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Showing 1 to 15 of 25 results Save | Export
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Ackerman, Rakefet – Educational Psychology Review, 2023
Solving problems in educational settings, as in daily-life scenarios, involves constantly assessing one's own confidence in each considered solution. Metacognitive research has exposed cues that may bias confidence judgments (e.g., familiarity with question terms). Typically, metacognitive research methodologies require examining misleading cues…
Descriptors: Cues, Instructional Design, Bias, Problem Solving
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Sijmkens, Elien; De Cock, Mieke; De Laet, Tinne – Metacognition and Learning, 2023
To become proficient problem solvers, science and engineering students have to acquire the skill of self-regulating their problem-solving processes, a skill supported by their metacognitive abilities. The Disciplinary Learning Companion (DLC) is an online tool designed to scaffold students' use of metacognitive activities through…
Descriptors: Scaffolding (Teaching Technique), Metacognition, Learning Activities, Reflection
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Hoch, Emely; Sidi, Yael; Ackerman, Rakefet; Hoogerheide, Vincent; Scheiter, Katharina – Educational Psychology Review, 2023
It is well established in educational research that metacognitive monitoring of performance assessed by self-reports, for instance, asking students to report their confidence in provided answers, is based on heuristic cues rather than on actual success in the task. Subjective self-reports are also used in educational research on cognitive load,…
Descriptors: Metacognition, Self Efficacy, Self Evaluation (Individuals), Student Behavior
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Kang, Tinghu; Tang, Tinghao; Zhang, Peizhi; Luo, Shu; Qi, Huanhuan – British Journal of Educational Psychology, 2023
Background: The ability to translate concrete manipulatives into abstract mathematical formulas can aid in the solving of mathematical word problems among students, and metacognitive prompts play a significant role in enhancing this process. Aims: Based on the concept of semantic congruence, we explored the effects of metacognitive prompts and…
Descriptors: Metacognition, Eye Movements, Cues, Elementary School Students
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Scheiter, Katharina; Ackerman, Rakefet; Hoogerheide, Vincent – Educational Psychology Review, 2020
A central factor in research guided by the Cognitive Load Theory (CLT) is the mental effort people invest in performing a task. Mental effort is commonly assessed by asking people to report their effort throughout performing, learning, or problem-solving tasks. Although this measurement is considered reliable and valid in CLT research,…
Descriptors: Metacognition, Difficulty Level, Problem Solving, Self Evaluation (Individuals)
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Heidbrink, Amber; Weinrich, Melissa – Journal of Chemical Education, 2021
Many studies in science education research have found metacognition to be beneficial for undergraduate STEM students. Students do not necessarily know how to employ their metacognition without some training or prompting, and undergraduate chemistry instructors do not always have the capacity to instruct their students on metacognition. Thus, it…
Descriptors: Biochemistry, Science Instruction, Metacognition, Class Activities
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Baars, Martine; Wijnia, Lisette; de Bruin, Anique; Paas, Fred – Educational Psychology Review, 2020
Research has shown a bi-directional association between the (perceived) amount of invested effort to learn or retrieve information (e.g., time, mental effort) and metacognitive monitoring judgments. The direction of this association likely depends on how learners allocate their effort. In self-paced learning, effort allocation is usually data…
Descriptors: Correlation, Individual Power, Self Management, Learning Processes
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Raaijmakers, Steven F.; Baars, Martine; Paas, Fred; van Merriënboer, Jeroen J. G.; van Gog, Tamara – Metacognition and Learning, 2019
Effective self-regulated learning in settings in which students can decide what tasks to work on, requires accurate self-assessment (i.e., a judgment of own level of performance) as well as accurate task selection (i.e., choosing a subsequent task that fits the current level of performance). Because self-assessment accuracy is often low,…
Descriptors: Feedback (Response), Accuracy, Metacognition, Self Evaluation (Individuals)
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Takeuchi, Naoyuki; Mori, Takayuki; Suzukamo, Yoshimi; Izumi, Shin-Ichi – Mind, Brain, and Education, 2019
Metacognitive functions are important for both teachers and students to facilitate teaching and learning. The prefrontal cortex (PFC) plays a proven role in metacognition. As a pilot study, we evaluated the PFC activity of teachers and students using near-infrared spectroscopy devices to explore the neural mechanism of PFC underlying metacognitive…
Descriptors: Teaching Methods, Brain Hemisphere Functions, Problem Solving, Spectroscopy
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Strong, Kristin M.; Lawanto, Oenardi; Wilson-Lopez, Amy – Journal of Technology Education, 2020
Engineering design was integrated into K-12 science education in the "Next Generation Science Standards" (NGSS Lead States, 2013), but teaching design remains a challenge for educators. Design problems are ill-defined, ill-structured, and complex problem-solving tasks. Their solutions require creativity and recursive, metacognitive…
Descriptors: Engineering Education, Design, Problem Solving, Metacognition
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Matsuda, Noboru; Weng, Wenting; Wall, Natalie – International Journal of Artificial Intelligence in Education, 2020
The effect of metacognitive scaffolding for learning by teaching was investigated and compared against learning by being tutored. Three versions of an online learning environment for learning algebra equations were created: (1) APLUS that allows students to interactively teach a synthetic peer with a goal to have the synthetic peer pass the quiz…
Descriptors: Metacognition, Scaffolding (Teaching Technique), Tutoring, Intelligent Tutoring Systems
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Mardi, Fatemeh – Journal of Digital Learning in Teacher Education, 2020
This practice paper provides a detailed scaffolded layout of how to embed computational thinking concepts into a project-based math methods course. Parallel to completing a project in which the in-service teachers design solutions for math struggles of their P-12 students, the graduate students reflect on their problem-solving activities using…
Descriptors: Protocol Analysis, Cues, Computer Science Education, Thinking Skills
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Preiss, David D.; Grau, Valeska; Torres Irribarra, David; Calcagni, Elisa – New Directions for Child and Adolescent Development, 2018
This paper presents the results of an observational study developed on lessons taught by 128 teachers for a national teaching assessment program in Chile and whose practice was identified as outstanding. Specifically, we studied which strategies teachers used to promote students' self-regulation and autonomy during segments involving teacher-led…
Descriptors: Metacognition, Teaching Methods, Mathematics Instruction, Foreign Countries
Le, Thanh K. – ProQuest LLC, 2017
Student reasoning on physics problems is often context dependent. A possible explanation is that salient distracting features (SDFs) in physics problems may cue students' "spontaneous" reasoning. This cued reasoning is often accepted without question, even though it may be unproductive and may even preclude the use of relevant knowledge.…
Descriptors: Physics, Metacognition, Science Instruction, Transfer of Training
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Byun, Hyunjung; Lee, Jung; Cerreto, Frank A. – Instructional Science: An International Journal of the Learning Sciences, 2014
The purpose of this research is to investigate the relative effectiveness of using three different question-prompt strategies on promoting metacognitive skills and performance in ill-structured problem solving by examining the interplay between peer interaction and cognitive scaffolding. An ill-structured problem-solving task was given to three…
Descriptors: Questioning Techniques, Cues, Metacognition, Problem Solving
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