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Nurfirzanah Muhamad Fadzil; Sharifah Osman – International Electronic Journal of Mathematics Education, 2025
Collaborative learning is a group learning paradigm in which individuals or students work together to solve problems or complete tasks, exemplifying the essence of collective educational efforts. There are a lot of collaborative learning methods available; however, finding one that is suitable for the complex nature of mathematical problem-solving…
Descriptors: Mathematics Instruction, Cooperative Learning, Problem Solving, Metacognition
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Yoonhee Shin; Jaewon Jung; Seohyun Choi; Bokmoon Jung – Education and Information Technologies, 2025
This study investigates the effects of metacognitive and cognitive strategies for computational thinking (CT) on managing cognitive load and enhancing problem-solving skills in collaborative programming. Four different scaffolding conditions were provided to help learners optimize cognitive load and improve their problem-solving abilities. A total…
Descriptors: Scaffolding (Teaching Technique), Mental Computation, Cognitive Processes, Difficulty Level
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Shihui Feng – British Journal of Educational Technology, 2025
Collaborative problem solving (CPS) is an important skill enabling students to co-construct knowledge and tackle complex problems through group interactions. While the importance of group interactions in CPS is well recognized, it is unclear how the emergence of generative artificial intelligence (GAI), with advanced cognitive support, may alter…
Descriptors: Group Dynamics, Interaction, Problem Solving, Cooperative Learning
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Xing, Wanli; Zhu, Gaoxia; Arslan, Okan; Shim, Jaesub; Popov, Vitaliy – Journal of Computing in Higher Education, 2023
Engagement is critical in learning, including computer-supported collaborative learning (CSCL). Previous studies have mainly measured engagement using students' self-reports which usually do not capture the learning process or the interactions between group members. Therefore, researchers advocated developing new and innovative engagement…
Descriptors: Learning Analytics, Cooperative Learning, Learner Engagement, Learning Motivation
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Haataja, Eetu; Malmberg, Jonna; Dindar, Muhterem; Järvelä, Sanna – Metacognition and Learning, 2022
Being aware of the progress towards one's goals is considered one of the main characteristics of the self-regulation process. This is also the case for collaborative problem solving, which invites group members to metacognitively monitor the progress with their goals and externalize it in social interactions while solving a problem. Monitoring…
Descriptors: Cooperative Learning, Problem Solving, Metacognition, Physiology
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Li Chen; Taniguchi Yuta; Atsushi Shimada; Masanori Yamada – Technology, Knowledge and Learning, 2025
In this study, a collaborative problem solving-based STEM course was implemented in a seventh-grade class. This study aimed to examine the effects of students' prior knowledge on their CPS-based STEM learning processes by using a mixed-methods approach. First, a lag sequential analysis was used to investigate individual cognitive and metacognitive…
Descriptors: Problem Based Learning, STEM Education, Problem Solving, Grade 7
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David Schroeder – BU Journal of Graduate Studies in Education, 2024
Schools need to develop critical thinkers who are learning collaboratively alongside their peers and teachers. With the support of their community, nonacademic values need to be stressed outside the classroom, where students actively engage in social activities to develop their community and increase the value in their education. Combining these…
Descriptors: Critical Thinking, Community Involvement, Social Development, Cooperative Learning
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Tang, Hengtao; Arslan, Okan; Xing, Wanli; Kamali-Arslantas, Tugba – Journal of Computing in Higher Education, 2023
Socially shared metacognition is important for effective collaborative problem solving in virtual laboratory settings, A holistic account of socially shared metacognition in virtual laboratory settings is needed to advance our understanding, but previous studies have only focused on the isolated effect of each dimension on problem solving. This…
Descriptors: Cooperation, Problem Solving, Laboratories, Metacognition
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Shuowen An; Si Zhang; Zhihui Cai; Wei Pan; Mingwei Li; Mingwen Tong – International Journal of Computer-Supported Collaborative Learning, 2025
An in-depth analysis of collaborative problem solving (CPS) patterns contributes to understand team dynamics and effective paths to conflict resolution. However, there remains the lack of a perspective in the field of CPS research that organically combines the cognitive, meta-cognitive, and social-communicative dimensions. Moreover, the analysis…
Descriptors: Cognitive Processes, Metacognition, Interpersonal Relationship, College Students
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Socratous, Chrysanthos; Ioannou, Andri – TechTrends: Linking Research and Practice to Improve Learning, 2022
Educational robotics (ER) has emerged as a novel educational tool that enables students to improve their thinking skills. The study aims to compare the effect of a structured versus an unstructured ER curriculum on students' group metacognition during collaborative problem-solving with ER. The authors' hypothesis is that an unstructured ER…
Descriptors: Cooperative Learning, Metacognition, Problem Solving, Robotics
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Halmo, Stephanie M.; Bremers, Emily K.; Fuller, Sammantha; Stanton, Julie Dangremond – CBE - Life Sciences Education, 2022
Stronger metacognition, or awareness and regulation of thinking, is related to higher academic achievement. Most metacognition research has focused at the level of the individual learner. However, a few studies have shown that students working in small groups can stimulate metacognition in one another, leading to improved learning. Given the…
Descriptors: Metacognition, Cooperative Learning, Problem Solving, Science Education
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Sam Rhodes; Kelly Reigle; Rita Della Valle; Jennifer Gonzales – Mathematics Teacher: Learning and Teaching PK-12, 2025
Metacognition supports students in successfully working through struggle by equipping them with the tools to maintain an awareness of what they are doing and to change directions when needed to overcome obstacles. Thus, it is of little surprise that effective problem solvers spend a significant amount of time analyzing tasks relative to the amount…
Descriptors: Student Development, Metacognition, Problem Solving, Mathematics Education
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Farida Jamil, Anis; Siswono, Tatag Yuli Eko; Setianingsih, Rini – Mathematics Teaching Research Journal, 2023
The current research trend of metacognitive regulation has shifted from an individual to a social context. One such social context is collaborative problem-solving. Interaction between group members is an essential factor in completing collaborative problems. Metacognitive regulation is divided into four forms based on the interaction in…
Descriptors: Metacognition, Problem Solving, Mathematics Skills, Geometry
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Rees Lewis, Daniel G.; Carlson, Spencer E.; Riesbeck, Christopher K.; Gerber, Elizabeth M.; Easterday, Matthew W. – Journal of Engineering Education, 2023
Background: To create design solutions experienced engineering designers engage in expert iterative practice. Researchers find that students struggle to learn this critical engineering design practice, particularly when tackling real-world engineering design problems. Purpose/Hypothesis: To improve our ability to teach iteration, this study…
Descriptors: Engineering, Design, Coaching (Performance), Problem Based Learning
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Vishwas Badhe; Ramkumar Rajendran; Jyoti Shaha – International Association for Development of the Information Society, 2024
Collaborative problem-solving (CPS) is a vital 21st-century skill. Ill-structured problems demand effective shared regulation from teams to enhance CPS success. While socially shared metacognitive regulation (SSMR) is crucial in CPS, a deeper understanding of its nature is needed. This study investigates the detailed operationalization of SSMR in…
Descriptors: Metacognition, Problem Solving, 21st Century Skills, Cooperative Learning
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