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Conradty, Cathérine; Sotiriou, Sofoklis A.; Bogner, Franz X. – Education Sciences, 2020
Many current curricula, in going beyond traditional goals, increasingly foster creativity in science classrooms, declaring creativity a core skill of the 21st century. For enhancing creativity in science classrooms, the subject Arts is considered to offer a potential way from STEM (Science, Technology, Engineering, Mathematics) to STEAM (STEM with…
Descriptors: Creativity, Art Education, STEM Education, Learning Modules
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Cardellini, Liberato – Journal of Technology and Science Education, 2014
The traditional approach to teach problem solving usually consists in showing students the solutions of some example-problems and then in asking students to practice individually on solving a certain number of related problems. This approach does not ensure that students learn to solve problems and above all to think about the solution process in…
Descriptors: Problem Solving, Chemistry, Scientific Concepts, Science Instruction
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Fazio, Claudio; Battaglia, Onofrio Rosario; Di Paola, Benedetto – Physical Review Special Topics - Physics Education Research, 2013
This paper describes a method aimed at pointing out the quality of the mental models undergraduate engineering students deploy when asked to create explanations for phenomena or processes and/or use a given model in the same context. Student responses to a specially designed written questionnaire are quantitatively analyzed using…
Descriptors: Undergraduate Students, Engineering Education, Science Instruction, Questionnaires
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Berti, Anna Emilia; Toneatti, Laura; Rosati, Veronica – Journal of the Learning Sciences, 2010
Investigations of people's understanding of the evolution of species have focused mainly on secondary school and university students. Very few investigations have taken into consideration younger students, and none have related children's ideas about the origin of species to formal instruction on this topic. To help fill this gap, the present…
Descriptors: Evolution, Elementary School Students, Grade 3, Grade 2
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Catania, Giovanna – Physics Education, 1987
Criticizes the current method of formalization in Italian schools and the use of tools of the mathematical method. Proposes a general three-stage formalization method which can used for physical quantities, the particular significance of certain quantities, and the description and interpretation of phenomena. (TW)
Descriptors: Cognitive Processes, Foreign Countries, Learning Strategies, Mathematical Applications