Virtual laboratories for engineering and science education in open and distance learning
Vol 9, Issue 1, 2025
Abstract
Higher education (HE) consists of both conventional and non-conventional methods of learning. Open and Distance Learning (ODL) is a non-conventional system where teachers (often referred to as facilitators) are physically not present. The conduct of practical in engineering and science education using ODL remains a challenge due to inadequate technology and the dispersion of the students, which results in a graduate skills gap in ODL programs. There is a possibility of using a cloud computing set-up, as well as platforms for the creation of simulated virtual practical settings (virtual laboratories-VLs), which could be accessible by ODL engineering and science and education-based students notwithstanding their locations. This paper adds to existing knowledge on VLs and discusses these inadequacies in engineering and science education with emphasis on the enhancement of online and collaborative learning, as well as the possible laboratory (lab) requirements. In addition, the paper highlights contemporary trends and some issues in VLs and remote labs.
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Abdullah, H. (2018). An integrated best practices framework for online teaching, research, and community engagement within an Open Distance Learning (ODL) context. Proceedings - 5th IEEE International Conference on MOOCs, Innovation and Technology in Education, MITE 2017, 57–62. https://doi.org/10.1109/MITE.2017.00016.
Abiodun, A. O., Ukhurebor, K.E., Alamu, F., Ayodeji, I., Adeyemo, A., Emuoyibofarhe, O.N., Evbuomwan, L, Ebhote, G.O., Odiwo, W.O., Egenti, G., & Talabi, A.A. (2024). Factors Associated with Poor Perceptions of the COVID-19 Pandemic in Africa. Journal of Infrastructure, Policy, and Development, 8(8), 4770.
Al-Mawee, W., Kwayu, K. M., & Gharaibeh, T. (2021). Student’s perspective on distance learning during COVID-19 pandemic: A case study of Western Michigan University, United States. International Journal of Educational Research Open, 2, 100080. https://doi.org/10.1016/J.IJEDRO.2021.100080.
Amadasun, O. O., Onasoga, B., Aliyu, A., Ukhurebor, K. E., Abiodun, A. O., Ashawa, M. (2024). A Virtual Machine-based e-Malpractice Mitigation Strategy in e-Assessment and e-Learning using System Resources and Machine Learning Techniques. Journal of Autonomous Intelligence, 7(5), 1-15.
Asanga, M. P., Essiet, U. U., Ukhurebor, K. E., Afolorunso, A., & Hussaini, P. (2023). Social media and academic performance: A survey research of senior secondary school students in Uyo, Nigeria. International Journal of Learning, Teaching and Educational Research, 22(2), 323-337.
Baher, J. (1999). Articulate virtual labs in thermodynamics education: A multiple case study. Journal of Engineering Education, 88(4), 429-434.
Balamuralithara, B., & Woods, P. C. (2009). Virtual laboratories in engineering education: The simulation lab and remote lab. Computer Applications in Engineering Education, 17(1), 108-118.
Chen, S. H., Chen, R., Ramakrishnan, V., Hu, S. Y., Zhuang, Y. K. C. C., Ko, C. C., & Chen, B. M. (1999, July). Development of remote laboratory experimentation through Internet. In Proceedings of the 1999 IEEE Hong Kong symposium on robotics and control (Vol. 2, pp. 756-760). Hong Kong.
Chowdhury, H., Alam, F., & Mustary, I. (2019). Development of an innovative technique for teaching and learning of laboratory experiments for engineering courses. Energy Procedia, 160, 806–811. https://doi.org/10.1016/j.egypro.2019.02.154.
Elme, L., Jørgensen, M. L., Dandanell, G., Mottelson, A., & Makransky, G. (2022). Immersive virtual reality in STEM: Is IVR an effective learning medium and does adding self-explanation after a lesson improve learning outcomes? Educational Technology Research and Development, 70(5), 1601–1626. https://doi.org/10.1007/s11423-022-10139-3.
Engzell, P., Frey, A., & Verhagen, M. D. (2021). Learning loss due to school closures during the COVID-19 pandemic. Proc. Natl. Acad. Sci. USA, 118, e2022376118.
Feisel, L. D., & Rosa, A. J. (2005). The role of the laboratory in undergraduate engineering education. Journal of engineering Education, 94(1), 121-130.
Hodge, H., Hinton, H. S., & Lightner, M. (2001). Virtual circuit laboratory. Journal of Engineering Education, 90(4), 507-511.
Garg, S., Aggarwal, D., Upadhyay, S.K., Kumar, G., & Singh, G. (2020). Effect of COVID-19 on school education system: challenges and opportunities to adopt online teaching and learning. Humanities & Social Sciences Reviews, 8(6), 10-17.
Hsu, T. S., TAng, K. Y., & Lin, T. C. (2023). Trends and hot topics of STEM and STEM education: A co-word analysis of literature published in 2011–2020. Science & Education. https://doi.org/10.1007/s11191-023-00419-6.
Hussaini, A.R., Ibrahim, S., Ukhurebor, K.E., Jokthan, G., Ndunagu, J.N., & Abiodun, O.A., Leonard, F.E., Eneche, B.M., Nalwadda, D. (2023). The influence of information and communication technology in the teaching and learning of Physics. International Journal of Learning, Teaching and Educational Research, 22(6), 98-120.
Kapilan, N., Vidhya, P., & Gao, X. Z. (2021). Virtual laboratory: A boon to the mechanical engineering education during covid-19 pandemic. Higher Education for the Future, 8(1), 31-46.
Kumar, V., Alshazly, H., Idris, S.A., & Bourouis, S. (2021). Evaluating the impact of COVID-19 on society, environment, economy, and education. Sustainability, 13(24), 13642.
Mai-inji, A.Y., Babatope, L.O., Ukhurebor, K.E., Adesina, A.O., Nwaocha, V., Sinan, I.I., Nwankwo, U.C., Lyada, E., Ashawa, M. (2024). E-Learning Systems Application Programming Interfaces Security Management. Journal of Autonomous Intelligence, 7(5), 1-10.
Martinez, P. J., Aguilar, F. J., & Ortiz, M. (2020). Transitioning from Face-to-Face to Blended and Full Online Learning Engineering Master’s Program. IEEE Transactions on Education, 63(1), 2–9. https://doi.org/10.1109/TE.2019.2925320.
Ndunagu, J.N., Ukhurebor, K.E., & Adesina, A. (2023). Virtual laboratories for STEM in nigerian higher education: The National Open University of Nigeria learners’ perspective. In: Elmoazen, R., López-Pernas, S., Misiejuk, K., Khalil, M., Wasson, B., Saqr, M (Eds.), Proceedings of the Technology-Enhanced Learning in Laboratories Workshop (TELL 2023), 3393, 38-48.
Ndunagu, J.N., Ukwandu, E., Ezema, M.E., Olebara, C., Ugwu, M.C., Igwe, J.S., Oyewola, D. O. & Fapohunda,S. E. (2022). Future of remote learning: The virtual laboratory perspective. University of Ibadan Journal of Science and Logics in ICT Research, 8(1). 55-68.
Nnadozie, E., Jerome, A., & Aregbeyen, O. (2023). Perspective chapter: Sustaining university education for and national development in Nigeria. IntechOpen. doi: 10.5772/intechopen.109454.
Nneji, C.C., Urenyere, R., Ukhurebor, K.E., Ajibola, S., & Onaseso, O.O. (2022). The impacts of COVID-19-induced online lectures on the teaching and learning process: An Inquiring study of junior secondary schools in Orlu, Nigeria. Frontiers in Public Health, 10, 1054536.
Nur Izzuddin Izham, M.A.A., Ahmad Uzir, N., Anuar, N., & Khairuddin, I.E. (2022). Factors that Contribute to Students’ Attrition in Open and Distance Learning (ODL) Environment: A systematic review. 25th International Conference on Information Science, ICIS2022, Royal Chulan, Penang, 19-21 Sep 2022, E-BPJ, 7(SI10), 103-109.
Nurdini, Y., Wulan, A.R., & Diana, S. (2020). Assessment for learning through written feedback to develop 21st century critical thinking skills on plantae learning. Journal of Physics: 1521(4).
Obada, D. O., Bako, R. B., Ahmed, A. S., Anafi, F.O., Oyedeji, A.N., Eberemu, A.O., Dodoo-Arhin, D., Samuel, E.T., Salami, K.A., Bassey O. Samuel, B.O., & Obada, I.B. (2023). Teaching bioengineering using a blended online teaching and learning strategy: a new pedagogy for adapting classrooms in developing countries. Education and Information Technologies, 28, 4649–4672. https://doi.org/10.1007/s10639-022-11330-y.
Papademetriou, C., Anastasiadou, S., Konteos, G., & Papalexandris, S. (2022). COVID-19 pandemic: The impact of the social media technology on higher education. Educ. Sci., 12, 261.
Peterson, G. D., & Feisel, L. D. (2002). E-Learning: The challenge for engineering education.
Saidi, R. M., Sharip, A. A., Abd Rahim, N. Z., Zulkifli, Z. A., & Md Zain, S. M. (2021). Evaluating Students’ Preferences of Open and Distance Learning (ODL) Tools. Procedia Computer Science, 179, 955–961. https://doi.org/10.1016/J.PROCS.2021.01.085.
Sari, U., Duygu, E., Sen, Ö. F., & Kirindi, T. (2020). The effects of STEM education on scientific process skills and STEM awareness in simulation based inquiry learning environment. Journal of Turkish Science Education, 17(3), 387–405. https://doi.org/10.36681/tused.2020.34.
Sellberg, C., Nazari, Z., & Solberg, M. (2024). Virtual Laboratories in STEM Higher Education: A Scoping Review. Nordic Journal of Systematic Reviews in Education, 2, 58–75.
Shabunina, A., Shakhova, V., & Sorokina, L. (2021). Emotional Resilience of Students in the Context of Distance Learning; Emotional Resilience of Students in the Context of Distance Learning. 2021 5th International Conference on Education and Multimedia Technology (ICEMT). https://doi.org/10.1145/3481056.
Sinan, I.I., Nwoacha, V., Ukhurebor, K.E., Degila, J., Onashoga, A., Enoyoze, E., Emmanuel, L. (2024a). Data Architectures and the Prevalent Cyberattacks Encountered by West African Institutions in the COVID-19 Era. Journal of Infrastructure, Policy, and Development, 8(8), 3736.
Sinan, I. I., Tong, V. V. T., Nwoacha, V., Degila, J., Onashoga, A., Oaihimire, I. O., Ukhurebor, K. E. (2024b). Enhancing Security and Privacy in Educational Environments: A Secure Grade Distribution Scheme with Moodle Integration. Journal of Infrastructure, Policy, and Development, 8(7), 3737.
Son, N. T., Anh, B. N., Tuan, K. Q., Son, N. B., Son, N. H., & Jaafar, J. (2020). An Analysis of the Effectiveness of Emergency Distance Learning under COVID-19. ACM International Conference Proceeding Series, 136–143. https://doi.org/10.1145/3437802.3437826.
Stanistreet, P., Elfert, M., & Atchoarena, D. (2021). Education in the age of COVID-19: Implications for the future. Int Rev Educ 67, 1–8.
Stefanovic, M. (2013). The objectives, architectures and effects of distance learning laboratories for industrial engineering education. Computers & Education, 69, 250-262.
Steinemann, M. A., Zimmerli, S., Jampen, T., & Braun, T. (2002). Global architecture and partial prototype implementation for enhanced remote courses. Computers and Advanced Technology in Education (CATE 2002), Cancun, Mexico.
Steinemann, M. A., & Braun, T. (2002). Remote versus traditional learning in a computer networks laboratory. Communications and Computer Networks (CCN 2002), Cambridge, USA, 503-507.
Tat, O., Au, S., Li, K., & Wong, T.M. (2018). Student persistence in open and distance learning: success factors and challenges. Asian Association of Open Universities Journal, 13(2), 191–202. https://doi.org/10.1108/AAOUJ-12-2018-0030.
Torres, R.A.O., & Cruz, R.A.O. (2022). Remote learning: Challenges and opportunities for educators and students in the new normal. Anatolian Journal of Education, 7(1), 83-92.
Ukhurebor, K.E., Efanodor-Obeten, H.O., Otsupius, A.I., Jokthan, G., Opateye, J.A., Wada, Z.B., Sinan, I.I., Bello, A., Ahmed, M., Balogun, V.A., & Jatta, L. (2024a). The Sustainability of University Education toward National Development: The Nigerian Perspective. Journal of Infrastructure, Policy and Development, 8(5), 2959.
Ukhurebor, K.E., Oaihimire, I.E., Wada, Z.B., Jokthan, G., Inegbedion, J., Ofulue, C., Efanodor-Obeten, H.O., Otsupius, A.I., Tanglang, N., Mai-inji, A.Y.., & Ashawa, M. (2024b). A Perspective Overview of the Influence of the COVID-19 Pandemic on the Educational Sector. Journal of Infrastructure, Policy and Development, 8(5), 2955.
Umenne, P., & Hlalele, S. (2020). Evaluation of the effectiveness of virtual laboratories for electronics in the open distance learning context. 2020 International Conference on Artificial Intelligence, Big Data, Computing and Data Communication Systems (icABCD). Durban, South Africa.
United Nations Report (2022). Science, Technology, Engineering and Mathematics (STEM) as an enabler for development and peace. Working Group. Policy Paper.
Utami, S., Winarni, I., Handayani, S.K., & Zuhairi, F.R. (2020). When and who dropouts from distance education? Turkish Online Journal of Distance Education, 21(2), 19.
Uzoma, F.O. (2018). The Role of open and distance education in national development of Nigeria. International Journal of Innovative Psychology & Social Development, 6(4), 21-30.
Van Cappelle, F., Chopra, V., Ackers, J., & Gochyyev, P. (2021). An analysis of the reach and effectiveness of distance learning in India during school closures due to COVID-19. International Journal of Educational Development, 85, 102439. https://doi.org/10.1016/J.IJEDUDEV.2021.102439.
Wu, D. (2020). Exploration of English Teaching Methods Based on Computer Corpus in Distance and Open Education Environment. 2020 International Conference on Computers, Information Processing and Advanced Education (CIPAE), 10–13. https://doi.org/10.1109/CIPAE51077.2020.00011.
Yılmaz, A. B., & Karataş, S. (2022). Why do open and distance education students drop out?Views from various stakeholders. International Journal of Educational Technology in Higher Education, 19(28).
Zuhairi, A., Karthikeyan, N., & Priyadarshana, S. T. (2019). Supporting students to succeed in open and distance learning in the Open University of Sri Lanka and Universitas Terbuka Indonesia. Asian Association of Open Universities Journal, 15(1), 13–35. https://doi.org/10.1108/aaouj-09-2019-0038.
DOI: https://doi.org/10.24294/jipd9054
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