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Lauren Baade; Effie Kartsonaki; Hassan Khosravi; Gwendolyn A. Lawrie – Chemistry Education Research and Practice, 2025
Effective learning in chemistry education requires students to understand visual representations across multiple conceptual levels. Essential to this process are visuospatial skills which enable students to interpret and manipulate these representations effectively. These abilities allow students to construct mental models that support problem…
Descriptors: Visualization, Thinking Skills, Spatial Ability, Problem Solving
Pham, Lam; Tytler, Russell – Research in Science Education, 2022
Many researchers have reported that bridging analogies can productively support students' scientific meaning-making. How this can be understood semiotically is, however, not well understood. This research followed an ethnographic case study approach to investigate Year 11 students meaning-making through a process of transduction (Kress, 2000;…
Descriptors: Semiotics, Chemistry, Science Process Skills, Ethnography
Asli Koçulu; Girgin, Sefika; Topsakal, Unsal Umdu – International Journal of Progressive Education, 2022
STEM education (based on the integration of the science, technology, engineering and mathematics disciplines) has recently been an integral part of education system and curriculum in many countries aiming to be more technologically competitive in this age of innovation. While the importance of STEM education has gradually increasing in education…
Descriptors: Preservice Teachers, STEM Education, Cognitive Mapping, Science Education
Merav Siani; Ilana Dubovi; Anna Borushko; Michal Haskel-Ittah – International Journal of Science Education, 2024
Immunology, a complex and rapidly evolving biological field, serves dual educational goals: training healthcare professionals and immunologists as well as promoting immune literacy among laypeople. This study conducted a scoping review of the literature to explore different aspects of immunology education, examining various contexts, levels, and…
Descriptors: Biology, Science Education, Teaching Methods, Cognitive Processes
Pei, Bo; Xing, Wanli; Zhu, Gaoxia; Antonyan, Kristine; Xie, Charles – Education and Information Technologies, 2023
Infrared (IR) technologies have been universally acknowledged as a valuable pedagogical tool for exploring novel and abstract scientific subjects in science education. This study explores the roles of IR images played in middle school students' Evidence-based Reasoning (EBR) process in support of the understanding of the heat radiation process.…
Descriptors: Technology Integration, Spectroscopy, Science Education, Science Instruction
Soni, Nikita; Darrow, Alice; Luc, Annie; Gleaves, Schuyler; Schuman, Carrie; Neff, Hannah; Chang, Peter; Kirkland, Brittani; Alexandre, Jeremy; Morales, Amanda; Stofer, Kathryn A.; Anthony, Lisa – International Journal of Computer-Supported Collaborative Learning, 2021
This paper draws upon the theory of embodied cognition to provide a robust account of how gestural interactions with and around multi-touch tabletops can play an important role in facilitating collaborative meaning-making, particularly in the context of science data visualizations. Embodied cognition is a theory of learning that implies that…
Descriptors: Science Education, Cooperative Learning, Educational Technology, Manipulative Materials
McNeal, Peggy M.; Petcovic, Heather L. – Journal of Geoscience Education, 2020
The geosciences consist of multiple disciplines including geology, oceanography, and atmospheric science. Significant work expended to understand spatial thinking skills important to teaching and learning geology has advanced our ability to support students in geology courses and to achieve increased student success, retention, and diversity in…
Descriptors: Earth Science, Science Education, Educational Research, Spatial Ability
Thacker, Ian; Sinatra, Gale M. – Education Sciences, 2019
The purpose of this design based research study was to better understand and build from students' perceptual experiences of visual representations of the greenhouse effect. Twenty undergraduate students were interviewed as they engaged with an online visualization for the learning of the greenhouse effect. We found that, even though all students…
Descriptors: Visualization, Climate, Computer Simulation, Environmental Education
Remmele, Martin; Schmidt, Elena; Lingenfelder, Melissa; Martens, Andreas – Anatomical Sciences Education, 2018
Gross anatomy is located in a three-dimensional space. Visualizing aspects of structures in gross anatomy education should aim to provide information that best resembles their original spatial proportions. Stereoscopic three-dimensional imagery might offer possibilities to implement this aim, though some research has revealed potential impairments…
Descriptors: Anatomy, Visualization, Computer Simulation, Motion
Stieff, Mike; Origenes, Andrea; DeSutter, Dane; Lira, Matthew; Banevicius, Lukas; Tabang, Dylan; Cabel, Gervacio – Journal of Educational Psychology, 2018
Spatial ability predicts success in STEM (Science, Technology, Education, and Mathematics) fields, particularly chemistry. This paper reports two studies investigating the unique contribution of mental rotation ability to spatial thinking in a STEM discipline. Using authentic disciplinary tasks from chemistry, we show that the difficulty of a…
Descriptors: Cognitive Processes, STEM Education, Spatial Ability, Chemistry
Pande, Prajakt; Chandrasekharan, Sanjay – Studies in Science Education, 2017
Multiple external representations (MERs) are central to the practice and learning of science, mathematics and engineering, as the phenomena and entities investigated and controlled in these domains are often not available for perception and action. MERs therefore play a twofold constitutive role in reasoning in these domains. Firstly, MERs stand…
Descriptors: STEM Education, Visualization, Imagination, Cognitive Processes
Wichmann, Astrid; Timpe, Sebastian – Journal of Science Education and Technology, 2015
An important feature of inquiry learning is to take part in science practices including exploring variables and testing hypotheses. Computer-based dynamic visualizations have the potential to open up various exploration possibilities depending on the level of learner control. It is assumed that variable control, e.g., by changing parameters of a…
Descriptors: Visualization, Intuition, Inquiry, Science Education
Hackett, Matthew; Proctor, Michael – Journal of Science Education and Technology, 2016
Anatomy is a foundational component of biological sciences and medical education and is important for a variety of clinical tasks. To augment current curriculum and improve students' spatial knowledge of anatomy, many educators, anatomists, and researchers use three-dimensional (3D) visualization technologies. This article reviews 3D display…
Descriptors: Science Education, Anatomy, Spatial Ability, Visualization
Price, C. Aaron; Lee, Hee-Sun; Plummer, Julia D.; SubbaRao, Mark; Wyatt, Ryan – Journal of Astronomy & Earth Sciences Education, 2015
Stereoscopy's potential as a tool for science education has been largely eclipsed by its popularity as an entertainment platform and marketing gimmick. Dozens of empirical papers have been published in the last decade about the impact of stereoscopy on learning. As a result, a corpus of research now points to a coherent message about how, when,…
Descriptors: Position Papers, Science Instruction, Science Education, Cognitive Processes
Lamb, Richard; Akmal, Tariq; Petrie, Kaylan – Journal of Research in Science Teaching, 2015
Successful STEM learning depends on the interaction of affect, cognition, and application of ideas. Simply put students who are unwilling to persist in STEM based endeavors do not suddenly develop into scientists, mathematicians, engineers or computer scientists, nor do they seek out STEM related courses or STEM based careers. The purpose of this…
Descriptors: STEM Education, Educational Trends, Schemata (Cognition), Psychometrics
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