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Xiaodong Wei; Lei Wang; Lap-Kei Lee; Ruixue Liu – Journal of Educational Computing Research, 2025
Notwithstanding the growing advantages of incorporating Augmented Reality (AR) in science education, the pedagogical use of AR combined with Pedagogical Agents (PAs) remains underexplored. Additionally, few studies have examined the integration of Generative Artificial Intelligence (GAI) into science education to create GAI-enhanced PAs (GPAs)…
Descriptors: Artificial Intelligence, Technology Uses in Education, Models, Science Education
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Kimberly S. DeGlopper; Ryan L. Stowe – Chemistry Education Research and Practice, 2024
Thinking about knowledge and knowing ("i.e.", epistemic cognition) is an important part of student learning and has implications for how they apply their knowledge in future courses, careers, and other aspects of their lives. Three classes of models have emerged from research on epistemic cognition: developmental models, dimensional…
Descriptors: Undergraduate Students, Chemistry, Epistemology, Cognitive Processes
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Tom Reshef-Israeli; Shulamit Kapon – Online Submission, 2024
As problems become increasingly complex, science educators need to better understand how new knowledge is constructed and applied in heterogeneous team collaborations, and how to teach students to productively engage in these processes. We discuss the emergence of insights in collaborative sensemaking and suggest a model that articulates the…
Descriptors: Comprehension, Constructivism (Learning), Teaching Methods, Learner Engagement
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Weinberg, Paul J.; Sorensen-Weinberg, Erika K. – Science Education, 2022
Embodied cognition has been a useful means to support learning in science education. In this article, we describe a model of embodied cognition through analogical mapping that is supported through the participatory simulation and mathematical description of a link and pivot system. We look at the propensity for this model of embodied cognition to…
Descriptors: Human Body, Cognitive Processes, Science Education, Models
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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
Alecia M. Redway – ProQuest LLC, 2023
Extant literature lacks an explanation of the thought processes used by secondary school science teachers to interpret students' scientific models that are comprised of drawing activities. In this exploratory study, a constructivist grounded theory (CGT) was developed to generate an interpretive understanding. The CGT was generated from…
Descriptors: Science Teachers, Freehand Drawing, Models, Constructivism (Learning)
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Kokkonen, Tommi – Science & Education, 2017
Model-based learning (MBL) has an established position within science education. It has been found to enhance conceptual understanding and provide a way for engaging students in authentic scientific activity. Despite ample research, few studies have examined the cognitive processes regarding learning scientific concepts within MBL. On the other…
Descriptors: Models, Science Education, Scientific Concepts, Cognitive Processes
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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
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Lamb, Richard L.; Firestone, Jonah B. – International Journal of Science and Mathematics Education, 2017
Conflicting explanations and unrelated information in science classrooms increase cognitive load and decrease efficiency in learning. This reduced efficiency ultimately limits one's ability to solve reasoning problems in the science. In reasoning, it is the ability of students to sift through and identify critical pieces of information that is of…
Descriptors: Cognitive Processes, Difficulty Level, Science Process Skills, Computation
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Campbell, Todd; Oh, Phil Seok – Journal of Science Education and Technology, 2015
This article provides an introduction for the special issue of the "Journal of Science Education and Technology" focused on science teaching and learning with models. The article provides initial framing for questions that guided the special issue. Additionally, based on our careful review of each of these articles, some discussion of…
Descriptors: Science Education, Models, Teaching Methods, Educational Technology
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Østergaard, Edvin – Cultural Studies of Science Education, 2015
The question of how to foster rooting in science education points towards a double challenge; efforts to "prevent" (further) uprooting and efforts to "promote" rooting/re-rooting. Wolff-Michael Roth's paper discusses the uprooting/rooting pair of concepts, students' feeling of alienation and loss of fundamental sense of the…
Descriptors: Science Education, Phenomenology, Scientific Concepts, Models
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Melo, Mário – International Journal of Instruction, 2018
In this paper, readers are guided through the design and development of educational programs based on the 4C/ID model. This was illustrated via a practical example in Physics education, to teach the theme "Electrical circuits" to students of the 9th grade of compulsory education. In the article, the followed steps are described, from…
Descriptors: Models, Physics, Science Education, Instructional Design
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Navarro, Manuel – International Journal of Science Education, 2014
This paper presents a model of how children generate concrete concepts from perception through processes of differentiation and integration. The model informs the design of a novel methodology ("evolutionary maps" or "emaps"), whose implementation on certain domains unfolds the web of itineraries that children may follow in the…
Descriptors: Concept Formation, Models, Children, Scientific Concepts
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Saçkes, Mesut – Educational Sciences: Theory and Practice, 2015
This study aims to examine kindergarten children's mental models of the day and night cycle and provide implications for pedagogical practices targeting space science concepts in early childhood classrooms. A total of 46 kindergartners participated in the study, their age ranging from 60 to 75 months, including 22 boys and 24 girls.…
Descriptors: Foreign Countries, Kindergarten, Preschool Children, Cognitive Processes
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Bryce, T. G.; Blown, E. J. – Science & Education, 2016
This article notes the convergence of recent thinking in neuroscience and grounded cognition regarding the way we understand mental representation and recollection: ideas are dynamic and multi-modal, actively created at the point of recall. Also, neurophysiologically, re-entrant signalling among cortical circuits allows non-conscious processing to…
Descriptors: Neurosciences, Concept Formation, Knowledge Representation, Cognitive Processes
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