NotesFAQContact Us
Collection
Advanced
Search Tips
Showing all 7 results Save | Export
Peer reviewed Peer reviewed
Direct linkDirect link
McLoughlin, Eilish, Ed.; Finlayson, Odilla E., Ed.; Erduran, Sibel, Ed.; Childs, Peter E., Ed. – Contributions from Science Education Research, 2019
This edited volume presents innovative current research in the field of Science Education. The chapter's deal with a wide variety of topics and research approaches, conducted in a range of contexts and settings. Together they make a strong contribution to knowledge on science teaching and learning. The book consists of selected presentations from…
Descriptors: Theory Practice Relationship, Science Education, Teaching Methods, Learning Processes
Peer reviewed Peer reviewed
Direct linkDirect link
Prigozhin, Maxim B.; Scott, Gregory E.; Denos, Sharlene – Journal of Chemical Education, 2014
In this activity, science education and modern technology are bridged to teach students at the high school and undergraduate levels about protein folding and to strengthen their model building skills. Students are guided from a textbook picture of a protein as a rigid crystal structure to a more realistic view: proteins are highly dynamic…
Descriptors: Computer Simulation, Models, Science Education, Undergraduate Students
Cunningham, Kevin D. – ProQuest LLC, 2011
As demonstrated by their emphasis in the new, national, science education standards, learning progressions (LPs) have become a valuable means of informing teaching and learning. LPs serve this role by isolating the key components of central skills and understandings, and by describing how those abilities and concepts tend to develop over time…
Descriptors: Chemistry, Teaching Methods, Methods, Scientific Concepts
Peer reviewed Peer reviewed
Direct linkDirect link
Kermen, Isabelle; Meheut, Martine – Chemistry Education Research and Practice, 2009
We present an analysis of the new French curriculum on chemical changes describing the underlying models and highlighting their relations to the empirical level. The authors of the curriculum introduced a distinction between the chemical change of a chemical system and the chemical reactions that account for it. We specify the different roles of…
Descriptors: Kinetics, Thermodynamics, Chemistry, Grade 12
Peer reviewed Peer reviewed
Direct linkDirect link
Mitts, Charles R. – Tech Directions, 2006
Researchers predict that future developments in nanotechnology will bring incredible, almost inconceivable, change to the manufacturing industry. For now, though, one of technology's most trusted tools remains very relevant: In the field of thermometry, thermocouples are a tried and true technology. As a consequence, material on thermocouples…
Descriptors: Manufacturing Industry, Technology Education, Curriculum Design, Science Education
Peer reviewed Peer reviewed
Direct linkDirect link
Ireson, Gren – Physics Education, 2006
This article presents the methodology and results for a simple approach to the measurement of the transition temperature of a superconducting material, in a pre-university laboratory session, using readily available apparatus (and some liquid nitrogen).
Descriptors: Science Laboratories, Science Experiments, Thermodynamics, Physics
Peer reviewed Peer reviewed
Direct linkDirect link
Pallant, Amy; Tinker, Robert F. – Journal of Science Education and Technology, 2004
The studies reported in this paper are an initial effort to explore the applicability of computational models in introductory science learning. Two instructional interventions are described that use a molecular dynamics model embedded in a set of online learning activities with middle and high school students in 10 classrooms. The studies indicate…
Descriptors: Models, Science Education, Intervention, Learning Activities