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Grabner, Roland H.; Brunner, Clemens; Lorenz, Valerie; Vogel, Stephan E.; De Smedt, Bert – Journal of Experimental Psychology: Learning, Memory, and Cognition, 2022
There is broad consensus on the assumption that adults solve single-digit multiplication problems almost exclusively by fact retrieval from memory. In contrast, there has been a long-standing debate on the cognitive processes involved in solving single-digit addition problems. This debate has evolved around two theoretical accounts. Proponents of…
Descriptors: Cognitive Processes, Addition, Computation, Arithmetic
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
Shaw, Neil – Journal of Pedagogical Research, 2023
Attention-based learning tasks of modern classrooms require processing of information in working memory. Not much is known about the cognitive processes operating during these tasks. To gain an understanding of the processes that support cognitive functions like learning, we have monitored the activity of the brain waves emanating from the frontal…
Descriptors: Cognitive Processes, Brain Hemisphere Functions, High School Students, Short Term Memory
Kraus, Brian; Holtgraves, Thomas – Journal of Creative Behavior, 2020
While past research has demonstrated a link between the subjective "Aha" experience of insight and verbal insight problem solution activation in the right hemisphere (RH), no one has yet linked insight to long term semantic priming. We propose that through a shared process of semantic integration both of these concepts are linked and…
Descriptors: Semantics, Brain Hemisphere Functions, Priming, Decision Making
Zhu, Yanmei; Zhang, Li; Leng, Yue; Pang, Ridong; Wang, Xiaole – Mind, Brain, and Education, 2019
Event-related potentials are used to test the hypothesis that an intuitive misconception persists in the mind even after the acquisition of scientific knowledge. We investigated the temporal dynamics of neural mechanisms in solving a scientific problem involving a common misconception. It showed that the increased P2 component was elicited by the…
Descriptors: Brain Hemisphere Functions, Diagnostic Tests, Misconceptions, Hypothesis Testing
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
He, Kekang – Lecture Notes in Educational Technology, 2017
This book examines research on creative thinking, both current and historical. It explores two dimensions of human thought (time and space) and two modes of thinking (conscious and unconscious) as well as both left and right brain functions and artistic and scientific creative activities. The book proposes a "Double Circulation" model of…
Descriptors: Creative Thinking, Cognitive Processes, Brain Hemisphere Functions, Models
Liu, Yu-Cheng; Liang, Chaoyun – International Journal of Educational Psychology, 2020
Differences exist between engineering and liberal arts students because of their educational backgrounds. Therefore, they solve problems differently. This study examined the brain activation of these two groups of students when they responded to 12 questions of verbal, numerical, or spatial intelligence. A total of 25 engineering and 25 liberal…
Descriptors: Problem Solving, Engineering Education, Spatial Ability, Liberal Arts
Cassotti, Mathieu; Agogué, Marine; Camarda, Anaëlle; Houdé, Olivier; Borst, Grégoire – New Directions for Child and Adolescent Development, 2016
Developmental cognitive neuroscience studies tend to show that the prefrontal brain regions (known to be involved in inhibitory control) are activated during the generation of creative ideas. In the present article, we discuss how a dual-process model of creativity--much like the ones proposed to account for decision making and reasoning--could…
Descriptors: Neurosciences, Cognitive Development, Brain Hemisphere Functions, Inhibition
Ayvaz,Ülkü; Yaman, Hakan; Mersin, Nazan; Yilmaz, Yasemin; Durmus, Soner – Universal Journal of Educational Research, 2017
In this study, it was aimed to investigate the primary mathematics teacher candidates' perceptions about the equal sign within the scope of neuroscience studies. To reveal their perceptions about the equal sign, three types of addition operations were asked to the participants: a+b=[], []=a+b, a+b=[]+c. Their brain waves were recorded by EEG…
Descriptors: Elementary School Teachers, Mathematics Teachers, Student Attitudes, Preservice Teachers
Chang, Hyung-Joo; Kang, June; Ham, Byung-Joo; Lee, Young-Mee – Advances in Health Sciences Education, 2016
As clinical reasoning is a fundamental competence of physicians for good clinical practices, medical academics have endeavored to teach reasoning skills to undergraduate students. However, our current understanding of student-level clinical reasoning is limited, mainly because of the lack of evaluation tools for this internal cognitive process.…
Descriptors: Physicians, Medical Education, Medical Students, Logical Thinking
Lee, Hee Seung; Fincham, Jon M.; Anderson, John R. – Mind, Brain, and Education, 2015
This event-related fMRI study investigated the differences between learning from examples and learning from verbal directions in mathematical problem solving and how these instruction types affect the activity of relevant brain regions during instruction and solution periods within problem-solving trials. We identified distinct neural signatures…
Descriptors: Cognitive Processes, Neurological Organization, Brain Hemisphere Functions, Mathematics Skills
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
Taillan, Julien; Dufau, Stéphane; Lemaire, Patrick – Mind, Brain, and Education, 2015
We used event-related potentials (ERPs) to determine the time course of mechanisms underlying strategy selection. Participants had to select the better strategy on multiplication problems (i.e., 51 × 27) to find approximate products. They could choose between rounding up and rounding down both operands to their nearest decades. Two types of…
Descriptors: Responses, Cognitive Processes, Cognitive Measurement, Time
Rosenberg-Lee, Miriam; Ashkenazi, Sarit; Chen, Tianwen; Young, Christina B.; Geary, David C.; Menon, Vinod – Developmental Science, 2015
Developmental dyscalculia (DD) is marked by specific deficits in processing numerical and mathematical information despite normal intelligence (IQ) and reading ability. We examined how brain circuits used by young children with DD to solve simple addition and subtraction problems differ from those used by typically developing (TD) children who…
Descriptors: Developmental Disabilities, Learning Disabilities, Numbers, Mathematics Skills