Research Article
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An Alternative Approach to Distance Education: Lightboard Design

Year 2024, Volume: 7 Issue: 2, 133 - 145, 31.12.2024

Abstract

New approaches to distance learning can reshape the interaction between students and teachers, and these different approaches can help students engage with the course. This study examines the design and impact of using lightboards in distance learning instead of the commonly used whiteboards in traditional teaching. The aim of the study is to design, develop, implement and evaluate the Lightboard technology to alleviate the challenges in distance learning processes. For this purpose, the challenges in designing the lightboard technology as well as the reactions of students when they first encountered this technology were examined. The study was conducted using a design-based research design. 35 students took part in the study as part of the “Introduction to Scientific Research Methods” course at a university. These students watched a video recorded with a light board and then shared their opinions. An online evaluation form was used as a data collection tool and the qualitative data was evaluated using content analysis. The results show that Lightboard technology increases students' interest in class, makes knowledge more permanent, and has a positive impact on class participation. The integration of visual and auditory elements made the course material more engaging and comprehensible. This approach enhanced students' understanding of the presented content and improved their ability to retain the information. However, it was also noted that the technology presented some difficulties, such as ergonomic problems, the quality of the material used and the lighting. Students reported that the light board enhanced visual expression and facilitated the learning process. However, due to the one-way flow of information, some students were at risk of passive learning. In conclusion, it is emphasized that Lightboard technology can be used as an effective tool in distance learning, but the difficulties encountered in the design and implementation phases should be eliminated. The codes derived from student expressions are as follows: The Power of Visual Expression, Making Knowledge Permanent, Increasing Attention and Focus, Passive Learning Trap, and Tutorial and Facilitating Understanding.

Ethical Statement

In this study, all ethical guidelines have been adhered to, with confirmation that participants participated voluntarily and the confidentiality of the data has been ensured.

Supporting Institution

TÜBİTAK 2209 - University Students Research Project

Project Number

1919B012208060

References

  • Alpay, N., Ratvasky, P., Koehler, N., LeVally, C. & Washington, T. (2017). Redesigning a statistical concepts course to improve retention, satisfaction, and success rates of non-traditional undergraduate students. Journal of Educational Multimedia and Hypermedia, 26(1), 5-27. Retrieved from https://www.learntechlib.org/p/174175/
  • Bindumadhavan, K., & Anjani Srikanth, K. (2022, February). New Technologies and Education: Transparent Lightboard. In Proceedings of the International Conference on Best Innovative Teaching Strategies (ICON-BITS 2021).
  • Birdwell, J. A., & Peshkin, M. (2015). Capturing technical lectures on lightboard. 2015 ASEE Annual Conference & Exposition. Retrieved from https://peer.asee.org/capturing-technical-lectures-on-lightboard.pdf
  • Fidan, M., & Debbag, M. (2023). Comparing the effectiveness of instructional video types: an in-depth analysis on pre-service teachers for online learning. International Journal of Human–Computer Interaction, 39(3), 575-586. https://doi.org/10.1080/10447318.2022.2041905
  • Fiorella, L., Stull, A., Kuhlmann, S., & Mayer, R. E. (2019). Instructor presence in video lectures: the role of dynamic drawings, eye contact, and instructor visibility. Journal of Educational Psychology, 111(7),1162–1171. Retrieved from https://psycnet.apa.org/buy/2018-58542-001
  • Fiorella, L., Stull, A. T., Kuhlmann, S., & Mayer, R. E. (2020). Fostering generative learning from video lessons: Benefits of instructor-generated drawings and learner-generated explanations. Journal of Educational Psychology, 112(5), 895. https://doi.org/10.1037/edu0000408
  • Gedik, N., Gunes, E. P. U., Beylik, A., Cabuk, A., & Tiras, E. (2023). Portable lightboard use in online higher education. Open Praxis, 15(2), 162-174. https://doi.org/10.55982/openpraxis.15.2.548
  • Kennewell, S., & Beauchamp, G. (2007). The features of interactive whiteboards and their influence on learning. Learning, Media and Technology, 32(3), 227-241. https://doi.org/10.1080/17439880701511073
  • Lubrick, M., Zhou, G., & Zhang, J. (2019). Is the future bright? The potential of lightboard videos for student achievement and engagement in learning. EURASIA Journal of Mathematics, Science and Technology Education, 15(8), 1-14. https://doi.org/10.29333/ejmste/108437
  • Mayer, R. E. (2009). Multimedia learning (2nd ed.). New York: Cambridge University Press.
  • Mayer, R. E., Fiorella, L., & Stull, A. (2020). Five ways to increase the effectiveness of instructional video. Educational Technology Research and Development, 68(3), 837-852. https://doi.org/10.1007/s11423-020-09749-6
  • McCorkle, S., & Whitener, P. (2020). The Lightboard: Expectations and Experiences. International Journal of Designs for Learning, 11(1), 75-83. https://doi.org/10.14434/ijdl.v11i1.24642
  • Rulino, L., & Febriana, N. (2022). Lightboard: Inexpensive and Easy-To-Develop Media for Making Nursing Practicum Videos. International Journal of Nursing Education, 14(2), 191-198. https://doi.org/10.37506/ijone.v14i2.18020
  • Özarslan, Y. (2015). Lightboard Solution for Distance Education. Published in the Proceedings of the Presented at the Academic Informatics Conference 2015.
  • Papadakis, S., Kravtsov, H. M., Osadchyi, V. V., Marienko, M. V., Pinchuk, O. P., Shyshkina, M. P., . Sokolyuk, O.M., Mintii, I.S., Vakaliuk, T.A., Striuk, A. M. & Semerikov, S.O. (2023). Revolutionizing education: using computer simulation and cloud-based smart technology to facilitate successful open learning.
  • Perkins, R. J., & Woods, B. P. (2023). An Office-Space Lightboard Studio for Creating Professional Pre-Lecture Videos with Increased Student Engagement. Journal of Chemical Education, 100(9), 3645-3651, https://doi.org/10.1021/acs.jchemed.3c00554
  • Robbins, P., & Aydele, M. (2009). A short primer on situated cognition. In P. Robbins & M. Aydede (Eds.), The Cambridge handbook of situated cognition (pp. 3–10). New York: Cambridge University Press.
  • Sola‐Guirado, R. R., Comino, F., & Castro‐Triguero, R. (2024). Enhancing self‐regulated learning in engineering education with lightboard videos as a support tool. Computer Applications in Engineering Education, 32(5), 1-12. https://doi.org/10.1002/cae.22756
  • Stull, A., Fiorella, L., Gainer, M., & Mayer, R. E. (2018). Using transparent whiteboards to boost learning from online STEM lectures. Computers & Education, 20, 146–159. https://doi.org/10.1016/j.compedu.2018.02.005
  • Wang, F. & Hannafin, M.J. (2005). Design-based research and technology-enhanced learning environments. Educational Technology Research and Development, 53(4), 5-23. https://doi.org/10.1007/BF02504682
Year 2024, Volume: 7 Issue: 2, 133 - 145, 31.12.2024

Abstract

Project Number

1919B012208060

References

  • Alpay, N., Ratvasky, P., Koehler, N., LeVally, C. & Washington, T. (2017). Redesigning a statistical concepts course to improve retention, satisfaction, and success rates of non-traditional undergraduate students. Journal of Educational Multimedia and Hypermedia, 26(1), 5-27. Retrieved from https://www.learntechlib.org/p/174175/
  • Bindumadhavan, K., & Anjani Srikanth, K. (2022, February). New Technologies and Education: Transparent Lightboard. In Proceedings of the International Conference on Best Innovative Teaching Strategies (ICON-BITS 2021).
  • Birdwell, J. A., & Peshkin, M. (2015). Capturing technical lectures on lightboard. 2015 ASEE Annual Conference & Exposition. Retrieved from https://peer.asee.org/capturing-technical-lectures-on-lightboard.pdf
  • Fidan, M., & Debbag, M. (2023). Comparing the effectiveness of instructional video types: an in-depth analysis on pre-service teachers for online learning. International Journal of Human–Computer Interaction, 39(3), 575-586. https://doi.org/10.1080/10447318.2022.2041905
  • Fiorella, L., Stull, A., Kuhlmann, S., & Mayer, R. E. (2019). Instructor presence in video lectures: the role of dynamic drawings, eye contact, and instructor visibility. Journal of Educational Psychology, 111(7),1162–1171. Retrieved from https://psycnet.apa.org/buy/2018-58542-001
  • Fiorella, L., Stull, A. T., Kuhlmann, S., & Mayer, R. E. (2020). Fostering generative learning from video lessons: Benefits of instructor-generated drawings and learner-generated explanations. Journal of Educational Psychology, 112(5), 895. https://doi.org/10.1037/edu0000408
  • Gedik, N., Gunes, E. P. U., Beylik, A., Cabuk, A., & Tiras, E. (2023). Portable lightboard use in online higher education. Open Praxis, 15(2), 162-174. https://doi.org/10.55982/openpraxis.15.2.548
  • Kennewell, S., & Beauchamp, G. (2007). The features of interactive whiteboards and their influence on learning. Learning, Media and Technology, 32(3), 227-241. https://doi.org/10.1080/17439880701511073
  • Lubrick, M., Zhou, G., & Zhang, J. (2019). Is the future bright? The potential of lightboard videos for student achievement and engagement in learning. EURASIA Journal of Mathematics, Science and Technology Education, 15(8), 1-14. https://doi.org/10.29333/ejmste/108437
  • Mayer, R. E. (2009). Multimedia learning (2nd ed.). New York: Cambridge University Press.
  • Mayer, R. E., Fiorella, L., & Stull, A. (2020). Five ways to increase the effectiveness of instructional video. Educational Technology Research and Development, 68(3), 837-852. https://doi.org/10.1007/s11423-020-09749-6
  • McCorkle, S., & Whitener, P. (2020). The Lightboard: Expectations and Experiences. International Journal of Designs for Learning, 11(1), 75-83. https://doi.org/10.14434/ijdl.v11i1.24642
  • Rulino, L., & Febriana, N. (2022). Lightboard: Inexpensive and Easy-To-Develop Media for Making Nursing Practicum Videos. International Journal of Nursing Education, 14(2), 191-198. https://doi.org/10.37506/ijone.v14i2.18020
  • Özarslan, Y. (2015). Lightboard Solution for Distance Education. Published in the Proceedings of the Presented at the Academic Informatics Conference 2015.
  • Papadakis, S., Kravtsov, H. M., Osadchyi, V. V., Marienko, M. V., Pinchuk, O. P., Shyshkina, M. P., . Sokolyuk, O.M., Mintii, I.S., Vakaliuk, T.A., Striuk, A. M. & Semerikov, S.O. (2023). Revolutionizing education: using computer simulation and cloud-based smart technology to facilitate successful open learning.
  • Perkins, R. J., & Woods, B. P. (2023). An Office-Space Lightboard Studio for Creating Professional Pre-Lecture Videos with Increased Student Engagement. Journal of Chemical Education, 100(9), 3645-3651, https://doi.org/10.1021/acs.jchemed.3c00554
  • Robbins, P., & Aydele, M. (2009). A short primer on situated cognition. In P. Robbins & M. Aydede (Eds.), The Cambridge handbook of situated cognition (pp. 3–10). New York: Cambridge University Press.
  • Sola‐Guirado, R. R., Comino, F., & Castro‐Triguero, R. (2024). Enhancing self‐regulated learning in engineering education with lightboard videos as a support tool. Computer Applications in Engineering Education, 32(5), 1-12. https://doi.org/10.1002/cae.22756
  • Stull, A., Fiorella, L., Gainer, M., & Mayer, R. E. (2018). Using transparent whiteboards to boost learning from online STEM lectures. Computers & Education, 20, 146–159. https://doi.org/10.1016/j.compedu.2018.02.005
  • Wang, F. & Hannafin, M.J. (2005). Design-based research and technology-enhanced learning environments. Educational Technology Research and Development, 53(4), 5-23. https://doi.org/10.1007/BF02504682
There are 20 citations in total.

Details

Primary Language English
Subjects Instructional Technologies, Educational Technology and Computing
Journal Section Articles
Authors

Fatih Erdoğdu 0000-0003-1022-8570

Onur Gürsel 0009-0007-8789-6944

Project Number 1919B012208060
Publication Date December 31, 2024
Submission Date August 26, 2024
Acceptance Date December 7, 2024
Published in Issue Year 2024 Volume: 7 Issue: 2

Cite

APA Erdoğdu, F., & Gürsel, O. (2024). An Alternative Approach to Distance Education: Lightboard Design. International Journal of Computers in Education, 7(2), 133-145.