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Lucie Mingla – Mathematics Teaching Research Journal, 2025
Achieving meaningful educational outcomes requires scalable strategies for mastering mathematical concepts and skills, with student engagement at the core. This paper examines the use of comprehensive, technology-enhanced activities designed to promote active learning and deeper conceptual understanding. Specifically, it focuses on the integration…
Descriptors: Mathematics Education, Mathematical Applications, Mastery Learning, Mathematical Concepts
Zhiying Zheng; Kla Sriphet; Sitthisak Champadaeng – Higher Education Studies, 2025
Chinese traditional crafts represent an important cultural heritage. However, with the advancement of modernization, the inheritance of these crafts has encountered challenges such as a talent gap and the loss of craft carriers. Therefore, this study explores an innovative model integrating the Chinese-style apprenticeship system with digital…
Descriptors: Foreign Countries, Cultural Background, Apprenticeships, Computer Assisted Instruction
Conrad Borchers; Alex Houk; Vincent Aleven; Kenneth R. Koedinger – Grantee Submission, 2025
Active learning promises improved educational outcomes yet depends on students' sustained motivation to engage in practice. Goal setting can enhance learner engagement. However, past evidence of the effectiveness of setting goals tends to be limited to non-digital learning settings and does not scale well as it requires active teacher or parent…
Descriptors: Learner Engagement, Educational Benefits, Goal Orientation, Rewards
Albert Rof; Andrea Bikfalvi; Pilar Marques – TechTrends: Linking Research and Practice to Improve Learning, 2025
Microlearning is gaining ground in the higher education domain. Despite this trend, there is a lack of evidence of effectiveness when a large number of microlearning units are grouped to form a macrolearning programme. The purpose of this paper is to explore how and why a macrolearning affects students' self-efficacy. The originality of this paper…
Descriptors: Business Education, Teaching Methods, Computer Assisted Instruction, Critical Thinking
Jiangyue Liu; Jing Ma; Siran Li – Education and Information Technologies, 2025
This study developed a school-based AI curriculum suitable for senior high school students, with the primary objective of enhancing their mastery of knowledge and proficiency in AI, as well as their computational thinking abilities. The curriculum was designed with an awareness of the practical challenges encountered by the subject school in their…
Descriptors: Artificial Intelligence, Technology Uses in Education, Curriculum Design, Computation
Mohamad Saadeghvaziri; Marzieh Eskandari; Mathew Bandelt – Journal of STEM Education: Innovations and Research, 2025
Transitioning from K-12 to college poses significant challenges due to the shift from guided learning to self-directed engagement. Traditional pedagogies such as inquiry-based learning and flipped classrooms have not fully resolved issues like poor retention and low graduation rates in STEM fields, which are critical for economic growth and…
Descriptors: Active Learning, Higher Education, Educational Innovation, Flexible Scheduling

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