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Richards, A. J.; Jones, Darrick C.; Etkina, Eugenia – Research in Science Education, 2020
We use the framework of cognitive resources to investigate how students construct understanding of a complex physics topic, namely, a photovoltaic cell. By observing students as they learn about how a solar cell functions, we identified over 60 distinct resources that learners may activate while thinking about photovoltaic cells. We classify these…
Descriptors: Physics, Concept Formation, Scientific Concepts, Cognitive Ability
Tobin, R. G.; Lacy, Sara J.; Crissman, Sally – Physical Review Physics Education Research, 2023
Kinetic energy is usually the entry point for the study of energy in physics and is often perceived as unproblematic. We present evidence, however, that some learners who seem to have accepted the concept, from elementary school students to college physics majors and in-service teachers, nevertheless do not consistently attribute kinetic energy to…
Descriptors: Physics, Science Instruction, Scientific Concepts, Concept Formation
Wheatley, Christopher; Wells, James; Pritchard, David E.; Stewart, John – Physical Review Physics Education Research, 2022
The Force Concept Inventory (FCI) is a popular multiple-choice instrument used to measure a student's conceptual understanding of Newtonian mechanics. Recently, a network analytic technique called module analysis has been used to identify responses to the FCI and other conceptual instruments that are preferentially selected together by students;…
Descriptors: Physics, Science Instruction, Concept Formation, Scientific Concepts
Emily M. Stump; Mark Hughes; Gina Passante; N. G. Holmes – Physical Review Physics Education Research, 2023
[This paper is part of the Focused Collection on Instructional labs: Improving traditions and new directions.] Uncertainty is an important concept in physics laboratory instruction. However, little work has examined how students reason about uncertainty beyond the introductory (intro) level. In this work we aimed to compare intro and beyond-intro…
Descriptors: Student Attitudes, Scientific Attitudes, Physics, Introductory Courses
Krijtenburg-Lewerissa, Kim; Pol, Henk; Brinkman, Alexander; van Joolingen, Wouter – Physics Education, 2022
Quantum mechanics (QM) has become part of many secondary school curricula. These curricula often do not include the mathematical tools for a formal, mathematical introduction of QM. QM therefore needs to be taught at a more conceptual level, but making secondary school students understand counterintuitive QM concepts without introducing…
Descriptors: Prior Learning, Physics, Science Instruction, Intervention
Jannis Weber; Thomas Wilhelm – Physical Review Physics Education Research, 2024
Students experience many difficulties learning the fundamental relationships in Newtonian mechanics, partly due to preexisting mental models that originate from their everyday lives. These preconceptions often persist even after instruction in mechanics and lead to a supposed incompatibility between physics lessons in school and personal…
Descriptors: Physics, Science Instruction, Scientific Concepts, Mechanics (Physics)
Koma, Sechaba; Mokuku, Ts'epo; Makatjane, Tiisetso J.; Balck, Christel; Sermeus, Jan – African Journal of Research in Mathematics, Science and Technology Education, 2021
This study investigated the extent to which the proposed Factory of Ideas (FOI) teaching approach impacted on students' understanding of energy based on their prior knowledge. The FOI is a didactic approach that, unlike the classic cognitive conflict approach, employs a variety of activities to offer students a scientific conception for comparison…
Descriptors: Teaching Methods, Science Instruction, Energy, Scientific Concepts
D'Eon, Marcel; Yasinian, Maryam – Higher Education Research and Development, 2022
In this article, we propose a new model of student workload. We conducted an extensive literature review of student workload, its impact on students' lives, factors influencing student workload, objective and subjective measurements. The previous conceptualizations of student workload conflate student work and course workload, two related but…
Descriptors: Physics, Science Instruction, Learning Processes, Barriers
Suryadi, Ahmad; Kusairi, Sentot – Journal of Technology and Science Education, 2021
Every student needs feedback to understand a scientific concept deeply. However, with a large number of students in each class, individual feedback is a challenge for teachers in Indonesia. Although there have been many studies conducted to maximize the giving of personal feedback, studies conducted by ensuring the consistency of a student's…
Descriptors: Computer Assisted Instruction, Multimedia Instruction, Feedback (Response), Formative Evaluation
McLure, Felicity; Won, Mihye; Treagust, David F. – International Journal of Science Education, 2021
Understanding plate tectonics is pivotal to development of an integrated understanding of Geoscience topics. However, geology is frequently introduced to students in lower secondary school by describing separate processes, such as sedimentary rock formation, rather than investigating the overall driving forces for change. This study investigated…
Descriptors: Visual Aids, Freehand Drawing, Concept Formation, Scientific Concepts
Thurn, Christian M.; Hänger, Brigitte; Kokkonen, Tommi – Education Sciences, 2020
Conceptual change theories assume that knowledge structures grow during the learning process but also get reorganized. Yet, this reorganization process itself is hard to examine. By using concept maps, we examined the changes in students' knowledge structures and linked it to conceptual change theory. In a longitudinal study, thirty high-achieving…
Descriptors: Concept Mapping, Scientific Concepts, Science Education, Cognitive Structures
Borgerding, Lisa Ann; Kaya, Fatma; Librea-Carden, Mila Rosa; Pantuso, Davida; Maybin, Jaren – Electronic Journal of Science Education, 2017
Physics and physical science content are essential for many professional fields, and they are an important component of scientific literacy. Yet, students are commonly less engaged in physics learning at all levels. Funds of knowledge approaches to science instruction build upon learners' real-world experiences and interests in order to make…
Descriptors: Physics, Science Instruction, College Science, Undergraduate Students
Henderson, Rachel; Stewart, John; Traxler, Adrienne – Physical Review Physics Education Research, 2019
Over the last decade, the "gender gap" in physics conceptual inventory scores has been extensively studied by the physics education research community. Researchers have identified many factors that influence the overall differences in post-test scores between men and women. More recently, it has been shown that the Force Concept…
Descriptors: Gender Differences, Scientific Concepts, Physics, Science Instruction
Bar, Varda; Brosh, Yaffa; Sneider, Cary – Science Educator, 2016
Threshold concepts are essential ideas about the natural world that present either a barrier or a gateway to a deep understanding of science. Weight, mass, and gravity are threshold concepts that underpin students' abilities to understand important ideas in all fields of science, embodied in the performance expectations in the Next Generation…
Descriptors: Scientific Concepts, Physics, Concept Formation, Science Instruction
Antonellis, Jessica Christel – ProQuest LLC, 2013
This research is an exploration of students' meaning making around physical concepts through connections to students' funds of knowledge. This qualitative case study, influenced by Indigenous methodologies, focused on two Native students in a tribal college introductory physics course, exploring the personal, cultural, and philosophical…
Descriptors: Qualitative Research, Case Studies, Indigenous Knowledge, American Indian Students

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