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Showing all 12 results Save | Export
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Ramona Hagenkötter; Valentina Nachtigall; Katrin Rolka; Nikol Rummel – European Journal of Psychology of Education, 2024
The implementation of video modeling examples of mathematical hands-on experimentation may provide students with authentic and, at the same time, not too cognitively overwhelming experiences. However, the effectiveness of video modeling examples can be influenced by different characteristics of the observed models. On the one hand, based on the…
Descriptors: Experiential Learning, Mathematical Concepts, Video Technology, Authentic Learning
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Rollinde, Emmanuel; Decamp, Nicolas; Derniaux, Catherine – Physical Review Physics Education Research, 2021
The experiment that we present in this paper explores the teaching of Galilean motion principles observed in different reference frames, in an astronomical context. All grade 10 students in a French high school (the lycée Condorcet, Val de Marne) participated in two successive teaching-learning sessions, designed within the theoretical framework…
Descriptors: Teaching Methods, Astronomy, Science Instruction, Learning Processes
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Singh, Garima; Khunyakari, Ritesh – Contemporary Education Dialogue, 2023
Learning about components and processes of complex biological systems is challenging and requires abstraction through mediational tools such as text, visuals, models and visualisation experiences. The 'systems concepts' necessitate building coherent relations and anticipating consequences, requiring greater mediational support. This article…
Descriptors: Biology, Science Instruction, Scaffolding (Teaching Technique), Teaching Methods
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Chiu, Mei-Hung; Liaw, Hongming Leonard; Yu, Yuh-Ru; Chou, Chin-Cheng – British Journal of Educational Technology, 2019
Utilizing facial recognition technology, the current study has attempted to predict the likelihood of student conceptual change with decision tree models based on the facial micro-expression states (FMES) students exhibited when they experience conceptual conflict. While conceptual change through conceptual conflicts in science education is a…
Descriptors: Science Education, Scientific Concepts, Concept Formation, Grade 10
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Davis, James P.; Bellocchi, Alberto – Cultural Studies of Science Education, 2020
This study addresses the need for innovative research approaches in science education for understanding better the inter-relationships between emotion and cognition in learning, using a sociological perspective. Our perspective draws upon the concept of emotional energy that is described as an outcome from successful social interactions during…
Descriptors: Grade 10, Science Instruction, Emotional Response, Verbal Communication
Herrmann-Abell, Cari F.; DeBoer, George E. – Grantee Submission, 2018
This study tests a hypothesized learning progression for the concept of energy. It looks at 14 specific ideas under the categories of (i) Energy Forms and Transformations; (ii) Energy Transfer; (iii) Energy Dissipation and Degradation; and (iv) Energy Conservation. It then examines students' growth of understanding within each of these ideas at…
Descriptors: Energy, Science Instruction, Concept Formation, Energy Conservation
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Plummer, Julia D.; Palma, Christopher; Flarend, Alice; Rubin, KeriAnn; Ong, Yann Shiou; Botzer, Brandon; McDonald, Scott; Furman, Tanya – International Journal of Science Education, 2015
This study describes the process of defining a hypothetical learning progression (LP) for astronomy around the big idea of "Solar System formation." At the most sophisticated level, students can explain how the formation process led to the current Solar System by considering how the planets formed from the collapse of a rotating cloud of…
Descriptors: Science Education, Astronomy, Student Attitudes, Interviews
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Neumann, Knut; Viering, Tobias; Boone, William J.; Fischer, Hans E. – Journal of Research in Science Teaching, 2013
This article presents an empirical study on an initial learning progression of energy, a concept of central importance to the understanding of science. Learning progressions have been suggested as one vehicle to support the systematic and successful teaching of core science concepts. Ideally, a learning progression will provide teachers with a…
Descriptors: Science Instruction, Energy, Learning Processes, Science Curriculum
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Fulmer, Gavin W.; Liang, Ling L.; Liu, Xiufeng – International Journal of Science Education, 2014
This exploratory study applied a proposed force and motion learning progression (LP) to high-school and university students and to content involving both one- and two-dimensional force and motion situations. The Force Concept Inventory (FCI) was adapted, based on a previous content analysis and coding of the questions in the FCI in terms of the…
Descriptors: Secondary School Science, High School Students, College Science, College Students
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Dimitriadi, Kyriaki; Halkia, Krystallia – International Journal of Science Education, 2012
A major topic that has marked "modern physics" is the theory of special relativity (TSR). The present work focuses on the possibility of teaching the basic ideas of the TSR to students at the upper secondary level in such a way that they are able to understand and learn the ideas. Its aim is to investigate students' learning processes towards the…
Descriptors: Physics, Learning Processes, Content Analysis, Scientific Concepts
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Givry, Damien; Tiberghien, Andree – International Journal of Science Education, 2012
In literature, several processes have been suggested to describe conceptual changes being undertaken. However, a few parts of studies analyse in great detail which students' learning processes are involved in physics classes during teaching, and how they are used. Following a socio-constructivist approach using tools coming from discourse…
Descriptors: Video Technology, Constructivism (Learning), Student Evaluation, Written Language
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Babai, Reuven; Sekal, Rachel; Stavy, Ruth – Journal of Science Education and Technology, 2010
This study investigated whether intuitive, naive conceptions of "living things" based on objects' mobility (movement = alive) persist into adolescence and affect 10th graders' accuracy of responses and reaction times during object classification. Most of the 58 students classified the test objects correctly as living/nonliving, yet they…
Descriptors: Reaction Time, Prior Learning, Grade 10, Misconceptions