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Tytler, Russell; Prain, Vaughan; Hannigan, Shelley – Research in Science Education, 2022
While the multimodal nature of the languages of science is now broadly recognised, the role of affect and aesthetics in these languages, and the potential for this aesthetic focus to add to these languages, has tended to be ignored. Research into these languages has mainly focused on a codification of their functions, an approach to which…
Descriptors: Science Education, Aesthetics, Scientific Concepts, Concept Formation
Xu, Lihua; Prain, Vaughan; Speldewinde, Christopher – International Journal of Science Education, 2021
There is a growing interest in the value of teachers guiding students to generate their own representations to support conceptual learning in science and across complementary subjects such as mathematics. However, this approach to an interdisciplinary focus poses challenges for programme design and learning assessment. In this paper, we report on…
Descriptors: Instructional Design, Optics, Interdisciplinary Approach, Science Instruction
Gentes, Annie; Renon, Anne-Lyse; Bobroff, Julien – Design and Technology Education, 2017
This paper analyzes the introduction of fundamental physics in design education as a pedagogical method that trains designers to create with the un-known. It studies how three workshops offered design students to work on: superconductivity in 2011, quantum physics in 2013 and light and optics in 2014. The authors observe that introducing physics…
Descriptors: Fundamental Concepts, Physics, Design, Teaching Methods
Clarage, James B. – Science & Education, 2013
Much of the mathematical reasoning employed in the typical introductory physics course can be traced to Pythagorean roots planted over two thousand years ago. Besides obvious examples involving the Pythagorean theorem, I draw attention to standard physics problems and derivations which often unknowingly rely upon the Pythagoreans' work on…
Descriptors: Music, Mechanics (Physics), Energy Conservation, Optics
LaConte, Julie – Science Scope, 2007
Many science topics can naturally be integrated with a variety of mathematical concepts, including the study of light and optics. In the hands-on activities described here, students explore the properties of light energy while building their understanding of geometric concepts. (Contains 2 figures.)
Descriptors: Science Activities, Optics, Geometric Concepts, Middle School Students

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