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Hartel, Jenna; Nguyen, Anh Thu – Education for Information, 2018
This paper demonstrates a dynamic, collaborative, and dialogic strategy for guiding students (and experienced researcher teams) through rudimentary forms of visual analysis using draw-and-write datasets. The approach identifies five sequential stages of the visual analysis process and further delineates twenty activities therein. Akin to the…
Descriptors: Visual Literacy, Dance, Folk Culture, Concept Formation
Hershberger, Kimber; Kur, Judith; Haefner, Leigh – Science and Children, 2013
The authors of this article believe that giving students opportunities to talk about and represent science concepts helps them develop deeper, more integrated understandings, while providing teachers with rich, alternative methods of assessment. They provide Science units and instructional approaches that are consistent with science and…
Descriptors: Science Instruction, Scientific Concepts, Science Activities, Drama
Luneta, Kakoma; Makonye, Judah P. – Journal of Science and Mathematics Education in Southeast Asia, 2011
This study explores the nature of undergraduate students' errors and misconceptions in particle mechanics. This paper provides in-depth descriptions of the errors presented by students and accounts for them in terms of students' procedural or conceptual knowledge. Specifically, this study analyses students' written responses to questions on…
Descriptors: Scripts, Undergraduate Students, Concept Formation, Teaching Skills
Oesterle, Susan, Ed.; Allan, Darien, Ed. – Canadian Mathematics Education Study Group, 2015
This submission contains the Proceedings of the 2014 Annual Meeting of the Canadian Mathematics Education Study Group (CMESG), held at the University of Alberta in Edmonton, Alberta. The CMESG is a group of mathematicians and mathematics educators who meet annually to discuss mathematics education issues at all levels of learning. The aims of the…
Descriptors: Mathematics Education, Time Management, Mathematics Instruction, Industry
Eden, Sigal; Passig, David – Journal of Educational Computing Research, 2007
The process of developing concepts of time continues from age 5 to 11 years (Zakay, 1998). This study sought the representation mode in which children could best express time concepts, especially the proper arrangement of events in a logical and temporal order. Usually, temporal order is examined and taught by 2D (2-dimensional) pictorial scripts.…
Descriptors: Computer Simulation, Time, Concept Formation, Children