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Kristy L. Armitage; Sam J. Gilbert – Child Development Perspectives, 2025
Humans routinely use external thinking tools, like pencil and paper, maps, and calculators, to solve cognitive problems that would have once been solved internally. As many youth face unprecedented exposure to increasingly capable technological aids, there is a growing pressure to understand children's cognitive offloading capacities and…
Descriptors: Cognitive Processes, Cognitive Ability, Children, Problem Solving
Jeb S. Puryear; Kristen N. Lamb – Journal of Creative Behavior, 2025
This study investigates the underlying patterns in elements of creativity conceptions among researchers using Q-methodology. Participants, who had published work on creativity, completed a Q-sort of 90 items related to creativity conceptions. The data analysis identified four distinct components: one emphasizing innovation and uniqueness, another…
Descriptors: Creativity, Researchers, Innovation, Cognitive Processes
Xiaoxiao Liu; Okan Bulut; Ying Cui; Yizhu Gao – Journal of Computer Assisted Learning, 2025
Background: Process data captured by computer-based assessments provide valuable insight into respondents' cognitive processes during problem-solving tasks. Although previous studies have utilized process data to analyse behavioural patterns or strategies in problem-solving tasks, the connection between latent cognitive states and their…
Descriptors: Adults, Problem Solving, Markov Processes, Network Analysis
Soonri Choi; Dongsik Kim; Jihoon Song – Educational Technology Research and Development, 2025
Despite the efforts of instructional design (ID) to solve real-life problems, it remains challenging to adapt and be flexible in such situations. In particular, problems that require simultaneous knowledge of multiple domains and contexts are more challenging to solve because real-life problems do not reconstruct the learned experience. This is…
Descriptors: Expertise, Instructional Design, Problem Solving, Cognitive Processes
Supratman; I. Ketut Budayasa; Endah Budi Rahaju – Educational Process: International Journal, 2025
Background/purpose: This study investigates the probabilistic thinking process in solving probability problems by prospective mathematics teachers with a field-independent cognitive style. The objective is to explore how individuals with this cognitive style approach problem-solving based on the three stages of Polya's framework: understanding the…
Descriptors: Probability, Problem Solving, Mathematics Instruction, Preservice Teachers
Jaya Shivangani Kashyap; Chandralekha Singh – Physical Review Physics Education Research, 2025
This case study used individual interviews to investigate graduate students' sensemaking in upper-level electrostatics in the context of problems that can be efficiently solved for the electric potential using Laplace's equation. Although there are many technical mathematical issues involved in solving Laplace's equation, the focus of this…
Descriptors: Graduate Students, Physics, College Science, Equations (Mathematics)
Kristy L. Armitage; Alicia K. Jones; Jonathan Redshaw – Cognitive Science, 2025
With the rise of wearable technologies, mobile devices and artificial intelligence comes a growing pressure to understand downstream effects of cognitive offloading on children's future thinking and behavior. Here, we explored whether compelling children to use an indiscriminate cognitive offloading strategy affects their subsequent strategy…
Descriptors: Cognitive Processes, Cognitive Ability, Problem Solving, Learning Strategies
Xiantong Yang; Jon R. Star; Ru-De Liu; Yi Yang – Educational Psychology Review, 2025
Existing research has revealed key factors influencing mathematical flexibility, defined as the capacity to understand, generate, and apply a variety of strategies in solving mathematical problems. However, there is currently a lack of an integrated theoretical framework to systematically consolidate various sources of individual differences in…
Descriptors: Individual Differences, Mathematics Skills, Problem Solving, Demography
Xuemei Bai; Xiaoqing Gu – Australasian Journal of Educational Technology, 2025
Cognitive presence is essential for deep and meaningful learning, yet developing it poses challenges. Theoretically, peer-led teaching presence can enhance cognitive presence, but research on this facilitation is limited. This study used behavioural sequence analysis to investigate how peer-led teaching presence promotes cognitive presence…
Descriptors: Peer Teaching, Cognitive Processes, Applied Behavior Analysis, Cooperative Learning
Problem-Solving Support and Instructional Sequence: Impact on Cognitive Load and Student Performance
Jamie Costley; Anna Gorbunova; Matthew Courtney; Ouhao Chen; Christopher Lange – European Journal of Psychology of Education, 2024
In terms of instructional sequencing and cognitive load research, it remains unclear what effect different instructional sequences have on cognitive load and how to use problem-solving support within instructional sequences to reduce cognitive load. The current study examines how instructional sequencing and problem-solving support interact with…
Descriptors: Problem Solving, Cognitive Processes, Difficulty Level, Academic Achievement
Melody García-Moya; Susana Marcos; Raquel Fernández-Cézar – Journal of Research in Special Educational Needs, 2024
Many gifted students fail to be diagnosed, preventing them from receiving an education that is adapted to their characteristics, with activities that challenge their minds. Mathematics is one of the subjects in which they can demonstrate talent, where they often exhibit high skills in solving problems, handling numbers and performing spatial…
Descriptors: Academically Gifted, Gifted Education, Mathematics Instruction, Problem Solving
Tongxi Liu – British Journal of Educational Technology, 2024
To date, extensive work has been devoted to incorporating computational thinking in K-12 education. Recognizing students' computational thinking stages in game-based learning environments is essential to capture unproductive learning and provide appropriate scaffolding. However, few reliable and valid computational thinking measures have been…
Descriptors: Elementary Secondary Education, Game Based Learning, Puzzles, Problem Solving
Ronald Mtenga; Mathias Bode; Radwa Khalil – Journal of Creative Behavior, 2025
Creative thinking stems from the cognitive process that fosters the creation of new ideas and problem-solving solutions. Artificial intelligence systems and neural network models can reduce the intricacy of understanding creative cognition. For instance, the generation of ideas could be symbolized as patterns of binary code in which clusters of…
Descriptors: Inhibition, Creative Thinking, Cognitive Processes, Concept Formation
Belén Palop; Irene Díaz; Luis J. Rodríguez-Muñiz; Juan José Santaengracia – Education and Information Technologies, 2025
In the realm of K-12 Education, the growing significance of Computational Thinking has sparked extensive inquiry into its nature and instructional methodologies. Despite a wealth of literature on the subject, ongoing debates persist regarding its fundamental components. Across global educational landscapes, Computational Thinking is being…
Descriptors: Computation, Thinking Skills, Holistic Approach, Elementary Secondary Education
Jaewon Jung; Yoonhee Shin; HaeJin Chung; Mik Fanguy – Journal of Computing in Higher Education, 2025
This study investigated the effects of pre-training types on cognitive load, self-efficacy, and problem-solving in computer programming. Pre-training was provided to help learners acquire schemas related to problem-solving strategies. 84 undergraduate students were randomly assigned to one of three groups and each group received three different…
Descriptors: Training, Cognitive Processes, Difficulty Level, Self Efficacy

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