Obada David O, Bako Raymond B, Ahmed Abdulkarim S, Anafi Fatai O, Eberemu Adrian O, Dodoo-Arhin David, Oyedeji Ayodeji N, Salami Kazeem A, Samuel Bassey O, Samuel Emmanuel T, Obada Israel B
Department of Mechanical Engineering, Ahmadu Bello University, Zaria, Nigeria.
Africa Centre of Excellence on New Pedagogies in Engineering Education, Ahmadu Bello University, Zaria, Nigeria.
Educ Inf Technol (Dordr). 2023;28(4):4649-4672. doi: 10.1007/s10639-022-11330-y. Epub 2022 Oct 21.
Research and academia have been recently affected by the Coronavirus (COVID-19), and physical classrooms and laboratory experiments have been affected significantly due to the recent laboratory closures. This has led to innovative approaches to curb this problem. To address these difficulties in teaching bioengineering related courses that is of significant interest to students of the Faculty of Engineering in Ahmadu Bello University, Zaria, Nigeria, and of course, useful for engineering-based higher education institutions (HEI), a transitional pedagogy: Communicate, Active, Collaborate, Problem-based Solving, Learning and Assessment (CACPLA), which encompasses blended learning, was developed as a new teaching and learning strategy. In this study, we show that this new strategy can initiate a steady transition from physical classrooms to full online instruction for some subjects in engineering. This method has been trialled as an exercise for a module as part of an envisioned biomedical engineering degree programme which can be integrated with local industries and research institutions in sub-Saharan Africa. The teaching materials and environment were carefully designed and 253 students of third and final year classes participated as the experimental group. Also, the effect of critical thinking, pre-lecture, and post lecture on the overall performance of the students was assessed. Two questionnaires were designed for data collection, (a) for technical questions, (b) for receptiveness. The result of a student survey suggests favourable reception of the teaching methodology, which aided their understanding of the general bioengineering concept as applied to the materials chemistry and mechanical measurements context. It was noticed that 80% of the students indicated that the blended learning method was sufficient in achieving the learning outcomes of the study. The method is envisioned as a useful and sustainable complement to traditional teaching pedagogies and workshops due to the convenience and relatively high accessibility to Zoom and Google Meet Apps which can be readily employed without incurring significant costs.
研究和学术界最近受到了冠状病毒(COVID-19)的影响,由于最近实验室关闭,实体教室和实验室实验受到了显著影响。这导致了创新方法来解决这个问题。为了解决尼日利亚扎里亚阿哈穆杜·贝洛大学工程学院学生非常感兴趣的生物工程相关课程教学中的这些困难,当然,这对以工程为基础的高等教育机构(HEI)也很有用,一种过渡性教学法:沟通、主动、协作、基于问题的解决、学习和评估(CACPLA),它涵盖混合学习,被开发为一种新的教学和学习策略。在本研究中,我们表明这种新策略可以启动从实体教室到工程某些学科的完全在线教学的平稳过渡。作为设想的生物医学工程学位课程一部分的一个模块的练习,这种方法已经进行了试验,该课程可以与撒哈拉以南非洲的当地产业和研究机构整合。精心设计了教材和环境,253名三年级和四年级的学生作为实验组参与。此外,还评估了批判性思维、课前和课后对学生整体表现的影响。设计了两份问卷用于数据收集,(a)用于技术问题,(b)用于接受程度。学生调查结果表明对教学方法的接受度良好,这有助于他们理解应用于材料化学和机械测量背景的一般生物工程概念。注意到80%的学生表示混合学习方法足以实现该研究的学习成果。由于使用Zoom和Google Meet应用程序方便且相对容易访问,且无需产生大量成本,该方法被设想为对传统教学法和研讨会的一种有用且可持续的补充。