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Danis, Eliane; Nader, Anne-Marie; Degré-Pelletier, Janie; Soulières, Isabelle – Journal of Autism and Developmental Disorders, 2023
In light of the known visuoperceptual strengths and altered language skills in autism, we investigated the impact of problem content (semantic/visuospatial) combined with complexity and presence of lures on fluid reasoning in 43 autistic and 41 typical children (6-13 years old). Increased complexity and presence of lures diminished performance,…
Descriptors: Visual Perception, Language Skills, Autism Spectrum Disorders, Semantics
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David John; Ritayan Mitra – Frontline Learning Research, 2023
Eye tracking technology enables the visualisation of a problem solver's eye movement while working on a problem. The eye movement of experts has been used to draw attention to expert problem solving processes in a bid to teach procedural skills to learners. Such affordances appear as eye movement modelling examples (EMME) in the literature. This…
Descriptors: Eye Movements, Problem Solving, Expertise, Novices
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Richard Velasco; Dae S. Hong – North American Chapter of the International Group for the Psychology of Mathematics Education, 2023
In this study, we examined one experienced mathematician's class practices, with particular attention to cognitive model described in genetic decomposition. Our findings indicate that students only had limited opportunities to be familiar with the first three steps in genetic decomposition, which may potentially lead students to answer limit tasks…
Descriptors: Mathematics Education, Mathematical Concepts, Mathematics Skills, Mathematics Instruction
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Erickson, Sarah A.; Lockwood, Elise – International Journal of Research in Undergraduate Mathematics Education, 2021
Combinatorial proof is an important topic both for combinatorics education and proof education researchers, but relatively little has been studied about the teaching and learning of combinatorial proof. In this paper, we focus on one specific phenomenon that emerged during interviews with mathematicians and students who were experienced provers as…
Descriptors: Mathematics Skills, Mathematical Logic, Mathematics Instruction, Multiplication
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Xiao, Yue; He, Qiwei; Veldkamp, Bernard; Liu, Hongyun – Journal of Computer Assisted Learning, 2021
The response process of problem-solving items contains rich information about respondents' behaviours and cognitive process in the digital tasks, while the information extraction is a big challenge. The aim of the study is to use a data-driven approach to explore the latent states and state transitions underlying problem-solving process to reflect…
Descriptors: Problem Solving, Competence, Markov Processes, Test Wiseness
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Tang Wee Teo – Journal of Curriculum Studies, 2024
Many empirical studies about STEM (science, technology, engineering, and mathematics) curriculum present problems for students to solve. This paper draws upon the data collected from the enactment of an integrated STEM curriculum to discuss problems as constitutive of problem spaces where four Grade 5 Singapore students engage with the…
Descriptors: STEM Education, Integrated Curriculum, Inquiry, Problem Solving
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Robert Zheng – International Association for Development of the Information Society, 2024
The current examined the roles of cognitive strategies using Chi's framework in mobile learning. Three conditions (active, constructive, and interactive) were created for a college statistics I course where students were randomly assigned to each condition. The results indicate constructive and interactive support students' problem solving and…
Descriptors: Cognitive Processes, Creative Thinking, Telecommunications, Handheld Devices
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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
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Segun Michael Ojetunde; Umesh Ramnarain – Smart Learning Environments, 2025
Learning interaction patterns is key to the explanation of learning outcomes. Different studies have reported the relationship between classroom process variables and learning outcomes in a traditional classroom setting. However, the advent of robotics and its attendant student-robot interaction moderated by students' mathematical ability is yet…
Descriptors: Robotics, Technology Uses in Education, Mathematics Skills, Outcomes of Education
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Chun-Ying Chen – ACM Transactions on Computing Education, 2025
This study examined the effects of worked examples with different explanation types and novices' motivation on cognitive load, and how this subsequently influenced their programming problem-solving performance. Given the study's emphasis on both instructional approaches and learner motivation, the Cognitive Theory of Multimedia Learning served as…
Descriptors: Models, Learning Motivation, Cognitive Processes, Difficulty Level
Prayekti, Novi; Nusantara, Toto; Sudirman; Susanto, Hery; Rofiki, Imam – Online Submission, 2020
This study analyses the view of students' mental models in solving mathematical problems. The study employed a literature review using well-accepted and robust guidelines. Data were collected by searching books and articles of journals. Data analysis techniques were done qualitatively. The finding of this study showed that the mental model is…
Descriptors: Mathematics Instruction, Problem Solving, Schemata (Cognition), Cognitive Processes
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Gridos, Panagiotis; Avgerinos, Evgenios; Mamona-Downs, Joanna; Vlachou, Roza – International Journal of Science and Mathematics Education, 2022
The present study aims to examine mathematical creativity in students' work in geometry. Research conducted was based on two aspects: (a) examining the influence of geometrical figure apprehension on the production of multiple solutions and (b) how the necessity to construct auxiliary lines in the given shape promotes the production of multiple…
Descriptors: Creativity, Geometry, Geometric Concepts, Grade 10
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Armitage, Kristy L.; Redshaw, Jonathan – Child Development, 2022
Ninety-seven children aged 4-11 (49 males, 48 females, mostly White) were given the opportunity to improve their problem-solving performance by devising and implementing a novel cognitive offloading strategy. Across two phases, they searched for hidden rewards using maps that were either aligned or misaligned with the search space. In the second…
Descriptors: Children, Cognitive Style, Cognitive Processes, Problem Solving
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Khatin-Zadeh, Omid – Journal of Cognitive Education and Psychology, 2022
This article discusses the role of the three components of executive functions (EF) in geometric understanding. Discussing several examples of geometry problems, this article shows how EF are actively employed to solve geometry problems. Inhibition as the first component of EF helps the individual to suppress contextually irrelevant information.…
Descriptors: Executive Function, Geometry, Mathematics Instruction, Problem Solving
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Valentine, Jake; Tackett, Sean; Bord, Sharon; Zink, Korie; Botta, Julian; Jung, Julianna – Advances in Health Sciences Education, 2022
Purpose: The National Academy of Medicine has called for "identifying opportunities to improve the diagnostic process". We studied the association between problem representation and diagnostic accuracy during an objective structured clinical exam (OSCE). Materials and methods: We conducted a non-randomized controlled trial during a…
Descriptors: Clinical Diagnosis, Medical Education, Cognitive Processes, Difficulty Level
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