Rebecca K Y Lee, Bernard Y N Ng, Minghui Daisy Chen
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Encourage self-learning and collaborative learning through gamification during COVID-19 pandemic: A case study for teaching biochemistry.
During COVID-19 pandemic, there was a change in the teaching mode from face-to-face to online teaching. It was especially challenging for teachers to motivate students to learn through distance learning. This shift in teaching mode also lowered student-student and student-teacher interactions. In this project, a biochemistry courseware, Metabolism Metro (Adventure Mode), was designed which aimed to motivate students learning metabolic pathways in a fun and interactive way. The Metabolism Metro (Adventure Mode) was based on a role-play game design and contained quizzes with questions covering the topics of carbohydrate, lipid, protein, and nucleotide metabolism. In order to enhance the courseware usage, and to encourage collaborative learning, the class teacher had organized a prize-winning competition. Students could join the competition either individually or in groups to complete the game. By including challenging quizzes in the courseware, some students tended to form groups to solve the problems together. They either discussed the problems over the phone, or sat together and answered the questions using one computer. Besides reading the lecture notes, the students also tried to read the textbook, found the answers from the internet, or sought help from the class teacher. Students were attracted to self-learn metabolic pathways to complete the quizzes.
期刊介绍:
The aim of BAMBED is to enhance teacher preparation and student learning in Biochemistry, Molecular Biology, and related sciences such as Biophysics and Cell Biology, by promoting the world-wide dissemination of educational materials. BAMBED seeks and communicates articles on many topics, including:
Innovative techniques in teaching and learning.
New pedagogical approaches.
Research in biochemistry and molecular biology education.
Reviews on emerging areas of Biochemistry and Molecular Biology to provide background for the preparation of lectures, seminars, student presentations, dissertations, etc.
Historical Reviews describing "Paths to Discovery".
Novel and proven laboratory experiments that have both skill-building and discovery-based characteristics.
Reviews of relevant textbooks, software, and websites.
Descriptions of software for educational use.
Descriptions of multimedia materials such as tutorials on various aspects of biochemistry and molecular biology.