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Showing 1 to 15 of 35 results Save | Export
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Yu, Yuhua; Oh, Yongtaek; Kounios, John; Beeman, Mark – Creativity Research Journal, 2023
To solve a new problem, people spontaneously engage multiple cognitive processes. Previous work has identified a diverse set of oscillatory components critical at different stages of creative problem solving. In this project, we use hidden state modeling to untangle the roles of oscillation processes over time as people solve puzzles. Building on…
Descriptors: Creativity, Creative Thinking, Problem Solving, Cognitive Processes
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Amna Ghani; Caroline Di Bernardi Luft; Smadar Ovadio-Caro; Klaus-Robert Müller; Joydeep Bhattacharya – Creativity Research Journal, 2024
Chance favors the prepared mind, said Louis Pasteur. Sometimes, significant breakthroughs occur when we creatively integrate new information, leading to a creative insight or an Aha! moment, while at other times when we fail to use a clue, we remain stuck in our habitual thinking patterns. In this study, we hypothesized that the brain's transient…
Descriptors: Brain, Brain Hemisphere Functions, Cognitive Processes, Intuition
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Stocco, Andrea; Prat, Chantel S.; Graham, Lauren K. – Cognitive Science, 2021
The ability to reason and problem-solve in novel situations, as measured by the Raven's Advanced Progressive Matrices (RAPM), is highly predictive of both cognitive task performance and real-world outcomes. Here we provide evidence that RAPM performance depends on the ability to reallocate attention in response to self-generated feedback about…
Descriptors: Individual Differences, Rewards, Abstract Reasoning, Problem Solving
Beckman, Joseph W. – ProQuest LLC, 2019
Information security practitioners and researchers who possess sufficient depth of conceptual understanding to reconstitute systems after attacks or adapt information security concepts to novel situations are in short supply. Education of new information security professionals with sufficient conceptual depth is one method by which this shortage…
Descriptors: Achievement Gains, Cognitive Processes, Coding, Technology
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Delahunty, Thomas; Seery, Niall; Lynch, Raymond – Journal of Science Education and Technology, 2018
Currently, there is significant interest being directed towards the development of STEM education to meet economic and societal demands. While economic concerns can be a powerful driving force in advancing the STEM agenda, care must be taken that such economic imperative does not promote research approaches that overemphasize pragmatic application…
Descriptors: Brain, Diagnostic Tests, STEM Education, Cognitive Processes
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Zhu, Wenfeng; Yang, Wenjing; Qiu, Jiang; Tian, Fang; Chen, Qunlin; Cao, Guikang; Zhang, Qinglin; Ming, Dan – Creativity Research Journal, 2019
Evidence from a range of fields shows that representation-connection (RC) is the key step towards the solution of a real-world insight problem. However, no study has focused on the inter-individual variability in RC, and little is known about whether structural and resting-state functional signals can account for inter-individual differences in…
Descriptors: Individual Differences, Brain, Brain Hemisphere Functions, Problem Solving
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Schneider, Bertrand; Pea, Roy – Educational Media and Technology Yearbook, 2017
In this chapter we present the results of an eye-tracking study on collaborative problemsolving dyads. Dyads remotely collaborated to learn from contrasting cases involving basic concepts about how the human brain processes visual information. In one condition, dyads saw the eye gazes of their partner on the screen; in a control group, they did…
Descriptors: Cooperative Learning, Eye Movements, Problem Solving, Brain
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Guthormsen, Amy M.; Fisher, Kristie J.; Bassok, Miriam; Osterhout, Lee; DeWolf, Melissa; Holyoak, Keith J. – Cognitive Science, 2016
Research on language processing has shown that the disruption of conceptual integration gives rise to specific patterns of event-related brain potentials (ERPs)--N400 and P600 effects. Here, we report similar ERP effects when adults performed cross-domain conceptual integration of analogous semantic and mathematical relations. In a problem-solving…
Descriptors: Responses, Cognitive Processes, Brain, Cognitive Measurement
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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
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Waisman, Ilana; Leikin, Mark; Leikin, Roza – ZDM: The International Journal on Mathematics Education, 2016
Mathematical processing associated with solving short geometry problems requiring logical inference was examined among students who differ in their levels of general giftedness (G) and excellence in mathematics (EM) using ERP research methodology. Sixty-seven male adolescents formed four major research groups designed according to various…
Descriptors: Mathematics Instruction, Cognitive Processes, Geometry, Mathematical Logic
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Schneider, Bertrand; Pea, Roy – International Journal of Computer-Supported Collaborative Learning, 2013
In this paper we present the results of an eye-tracking study on collaborative problem-solving dyads. Dyads remotely collaborated to learn from contrasting cases involving basic concepts about how the human brain processes visual information. In one condition, dyads saw the eye gazes of their partner on the screen; in a control group, they did not…
Descriptors: Cooperative Learning, Eye Movements, Problem Solving, Brain
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Hartman, JudithAnn R.; Dahm, Donald J.; Nelson, Eric A. – Journal of Chemical Education, 2015
Studies in cognitive science have verified that working memory (where the brain solves problems) can manipulate nearly all elements of knowledge that can be recalled automatically from long-term memory, but only a few elements that have not previously been well memorized. Research in reading comprehension has found that "lecture notes with…
Descriptors: Science Instruction, High Schools, Secondary School Science, Undergraduate Study
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Ambrus, András – Center for Educational Policy Studies Journal, 2014
In the international literature, increasing numbers of articles and books are published about teaching and learning, with the brain in mind. For a long time, I have been sceptical about this question. However, seeing many unresolved issues in the teaching and learning of mathematics, I slowly started to study the relevant literature and have…
Descriptors: Mathematics Instruction, Teaching Methods, Brain, Problem Solving
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Ruh, Nina; Rahm, Benjamin; Unterrainer, Josef M.; Weiller, Cornelius; Kaller, Christoph P. – Brain and Cognition, 2012
In a companion study, eye-movement analyses in the Tower of London task (TOL) revealed independent indicators of functionally separable cognitive processes during problem solving, with processes of building up an internal representation of the problem preceding actual planning processes. These results imply that processes of internalization and…
Descriptors: Problem Solving, Brain, Eye Movements, Task Analysis
Schroeder, Larissa Bucchi – ProQuest LLC, 2011
Expertise and expert performance has long been a rich area of research. Experts differ from novices in several ways including the depth of their knowledge base, the ability to detect and recognize salient features of problems, more skilled and accurate performance, and strong self-monitoring skills. Advances in neuroscience methods such as…
Descriptors: Reaction Time, Brain, Calculus, Cognitive Processes
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