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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
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Miller-Cotto, Dana; Booth, Julie L.; Newcombe, Nora S. – Applied Cognitive Psychology, 2022
Both sketching and self-explanation are widely believed to be effective for problem-solving in science learning. However, it is unclear which aspects of these strategies promote learning and how they might interact. Compared to a read-only baseline, we examined the impact of instructing 11-year-old students to solve science problems to sketch,…
Descriptors: Freehand Drawing, Cognitive Processes, Middle School Students, Science Education
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Hoogerheide, Vincent; Roelle, Julian – Applied Cognitive Psychology, 2020
Decades of research has shown that example-based learning is an effective instructional strategy for learning new skills. The field of learning from examples is seeing a shift in focus towards more innovative and use-inspired research, in part because the use of examples for informal and formal learning purposes has mushroomed. This special issue…
Descriptors: Observational Learning, Problem Solving, Cognitive Processes, Difficulty Level
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Bordewieck, Martin; Elson, Malte – Applied Cognitive Psychology, 2021
Troubleshooting is a particular problem-solving process comprising error detection, fault diagnosis, and system restoration. Since automation of systems has become increasingly complex and ubiquitous, troubleshooting skills are crucial to maintain safety and security in a variety of contexts. The planned study aims at examining troubleshooting…
Descriptors: Problem Solving, Error Patterns, Visual Aids, Cognitive Style
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Frost, Peter; Donahue, Patrick; Goeben, Keith; Connor, Megan; Cheong, Hoong Sing; Schroeder, Aaron – Applied Cognitive Psychology, 2019
Smartphones might offer an extension of our own cognitive abilities, potentially preventing practice of certain forms of cognition. Our first study established that heavier usage of smartphones was negatively correlated with social problem solving and delayed gratification, as well as positively correlated with some aspects of critical thinking.…
Descriptors: Handheld Devices, Telecommunications, Cognitive Ability, Cognitive Processes
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Pouw, Wim; van Gog, Tamara; Zwaan, Rolf A.; Agostinho, Shirley; Paas, Fred – Applied Cognitive Psychology, 2018
Co-thought gestures are understudied as compared to co-speech gestures yet, may provide insight into cognitive functions of gestures that are independent of speech processes. A recent study with adults showed that co-thought gesticulation occurred spontaneously during mental preparation of problem solving. Moreover, co-thought gesturing (either…
Descriptors: Children, Nonverbal Communication, Cognitive Processes, Problem Solving
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Ginns, Paul; Hu, Fang-Tzu; Bobis, Janette – Applied Cognitive Psychology, 2020
People can make pointing gestures and tracing actions with the index finger with little or no conscious effort. From the perspective of cognitive load theory, such "biologically primary" gestures and actions might help people learn "biologically secondary" concepts and skills requiring extended cognitive effort, such as…
Descriptors: Nonverbal Communication, Problem Solving, Cognitive Processes, Difficulty Level
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Wang, Li; Cao, Chen; Zhou, Xinlin; Qi, Chunxia – Applied Cognitive Psychology, 2022
Open math problem solving is critical to help students deepen the understanding and promote transfer of mathematics knowledge. However, the cognitive mechanism for open math problem solving, particularly the role of spatial abilities, has not been paid enough attention. This study recruited 192 junior middle school students (14.30 ± 0.48 years…
Descriptors: Spatial Ability, Mathematics Skills, Problem Solving, Transfer of Training