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Kàdàr, Anett; Farsang, Andrea – Review of International Geographical Education Online, 2017
International research into the nature, emergence, and development of geographical misconceptions is substantial. However, Hungarian educational research lags behind in exploring this phenomenon in detail. The present study identified some plate-tectonics-related misconceptions of three distinctive groups of students: ninth-grade secondary school…
Descriptors: Plate Tectonics, Comparative Analysis, Misconceptions, High School Students
Mulvey, Bridget; Bell, Randy – Science Teacher, 2012
Google Earth is an exciting way to engage students in scientific inquiry--the foundation of science education standards and reforms. The National Science Education Standards identify inquiry as an active process that incorporates questioning, gathering and analyzing data, and thinking critically about the interplay of evidence and explanations.…
Descriptors: Science Education, Earth Science, Classrooms, Plate Tectonics
Radinsky, Josh – Cognition and Instruction, 2008
Learning science includes learning to argue with "inscriptions": images used to symbolize information persuasively. This study examined sixth-graders learning to invest inscriptions with representational status, in a geographic information system (GIS)-based science investigation. Learning to reason with inscriptions was studied in emergent…
Descriptors: Information Systems, Cognitive Development, Plate Tectonics, Science Instruction
Purcell, April D.; Ponomarenko, Alyson L.; Brown, Stephen C. – Science and Children, 2006
The challenge for today's elementary teachers is not "whether" but rather "how" to use computers to effectively teach students essential skills and concepts. One exciting way of meeting this challenge is to use Geographic Information Systems (GIS), computer software that captures, manipulates, analyzes, and displays data on specialized layered…
Descriptors: Educational Technology, Computer Software, Plate Tectonics, Information Systems