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Marissa Levy; Amanda Peel; Lexie Zhao; Nicholas LaGrassa; Michael S. Horn; Uri Wilensky – Journal of Research in Science Teaching, 2025
Increasing access to computational ideas and practices is one important reason to integrate computational thinking (CT) in science classrooms. While integrating CT into science classrooms broadens exposure to computing, it may not be enough to ensure equitable participation in the science classroom. Equitable participation is crucial because…
Descriptors: Secondary School Teachers, Science Teachers, Teacher Attitudes, Teaching Methods
Hannah Cooke; Todd Campbell; April Luehmann; Yang Zhang; Déana Scipio – Journal of Research in Science Teaching, 2025
Explicitly attending to justice in science teaching and learning is long overdue. Here, we examined the professional teacher identity development of 13 science teachers as they collaborated in networked professional learning communities (PLCs) to implement and revise a culture-setting unit focused on the science of COVID and engaging in…
Descriptors: Justice, Science Education, Science Instruction, Teaching Methods
O'Neill, Tara; Finau-Faumuina, Bella Melenaite; Ford, Tessie U?ilani Lumabao – Journal of Research in Science Teaching, 2023
Given the growing global environmental threats, shifts to increasingly binary thinking that isolate and polarize discourse, and the erosion of caring for each other and our places, the authors believe it is imperative that we change the way science and science, technology, engineering, and math (STEM) education connect with communities and are…
Descriptors: Decolonization, STEM Education, Problem Solving, Community Involvement
Jessica L. Alzen; Kelsey Edwards; William R. Penuel; Brian J. Reiser; Cynthia Passmore; Chris D. Griesemer; Aliza Zivic; Christina Murzynski; Jason Y. Buell – Journal of Research in Science Teaching, 2023
Student participation in the science practices is more than following directions to conduct pre-determined experiments and analyze data with expected solutions. This requires classroom shifts that increase the epistemic agency of students: increase student involvement and authority in developing science knowledge and practices, rather than the…
Descriptors: Epistemology, Science Instruction, Teaching Methods, Personal Autonomy
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
Yang, Rui; Porter, Andrew C.; Massey, Christine M.; Merlino, Joseph F.; Desimone, Laura M. – Journal of Research in Science Teaching, 2020
This study investigates, through a cluster-randomized trial, the effectiveness of two approaches to increasing middle school students' science learning using a traditional science curriculum. Ninety schools were randomly assigned into one of three arms: (a) a treatment arm in which the textbook curriculum was modified based on four principles of…
Descriptors: Science Curriculum, Secondary School Science, Middle School Students, Middle School Teachers
Fulmer, Gavin W.; Tanas, Jamie; Weiss, Kathleen A. – Journal of Research in Science Teaching, 2018
Alignment to the Next Generation Science Standards (NGSS) is essential in efforts to interpret the standards and to compare curriculum, pedagogy, and assessment efforts with respect to the standards. However, relatively little work has explored the alignment implications of NGSS. This article is a conceptual analysis that gives an overview of…
Descriptors: Alignment (Education), Academic Standards, Science Education, Definitions
Cherbow, Kevin – Journal of Research in Science Teaching, 2023
Recent reforms in K-12 science education call for curricular materials that are designed to be "coherent for students." This form of coherence arises when the classroom community sees their science work as addressing their questions and problems. In enactment, the teacher sometimes has to improvise from the planned trajectory of the…
Descriptors: Instructional Design, Creative Activities, Educational Change, Science Education
Gunckel, Kristin L.; Covitt, Beth A.; Berkowitz, Alan R.; Caplan, Bess; Moore, John C. – Journal of Research in Science Teaching, 2022
Nearly a decade ago, the "Framework for K-12 Science Education" argued for the need to intertwine science and engineering practices, disciplinary core ideas, and crosscutting concepts in performance expectations. However, there are few empirical examples for how intertwining three dimensions facilitates learning. In this study, we used a…
Descriptors: Thinking Skills, Science Instruction, Engineering Education, Learning Processes
Overman, Michelle; Vermunt, Jan D.; Meijer, Paulien C.; Brekelmans, Mieke – Journal of Research in Science Teaching, 2019
Teachers participating in curricular reforms, especially reforms based on constructivism, are expected to bring about change in their teaching approach. This is often a difficult, complex and intensive process, and demands a radical reculturing of the classroom. This is also the case for social constructivist reforms in chemistry education, which…
Descriptors: Science Instruction, Chemistry, Curriculum Development, Constructivism (Learning)
Payne, Corey; Crippen, Kent J. – Journal of Research in Science Teaching, 2023
Persistence is a major issue facing students, particularly those who are both female and from underrepresented ethnic minorities (URM). A closer look at the variables affecting their commitment and capacity for continuing the pursuit of their goal allows us to better design support systems that bolster persistence. This study tests a structural…
Descriptors: Chemistry, Science Instruction, Correlation, Teaching Methods
Brunner, Jeanne L.; Abd-El-Khalick, Fouad – Journal of Research in Science Teaching, 2020
This study investigated the effect of including explicit nature of science (NOS) content in read-alouds of elementary science trade books on the teaching and learning of NOS. We focused on three aspects of NOS: the creative, the empirical, and the inferential NOS. The trade books were read aloud by teachers in three hierarchical levels: Level I…
Descriptors: Scientific Principles, Elementary School Students, Science Instruction, Audio Equipment
Summers, Ryan; Alameh, Sahar; Brunner, Jeanne; Maddux, John M.; Wallon, Robert C.; Abd-El-Khalick, Fouad – Journal of Research in Science Teaching, 2019
This study evaluated the representations of nature of science (NOS) in U.S. state science standards, and examined the changes in these representations from documents advanced in the 1980s through 2016. Drawing from the consensus perspective on NOS and prior studies focusing on the analysis of textual content, documents were inspected for 10 target…
Descriptors: Scientific Principles, Science Education, Educational History, Scientific Methodology
Hagay, Galit; Baram-Tsabari, Ayelet – Journal of Research in Science Teaching, 2015
Many students feel the curriculum is detached from their lives and interests. Indeed, about half the questions asked by high school biology students are not addressed by the curriculum. This study presents a strategy to incorporate students' curiosity questions into the curriculum as a way to reduce the disparity between students' interests and…
Descriptors: Secondary School Science, High School Students, Science Interests, Science Curriculum
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