Towards Active Evidence-Based Learning in Engineering Education: A Systematic Literature Review of PBL, PjBL, and CBL
На пути к активному обучению в инженерном образовании на основе доказательных данных: систематический обзор литературы по проблемно-ориентированному, проектно-ориентированному и челлендж-ориентированному обучению
2022-10-27
SCID: 54.1/5f5k8jjj
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active learningchallenge-based learningengineering educationproblem-based learningproject-based learning
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Abstract (AI)
Implementing active learning methods in engineering education is becoming the new norm and is seen as a prerequisite to prepare future engineers not only for their professional life, but also to tackle global issues. Teachers at higher education institutions are expected and encouraged to introduce their students to active learning experiences, such as problem-, project-, and more recently, challenge-based learning. Teachers have to shift from more traditional teacher-centered education to becoming instructional designers of student-centered education. However, instructional designers (especially novice) often interpret and adapt even well-established methods, such as problem-based learning and project-based learning, such that the intended value thereof risks being weakened. When it comes to more recent educational settings or frameworks, such as challenge-based learning, the practices are not well established yet, so there might be even more experimentation with implementation, especially drawing inspiration from other active learning methods. By conducting a systematic literature analysis of research on problem-based learning, project-based learning, and challenge-based learning, the present paper aims to shed more light on the different steps of instructional design in implementing the three methods. Based on the analysis and synthesis of empirical findings, the paper explores the instructional design stages according to the ADDIE (analysis, design, development, implementation, and evaluation) model and provides recommendations for teacher practitioners.
Key Findings
1
Active learning methods are increasingly treated as essential for preparing engineering students for professional practice and global challenges.
2
Challenge-based learning lacks established implementation practices, encouraging experimentation and borrowing from other active learning methods.
3
Novice instructional designers may adapt problem-based and project-based learning in ways that weaken their intended educational value.
4
The synthesis of empirical findings produces recommendations to support teachers implementing these three active learning methods.
5
The systematic review analyzes instructional design stages for problem-, project-, and challenge-based learning using the ADDIE framework.
Research Object
Instructional design and implementation of problem-based learning, project-based learning, and challenge-based learning in engineering higher education
Research Subject
Instructional design stages, empirical practices, and implementation recommendations for PBL, PjBL, and CBL examined through the ADDIE model
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2022-10-27
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