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Lea Nemeth; Frank Lipowsky – European Journal of Psychology of Education, 2024
Interleaved practice combined with comparison prompts can better foster students' adaptive use of subtraction strategies compared to blocked practice. It has not been previously investigated whether all students benefit equally from these teaching approaches. While interleaving subtraction tasks prompts students' attention to the different task…
Descriptors: Prior Learning, Subtraction, Cognitive Processes, Difficulty Level
Tzu-Hua Wang; Chien-Hui Kao – Mind, Brain, and Education, 2024
Studies have demonstrated that task-evoked pupillary responses (TEPRs) can be adopted to measure the examinee's cognitive load. This study compared three approaches for the measurement of TEPRs, mean pupil diameter, mean pupil dilation, and mean percentage of pupil dilation, to determine the best-fit measuring method. The valid participants of…
Descriptors: Eye Movements, Cognitive Processes, Difficulty Level, Mathematics Education
T. Vessonen; M. Dahlberg; H. Hellstrand; A. Widlund; J. Korhonen; P. Aunio; A. Laine – Educational Psychology Review, 2024
Mathematical word problem-solving skills are crucial for students across their lives, yet solving such tasks poses challenges for many. Therefore, understanding the characteristics of mathematical word problems that are associated with students' performance is important. The objective of this systematic review and meta-analysis was to evaluate the…
Descriptors: Mathematics Instruction, Word Problems (Mathematics), Problem Solving, Mathematics Achievement
Sterre K. Ruitenburg; Pieter Guldemont; Paul A. Kirschner; Halszka Jarodzka; Gino Camp – Applied Cognitive Psychology, 2025
Successful adoption of proven effective practice strategies such as distributed practice may contribute to much-needed improvement in mathematics performance. However, it is not yet fully understood if distributed practice is beneficial for long-term retention of complex procedural knowledge and, if so, for which initial practice performance level…
Descriptors: Knowledge Level, Cognitive Processes, Mathematics Instruction, Mathematics Achievement
Jie Xu; Dan Cai – European Journal of Psychology of Education, 2024
Although previous research has demonstrated that the acquisition of mathematical skills requires support from multiple cognitive abilities, the associations between cognitive precursors in different domains and mathematics at different hierarchical levels among primary school children are not well understood. This study explores the cognitive…
Descriptors: Cognitive Processes, Mathematics Skills, Elementary School Students, Cognitive Ability
Bicer, Ali; Bicer, Aysenur – Mathematics Education Research Journal, 2023
Most research has focused solely on understanding high school or college students' mathematical creative thinking abilities while understanding younger students' creative thinking in mathematics was ignored. These studies of older students have focused mainly on students' creative products rather than creative processes. The authors of the present…
Descriptors: Mathematics Education, Creative Thinking, Elementary School Students, Eye Movements
Shuhan Zhang; Gary K. W. Wong – Journal of Computer Assisted Learning, 2024
Background: Computational thinking (CT) has been broadly considered one of the 21st-century competencies, and an emerging trend has been seen in integrating CT into primary education. Cumulative research was conducted to investigate the influencing factors of CT learning performance, and an ample range of factors has been identified, involving…
Descriptors: Logical Thinking, Personality Traits, Elementary School Students, Negative Attitudes
Reader, Tracey; Larkin, Kevin; Grootenboer, Peter – Mathematics Education Research Group of Australasia, 2023
This conceptual paper discusses two frameworks, developed independently by the lead author, that will provide the conceptual foundation for the identification and evaluation of mental computation strategies students demonstrate during an upcoming research project entitled Mental Computation in Year 5. These frameworks will be used by the lead…
Descriptors: Elementary School Students, Cognitive Processes, Computation, Mathematics Instruction
Endres, Tino; Lovell, Oliver; Morkunas, David; Rieß, Werner; Renkl, Alexander – British Journal of Educational Psychology, 2023
Background & Aims: Cognitive load theory assumes that the higher the learner's prior knowledge (i.e., the more expert the learner), the lower the intrinsic cognitive load (complexity) experienced for a given problem. While this is the case in many scenarios, there can be cases in which the converse is also true, resulting in more expert…
Descriptors: Prior Learning, Cognitive Processes, Difficulty Level, Problem Solving
Shen, Ji; Chen, Guanhua; Barth-Cohen, Lauren; Jiang, Shiyan; Eltoukhy, Moataz – Journal of Research on Technology in Education, 2022
Computational thinking (CT) has been advocated as an essential problem solving skill students need to develop. Emphasizing on CT applied in both programming and everyday contexts, we developed a humanoid robotics curriculum and a computerized assessment instrument. We implemented the curriculum with six classes of 125 fifth graders. Quantitative…
Descriptors: Elementary School Students, Grade 5, Computation, Thinking Skills
Jenny Yun-Chen Chan; Avery Harrison Closser; Hannah Smith; Ji-Eun Lee; Kathryn C. Drzewiecki; Erin Ottmar – Grantee Submission, 2023
Prior work has established that cognitive and perceptual processes influence students' attention to notational structures in mathematical expressions, which in turn affects their problem-solving approaches and performance. Advances in educational technology provide opportunities to further investigate these processes, improve student learning, and…
Descriptors: Algebra, Educational Technology, Mathematics Instruction, Mathematics Education
Kaiwen Man; Joni M. Lakin – Journal of Educational Measurement, 2024
Eye-tracking procedures generate copious process data that could be valuable in establishing the response processes component of modern validity theory. However, there is a lack of tools for assessing and visualizing response processes using process data such as eye-tracking fixation sequences, especially those suitable for young children. This…
Descriptors: Problem Solving, Spatial Ability, Task Analysis, Network Analysis
Firuzan Hilal Karabay; Can Mese – Asia Pacific Education Review, 2025
In the study, problem-solving educational software (ProSES) was developed to reduce the challenges and mistakes experienced by primary school third-grade students in mathematical problem solving and to provide scaffolding and hint support for teacher help for the students using mobile technologies. The study aimed to determine the impact of the…
Descriptors: Computer Software, Elementary School Students, Grade 3, Mathematics Instruction
Zhang, Ling; Cai, Jinfa; Song, Naiqing; Zhang, Huirong; Chen, Ting; Zhang, Zhu; Guo, Furong – ZDM: Mathematics Education, 2022
Problem posing has received increased attention among researchers and educators. One of the most important aspects is to understand the cognitive process of problem posing. In this study, we conceptualized a framework for the cognitive process of mathematical problem posing in three stages: (a) input--understanding the task, (b)…
Descriptors: Mathematics Instruction, Problem Solving, Cognitive Processes, Performance
Cécile Barbachoux – International Journal of Education in Mathematics, Science and Technology, 2025
In an era of constant digital distractions, maintaining attention is a growing challenge for young students. This paper explores how STEM education and AI-driven learning tools can enhance attention skills by fostering problem-solving, analytical thinking, and cognitive endurance. STEM disciplines require sustained focus, while AI-powered adaptive…
Descriptors: STEM Education, Artificial Intelligence, Educational Technology, Technology Uses in Education