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Bowers, Jonathan; Eidin, Emanuel; Damelin, Daniel; McIntyre, Cynthia – Science Teacher, 2022
The COVID-19 crisis has demonstrated the importance of being able to understand complex computational models for everyday life. To make sense of the evolving predictive models of the COVID-19 pandemic, global citizens need to have a firm grasp of both systems thinking (ST) and computational thinking (CT). ST is the ability to understand a problem…
Descriptors: Computation, Thinking Skills, Models, Systems Approach
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Campbell, Todd; Neilson, Drew – Science Teacher, 2016
In this article Campbell and Neilson discuss several design strategies developed or adopted that were found particularly helpful when sequencing a unit that focused on learning about motion and acceleration. Students were expected to predict, observe, and explain why a ball traveled down one ramp faster than the other. Before engaging students,…
Descriptors: Models, Motion, Kinetics, Scientific Principles
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Andersen, Hans O. – Science Teacher, 1978
Presents a holistic model of science curriculum which utilizes the student's science interest as a starting point. (SL)
Descriptors: Curriculum, Curriculum Design, Curriculum Development, Educational Innovation
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Kuhn, David J. – Science Teacher, 1978
Discusses the need for K-12 energy education models that are interdisciplinary, relevant, value-oriented, and future-oriented. (MA)
Descriptors: Curriculum Design, Curriculum Development, Elementary Secondary Education, Energy Conservation
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Rosenthal, Dorothy B. – Science Teacher, 1990
Developed is an interdisciplinary unit that deals with global warming and the greenhouse effect. Included are 10 lessons that can be used to supplement existing plans or used as a basis for developing a new unit. Included are modeling, laboratory, graphing, role-playing, and discussion activities. (KR)
Descriptors: Curriculum Design, Discussion (Teaching Technique), Global Approach, Graphs