Multiple Representations in Physics Education Multiple Representations in Physics Education
Models and Modeling in Science Education

Multiple Representations in Physics Education

David F. Treagust and Others
    • €119.99
    • €119.99

Publisher Description

This volume is important because despite various external representations, such as analogies, metaphors, and visualizations being commonly used by physics teachers, educators and researchers, the notion of using the pedagogical functions of multiple representations to support teaching and learning is still a gap in physics education. The research presented in the three sections of the book is introduced by descriptions of various psychological theories that are applied in different ways for designing physics teaching and learning in classroom settings. The following chapters of the book illustrate teaching and learning with respect to applying specific physics multiple representations in different levels of the education system and in different physics topics using analogies and models, different modes, and in reasoning and representational competence. When multiple representations are used in physics for teaching, the expectation is that they should be successful. To ensure this is the case, the implementation of representations should consider design principles for using multiple representations. Investigations regarding their effect on classroom communication as well as on the learning results in all levels of schooling and for different topics of physics are reported. The book is intended for physics educators and their students at universities and for physics teachers in schools to apply multiple representations in physics in a productive way.

GENRE
Science & Nature
RELEASED
2017
24 July
LANGUAGE
EN
English
LENGTH
333
Pages
PUBLISHER
Springer International Publishing
PROVIDER INFO
Springer Science & Business Media LLC
SIZE
4.7
MB
Physics Community & Cooperation: Selected Contributions from the GIREP-EPEC & PHEC 2009-International Conference Physics Community & Cooperation: Selected Contributions from the GIREP-EPEC & PHEC 2009-International Conference
2011
The Pedagogy of Physical Science The Pedagogy of Physical Science
2009
Topics and Trends in Current Science Education Topics and Trends in Current Science Education
2013
Metaphor and Analogy in Science Education Metaphor and Analogy in Science Education
2006
Overcoming Students' Misconceptions in Science Overcoming Students' Misconceptions in Science
2017
Semiotic Approaches in Science Didactics Semiotic Approaches in Science Didactics
2022
Towards a Framework for Representational Competence in Science Education Towards a Framework for Representational Competence in Science Education
2018
Towards a Competence-Based View on Models and Modeling in Science Education Towards a Competence-Based View on Models and Modeling in Science Education
2020
Multiple Representations in Biological Education Multiple Representations in Biological Education
2013
Visualization in Science Education Visualization in Science Education
2006
Model Based Learning and Instruction in Science Model Based Learning and Instruction in Science
2007
Visualization: Theory and Practice in Science Education Visualization: Theory and Practice in Science Education
2007