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Stefan Depeweg; Contantin A. Rothkopf; Frank Jäkel – Cognitive Science, 2024
More than 50 years ago, Bongard introduced 100 visual concept learning problems as a challenge for artificial vision systems. These problems are now known as Bongard problems. Although they are well known in cognitive science and artificial intelligence, only very little progress has been made toward building systems that can solve a substantial…
Descriptors: Visual Learning, Problem Solving, Cognitive Science, Artificial Intelligence
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
Traverso, Laura; Tonizzi, Irene; Usai, M. Carmen; Viterbori, Paola – Journal of Cognition and Development, 2023
Children's arithmetic performance is dependent on the arithmetic task format, but little is known about how domain-specific and domain-general abilities contribute to solving diverse arithmetic problems. In this study, 145 Italian typically developing children between the ages of five and six, who have not yet received formal schooling, were…
Descriptors: Cognitive Processes, Numeracy, Arithmetic, Mathematics Skills
Kang, Tinghu; Tang, Tinghao; Zhang, Peizhi; Luo, Shu; Qi, Huanhuan – British Journal of Educational Psychology, 2023
Background: The ability to translate concrete manipulatives into abstract mathematical formulas can aid in the solving of mathematical word problems among students, and metacognitive prompts play a significant role in enhancing this process. Aims: Based on the concept of semantic congruence, we explored the effects of metacognitive prompts and…
Descriptors: Metacognition, Eye Movements, Cues, Elementary School Students
Kiernan, Nicola A.; Manches, Andrew; Seery, Michael K. – Chemistry Education Research and Practice, 2021
Visuospatial thinking is considered crucial for understanding of three-dimensional spatial concepts in STEM disciplines. Despite their importance, little is known about the underlying cognitive processing required to spatially reason and the varied strategies students may employ to solve visuospatial problems. This study seeks to identify and…
Descriptors: Visual Perception, Spatial Ability, Cognitive Processes, Thinking Skills
Susac, Ana; Bubic, Andreja; Planinic, Maja; Movre, Marko; Palmovic, Marijan – Physical Review Physics Education Research, 2019
Typical physics textbook problems often include supportive diagrams that visualize the physical situation although the potential benefits of providing such diagrams is not yet fully established. We used eye tracking to explore the role of supportive diagrams in problem solving. Including a supportive diagram with the text of the problem improved…
Descriptors: Role, Visual Aids, Problem Solving, Eye Movements
Time Limits in Testing: An Analysis of Eye Movements and Visual Attention in Spatial Problem Solving
Roach, Victoria A.; Fraser, Graham M.; Kryklywy, James H.; Mitchell, Derek G. V.; Wilson, Timothy D. – Anatomical Sciences Education, 2017
Individuals with an aptitude for interpreting spatial information (high mental rotation ability: HMRA) typically master anatomy with more ease, and more quickly, than those with low mental rotation ability (LMRA). This article explores how visual attention differs with time limits on spatial reasoning tests. Participants were assorted to two…
Descriptors: Timed Tests, Eye Movements, Visual Perception, Attention
Gürbüz, Mustafa Çagri; Agsu, Murat; Güler, Hatice Kübra – Acta Didactica Napocensia, 2018
Paper folding studies are quite effective in the development of students' visual and spatial skills. The "paper" used in these studies is a genuine tool that can support the development of geometric habits of mind as well as the visual-spatial skills. This is an action research aimed to investigate the potential of paper folding to…
Descriptors: Visual Perception, Spatial Ability, Geometric Concepts, Skill Development
Jessica E. Bartley; Michael C. Riedel; Taylor Salo; Emily R. Boeving; Katherine L. Bottenhorn; Elsa I. Bravo; Rosalie Odean; Alina Nazareth; Robert W. Laird; Matthew T. Sutherland; Shannon M. Pruden; Eric Brewe; Angela R. Laird – npj Science of Learning, 2019
Understanding how students learn is crucial for helping them succeed. We examined brain function in 107 undergraduate students during a task known to be challenging for many students--physics problem solving--to characterize the underlying neural mechanisms and determine how these support comprehension and proficiency. Further, we applied module…
Descriptors: Brain, Cognitive Processes, Science Process Skills, Abstract Reasoning
Demir, Özlem Ece; Prado, Jérôme; Booth, James R. – Developmental Science, 2015
We examined the relation of parental socioeconomic status (SES) to the neural bases of subtraction in school-age children (9- to 12-year-olds). We independently localized brain regions subserving verbal versus visuo-spatial representations to determine whether the parental SES-related differences in children's reliance on these neural…
Descriptors: Socioeconomic Status, Children, Cognitive Processes, Arithmetic
Nguyen, Ngan; Mulla, Ali; Nelson, Andrew J.; Wilson, Timothy D. – Anatomical Sciences Education, 2014
The present study explored the problem-solving strategies of high- and low-spatial visualization ability learners on a novel spatial anatomy task to determine whether differences in strategies contribute to differences in task performance. The results of this study provide further insights into the processing commonalities and differences among…
Descriptors: Problem Solving, Anatomy, Visual Perception, Spatial Ability
Madsen, Adrian M. – ProQuest LLC, 2013
The work described here represents an effort to understand and influence visual attention while solving physics problems containing a diagram. Our visual system is guided by two types of processes--top-down and bottom-up. The top-down processes are internal and determined by ones prior knowledge and goals. The bottom-up processes are external and…
Descriptors: Visual Perception, Attention, Problem Solving, Physics
Dry, Matthew J.; Fontaine, Elizabeth L. – Journal of Problem Solving, 2014
The Traveling Salesperson Problem (TSP) is a computationally difficult combinatorial optimization problem. In spite of its relative difficulty, human solvers are able to generate close-to-optimal solutions in a close-to-linear time frame, and it has been suggested that this is due to the visual system's inherent sensitivity to certain geometric…
Descriptors: Problem Solving, Geographic Location, Computation, Visual Stimuli
Stieff, Mike – Journal of Chemical Education, 2013
Mental-rotation ability modestly predicts chemistry achievement. As such, sex differences in mental-rotation ability have been implicated as a causal factor that can explain sex differences in chemistry achievement and degree attainment. Although there is a correlation between mental-rotation ability and chemistry achievement, laboratory and field…
Descriptors: Cognitive Processes, Chemistry, Science Instruction, Gender Differences
Haciomeroglu, Erhan Selcuk – EURASIA Journal of Mathematics, Science & Technology Education, 2015
The present study sought to design calculus tasks to determine students' preference for visual or analytic processing as well as examine the role of preferred mode of processing in calculus performance and its relationship to spatial ability and verbal-logical reasoning ability. Data were collected from 150 high school students who were enrolled…
Descriptors: Calculus, Cognitive Processes, Mathematics Instruction, High School Students