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Cheng, Maurice M. W.; Gilbert, John K. – International Journal of Science Education, 2017
This paper proposes a model-based notion of "submicro representations of chemical reactions". Based on three structural models of matter (the simple particle model, the atomic model and the free electron model of metals), we suggest there are two major models of reaction in school chemistry curricula: (a) reactions that are simple…
Descriptors: Science Instruction, Chemistry, Scientific Concepts, Models
Haglund, Jesper; Jeppsson, Fredrik; Schönborn, Konrad J. – Research in Science Education, 2016
Integration of technology, social learning and scientific models offers pedagogical opportunities for science education. A particularly interesting area is thermal science, where students often struggle with abstract concepts, such as heat. In taking on this conceptual obstacle, we explore how hand-held infrared (IR) visualization technology can…
Descriptors: Foreign Countries, Photography, Energy, Physics
Chiu, Jennifer L.; Linn, Marcia C. – Journal of Science Education and Technology, 2014
This paper describes the design and impact of an inquiry-oriented online curriculum that takes advantage of dynamic molecular visualizations to improve students' understanding of chemical reactions. The visualization-enhanced unit uses research-based guidelines following the knowledge integration framework to help students develop coherent…
Descriptors: Secondary School Science, Chemistry, Visualization, Electronic Learning
Fulgham, Susan M.; Shaughnessy, Michael F. – Educational Technology, 2014
Susan M. Fulgham and Michael F. Shaughnessy, Contributing Editors for this journal, present their interview with Marcia C. Linn, Professor of Development and Cognition, specializing in education in mathematics, science, and technology, in the Graduate School of Education at the University of California, Berkeley. Linn is currently investigating…
Descriptors: Interviews, Formative Evaluation, Summative Evaluation, Alternative Assessment
McElhaney, Kevin W.; Chang, Hsin-Yi; Chiu, Jennifer L.; Linn, Marcia C. – Studies in Science Education, 2015
Dynamic visualisations capture aspects of scientific phenomena that are difficult to communicate in static materials and benefit from well-designed scaffolds to succeed in classrooms. We review research to clarify the impacts of dynamic visualisations and to identify instructional scaffolds that mediate their success. We use meta-analysis to…
Descriptors: Science Curriculum, Science Materials, Visualization, Evidence
Tibell, Lena A. E.; Rundgren, Carl-Johan – CBE - Life Sciences Education, 2010
Molecular life science is one of the fastest-growing fields of scientific and technical innovation, and biotechnology has profound effects on many aspects of daily life--often with deep, ethical dimensions. At the same time, the content is inherently complex, highly abstract, and deeply rooted in diverse disciplines ranging from "pure…
Descriptors: Foreign Countries, Biotechnology, Ethics, Humanities
Kraus, U. – European Journal of Physics, 2008
Visualizations that adopt a first-person point of view allow observation and, in the case of interactive simulations, experimentation with relativistic scenes. This paper gives examples of three types of first-person visualizations: watching objects that move at nearly the speed of light, being a high-speed observer looking at a static environment…
Descriptors: Internet, Visualization, Scientific Concepts, Physics
Ozdemir, Gokhan – International Journal of Science and Mathematics Education, 2010
This mixed-method research attempted to clarify the role of visuospatial abilities in learning about mineralogy. Various sources of data--including quantitative pre- and postmeasures of spatial visualization and spatial orientation tests and achievement scores on six measures and qualitative unstructured observations, interviews, and field trip…
Descriptors: Field Trips, Mineralogy, Visualization, Spatial Ability
Clark, Douglas; Jorde, Doris – Journal of Research in Science Teaching, 2004
This study analyzes the impact of an integrated sensory model within a thermal equilibrium visualization. We hypothesized that this intervention would not only help students revise their disruptive experientially supported ideas about why objects feel hot or cold, but also increase their understanding of thermal equilibrium. The analysis…
Descriptors: Program Effectiveness, Visualization, Thermodynamics, Chemistry

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