Improving science and mathematics education with computational modelling in interactive engagement environments
Date
2012
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Publisher
American Institute of Physics
Language
English
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Abstract
A teaching approach aiming at an epistemologically balanced integration of computational modelling in science and mathematics education is presented. The approach is based on interactive engagement learning activities built around computational modelling experiments that span the range of different kinds of modelling from explorative to expressive modelling. The activities are designed to make a progressive introduction to scientific computation without requiring prior development of a working knowledge of programming, generate and foster the resolution of cognitive conflicts in the understanding of scientific and mathematical concepts and promote performative competency in the manipulation of different and complementary representations of mathematical models. The activities are supported by interactive PDF documents which explain the fundamental concepts, methods and reasoning processes using text, images and embedded movies, and include free space for multimedia enriched student modelling reports and teacher feedback. To illustrate, an example from physics implemented in the Modellus environment and tested in undergraduate university general physics and biophysics courses is discussed.
Keywords
Physics, Mathematics, Education, Computational Modelling
Document Type
Journal article
Publisher Version
10.1063/1.4756529
Dataset
Citation
Neves, R., & Teodoro, V. (2012). Improving science and mathematics education with computational modelling in interactive engagement environments. In T. Simos, G. Psihoyios, C. Tsitouras & Z. Anastassi (Eds.), Numerical Analysis and Applied Mathematics 2012, AIP Conference Proceedings 1479, 1806-1809.
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Open Access