CHF 135.00

Teaching and Learning of Energy in K - 12 Education

Inglese · Copertina rigida

Spedizione di solito entro 6 a 7 settimane

Descrizione

Ulteriori informazioni

This volume presents current thoughts, research, and findings that were presented at a summit focusing on energy as a cross-cutting concept in education, involving scientists, science education researchers and science educators from across the world. The chapters cover four key questions: what should students know about energy, what can we learn from research on teaching and learning about energy, what are the challenges we are currently facing in teaching students this knowledge, and what needs be done to meet these challenges in the future?
Energy is one of the most important ideas in all of science and it is useful for predicting and explaining phenomena within every scientific discipline. The challenge for teachers is to respond to recent policies requiring them to teach not only about energy as a disciplinary idea but also about energy as an analytical framework that cuts across disciplines. Teaching energy as a crosscutting concept can equip a new generation of scientistsand engineers to think about the latest cross-disciplinary problems, and it requires a new approach to the idea of energy.
This book examines the latest challenges of K-12 teaching about energy, including how a comprehensive understanding of energy can be developed. The authors present innovative strategies for learning and teaching about energy, revealing overlapping and diverging views from scientists and science educators. The reader will discover investigations into the learning progression of energy, how understanding of energy can be examined, and proposals for future directions for work in this arena.
Science teachers and educators, science education researchers and scientists themselves will all find the discussions and research presented in this book engaging and informative.

Riassunto


This volume presents current thoughts, research, and findings that were presented at a summit focusing on energy as a cross-cutting concept in education, involving scientists, science education researchers and science educators from across the world. The chapters cover four key questions: what should students know about energy, what can we learn from research on teaching and learning about energy, what are the challenges we are currently facing in teaching students this knowledge, and what needs be done to meet these challenges in the future?


Energy is one of the most important ideas in all of science and it is useful for predicting and explaining phenomena within every scientific discipline. The challenge for teachers is to respond to recent policies requiring them to teach not only about energy as a disciplinary idea but also about energy as an analytical framework that cuts across disciplines. Teaching energy as a crosscutting concept can equip a new generation of scientistsand engineers to think about the latest cross-disciplinary problems, and it requires a new approach to the idea of energy.


This book examines the latest challenges of K-12 teaching about energy, including how a comprehensive understanding of energy can be developed. The authors present innovative strategies for learning and teaching about energy, revealing overlapping and diverging views from scientists and science educators. The reader will discover investigations into the learning progression of energy, how understanding of energy can be examined, and proposals for future directions for work in this arena.


Science teachers and educators, science education researchers and scientists themselves will all find the discussions and research presented in this book engaging and informative.

Testo aggiuntivo

“This collective work makes a significant contribution to further enrichment of the already massive bibliography concerning the issue of energy teaching and the systematic investigation of the epistemological, learning and teaching dimensions. In the final chapter of the book, the editors recommend future research directions, many of which have already been launched since decades. I would like to wish the readers of the book to have a pleasant reading … .” (Dimitris Koliopoulos, Science and Education, Vol. 25, 2016)

Relazione

"This collective work makes a significant contribution to further enrichment of the already massive bibliography concerning the issue of energy teaching and the systematic investigation of the epistemological, learning and teaching dimensions. In the final chapter of the book, the editors recommend future research directions, many of which have already been launched since decades. I would like to wish the readers of the book to have a pleasant reading ... ." (Dimitris Koliopoulos, Science and Education, Vol. 25, 2016)

Dettagli sul prodotto

Con la collaborazione di Arthu Eisenkraft (Editore), David Fortus et al (Editore), Jeffrey Nordine (Editore), Robert F Chen (Editore), Jeffrey C Nordine (Editore), Josep Krajcik (Editore), Knut Neumann (Editore), Robert F. Chen (Editore), Arthur Eisenkraft (Editore), David Fortus (Editore), Jeffrey C. Nordine (Editore), Allison Scheff (Editore), Joseph Krajcik (Editore)
Editore Springer, Berlin
 
Contenuto Libro
Forma del prodotto Copertina rigida
Data pubblicazione 01.01.2014
Categoria Scienze umane, arte, musica > Pedagogia > Corsi per adulti
Scienze naturali, medicina, informatica, tecnica > Tecnica
 
EAN 9783319050164
ISBN 978-3-31-905016-4
Numero di pagine 379
Illustrazioni IX, 379 p. 35 illus., 16 illus. in color.
Dimensioni (della confezione) 16.2 x 24.2 x 2.6 cm
Peso (della confezione) 756 g
 
Categorie Umwelt, Pädagogische Psychologie, B, Education, Science: general issues, Naturwissenschaften, allgemein, Learning, Cognition & cognitive psychology, Energy Policy, Economics and Management, Learning & Instruction, Energy technology & engineering, Teaching skills & techniques, Energy Policy, Energy industries & utilities, Instruction, Science Education, Energy and state, Instructional Psychology, learning and instruction
 

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