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Dom Conroy; Bernard Aidoo; Raymon Hunte; Mark Thompson – Psychology Teaching Review, 2025
Statistics for psychology is a challenging aspect of undergraduate psychology courses but poorly understood in experiential terms. Accordingly, we drew on Brookfield's 'four lenses for critical reflection' to acquire insights from first year psychology undergraduate free text survey responses (learner lens), and psychology educator survey free…
Descriptors: Statistics Education, Mathematics Anxiety, Psychology, Undergraduate Students
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Li Chen; Yuta Taniguchi; Atsushi Shimada; Masanori Yamada – SAGE Open, 2024
Despite the growing emphasis on integrating collaborative problem-solving (CPS) into science, technology, engineering, and mathematics (STEM) education, a comprehensive understanding of the critical factors that affect the effectiveness of this educational approach remains a challenge. This study aims to identify effective strategic and behavioral…
Descriptors: Secondary School Students, Cooperative Learning, Problem Solving, STEM Education
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Nitza Davidovitch; Rivka Wadmany – Electronic Journal of e-Learning, 2025
In academic studies, some course assignments take the form of presentations. The art of presentation involves conveying messages and one of the methods is by delivering presentations, either face-to-face, synchronously, and/or asynchronously. Presentations require analyzing a topic, processing an article, analyzing ideas, dilemmas, lesson plans,…
Descriptors: Visual Aids, Teaching Methods, Student Attitudes, Undergraduate Students
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Msafiri Mgambi Msambwa; Zhang Wen; Kangwa Daniel – European Journal of Education, 2025
Artificial intelligence (AI) has extensively developed, impacting different sectors of society, including higher education, and has attracted the attention of various educational stakeholders, leading to a growing number of research on its integration into education. Hence, this systematic literature review examines the impact of integrating AI…
Descriptors: Influence of Technology, Technology Uses in Education, Artificial Intelligence, Cooperative Learning
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Hanna Järvenoja; Tiina Törmänen; Emma Lehtoaho; Marjo Turunen; Jasmiina Suoraniemi; Justin Edwards – British Journal of Educational Psychology, 2025
Background: Social context and peers significantly impact students' motivation, especially in collaborative learning settings. However, there is limited evidence on how students strategically influence each other's motivation through socially shared regulation of learning (SSRL). Aims: This study examined secondary school students' SSRL during…
Descriptors: Peer Influence, Cooperative Learning, Group Membership, Student Motivation
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Restall, Greg C.; Clark, Michele C. – New Directions for Teaching and Learning, 2021
This chapter presents team-based learning (TBL) as a teaching strategy to support self-regulated learning in a community of inquiry. It argues for the inclusion of self-regulated learning as an essential component of Garrison's community of inquiry model, and illustrates how TBL supports and improves the delivery of this online model.
Descriptors: Cooperative Learning, Communities of Practice, Inquiry, Learning Strategies
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Kayode Oyetade; Tranos Zuva; Anneke Harmse – Cogent Education, 2024
Hackathons in education are increasingly recognized for their immersive learning experiences, emphasizing problem-solving and diverse innovation. Despite their acknowledged role in curricular innovation, there remains a gap in understanding their impact on student learning outcomes. This study employs the PRISMA methodology to evaluate the impact…
Descriptors: Literature Reviews, Meta Analysis, Cooperative Learning, Problem Solving
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Anna C. Strauss; Jenna G. Waggoner; Mhret D. Wondmagegne; Tutita M. Casa – Mathematics Teacher: Learning and Teaching PK-12, 2025
The authors wondered if there was a way to support their reluctant Grades 4, 5, and 6 students in contributing their starting points and strategies and advancing their collective knowledge. They wanted to ensure that the students had the space to develop and take ownership of the strategies they produced through a visual representation of ideas…
Descriptors: Personal Autonomy, Mathematics Instruction, Teaching Methods, Cooperative Learning
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Vorhölter, Katrin – Mathematical Thinking and Learning: An International Journal, 2023
There are several conceptualizations of modeling competencies, including among others on the one hand so-called sub-competencies, which are required to progress from one step of a modeling process to the next, and metacognitive individual and group strategies. However, the relationship between metacognitive strategies and modeling sub-competencies…
Descriptors: Metacognition, Mathematical Models, Learning Strategies, Cooperative Learning
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Lanqin Zheng; Yunchao Fan; Zichen Huang; Lei Gao – Journal of Computer Assisted Learning, 2024
Background: Online collaborative learning has been widely adopted in the field of education. However, learners often find it difficult to engage in collaboratively building knowledge and jointly regulating online collaborative learning. Objectives: The study compared the impacts of the three learning approaches on collaborative knowledge building,…
Descriptors: Cooperative Learning, Electronic Learning, College Students, Learning Strategies
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Lisa Gregersen Oestergaard; Janne Saltoft Hansen; Maiken Bay Ravn; Thomas Maribo – Discover Education, 2024
Portfolio assignments and peer-feedback can enhance coherence and student engagement in a course programme, thereby improving learning outcomes. In a course, students obtain permission to take the examination for their semester course upon approval of at least three out of five portfolio assignments. The portfolio comprises three individual…
Descriptors: Portfolio Assessment, Student Projects, Peer Evaluation, Cooperative Learning
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Seda Özer Sanal; Fulya Torun – Journal of Visual Literacy, 2024
This study examined the individual and collaborative infographic development processes of middle school students in a qualitative research context. In the first phase, individual and collaborative infographics were developed, a simultaneous think-aloud protocol and interviews were conducted. In the second phase, focus group interviews were…
Descriptors: Visual Aids, Cognitive Processes, Cooperative Learning, Student Attitudes
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Laura C. Giojalas; Leticia García Romano; Giuliana Lingua; Rocío B. Martín – Biochemistry and Molecular Biology Education, 2025
Molecular Cell Biology (MCB) should be taught according to the scientific practices, avoiding cumulative and memory knowledge construction, but favoring scientific thinking. A way to achieve this goal is to apply activities involving scientific news, which construct knowledge through significant learning and the development of critical thinking.…
Descriptors: Undergraduate Students, College Faculty, Cytology, Molecular Biology
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Nurfirzanah Muhamad Fadzil; Sharifah Osman; Jamilah Ahmad; Hanifah Jambari; Sharifah Kartini Said Husain – International Electronic Journal of Mathematics Education, 2025
This systematic literature review investigates the effectiveness of the think aloud pair problem-solving (TAPPS) and storyboarding strategies in enhancing students' abilities to solve algebra word problems. Notably, algebra word problems pose a significant challenge to students due to their inherent complexity, requiring strong cognitive,…
Descriptors: Literature Reviews, Meta Analysis, Algebra, Word Problems (Mathematics)
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Qianru Lyu; Wenli Chen; Kok Hui Heng – European Journal of Engineering Education, 2025
Developing collaboration skills is essential in university engineering classrooms, yet fostering in-depth collaborative discussions remains a challenge. This study introduced individual preparation (IP) as a pedagogical design and examined its role in students' collaborative learning outcomes and processes. Eighty-two engineering students from a…
Descriptors: Foreign Countries, Higher Education, Universities, Cooperative Learning
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