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Over the past twenty years, much has been written about the knowledge bases thought necessary to teach science. Shulman has outlined seven knowledge domains needed for teaching, and others, such as Tamir, have proposed somewhat similar domains of knowledge, specifically for science teachers. Aspects of this knowledge have changed because of shifts in curriculum thinking, and the current trends in science education have seen a sharp increase in the significance of the knowledge bases. The development of a standards-based approach to the quality of science teaching has become common in the Western world, and phrases such as “evidence-based practice” have been tossed around in the attempt t...
In August 2003 over 400 researchers in the field of science education from all over the world met at the 4th ESERA conference in Noordwijkerhout, The Netherlands. During the conference 300 papers about actual issues in the field, such as the learning of scientific concepts and skills, scientific literacy, informal science learning, science teacher education, modeling in science education were presented. The book contains 40 of the most outstanding papers presented during the conference. These papers reflect the quality and variety of the conference and represent the state of the art in the field of research in science education.
There has been a growing interest in the notion of a scholarship of teaching. Such scholarship is displayed through a teacher’s grasp of, and response to, the relationships between knowledge of content, teaching and learning in ways that attest to practice as being complex and interwoven. Yet attempting to capture teachers’ professional knowledge is difficult because the critical links between practice and knowledge, for many teachers, is tacit. Pedagogical Content Knowledge (PCK) offers one way of capturing, articulating and portraying an aspect of the scholarship of teaching and, in this case, the scholarship of science teaching. The research underpinning the approach developed by Loug...
Issues relating to values have always had a place in the school science curriculum. Sometimes this has been only in terms of the inclusion of topics such as 'the nature of science' and/or 'scientific method' and/or particular intentions for laboratory work that relate to 'scientific method.'sometimes it has been much broader, for example in curricula with STS emphases. Of importance to aspects of this proposal is that different countries/cultures have had different traditions in terms of the place of values in the school [science] curriculum. One obvious very broad difference of this form is the central place in [science] education thinking in many European countries of bildung, and the comp...
What does it mean to be an expert primary science practitioner? How do primary teachers use science subject knowledge in their practice? This book addresses these questions from a sociocultural perspective, challenging currently influential constructivist accounts. It treats the nature of teacher expertise as a dynamic capacity exemplified by those who are recognised as experts in their local communities of practice. In line with this, it provides an in-depth case study of the perspective and practices of a primary science teacher who is locally and more widely recognised as an expert practitioner. One of the conclusions is that primary science expertise is eclectic in character, requiring t...
Self-study and Diversity is a book about self-study of teaching and teacher education with equity and access as focal issues of practice. Chapters in this book have a shared orientation to diversity grounded in the acknowledgement that educators have a responsibility to address equity and access issues inherent in teaching. To that end, individual chapters address such areas of diversity as race, ethnicity, gender, disability, and power, as well as broader areas of social justice, multiculturalism, and ways of knowing. Even though the focus in a chapter may be on one particular dimension of diversity, the dilemmas and responses of a teacher educator, elicited through self-study, can apply we...
In August 2005, over 500 researchers from the field of science education met at the 5th European Science Education Research Association conference. Two of the main topics at this conference were: the decrease in the number of students interested in school science and concern about the worldwide outcomes of studies on students’ scientific literacy. This volume includes edited versions of 37 outstanding papers presented, including the lectures of the keynote speakers.
This book integrates the traditional understanding of a profession—a calling to selfless service for the public good, through the pursuit of a learned art—with that of vocation—work that offers a deep sense of personal fulfilment, meaning, and identity.
The contributors to this volume explore challenges and dilemmas around professional learning that confront educators in Australia. The book is organised around three dimensions of professional learning: professionalism, identity formation and communal sites of professional learning. It addresses important questions. In what ways do policies and practices mediate the construction of ‘a professional’ among current and future educators? How do communal spaces shape the professional learning of educators? What are the tensions that emerge in the construction of professional identity through professional learning? As a whole, all chapters provide insight into the dynamic nature of ‘professional becoming’.
This truly international volume includes a selection of contributions to the Second Conference of the European Science Education Research Association (Kiel, Sept. 1999). It provides a state-of-the-art examination of science education research in Europe, discusses views and visions of science education research, deals with research on scientific literacy, on students' and teachers' conceptions, on conceptual change, and on instructional media and lab work.