenics movement and “dark” imagination, sensing gaps and creative/critical imagination, metaphors as the language of imagination and empathy as social imagination. Reflecting upon emerging tensions, challenges, and possibilities curriculum workers face in such an era of standardization, the author calls for a curriculum of imagination. After providing a brief overview of the socio-cultural evolution of imagination from pre-literate times to the present, the author looks at some of the current iterations of imagination, including the eugenics movement and “dark” imagination, sensing gaps and creative/critical imagination, metaphors as the language of the imagination, and empathy as social imagination. All of these ideas are then incorporated in a curriculum of imagination that is envisioned through Joseph Schwab’s four commonplaces of curriculum followed by a discussion of emerging tensions, issues and possibilities for praxis and scholarship in present and future inquiry.




Encyclopedia of Science Education


Book Description

The Encyclopedia of Science Education provides a comprehensive international reference work covering the range of methodologies, perspectives, foci, and cultures of this field of inquiry, and to do so via contributions from leading researchers from around the globe. Because of the frequent ways in which scholarship in science education has led to developments in other curriculum areas, the encyclopedia has significance beyond the field of science education. The Encyclopedia of Science Education is aimed at graduate students, researchers, developers in science education and science education research. The topics to be covered encompass all areas of science education and it includes biographical entries on science educators, as well as educators whose work has had an impact on science education as a research field.




Imaginative Education


Book Description




Transformative Science Education


Book Description

Use this book to move science learning out of the classroom and into everyday life. Science has a profound capacity to transform how we experience the world, but it can be challenging to foster transformative experiences. When it comes to the science classroom, too often the Las Vegas slogan applies: What happens here stays here. Based on over 20 years of research, this guide presents the Teaching for Transformative Experiences in Science instructional model to help teachers craft practices that will encourage students to apply science concepts beyond defined school boundaries. This practical resource includes detailed vignettes, classroom examples, guidance for trying out strategies, and materials for assessing transformative experiences. Book Features Introduction to transformative experience theory.A model of teaching based on empirical classroom research.Vignettes and classroom examples that illustrate application of the model strategies.“Try It Out” guides.Assessment materials. “Changing how students experience science can change more than their understanding of science. It can change the world.” —From the Foreword by Gale M. Sinatra, USC Rossier School of Education




Vygotsky and Science Education


Book Description

This book highlights those aspects of Vygotskian theory which are most cogent to Science Education, including the Zone of Proximal Development (ZPD), concept development, play and imagination. Whilst these and other Vygotskian constructs apply to both research and practice in all forms of Science Education, this book employs a specific and critical focus on one or two key concepts for each context. Thus play and imagination are explored in depth in the chapter on science in early childhood learning, the ZPD is considered in depth in the primary school science chapter, and concept development in the secondary-level chapter. Chapters on higher education science learning and teaching, science teacher education, informal science learning, science education research, and the scientific endeavour itself draws on those aspects of Vygotskian theory which relate most closely. This book makes an important contribution to Vygotskian theory. Never before has it been applied so widely and comprehensively to the field of science and STEM education. The book is intended for students and academics in science and STEM education and the social sciences. It is also of interest to Vygotsky scholars and those involved in the analysis of pedagogic practice within and beyond science and STEM education.




Science Education in India


Book Description

This book brings researchers from across the world to share their expertise, experience, research and reflections on science education in India to make the trends and innovations visible. The thematic parts of the book discuss science education: overviews across K-16 levels; inclusivity and access for underrepresented and marginalized sections; use of innovations including technology in the teaching; and implications for research, practice, innovation and creativity. The book should be of special interest to researchers, school administrators, curriculum designers and policymakers. A timely compilation for current and future generations of academic researchers, teachers and policymakers who are interested in examining the issues facing one of the largest education systems in the world. The book offers unique insights into contemporary topics such as girls in STEM subjects, curriculum reform and developing a generation of future creative thinkers. -Professor Vaille Dawson, The University of Western Australia, Australia. It provides a panorama of challenges in a country of more than 1.3 billion people, 50% being below the age of 25 years. The book arrives at a time in which there are discouraging trends, including a decrease in funding for education. The book chapters are centred on issues that warrant debate to foster awareness of the roles of science education in India and priorities and possibilities for expanding horizons on the road ahead. -Professor Kenneth Tobin, The City University of New York, New York, USA.




Handbook of Research on Science Education


Book Description

Volume III of this landmark synthesis of research offers a comprehensive, state-of-the-art survey highlighting new and emerging research perspectives in science education. Building on the foundations set in Volumes I and II, Volume III provides a globally minded, up-to-the-minute survey of the science education research community and represents the diversity of the field. Each chapter has been updated with new research and new content, and Volume III has been further developed to include new and expanded coverage on astronomy and space education, epistemic practices related to socioscientific issues,design-based research, interdisciplinary and STEM education, inclusive science education, and the global impact of nature of science and scientific inquiry literacy. As with the previous volumes, Volume III is organized around six themes: theory and methods of science education research; science learning; diversity and equity; science teaching; curriculum and assessment; and science teacher education. Each chapter presents an integrative review of the research on the topic it addresses, pulling together the existing research, working to understand historical trends and patterns in that body of scholarship, describing how the issue is conceptualized within the literature, how methods and theories have shaped the outcomes of the research, and where the strengths, weaknesses, and gaps are in the literature. Providing guidance to science education faculty, scholars, and graduate students, and pointing towards future directions of the field, Handbook of Research on Science Education Research, Volume III offers an essential resource to all members of the science education community.