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Lin, Yu-Tzu; Wang, Ming-Tsan; Wu, Cheng-Chih – Asia-Pacific Education Researcher, 2019
This study designs and implements interdisciplinary STEM instruction by adopting modelling-based physics programming, and explores its effectiveness on learning. A quasi-experimental study was conducted. The experimental group wrote programs to solve physics problems by following the modelling process, while the control group solved general…
Descriptors: Design, STEM Education, Program Implementation, Science Instruction
Okumus, Seda; Koc, Yasemin; Doymus, Kemal – Educational Policy Analysis and Strategic Research, 2019
The aim of this study was to determine the effects of cooperative learning and models on the conceptual understanding of the chemical reactions. The sample of study was comprised of 71 preservice science teachers from the first grade of science teacher education program. Quasi-experimental method with pre-and post-test of quantitative research was…
Descriptors: Cooperative Learning, Chemistry, Science Education, Preservice Teacher Education
Aghekyan, Rosa – Journal of College Science Teaching, 2018
Inclusion of model building in the learning process promotes a deep understanding of scientific content and concepts. Likewise, higher level questioning requires high cognitive demand and critical reasoning and leads to positive educational results. The purpose of this study was to determine whether the conjunction of higher level thinking…
Descriptors: Thinking Skills, Critical Thinking, Logical Thinking, Scientific Concepts
Arslan Buyruk, Arzu; Ogan Bekiroglu, Feral – Journal of Education in Science, Environment and Health, 2018
The focus of this study was to evaluate the impact of model-based inquiry on pre-service physics teachers' conceptual understanding of dynamics. Theoretical framework of this research was based on models-of-data theory. True-experimental design using quantitative and qualitative research methods was carried out for this research. Participants of…
Descriptors: Comparative Analysis, Preservice Teachers, Physics, Science Teachers
Fuhrmann, Tamar; Schneider, Bertrand; Blikstein, Paulo – International Journal of Science Education, 2018
The Bifocal Modelling Framework (BMF) is an approach for science learning which links students' physical experimentation with computer modelling in real time, focusing on the comparison of the two media. In this paper, we explore how a Bifocal Modelling implementation supported learning outcomes related to both content and metamodeling knowledge,…
Descriptors: High School Students, Science Instruction, Models, Outcomes of Education
Park, Su-Kyeong – EURASIA Journal of Mathematics, Science & Technology Education, 2016
This study proposed an analytic framework for coding students' dialogic argumentation and investigated the characteristics of the small-group argumentation pattern observed in modeling-based learning. The participants were 122 second grade high school students in South Korea divided into an experimental and a comparison group. Modeling-based…
Descriptors: Foreign Countries, High School Students, Persuasive Discourse, Discourse Analysis
Guzel, Hattice – Asia-Pacific Forum on Science Learning and Teaching, 2017
In this research, the purpose was to examine and compare the effect of teaching Electric Current, which is a topic of grade 11 physics lesson, on student achievement and attitude according to the 5E model belonging to the constructivist learning theory and the traditional teaching method. The research was conducted in the spring semester of…
Descriptors: Models, Science Instruction, Academic Achievement, Student Attitudes
Ültay, Neslihan; Çalik, Muammer – EURASIA Journal of Mathematics, Science & Technology Education, 2016
Inability to link the acid-base concepts with daily life phenomena (as contexts) highlights the need for further research on the context-based acid-base chemistry. In this vein, the aim of this study is to investigate the effects of different teaching designs (REACT strategy, 5Es learning model and traditional (existing) instruction) relevant with…
Descriptors: Science Instruction, Teaching Methods, Relevance (Education), Chemistry
Padalkar, Shamin; Hegarty, Mary – Journal of Educational Psychology, 2015
Spatial information in science is often expressed through representations such as diagrams and models. Learning the strengths and limitations of these representations and how to relate them are important aspects of developing scientific understanding, referred to as "representational competence." Diagram translation is particularly…
Descriptors: Science Instruction, Visual Aids, Organic Chemistry, Models
Mota, A. R.; Lopes dos Santos, J. M. B. – Physics Education, 2014
Students' misconceptions concerning colour phenomena and the apparent complexity of the underlying concepts--due to the different domains of knowledge involved--make its teaching very difficult. We have developed and tested a teaching device, the addition table of colours (ATC), that encompasses additive and subtractive mixtures in a single…
Descriptors: Color, Misconceptions, Science Instruction, Scientific Concepts
Samon, Sigal; Levy, Sharona T. – Science Education, 2017
The study explores how a complexity approach empowers science learning. A complexity approach represents systems as many interacting entities. The construct of micro-macro compatibility is introduced, the degree of similarity between behaviors at the micro- and macro-levels of the system. Seventh-grade students' learning about gases was studied…
Descriptors: Difficulty Level, Systems Approach, Science Education, Secondary School Students
Qarareh, Ahmed O. – International Education Studies, 2016
The study aims to investigate the effect of using constructivist learning model in teaching science, especially in the subject of light: its nature, mirrors, lens, and properties, on the achievement of eighth-grade students and their scientific thinking. The study sample consisted of (136) male and female 8th graders were chosen from two basic…
Descriptors: Foreign Countries, Constructivism (Learning), Models, Science Instruction
Springer, Michael T. – Journal of Chemical Education, 2014
Several articles suggest how to incorporate computer models into the organic chemistry laboratory, but relatively few papers discuss how to incorporate these models broadly into the organic chemistry lecture. Previous research has suggested that "manipulating" physical or computer models enhances student understanding; this study…
Descriptors: Science Instruction, Undergraduate Study, College Science, Organic Chemistry
Lin, Jang-Long; Cheng, Meng-Fei; Chang, Ying-Chi; Li, Hsiao-Wen; Chang, Jih-Yuan; Lin, Deng-Min – EURASIA Journal of Mathematics, Science & Technology Education, 2014
The purpose of this study was to investigate how learning materials based on Science Magic activities affect student attitudes to science. A quasi-experimental design was conducted to explore the combination of Science Magic with the 5E Instructional Model to develop learning materials for teaching a science unit about friction. The participants…
Descriptors: Science Instruction, Secondary School Science, Middle School Students, Teaching Methods
Riffel, Alvin Daniel – Universal Journal of Educational Research, 2015
This paper looks at those aspects of Indigenous Knowledge (IK) that are socially and culturally relevant in South Africa for teaching meteorological science concepts in a grade 9 geography class room using dialogical argumentation as an instructional model (DAIM). Focusing on the Western Cape Province, and using a quasi-experimental research…
Descriptors: Foreign Countries, Indigenous Knowledge, Culturally Relevant Education, Meteorology
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