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Tina Seufert; Verena Hamm; Andrea Vogt; Valentin Riemer – Educational Psychology Review, 2024
Self-regulated learning depends on task difficulty and on learners' resources and cognitive load, as described by an inverted U-shaped relationship in Seufert's (2018) model: for easy tasks, resources are high and load is low, so there is no need to regulate, whereas for difficult tasks, load is too high and resources are too low to regulate. Only…
Descriptors: Cognitive Processes, Difficulty Level, Resources, Self Management
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Christine Joy C. Ferrer; Joshua C. Janeo; Jonathan C. Iglesias – Mathematics Teaching Research Journal, 2025
Mathematics education forms the foundational framework for cultivating crucial skills and competencies vital for navigating an ever more intricate and numerical society. Despite its significance, students often encounter challenges and express reluctance towards certain mathematical topics, thus warranting a deeper exploration into the factors…
Descriptors: Mathematics Education, Learning Experience, Nursing Students, Preferences
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Aiman Mohammad Freihat; Omar Saleh Bani Yassin – Educational Process: International Journal, 2025
Background/purpose: This study aimed to reveal the accuracy of estimation of multiple-choice test items parameters following the models of the item-response theory in measurement. Materials/methods: The researchers depended on the measurement accuracy indicators, which express the absolute difference between the estimated and actual values of the…
Descriptors: Accuracy, Computation, Multiple Choice Tests, Test Items
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Patrik Havan; Michal Kohút; Peter Halama – International Journal of Testing, 2025
Acquiescence is the tendency of participants to shift their responses to agreement. Lechner et al. (2019) introduced the following mechanisms of acquiescence: social deference and cognitive processing. We added their interaction into a theoretical framework. The sample consists of 557 participants. We found significant medium strong relationship…
Descriptors: Cognitive Processes, Attention, Difficulty Level, Reflection
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Hanshu Zhang; Ran Zhou; Cheng-You Cheng; Sheng-Hsu Huang; Ming-Hui Cheng; Cheng-Ta Yang – Cognitive Research: Principles and Implications, 2025
Although it is commonly believed that automation aids human decision-making, conflicting evidence raises questions about whether individuals would gain greater advantages from automation in difficult tasks. Our study examines the combined influence of task difficulty and automation reliability on aided decision-making. We assessed decision…
Descriptors: Task Analysis, Difficulty Level, Decision Making, Automation
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Jie Liu; Zhifeng Li; Jiawang Yang; Hao He; Fang Cui – npj Science of Learning, 2025
This study explores the cognitive and neural mechanisms underlying math avoidance in individuals with high math anxiety (HMA), a pattern contributing to reduced practice and poor performance. Using an approach-avoid conflict paradigm and both general linear mixed model and Hierarchical Drift Diffusion Model (HDDM) regression analyses, we found…
Descriptors: Cognitive Processes, Neurology, Mathematics Education, Mathematics Anxiety
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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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Janet Lee English; Jingoo Kang; Tuula Keinonen; Sari Havu-Nuutinen; Kari Sormunen – Science Education International, 2025
Every student comes to science class with unique skills and problem-solving abilities; unfortunately, there is limited research on how to differentiate instruction so that equitable progress can be made for every learner. We used a novel pedagogical approach to differentiate for a wide range of problem-solving abilities when students were learning…
Descriptors: High School Students, Biology, Science Instruction, Individualized Instruction
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Hagit Magen; Michal Tomer-Offen – Cognitive Research: Principles and Implications, 2025
In many circumstances in everyday life, individuals offload information to external stores (e.g., shopping lists) to compensate for limitations in internal memory. When saving information externally, individuals tend to refrain from actively encoding an additional internal copy of the information, leading to a weakening of its internal trace. This…
Descriptors: Cognitive Processes, Difficulty Level, Memory, Information Storage
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Sacip Toker; Mahir Akgun – Innovations in Education and Teaching International, 2025
This study examines whether assessments focused on higher-order cognitive skills can help reduce AI-driven plagiarism in educational settings. A total of 123 participants completed three tasks of increasing complexity, aligned with Bloom's taxonomy, across four groups: control, e-textbook, Google, and ChatGPT. Results from repeated-measures ANOVA…
Descriptors: Artificial Intelligence, Plagiarism, Intervention, Difficulty Level
Sarah Podwinski; Iroise Dumontheil – Mathematics Education Research Group of Australasia, 2025
Mathematical problem-solving places heavy demands on children's developing working memory capacity. This review examines how offloading numerical information using embodied (e.g. finger counting) or external tools (e.g. manipulatives) can reduce cognitive load and improve mathematical task performance. Strategic offloading emerges in childhood;…
Descriptors: Problem Solving, Short Term Memory, Numbers, Cognitive Processes
Jennifer Throndsen – Solution Tree, 2025
In this practical guide, educators learn 25 ready-to-use, research-based teaching strategies aligned to the science of reading to scaffold learning from grade-level texts for a range of readers to accelerate literacy achievement. These strategies can be used in whole- or small-group instruction before, during, and after reading to increase each…
Descriptors: Reading Instruction, Teaching Methods, Scaffolding (Teaching Technique), Difficulty Level
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Katharina M. Bach; Frank Reinhold; Sarah I. Hofer – npj Science of Learning, 2025
Socioeconomic status (SES) influences school success. Students with lower SES may face challenges that this study aims to address through instructional scaffolding. To be effective, such support needs to consider students' individual strengths and weaknesses. In this study, 321 sixth-grade students used an e-textbook about fractions. They were…
Descriptors: Socioeconomic Status, Scaffolding (Teaching Technique), Grade 6, Mathematics Instruction
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Francesco Beccuti; Paola Valero; Ornella Robutti – Educational Studies in Mathematics, 2024
Drawing on autobiographical essays written by master's students in mathematics preparing to become teachers, we investigate what mathematical identity these students articulate and how. By means of a discursive thematic analysis centered on the notion of ascesis, we show that the participants' identity revolves around a characterization of…
Descriptors: Graduate Students, Mathematics Education, Mathematics, Self Concept
Sherwin E. Balbuena – Online Submission, 2024
This study introduces a new chi-square test statistic for testing the equality of response frequencies among distracters in multiple-choice tests. The formula uses the information from the number of correct answers and wrong answers, which becomes the basis of calculating the expected values of response frequencies per distracter. The method was…
Descriptors: Multiple Choice Tests, Statistics, Test Validity, Testing
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