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Xi Xiang; Di Xi – British Journal of Educational Technology, 2025
Spatial thinking is essential for nurturing spatially literate graduates in tertiary education. However, there is limited research on individual differences in cognitive processes and their impact on spatial problem solving in disciplinary contexts. This study aimed to investigate cognitive processes involved in spatial thinking in geography…
Descriptors: College Students, Cognitive Processes, Spatial Ability, Geography Instruction
Xiaoming Zhai; Matthew Nyaaba; Wenchao Ma – Science & Education, 2025
This study aimed to examine an assumption regarding whether generative artificial intelligence (GAI) tools can overcome the cognitive intensity that humans suffer when solving problems. We examine the performance of ChatGPT and GPT-4 on NAEP science assessments and compare their performance to students by cognitive demands of the items. Fifty-four…
Descriptors: Artificial Intelligence, National Competency Tests, Elementary Secondary Education, Problem Solving
Hilmi Karaca; Erhan Ertekin; Kursat Cagiltay – Education and Information Technologies, 2025
In mathematics education, representations are used in place of mathematical structures, ideas, or relationships to concretize, transform, and represent them. When students interact with these representations, they engage in various cognitive activities such as thinking, reasoning, understanding, remembering, problem-solving, attention, and…
Descriptors: Middle School Students, Eye Movements, Mathematics Education, Mathematical Concepts
Jo Boaler; Cathy Williams – Corwin, 2025
How can we prepare students for a world where data-driven decision-making shapes nearly every aspect of life? "Data Minds: How Today's Teachers Can Prepare Students for Tomorrow's World" helps K-8 educators infuse data literacy into everyday lessons across disciplines, without overwhelming existing curricula. Data literacy is an ability…
Descriptors: Data Use, Decision Making, Information Literacy, Data Analysis
Sri Rahayuningsih; Wan Marzuki Bin Wan Jaafar; Nurzatulshima Kamarudin; Muhammad Gazali – International Electronic Journal of Elementary Education, 2025
This study sought to understand how students activate number sense in determining the position of fractions on a number line and identify how the natural number bias and number sense influences students' thinking processes. The study utilized the Cognitive Task Analysis (CTA), involving four fifth-grade elementary students as the research…
Descriptors: Elementary School Students, Grade 5, Cognitive Processes, Mathematical Logic
Agusman; Purwanto; Rustanto Rahardi – Journal of Research and Advances in Mathematics Education, 2025
Critical thinking is a fundamental competence in 21st-century education, particularly in mathematics, where students frequently encounter contradictory information that requires logical reasoning and reflective judgment. This study explores the stages of critical thinking among junior high school students when solving contradictory mathematical…
Descriptors: Critical Thinking, Junior High School Students, Mathematics Instruction, Problem Solving
Budak, Kimberly Sirin; Akcay Ozkan, Zeynep – International Electronic Journal of Mathematics Education, 2022
In this paper, we report the analysis of thought processes used by Pre-Service Teachers' (PSTs') through clinical interviews as they solved an algebra task involving a linear pattern. The PST's were asked about a mathematical model they had constructed to describe a pattern problem. Our analysis suggests that conflict factors arise due to…
Descriptors: Preservice Teachers, Cognitive Processes, Algebra, Problem Solving
Lammi, Matthew D.; Wells, John G.; Gero, John – International Journal of Technology and Design Education, 2022
This paper presents the results of a 2-year longitudinal study aimed at characterizing and comparing the design cognition of high school students with and without formal engineering design experiences. The students--working as dyads--engaged in design-only sessions generating solutions in response to the same engineering design challenges. The…
Descriptors: High School Students, Engineering, Design, Cognitive Processes
Helix, Max R.; Blackford, Katherine A.; Firestein, Zachary M.; Greenbaum, Julia C.; Gibson, Katarina; Baranger, Anne M. – Chemistry Education Research and Practice, 2022
A central practice in the discipline of organic chemistry is the ability to solve certain fundamental problems, including predicting reactivity, proposing mechanisms, and designing syntheses. These problems are encountered frequently by both students and practitioners, who need to utilize vast amounts of content knowledge in specific ways to…
Descriptors: Problem Solving, Organic Chemistry, Prediction, Undergraduate Students
Rott, Benjamin; Specht, Birte; Knipping, Christine – ZDM: Mathematics Education, 2021
Complementary to existing "normative" models, in this paper we suggest a descriptive phase model of problem solving. Real, not ideal, problem-solving processes contain errors, detours, and cycles, and they do not follow a predetermined sequence, as is presumed in normative models. To represent and emphasize the non-linearity of empirical…
Descriptors: Mathematics Skills, Problem Solving, Models, Cognitive Processes
Simon Quick; John Lyle – Journal of Teaching in Physical Education, 2024
Psychology-based research has been a characteristic of empirical inquiry in sport coaching for over 50 years, and cognitive function is widely accepted as a fundamental component of sport coaching expertise. Within the academic literature, much empirical research on coaches' cognitions has tended to adopt retrospective approaches, such as…
Descriptors: Athletic Coaches, Team Sports, Cognitive Processes, Psychological Patterns
Ruijie Zhou; Yangyang Li; Xiuling He; Chunlian Jiang; Jing Fang; Yue Li – Education and Information Technologies, 2024
Computational thinking (CT), as one of the key skills in the twenty-first century, has been integrated into educational programming as an important learning goal. This study aims to explore CT processes involved in pair programming with the support of visual flow design. Thirty freshmen participated, working in pairs to solve two programming…
Descriptors: Undergraduate Study, Computation, Thinking Skills, Cognitive Processes
Renske Weeda; Sjaak Smetsers; Erik Barendsen – Computer Science Education, 2024
Background and Context: Multiple studies report that experienced instructors lack consensus on the difficulty of programming tasks for novices. However, adequately gauging task difficulty is needed for alignment: to select and structure tasks in order to assess what students can and cannot do. Objective: The aim of this study was to examine…
Descriptors: Novices, Coding, Programming, Computer Science Education
Julius Meier; Peter Hesse; Stephan Abele; Alexander Renkl; Inga Glogger-Frey – Instructional Science: An International Journal of the Learning Sciences, 2024
Self-explanation prompts in example-based learning are usually directed backwards: Learners are required to self-explain problem-solving steps just presented ("retrospective" prompts). However, it might also help to self-explain upcoming steps ("anticipatory" prompts). The effects of the prompt type may differ for learners with…
Descriptors: Problem Based Learning, Problem Solving, Prompting, Models
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

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