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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
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
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
Yvoni Pavlou; Zacharias C. Zacharia; Marios Papaevripidou – Science Education, 2024
This study aimed to investigate whether the presence (when using physical manipulatives [PMs]) or absence (when using virtual manipulatives [VMs]) of haptic sensory feedback (i.e., open-ended haptic manipulation of physical materials with the use of the hands) during experimentation can impact preschoolers' conceptual understanding of concepts…
Descriptors: Manipulative Materials, Preschool Children, Electronic Learning, Sensory Experience
Castro, Athena R.; Collins, Christopher S. – Science Education, 2021
Asian American women occupy a paradoxical space within the context of science, technology, engineering, and math (STEM) fields, simultaneously overrepresented as Asian Americans and underrepresented as women. For Asian American female doctoral students, the complex layering and weaving of these intersections involves the constant negotiation of…
Descriptors: Asian American Students, Females, STEM Education, Science Experiments
Franse, Rooske K.; van Schijndel, Tessa J. P.; Plankman, Tamara I.; Raijmakers, Maartje E. J. – Science Education, 2021
Research on the impact of guided investigation, including verbal guidance strategies, has expanded in the recent decade, and the current work contributes to this line of research in a museum context. The current in-depth study examines the impact of verbal guidance strategies on family learning at an open-ended museum exhibit, considering…
Descriptors: Museums, Science Experiments, Exhibits, Family Involvement
Cavagnetto, Andy R.; Kurtz, Kenneth J. – Science Education, 2016
Argument-based interventions in science education have largely been motivated by the perspective that students lack knowledge of argument. Recent studies, however, suggest that contextual factors influence students' argument quality. The authors hypothesize that a key limiting factor lies in students' abilities to recognize when to employ…
Descriptors: Attention, Science Education, Context Effect, Experiments
Wu, Pai-Hsing; Kuo, Che-Yu; Wu, Hsin-Kai; Jen, Tsung-Hau; Hsu, Ying-Shao – Science Education, 2018
This study addresses the issue of curiosity-driven inquiry learning by examining the interplay among students' inquiry-related curiosity, laboratory engagement, and inquiry abilities and investigates how their learning experiences would associate with such interplay. We employed structural equation modeling to analyze data collected from 920…
Descriptors: Correlation, Inquiry, Laboratory Experiments, Science Instruction
Samon, Sigal; Levy, Sharona T. – Science Education, 2017
The study explores how a complexity approach empowers science learning. A complexity approach represents systems as many interacting entities. The construct of micro-macro compatibility is introduced, the degree of similarity between behaviors at the micro- and macro-levels of the system. Seventh-grade students' learning about gases was studied…
Descriptors: Difficulty Level, Systems Approach, Science Education, Secondary School Students