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Leonora Kaldaras; Hope O. Akaeze; Joseph Krajcik – Journal of Research in Science Teaching, 2024
Chemical bonding is central to explaining many phenomena. Research in chemical education and the Framework for K-12 Science Education (the "Framework") argue for new approaches to learning chemical bonding grounded in (1) using ideas of the balance of electric forces and energy minimization to explain bond formation, (2) using learning…
Descriptors: Science Education, Academic Standards, Chemistry, Energy
G. Puttick; M. Cassidy; E. Tucker-Raymond; G. M. Troiano; C. Harteveld – Journal of Research in Science Teaching, 2024
Much research attention has been focused on learning through game playing. However, very little has been focused on student learning through game making, especially in science. Moreover, none of the studies on learning through making games has presented an account of how students engage in the process of game design in real time. The present study…
Descriptors: Design, Computer Games, Peer Teaching, Science Education
Jeffrey Nordine; Marcus Kubsch; David Fortus; Joseph Krajcik; Knut Neumann – Journal of Research in Science Teaching, 2024
One reason for the widespread use of the energy concept across the sciences is that energy analysis can be used to interpret the behavior of systems even if one does not know the particular mechanisms that underlie the observed behavior. By providing an approach to interpreting unfamiliar phenomena, energy provides a lens on phenomena that can set…
Descriptors: Middle School Students, Energy, Scientific Concepts, Science Instruction
Baumfalk, Ben; Bhattacharya, Devarati; Vo, Tina; Forbes, Cory; Zangori, Laura; Schwarz, Christina – Journal of Research in Science Teaching, 2019
Developing scientific literacy about water systems is critical for K-12 students. However, even with opportunities to build knowledge about the hydrosphere in elementary classrooms, early learners may struggle to understand the water cycle (Forbes et al., [Forbes, C. T., 2015]; Gunckel et al., [Gunckel, K. L., 2012]; Zangori et al., [Forbes, C.…
Descriptors: Models, Science Curriculum, Science Instruction, Elementary School Science
Boda, Phillip A.; Bathia, Shruti; Linn, Marcia C. – Journal of Research in Science Teaching, 2021
Integrating sophisticated graphical analysis skills as they learn science is essential for K-12 students and emphasized in current standards. In this study, we iteratively designed a Graphing Integration Inventory (GII) over a three-year period, while also supporting students to develop their capabilities to use graphs to learn science content in…
Descriptors: Middle School Students, Graphs, Teaching Methods, Science Instruction
Bayram-Jacobs, Durdane; Henze, Ineke; Evagorou, Maria; Shwartz, Yael; Aschim, Elin Leirvoll; Alcaraz-Dominguez, Silvia; Barajas, Mario; Dagan, Etty – Journal of Research in Science Teaching, 2019
The purpose of this study is to provide insight into short-term professionalization of teachers regarding teaching socioscientific issues (SSI). The study aimed to capture the development of science teachers' pedagogical content knowledge (PCK) for SSI teaching by enacting specially designed SSI curriculum materials. The study also explores…
Descriptors: Science Teachers, Pedagogical Content Knowledge, Science Curriculum, Teaching Methods
Dauer, Joseph T.; Long, Tammy M. – Journal of Research in Science Teaching, 2015
One of the goals of college-level introductory biology is to establish a foundation of knowledge and skills that can be built upon throughout a biology curriculum. In a reformed introductory biology course, we used iterative model construction as a pedagogical tool to promote students' understanding about conceptual connections, particularly those…
Descriptors: College Science, Biology, Science Curriculum, Introductory Courses
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
Jin, Hui; Anderson, Charles W. – Journal of Research in Science Teaching, 2012
This article reports on our work of developing a learning progression focusing on K-12 students' performances of using energy concept in their accounts of carbon-transforming processes in socio-ecological systems. Carbon-transforming processes--the ecological carbon cycle and the combustion of biomass and fossil fuels--provide all of the energy…
Descriptors: Elementary Secondary Education, Energy, Role, Science Curriculum
Abrahams, Ian; Reiss, Michael J. – Journal of Research in Science Teaching, 2012
We report here on the first of two evaluations of a national project (Getting Practical: Improving Practical Work in Science--IPWiS) designed to improve the effectiveness of practical work in both primary and secondary schools in England. This first baseline evaluation of the effectiveness of practical work is based on a study of a diverse range…
Descriptors: Concept Formation, Program Effectiveness, Secondary Schools, Foreign Countries
Roseman, Jo Ellen; Stern, Luli; Koppal, Mary – Journal of Research in Science Teaching, 2010
Because textbooks have the potential to be powerful catalysts for improving science teaching and learning, having reliable methods for analyzing important textbook features, such as their coherence, is essential. This study reports on the development of a method in which trained reviewers, following a set of guidelines defining the ideas to be…
Descriptors: Rhetoric, Textbooks, Biology, Guidelines
Fogleman, Jay; McNeill, Katherine L.; Krajcik, Joseph – Journal of Research in Science Teaching, 2011
Reform based curriculum offer a promising avenue to support greater student achievement in science. Yet teachers frequently adapt innovative curriculum when they use them in their own classrooms. In this study, we examine how 19 teachers adapted an inquiry-oriented middle school science curriculum. Specifically, we investigate how teachers'…
Descriptors: Investigations, Self Efficacy, Teaching Experience, Science Education
Bodzin, Alec M. – Journal of Research in Science Teaching, 2011
This study investigated whether a geospatial information technology (GIT)-supported science curriculum helped students in an urban middle school understand land use change (LUC) concepts and enhanced their spatial thinking. Five 8th grade earth and space science classes in an urban middle school consisting of three different ability level tracks…
Descriptors: Urban Environment, Urban Education, Middle School Students, Grade 8
Ruiz-Primo, Maria Araceli; Li, Min; Tsai, Shin-Ping; Schneider, Julie – Journal of Research in Science Teaching, 2010
In this study, we analyzed the quality of students' written scientific explanations found in notebooks and explored the link between the quality of the explanations and students' learning. We propose an approach to systematically analyzing and scoring the quality of students' explanations based on three components: claim, evidence to support it,…
Descriptors: Performance Based Assessment, Multiple Choice Tests, Science Instruction, Thinking Skills
Tomanek, Debra; Talanquer, Vicente; Novodvorsky, Ingrid – Journal of Research in Science Teaching, 2008
The purpose of this qualitative exploratory study was to identify factors that influenced prospective and experienced secondary level science teachers' reasoning as they evaluated or selected tasks to formatively assess their students' understanding of scientific concepts. The analysis of the coded written responses revealed two categories of…
Descriptors: Student Attitudes, Formative Evaluation, Scientific Concepts, Science Teachers