Publication Date
In 2025 | 0 |
Since 2024 | 2 |
Since 2021 (last 5 years) | 3 |
Since 2016 (last 10 years) | 4 |
Since 2006 (last 20 years) | 7 |
Descriptor
Metacognition | 7 |
Science Instruction | 7 |
Accuracy | 3 |
Comparative Analysis | 3 |
Learning Strategies | 3 |
Task Analysis | 3 |
Biology | 2 |
Comprehension | 2 |
Feedback (Response) | 2 |
Knowledge Level | 2 |
Outcomes of Education | 2 |
More ▼ |
Source
Metacognition and Learning | 7 |
Author
Allison J. Jaeger | 1 |
Jennelle L. Malcos | 1 |
Järvelä, Sanna | 1 |
Khosa, Deep K. | 1 |
Kirschner, Paul A. | 1 |
Leopold, Claudia | 1 |
Leutner, Detlev | 1 |
Logan Fiorella | 1 |
Malmberg, Jonna | 1 |
Morphew, Jason W. | 1 |
Noll, Nigel | 1 |
More ▼ |
Publication Type
Journal Articles | 7 |
Reports - Research | 7 |
Education Level
Higher Education | 3 |
Postsecondary Education | 3 |
Elementary Education | 1 |
Audience
Location
Laws, Policies, & Programs
Assessments and Surveys
What Works Clearinghouse Rating
Allison J. Jaeger; Logan Fiorella – Metacognition and Learning, 2024
Prior research suggests most students do not glean valid cues from provided visuals, resulting in reduced metacomprehension accuracy. Across 4 experiments, we explored how the presence of instructional visuals affects students' metacomprehension accuracy and cue-use for different types of metacognitive judgments. Undergraduates read texts on…
Descriptors: Cues, Visual Stimuli, Comprehension, Metacognition
Morphew, Jason W. – Metacognition and Learning, 2021
Student learning in introductory science, technology, engineering, and mathematics (STEM) courses is often self-regulated. For self-regulated learning to be effective, students need to engage in accurate metacognitive monitoring to make appropriate metacognitive control decisions. However, the accuracy with which individuals monitor their task…
Descriptors: Metacognition, STEM Education, Independent Study, Accuracy
Ying Wang; Rayne A. Sperling; Jennelle L. Malcos – Metacognition and Learning, 2024
The present study investigated the extent to which monitoring practice and timely monitoring feedback, contextualized in an online undergraduate biology course, improved students' metacognitive monitoring and learning outcomes. The intervention followed a true experimental design and randomly assigned 162 students into three conditions: a control…
Descriptors: Metacognition, Self Efficacy, Learning Strategies, Feedback (Response)
Vlach, Haley A.; Noll, Nigel – Metacognition and Learning, 2016
Adults modify the way they speak to children to support children's learning across several domains. However, no previous research has studied whether adults change their language when explaining science to children. The current study examined if and how adults change the manner in which they talk about science when providing explanations to…
Descriptors: Metacognition, Science Instruction, Science Education, Scientific Concepts
Leopold, Claudia; Leutner, Detlev – Metacognition and Learning, 2015
In three experiments, students were trained to use strategies for learning from scientific texts: text highlighting (Experiment 1), knowledge mapping (Experiment 2), and visualizing (Experiment 3). Each experiment compared a control condition, cognitive strategy training, and a combined cognitive strategy plus metacognitive self-regulation…
Descriptors: Learning Strategies, Metacognition, Visualization, Cognitive Mapping
Malmberg, Jonna; Järvelä, Sanna; Kirschner, Paul A. – Metacognition and Learning, 2014
This study investigated what types of learning patterns and strategies elementary school students use to carry out ill- and well-structured tasks. Specifically, it was investigated which and when learning patterns actually emerge with respect to students' task solutions. The present study uses computer log file traces to investigate how…
Descriptors: Elementary School Students, Learning Strategies, Task Analysis, Metacognition
Khosa, Deep K.; Volet, Simone E. – Metacognition and Learning, 2014
This paper addresses the nature and significance of productive engagement in cognitive activity and metacognitive regulation in collaborative learning tasks that involve complex scientific knowledge. A situative framework, combining the constructs of social regulation and content processing, provided the theoretical basis for the development of a…
Descriptors: Cooperative Learning, Metacognition, Science Instruction, Scientific Concepts