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Vegard Gjerde; Sivert Hagane – Physical Review Physics Education Research, 2024
Peer Instruction gives practice in the abstract language of physics, addresses common misconceptions among students, and is more effective than traditional lecturing. However, it is not clear what makes Peer Instruction effective nor how we might improve the method. An emerging perspective is that what makes Peer Instruction effective is how it…
Descriptors: Science Instruction, Peer Teaching, Scientific Concepts, Models
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Krause, Eduard; Dilling, Frederik; Kraus, Simon Friedrich; Chi, Nguyen Phuong; Chat, Tran Ngoc; Van Bien, Nguyen – EURASIA Journal of Mathematics, Science and Technology Education, 2020
This article presents a possible framework for the cooperation of mathematics and physics education research domains. Moreover, the potential topics for such a scientific collaboration are explained by means of a structuring qualitative content analysis of current handbooks and conference proceedings in Germany and Vietnam. These topics can form a…
Descriptors: Interdisciplinary Approach, Mathematics Education, Physics, Educational Research
Quigley, Cassie F.; Herro, Danielle – Teachers College Press, 2019
This practical book will help readers understand what STEAM is, how it differs from STEM, and how it can be used to engage students in K-8 classrooms. The authors present a conceptual model with recommendations and classroom examples illustrating various key aspects of STEAM teaching in action, including creating the correct teaching environment,…
Descriptors: STEM Education, Art Education, Elementary Schools, Middle Schools
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Hill-Cunningham, P. Renee; Mott, Michael S.; Hunt, Anna-Blair – School Science and Mathematics, 2018
STEM education in elementary school is guided by the understanding that engineering represents the application of science and math concepts to make life better for people. The Engineering Design Process (EDP) guides the application of creative solutions to problems. Helping teachers understand how to apply the EDP to create lessons develops a…
Descriptors: STEM Education, Elementary Education, Elementary School Students, Relevance (Education)
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Poitras, Eric G.; Lajoie, Susanne P.; Doleck, Tenzin; Jarrell, Amanda – Educational Technology & Society, 2016
Learner modeling, a challenging and complex endeavor, is an important and oft-studied research theme in computer-supported education. From this perspective, Educational Data Mining (EDM) research has focused on modeling and comprehending various dimensions of learning in computer-based learning environments (CBLE). Researchers and designers are…
Descriptors: Intelligent Tutoring Systems, Data, Data Analysis, Medical Evaluation
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Çetinkaya, Murat – International Journal of Evaluation and Research in Education, 2016
Positive results of science teaching studies supported with the means provided by technology require the enrichment of the content of blended learning environments to provide more benefits. Within this context, it is thought that preparing a web-assisted model-based teaching, which is frequently used in science teaching, based on the "Matter…
Descriptors: Instructional Design, Individualized Instruction, Blended Learning, Web Based Instruction
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Anderson-Pence, Katie L.; Moyer-Packenham, Patricia S.; Westenskow, Arla; Shumway, Jessica; Jordan, Kerry – International Journal for Mathematics Teaching and Learning, 2014
The purpose of this study was to deconstruct the relationship between visual static models and students' written solutions to fraction problems using a large sample of students' solutions. Participants in the study included 162 third-grade and 209 fourth-grade students from 17 different classrooms. Students' written responses to open-ended tasks…
Descriptors: Mathematics, Models, Visual Aids, Problem Solving
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Mudau, Awelani V. – EURASIA Journal of Mathematics, Science & Technology Education, 2016
The purpose of this paper is to present a conceptual framework for diagnosing teaching difficulties of a science topic in the science classroom. The development of the framework is presented as well as descriptions of the features of the framework. How the framework can be used is also elaborated? Furthermore, there is a detailed indication of an…
Descriptors: Classroom Techniques, Models, Teaching Methods, Problem Solving
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Horiguchi, Tomoya; Imai, Isao; Toumoto, Takahito; Hirashima, Tsukasa – Educational Technology & Society, 2014
Error-based simulation (EBS) has been developed to generate phenomena by using students' erroneous ideas and also offers promise for promoting students' awareness of errors. In this paper, we report the evaluation of EBS used in learning "normal reaction" in a junior high school. An EBS class, where students learned the concept…
Descriptors: Simulation, Error Correction, Learning Processes, Misconceptions
Levy, Roy – National Center for Research on Evaluation, Standards, and Student Testing (CRESST), 2014
Digital games offer an appealing environment for assessing student proficiencies, including skills and misconceptions in a diagnostic setting. This paper proposes a dynamic Bayesian network modeling approach for observations of student performance from an educational video game. A Bayesian approach to model construction, calibration, and use in…
Descriptors: Video Games, Educational Games, Bayesian Statistics, Observation
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Hanyak, Michael E., Jr. – Advances in Engineering Education, 2015
In an introductory chemical engineering course, the conceptual framework of a holistic problem-solving methodology in conjunction with a problem-based learning approach has been shown to create a learning environment that nurtures deep learning rather than surface learning. Based on exam scores, student grades are either the same or better than…
Descriptors: Chemical Engineering, Problem Solving, Teaching Methods, Problem Based Learning
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Hernandez, Gabriel E.; Criswell, Brett A.; Kirk, Nancy J.; Sauder, Deborah G.; Rushton, Gregory T. – Chemistry Education Research and Practice, 2014
In the past three decades, researchers have noted the limitations of a problem-solving approach that overemphasizes algorithms and quantitation and neglects student misconceptions and an otherwise qualitative, conceptual understanding of chemical phenomena. Since then, studies and lessons designed to improve student understanding of chemistry has…
Descriptors: Qualitative Research, Chemistry, Models, Problem Solving
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Zeytun, Aysel Sen; Cetinkaya, Bulent; Erbas, Ayhan Kursat – Educational Sciences: Theory and Practice, 2010
Various studies suggest that covariational reasoning plays an important role on understanding the fundamental ideas of calculus and modeling dynamic functional events. The purpose of this study was to investigate a group of mathematics teachers' covariational reasoning abilities and predictions about their students. Data were collected through…
Descriptors: Mathematics Teachers, Calculus, Misconceptions, Thinking Skills
Frauenknecht, Marianne; Black, David R. – American Journal of Health Education, 2010
This paper makes a case that decision making (DM) is not social problem solving (SPS) and DM is subordinate and subsumed within SPS. Both terms are defined and distinguished. Confusion between SPS and DM is widespread and has occurred for at least four decades. DM, not SPS, has been established as one of the seven National Health Education…
Descriptors: Social Problems, Comprehensive School Health Education, Problem Solving, Decision Making
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Nehm, Ross H.; Ha, Minsu – Journal of Research in Science Teaching, 2011
Despite concerted efforts by science educators to understand patterns of evolutionary reasoning in science students and teachers, the vast majority of evolution education studies have failed to carefully consider or control for item feature effects in knowledge measurement. Our study explores whether robust contextualization patterns emerge within…
Descriptors: Majors (Students), Evolution, Animals, Measures (Individuals)
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