Article 2024

Empowering virtual reality with feedback and reflection in hands-on learning: Effect of learning engagement and higher-order thinking

Journal of Computer Assisted Learning
Journal · Vol. 40 · Issue 4 · pp. 1413-1427
Abstract

Background: Virtual reality (VR) offers significant potential for hands-on learning environments by providing immersive and visually stimulating experiences. Interacting with such environments can bring numerous benefits to learning, including enhanced engagement, knowledge construction, and higher-order thinking. However, many current VR studies in hands-on learning tend to utilise one-way learning materials, limiting participants' ability to interact with and reflect on their actions and learning experiences. Moreover, these studies often neglect to assess learners' capacity to transfer their skills from VR learning to real-world scenarios. Therefore, this study aims to investigate participants' engagement, learning outcomes, higher-order thinking, and their ability to apply acquired skills in real-world contexts. Method and Objective: Participants were immersed in a hands-on learning environment in VR, where they received feedback and engaged in reflection during the learning process. This study recruited 68 university students to participate in the experiment, employing a quasi-experimental design. Participants experienced learning units both with and without reflection on the feedback. The theme of these learning units was related to embedded systems, encompassing topics such as the assembly of embedded components and Python programming. The investigation aimed to assess whether reflection in VR could enhance cognitive levels, engagement, real-world hands-on tasks abilities, and higher-order thinking. Results: The research results indicate that in the VR hands-on learning environment, participants engage in reflection through the provided feedback, effectively enhancing their engagement, cognitive levels, and hands-on task abilities. Simultaneously, it also successfully assists participants in developing problem-solving skills and critical thinking in higher-order thinking. Conclusions: Participants actively engaged in reflection on their own learning tasks and actions within the hands-on learning environment, enabling them to develop a deeper understanding of the learning material and enhance their real-world hands-on tasks abilities, we encourage the integration of reflection strategies in VR learning environments for hands-on learning, as they can yield positive benefits for learners. © 2024 John Wiley & Sons Ltd.

Keywords

Author Keywords

Virtual reality Feedback Reflection Engagement hands-on learning higher-order thinking

Index Keywords

Author Affiliations
Graduate School of Technological and Vocational Education, National Yunlin University of Science and Technology, Douliou, Yunlin, Taiwan
Department of Engineering Science, National Cheng Kung University, Tainan, Taiwan
Funding & Acknowledgements
National Science and Technology Council, NSTC
Grant: 111‐2628‐H‐224‐001‐MY3, NSTC 111-2628-H-224-001-MY3, NSTC 110-2511-H-224-003-MY3, NSTC 109-2511-H-006-011-MY3, NSTC 110-2511-H-006-008-MY3
Funding text 1: We are extremely grateful to all who participated in this study. This research is supported by the National Science and Technology Council, Taiwan, R.O.C. under grant nos. NSTC 109\u20102511\u2010H\u2010006\u2010011\u2010MY3; NSTC 110\u20102511\u2010H\u2010006\u2010008\u2010MY3; NSTC 110\u20102511\u2010H\u2010224\u2010003\u2010MY3; NSTC 111\u20102628\u2010H\u2010224\u2010001\u2010MY3.; Funding text 2: We are extremely grateful to all who participated in this study. This research is supported by the National Science and Technology Council, Taiwan, R.O.C. under grant nos. NSTC 109-2511-H-006-011-MY3; NSTC 110-2511-H-006-008-MY3; NSTC 110-2511-H-224-003-MY3; NSTC 111-2628-H-224-001-MY3.
National Science and Technology Council, NSTC
Funding text 1: We are extremely grateful to all who participated in this study. This research is supported by the National Science and Technology Council, Taiwan, R.O.C. under grant nos. NSTC 109\u20102511\u2010H\u2010006\u2010011\u2010MY3; NSTC 110\u20102511\u2010H\u2010006\u2010008\u2010MY3; NSTC 110\u20102511\u2010H\u2010224\u2010003\u2010MY3; NSTC 111\u20102628\u2010H\u2010224\u2010001\u2010MY3.; Funding text 2: We are extremely grateful to all who participated in this study. This research is supported by the National Science and Technology Council, Taiwan, R.O.C. under grant nos. NSTC 109-2511-H-006-011-MY3; NSTC 110-2511-H-006-008-MY3; NSTC 110-2511-H-224-003-MY3; NSTC 111-2628-H-224-001-MY3.
References 10 References
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