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Danielsson, Kristina; Jeppsson, Fredrik; Nestlog, Ewa B.; Tang, Kok-Sing – Science Education, 2023
This study reports on a case study about multimodal work in a primary physics classroom focusing on forces. Previous research reports that students benefit from multimodal work in science classrooms. Yet, few systematic studies have been performed to reveal how students represent their experiences and ideas of science phenomena over time within…
Descriptors: Science Education, Scientific Concepts, Elementary School Science, Elementary School Students
Adam Bennion; Elizabeth A. Davis – Science Education, 2024
Preservice elementary teachers enter their science methods courses with a range of prior experience with science practice. Those prior experiences likely inform much of their science pedagogy and goals. In this study, the authors examine how a cohort of preservice elementary teachers engaged in science practice as they learned content in a physics…
Descriptors: Preservice Teachers, Elementary Education, Physics, Science Instruction
Hee-Sun Lee; Gey-Hong Gweon; Aubree Webb; Dan Damelin; Chad Dorsey – Science Education, 2024
This study addresses the measurement of high school students' epistemic knowledge associated with scientific experimentation (EKSE) which concerns "how" scientific experimentation generates knowledge and "why" that knowledge is justified. Based on philosophical, educational standards, and literature analyses, an EKSE construct…
Descriptors: Knowledge Level, Science Experiments, High School Students, Thinking Skills
Perl-Nussbaum, David; Schwarz, Baruch B.; Yerushalmi, Edit – Science Education, 2023
Out-of-field teaching is a global educational challenge. In particular, many teachers whose academic background and main teaching experience is in biology are called to teach middle school physics and have limited opportunities for productive professional development. Based on previous studies, we expect these teachers to hold different epistemic…
Descriptors: Interdisciplinary Approach, Dialogs (Language), Persuasive Discourse, Teacher Qualifications
Kilde Löfgren, Sebastian; Weidow, Jonathan; Enger, Jonas – Science Education, 2023
The creation and use of models in science is of great importance for knowledge production and communication. For example, toy models are often used as idealized explanatory models in physics education. Models can be a powerful tool for exploring phenomena in ways that facilitate learning. However, careful consideration of instruction and…
Descriptors: Physics, Science Instruction, Laboratory Experiments, Learning Processes
Jasmine Jones – Science Education, 2024
The underrepresentation of Black Americans in physics has been persistent for so long that it seems to have constrained physics educators' collective imagination when it comes to conceptualizing and pursuing equity in physics teaching and learning. Drawing on a teacher research study that foregrounds justice-centered physics teaching, this article…
Descriptors: Science Instruction, Teaching Methods, Physics, Social Justice
Smith, Thomas J.; Hong, Zuway-R; Hsu, Wen-Yi; Lu, Ying-Yan – Science Education, 2022
This study examined how high school students' attitudes toward advanced physics were predicted by their sense of school belonging, and how gender moderated this relationship. The Trends in International Math and Science (TIMSS) 2015 Advanced data, consisting of responses from 12th grade students enrolled in advanced physics courses among nine…
Descriptors: High School Students, Student Attitudes, Scientific Attitudes, Physics
Jessica M. Karch; Nicolette M. Maggiore; Jennifer R. Pierre-Louis; Destiny Strange; Vesal Dini; Ira Caspari-Gnann – Science Education, 2024
Small group interactions and interactions with near-peer instructors such as learning assistants serve as fertile opportunities for student learning in undergraduate active learning classrooms. To understand what students take away from these interactions, we need to understand how and what they learn during the moment of their interaction. This…
Descriptors: Teaching Assistants, Interaction, Active Learning, Electronic Learning
Odden, Tor Ole B. – Science Education, 2021
When learning science, students must often make sense of complex and counterintuitive ideas. However, this process of sensemaking is difficult, and consequently students risk emerging from science courses with highly fragmented understandings. In this study, I examine the ways in which students create conceptual connections to resolve such…
Descriptors: Concept Formation, Energy, Physics, Introductory Courses
Criswell, Brett A.; Rushton, Gregory T.; Nachtigall, Dawn; Staggs, Samuel; Alemdar, Meltem; Cappelli, Christopher J. – Science Education, 2018
The program team operating an NSF Noyce Master Teacher program has been building a conceptual framework for developing teacher leaders. The program has focused its efforts on a group of 16 chemistry and physics teachers in Southeast high-needs schools. The conceptual framework is based on the view that teacher leaders are those individuals who…
Descriptors: Chemistry, Physics, Science Instruction, Teacher Leadership
Bøe, Maria Vetleseter; Henriksen, Ellen Karoline; Angell, Carl – Science Education, 2018
Calls for renewal of physics education include more varied learning activities and increased focus on qualitative understanding and history and philosophy of science (HPS) aspects. We have studied an innovative approach implementing such features in quantum physics in traditional upper secondary physics classrooms in Norway. Data consists of 11…
Descriptors: Science Education, Physics, Quantum Mechanics, Instructional Innovation
Plummer, Julia D.; Palma, Christopher; Rubin, KeriAnn; Flarend, Alice; Ong, Yann Shiou; Ghent, Chrysta; Gleason, Timothy; McDonald, Scott; Botzer, Brandon; Furman, Tanya – Science Education, 2020
We previously proposed a hypothetical learning progression around the disciplinary core idea of the Solar System and its formation as a first step in a research program to begin to fill this gap and address questions of student learning in this domain. In this study, we evaluate the effectiveness of two dimensions within the learning progression,…
Descriptors: Astronomy, Grade 6, Science Instruction, Student Attitudes
Katherine Doerr; Jesper Bruun – Science Education, 2024
Seeking to make upper secondary school physics more relevant and engaging, an online collaborative learning curriculum was designed. Each of the curriculum's lessons was structured as a goal-based scenario about human scientists on Mars. Video and audio data from the curriculum's implementation in Denmark was collected. This study utilized the…
Descriptors: Self Concept, Secondary School Students, Physics, Foreign Countries
Chang, Hsin-Yi – Science Education, 2018
Research has indicated the importance of representational competence for learning science. Issues related to the nature of students' representational competence, such as how they demonstrate representational competence across different domains of science, require investigation. In the present study, four aspects of representational competence…
Descriptors: Competence, Science Education, Scientific Concepts, Visualization
Kapon, Shulamit; Laherto, Antti; Levrini, Olivia – Science Education, 2018
Pursuing both disciplinary authenticity and personal relevance in the teaching and learning of science in school generates tensions that should be acknowledged and resolved. This paper problematizes and explores the conceptualizations of these tensions by considering personal relevance, disciplinary authenticity, and common school science as three…
Descriptors: Science Instruction, Educational Objectives, Course Content, Epistemology