Augmented Reality: The Effect in Students’ Achievement, Satisfaction and Interest in Science Education

Norazilawati Abdullah, Vijaya Letchumy Baskaran, Zainun Mustafa, Siti Rahaimah Ali, Syaza Hazwani Zaini

Abstract


The purpose of this study was to analyse the students' views and the effects of using Augmented Reality (AR) in learning Science. Given that Science education emphasizes the understanding of the physical and the natural world, the science lesson is basically received through systematic observation and experimentation. The introduction of abstract concepts in the science lesson is implemented gradually by scaffolding the concrete understanding during primary schooling. The potential use of AR, as a teaching tool in facilitating the process of understanding concrete facts, could be beneficial in science education. The introductory topic, "Senses," was chosen; since it is directly related to the students’ anatomy; and it cultivates their interest in Science. A quasi-experimental methodology was utilized to examine the impact of AR on primary school students’ academic achievement, interest, and science-process skills in this study. During the science lesson, the experimental group was exposed to AR stimulation, whereas the control group was not; and rather it learnt through the conventional method. A set of post-test questions was conducted, in order to collect the data on student achievement and science process skills, while a set of questionnaires was employed, in order to identify the students’ interest. The data were analysed by using descriptive statistics and the t-test. In this study, the real world had been augmented by using virtual information, thereby providing new possibilities for science education to become more meaningful. The findings indicated that AR had a significant favourable effect on all three aspects of the experimental group's achievement, interest, and science-process skills.

https://doi.org/10.26803/ijlter.21.5.17


Keywords


academic achievement; Augmented Reality; interest; Science-Process Skills; Science Education

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References


Ables, A. (2017). Augmented and Virtual Reality. Proceedings of the 2017 ACM SIGUCCS Annual Conference, 61–65. https://doi.org/10.1145/3123458.3123464

Ahmad, H., Zainuddin, N. M. M., Ali, R., Maarop, N., Yusoff, R. C. M., & Hassan, W. A. W. (2018). Augmented reality to memorize Al-Quran for hearing impaired students: a preliminary analysis. Journal of Fundamental and Applied Sciences, 10(2S), 91-102.

Ahmad, F. A. R. O. B. (2021). The Effect of Augmented Reality in Improving Visual Thinking in Mathematics of 10th-Grade Students in Jordan. International Journal of Advanced Computer Science and Applications, 12(5). https://doi.org/10.14569/IJACSA.2021.0120543

Akçay?r, M., & Akçay?r, G. (2017). Advantages and challenges associated with augmented reality for education: A systematic review of the literature. Educational Research Review, 20, 1–11. https://doi.org/10.1016/j.edurev.2016.11.002

Alalwan, N., Cheng, L., Al-Samarraie, H., Yousef, R., Ibrahim Alzahrani, A., & Sarsam, S. M. (2020). Challenges and Prospects of Virtual Reality and Augmented Reality Utilization among Primary School Teachers: A Developing Country Perspective. Studies in Educational Evaluation, 66, 100876. https://doi.org/10.1016/j.stueduc.2020.100876

Alkhattabi, M. (2017). Augmented reality as E-learning tool in primary schools’ education: Barriers to teachers’adoption. Int. J. Emerg. Technol. Learn. (IJET) 2017, 12, 91–100.

Alizkan, U., Wibowo, F. C., Sanjaya, L., Kurniawan, B. R., & Prahani, B. K. (2021). Trends of Augmented Reality in Science Learning: A Review of the Literature. Journal of Physics: Conference Series, 2019(1), 012060. https://doi.org/10.1088/1742-6596/2019/1/012060

Al-Azawi, R., Al-Faliti, F., & Al-Blushi, M. (2016). Educational Gamification vs. Game Based Learning: ComparativeStudy. Int. J. Innov. Manag. Technol., 7, 132–136.

Arici, F., Yildirim, P., Caliklar, ?., & Yilmaz, R. M. (2019). Research trends in the use of augmented reality in science education: Content and bibliometric mapping analysis. Computers & Education, 142, 103647. https://doi.org/10.1016/j.compedu.2019.103647

Azmah, N., Yusuff, N., Rahaman, N. M., Abdullah, N., Ridzuan, P. D., Kebangsaan, S., & Terap, S. (2014). Primary school pupils’ acquisition of science process skills via hands-on activities and authentic assessment. Jurnal Pendidikan Sains & Matematik Malaysia, 4(1), 15–28.

Barrett, T. J., Stull, A. T., Hsu, T. M., & Hegarty, M. (2015). Constrained interactivity for relating multiple representations in science: When virtual is better than real. Computers & Education, 81, 69–81. https://doi.org/10.1016/j.compedu.2014.09.009

Beyoglu, D., Hursen, C., & Nasiboglu, A. (2020). Use of mixed reality applications in teaching of science. Education and Information Technologies, 25(5), 4271–4286. https://doi.org/10.1007/s10639-020-10166-8

Bitter, G., & Corral, A. (2014). The pedagogical potential of augmented reality apps. Int. J. Eng. Sci. Invent., 3, 13–17.

Bouck, E. C., Satsangi, R., Doughty, T. T., & Courtney, W. T. (2014). Virtual and Concrete Manipulatives: A Comparison of Approaches for Solving Mathematics Problems for Students with Autism Spectrum Disorder. Journal of Autism and Developmental Disorders, 44(1), 180–193. https://doi.org/10.1007/s10803-013-1863-2

Bozkurt, A. (2018). Augmented Reality With Mobile and Ubiquitous Learning. In Virtual and Augmented Reality (pp. 603–617). IGI Global. https://doi.org/10.4018/978-1-5225-5469-1.ch029

Ciolacu, M., Svasta, P. M., Berg, W., & Popp, H. (2018). Education 4.0 for tall thin engineers in a data-driven society. 2017 IEEE 23rd International Symposium for Design and Technology in Electronic Packaging, SIITME 2017 - Proceedings, 2018-January, pp. 432- 437

Constan, M., & Ciubotaru, ?. (2017). Virtual Reality And Augmented Reality In Education. Virtual Reality and Augmented Reality in Education, pp. 1-12.

Chan, K. Y. G., Tan, S. L., Hew, K. F. T., Koh, B. G., Lim, L. S., & Yong, J. C. (2017). Knowledge for Games, Games for Knowledge: Designing a Digital Roll-and-Move Board Game for a Law of Torts Class. Res. Pract. Technol.Enhanc. Learn, 12, 1–20.

Chear, S. L. S. (2017). Pengajaran dan pembelajaran melalui aplikasi Whatsapp dan Telegram di universiti swasta. Jurnal Pendidikan Malaysia, 42(2), 87-97.

Chien, C. H., Chen, C. H., & Jeng, T. S. (2010). An interactive augmented reality system for learning anatomy structure. In Proceedings of the International Multiconference of Engineers and Computer Scientists, International Association of Engineers: Hong Kong, China, 2010; Vol. 1, pp. 17–19.

Chu, H. C., Chen, J. M., Hwang, G. J., & Chen, T. W. (2019). Effects of formative assessment in an augmented reality approach to conducting ubiquitous learning activities for architecture courses. Univers. Access Inform. Soc., 18, 221–230.

Curriculum Development Division. (2014). Kemahiran Berfikir Aras Tinggi: Aplikasi di Sekolah. In Kementerian Pendidikan Malaysia. Curriculum Development Division, Ministry of Education, Malaysia.

Daineko, Y., Ipalakova, M., Tsoy, D., Shaipiten, A., Bolatov, Z., & Chinibayeva, T. (2018). Development of Practical Tasks in Physics with Elements of Augmented Reality for Secondary Educational Institutions (pp. 404–412). https://doi.org/10.1007/978-3-319-95270-3_34

Dalim C. S. C., Kolivand H., Kadhim H., Sunar M. S., Billinghurst M. (2017). Factors influencing the acceptance of augmented reality in education: A review of the literature. Journal of Computer Science, 13(11), 581-589.

Deng, L., Tian, J., Cornwell, C., Phillips, V., Chen, L., & Alsuwaida, A. (2019, July 26–31). Towards an Augmented Reality-Based Mobile Math Learning Game System. In Proceedings of the International Conference on Human-Computer Interaction, Orlando, FL, USA: Springer: Cham, Switzerland, pp. 217–225.

Delello, J. A. (2014). Insights from pre-service teachers using science-based augmented reality. Journal of Computers in Education, 1(4), 295–311. http://doi.org/10.1007/s40692-014-0021-y

Diegmann, P., Schmidt-Kraepelin, M., Eynden, S., & Basten, D. (2015). Benefits of augmented reality in educational environments - a systematic literature review.

Ding, M. (2017). Augmented reality in museums. Museums & augmented reality–A collection of essays from the Arts management and technology laboratory, 1-15.

Di Serio, A., Ibanez, B. M., & Kloos, D. C. (2013). Impact of an augmented reality system on students’ motivation for a visual-art courses. Computers and Education, 68, 586–596.

Du?nser, A., Walker, L., Horner, H., & Bentall, D. (2012). Creating interactive physics education books with augmented reality. Proceedings of the 24th Australian Computer-Human Interaction Conference, (pp. 107–114). https://doi.org/10.1145/ 2414536.2414554

Fidan, M., & Tuncel, M. (2018). Augmented reality in education researches (2012–2017): A content analysis. Cypriot Journal of Educational Sciences, 13(4), 577–589. https://doi.org/10.18844/cjes.v13i4.3487

Giraudeau, P., Olry, A., Roo, J. S., Fleck, S., Bertolo, D., Vivian, R., & Hachet, M. (2019, November 10). CARDS: A Mixed-Reality System for Collaborative Learning at School. In Proceedings of the 2019 ACM International Conference on Interactive Surfaces and Spaces, Deajon, Korea, pp. 55–64.

Guangli, Z., Gang, Z., Ming, L., Shuqin, Y., Yali, L., & Xiongfei, Y. (2018). Prediction of the fourth industrial revolution based on time series. (2018) ACM International Conference Proceeding Series, pp. 65-69

Gultepe, N. (2016). High school science teachers' views on science process skills. International Journal of Environmental and Science Education, 11(5), 779-800.

Hendajani, F., Hakim, A., Lusita, M. D., Saputra, G. E., & Ramadhana, A. P. (2018). 3D animation model with augmented reality for natural science learning in elementary schools. Journal of Physics: Conference Series, 1013, 012154. https://doi.org/10.1088/1742-6596/1013/1/012154

Hikmah, N., Yamtinah, S., Ashadi, & Indriyanti, N. Y. (2018). Chemistry teachers’ understanding of science-process skills in relation to science-process skills assessment in chemistry learning. Journal of Physics: Conference Series, 1022(1). https://doi.org/10.1088/1742-6596/1022/1/012038

Huang, K. T., Ball, C., Francis, J., Ratan, R., Boumis, J., & Fordham, J. (2019). Augmented versus virtual reality in education: An exploratory study examining science knowledge retention when using augmented reality/virtual reality mobile applications. Cyberpsychol. Behav. Soc. Netw., 22, 105–110.

Ibanez, M.-B., Di Serio, A., Villaran, D., & Delgado-Kloos, C. (2019). Impact of Visuo-spatial Abilities on Perceived Enjoyment of Students towards an AR-Simulation System in a Physics Course. 2019 IEEE Global Engineering Education Conference (EDUCON), 995–998. https://doi.org/10.1109/EDUCON.2019.8725185

Ismail, A., Festiana, I., Hartini, T. I., Yusal, Y., & Malik, A. (2019, February). Enhancing students’ conceptual understanding of electricity using learning media-based augmented reality. In Journal of Physics: Conference Series (Vol. 1157, No. 3, p. 032049). IOP Publishing.

Jessup S. A., Schneider T. R., Alarcon G. M., Ryan T. J., & Capiola A. (2019). The Measurement of the Propensity to Trust Technology, 79-92.

Kalogiannakis, M., Papadakis, S., & Zourmpakis, A.-I., (2021). Gamification in Science Education. A Systematic Review of the Literature. Education Sciences, 11(1), 22. https://doi.org/10.3390/educsci11010022

Karakus, M., Ersozlu, A., & Clark, A. C. (2019). Augmented Reality Research in Education: A Bibliometric Study. EURASIA Journal of Mathematics, Science and Technology Education, 15(10). https://doi.org/10.29333/ejmste/103904

Kearney, K. G., Starkey, E. M., & Miller, S. R. (2020, August 17). Digitizing Dissection: A Case Study on Augmented Reality and Animation in Engineering Education. Volume 3: 17th International Conference on Design Education (DEC). https://doi.org/10.1115/DETC2020-22773

Kelpšien?, M. (2020). The Usage of Books Containing Augmented Reality Technology in Preschool Education. Pedagogika, 138(2), 150–174. https://doi.org/10.15823/p.2020.138.9

Kementerian Pendidikan Malaysia. (2019). SPI Bil 6 Tahun 2019 Pelaksanaan KSSM Menengah Atas dan Pakej Mata Pelajaran Tahun 2020.pdf (pp. 1–14). https://www.moe.gov.my/pekeliling/3054-spi-bil-6-tahun-2019-pelaksanaan-kssm-menengah-atas-dan-pakej-mata-pelajaran-tahun-2020/file

Kim, S., Song, K., Lockee, B., Burton, J., Kim, S., Song, K., Lockee, B., & Burton, J. (2018). Gamification Cases in STEM Education. In Gamification in Learning and Education; Springer: Cham, Switzerland, pp. 125–139.

Khazanchi, R., Khazanchi, R., & Khazanchi, P. (2019, March 18). Exploring Kahoot! Learning through Gaming in Secondary Science Education. In Proceedings of the Society for Information Technology & Teacher Education International Conference, Las Vegas, NV, USA. AACE: Waynesville, NC, USA, pp. 18731879.

Klahr, D., Triona, L. M., & Williams, C. (2007). Hands on what? The relative effectiveness of physical versus virtual materials in an engineering design project by middle school children. Journal of Research in Science Teaching, 44(1), 183–203. https://doi.org/10.1002/tea.20152

Kuang, Y., & Bai, X. (2019). The feasibility study of augmented reality technology in early childhood education. 14th International Conference on Computer Science and Education, ICCSE 2019, Iccse, 172–175. https://doi.org/10.1109/ICCSE.2019.8845339

Kuleto, V., P., M. I., Stanescu, M., Rankovi?, M., Ševi?, N. P., P?un, D., & Teodorescu, S. (2021). Extended Reality in Higher Education, a Responsible Innovation Approach for Generation Y and Generation Z. Sustainability, 13(21), 11814. https://doi.org/10.3390/su132111814

Kumar, A., & Mantri, A. (2021). Evaluating the attitude towards the intention to use ARITE systems for improving laboratory skills by engineering educators. Education and Information Technologies. https://doi.org/10.1007/s10639-020-10420-z

Kumar S., Devi S., & Puranam C. (2015) Augmented Reality in Enhancing Qualitative Education. International Journal of Computer Applications, 132(14), 41-45.

Law, E. L.-C., & Heintz, M. (2021). Augmented reality applications for K-12 education: A systematic review from the usability and user experience perspective. International Journal of Child-Computer Interaction, 30, 100321. https://doi.org/10.1016/j.ijcci.2021.100321

Le, H., & Nguyen, M. (2020). An Online Platform for Enhancing Learning Experiences with Web-Based Augmented Reality and Pictorial Bar Code. In Augmented Reality in Education; Springer: Cham, Switzerland, pp. 45–57.

Leung, W., & Blauw, F. (2020). An Augmented Reality Approach to Delivering a Connected Digital-Forensics Training Experience. http://doi.org/10.1007/978-981-15-1465-4_36

López-Belmonte, J., Moreno-Guerrero, A.-J., López-Núñez, J.-A., & Hinojo-Lucena, F.-J. (2020). Augmented reality in education. A scientific mapping in Web of Science. Interactive Learning Environments, 1–15. https://doi.org/10.1080/10494820.2020.1859546

Loganathan, P., Talib, C., Thoe, N., Aliyu, F., & Zawadski, R. (2019) Implementing Technology Infused Gamification in Science Classrooms: A Systematic Review and Suggestions for Future Research. Learn. Sci. Math, 14,60–73.

Lue, I. L. P. (2020). Keberkesanan modul lab-madi terhadap kemahiran penghujahan, kemahiran proses sains dan penguasaan konsep resapan dan osmosis. Tesis Dr. Fal., Fakulti Pendidikan, Universiti Kebangsaan Malaysia

Marti?n-Gutie?rrez, J., Fabiani, P., Benesova, W., Meneses, M. D., & Mora, C. E. (2015). Augmented reality to promote collaborative and autonomous learning in higher education. Comput. Hum. Behav., 51, 752–761.

Mellado, V., Borrachero, A. B., Bri?gido, M., Melo, L.V., Da?vila, M. A., Can?ada, F., Conde, M. C., Costillo, E., Cubero, J., Esteban, R. (2014). Emotions in Science Teaching. Ensen. las Cienc. 32, 11–36.

Miller, M. R., Jun, H., Herrera, F., Yu Villa, J., Welch, G., & Bailenson, J. N. (2019). Social interaction in augmented reality. PLOS ONE, 14(5), e0216290. https://doi.org/10.1371/journal.pone.0216290

Naese, J. A., McAteer, D., Hughes, K. D., Kelbon, C., Mugweru, A., & Grinias, J. P. (2019). Use of Augmented Reality in the Instruction of Analytical Instrumentation Design. Journal of Chemical Education, 96(3), 593–596. https://doi.org/10.1021/acs.jchemed.8b00794

Norazilawati, A., Zainun, M., Mahizer, H., Amir, H., Dawi, M. C. M., Lilia, H., Salmiza S, Che, S. H. A., & Che, A. K. (2021). Primary School Science Teachers Creativity and Practice in Malaysia. International Journal of Learning, Teaching and Educational Research, 20(1), 346-364. https://doi.org/10.26803/ijlter.20.7.19

Nordin, N., & Daud, M. Y. (2020). Level of Readiness of Daily Secondary School Students for the Use of Augmented Reality in Form 2 Science Textbooks. Universal Journal of Educational Research, 8(11A), 17–24. https://doi.org/10.13189/ujer.2020.082103

Nor Hasnida, C. M. G., Norazilawati, A., Syaza, H. Z., & Mahizer, H. (2020). Student Teachers' Conception of Feedback Within An Assessment For Learning Environment: Link to Pupil Aspiration. Jurnal Cakrawala Pendidikan, 1(39), 54-64. https://doi:10.21831/cp.v39i1.25483

Nurul, A. H., & Ariffin, S. (2022). A proposed concept for mobile learning financial literacy at Malaysian elementary schools. Journal of ICT in Education, 9(1) 25-31. https://doi.org/10.37134/jictie.vol9.1.3.2022

Ozdamli, F., & Karagozlu, D. (2018). Preschool Teachers’ Opinions on the Use of Augmented Reality Application in Preschool Science Education / Mišljenja nastavnika predškolskog odgoja o upotrebi aplikacije proširene stvarnosti u predškolskom obrazovanju u podru?ju prirodnih znanosti. Croatian Journal of Education - Hrvatski ?asopis Za Odgoj i Obrazovanje, 20(1). https://doi.org/10.15516/cje.v20i1.2626

Papadopoulos, T., Evangelidis, K., Kaskalis, T. H., Evangelidis, G., & Sylaiou, S. (2021). Interactions in Augmented and Mixed Reality: An Overview. Applied Sciences, 11(18), 8752. https://doi.org/10.3390/app11188752

Patrick, M., Klinker, G., & Tonnis, M. (2009). Augmented Reality for teaching spatial relations. Conference of the International Journal of Arts & Sciences, 1–8. http://far.in.tum.de/pub/maierp2009ijas/maierp2009ijas

Pellas, N., Fotaris, P., Kazanidis, I., & Wells, D. (2019). Augmenting the learning experience in primary and secondary school education: A systematic review of recent trends in augmented reality game-based learning. Virtual Real, 23, 329–346.

Petit, M. (2013). Comparing Concrete to Virtual Manipulatives in Mathematics Education. ScienceLib, 5, 5(January). http://www.sciencelib.fr/Comparing-Concrete-to-Virtual

Pipattanasuk, T., & Songsriwittaya, A. (2020). Development of an Instructional Model with Augmented Reality Technology for Vocational Certificate Students. International Journal of Instruction, 13(3), 539-554.

Plunkett, K. N. (2019). A Simple and Practical Method for Incorporating Augmented Reality into the Classroom and Laboratory. Journal of Chemical Education, 96(11), 2628–2631. https://doi.org/10.1021/acs.jchemed.9b00607

Quintero, E., Salinas, P., Gonza?lez-Mendi?vil, E., & Rami?rez, H. (2015) Augmented reality app for calculus: A proposal for the development of spatial visualization. Procedia Comput. Sci., 75, 301–305.

Rauf, R. A. A., Rasul, M. S., Mansor, A. N., Othman, Z., & Lyndon, N. (2013). Inculcation of science-process skills in a science classroom. Asian Social Science 9(8), 47–57. http://doi.org/10.5539/ass.v9n8p47

Reischauer, G. (2018). Industry 4.0 as policy-driven discourse to institutionalize innovation systems in manufacturing. Technological Forecasting and Social Change, 132, pp. 26-33

Saadon, N. F. S. M., Ahmad, I., & Hanapi, A. N. C. P. (2020). The Implementation of Augmented Reality in Increasing Student Motivation: Systematic Literature Review. IOP Conference Series: Materials Science and Engineering, 854, 012043. https://doi.org/10.1088/1757-899X/854/1/012043

Sembak, S., & Abdullah, N. (2017). Pengetahuan dan pelaksanaan kemahiran proses sains dalam kalangan guru. Jurnal Pendidikan Sains & Matematik Malaysia, 7(1), 56–67. http://www.myjurnal.my/filebank/published_article/55507/JPSMM5.pdf

Siti, R. A., & Yap, J L. (2018). The effectiveness of Bar Model in solving Standard four Descriptive Mathematical problems. Jurnal Pendidikan Sains Dan Matematik Malaysia, 8 (2), 35-44. https://doi.org/10.37134/jpsmm.vol8.2.4

Shatto, B., & Erwin, K. (2016). Moving on from millennials: Preparing for generation Z. The Journal of Continuing Education in Nursing, 47(6), 253-254.

Shirai, N., Kondo, L., & Imura, T. (2020). Effects of visual information presented by augmented reality on children’s behaviour. Scientific Reports, 10(1), 6832. https://doi.org/10.1038/s41598-020-63820-z

Tomi, A. Bin, & Rambli, D. R. A. (2013). An interactive mobile-augmented reality magical playbook: Learning numbers with the thirsty crow. Procedia Computer Science, 25, 123–130. http://doi.org/10.1016/j.procs.2013.11.015

Turiman, P., Omar, J., Daud, A. M., & Osman, K. (2012). Fostering the 21st Century Skills through Scientific Literacy and Science Process Skills. Procedia - Social and Behavioral Sciences 59, 110–116. http://doi.org/10.1016/j.sbspro.2012.09.253

Trory, A. (2016). Embodied programming: Supporting the move from concrete to abstract. 2016 IEEE Symposium on Visual Languages and Human-Centric Computing (VL/HCC), 262–263. https://doi.org/10.1109/VLHCC.2016.7739707

Va?zquez, C., Xia, L., Aikawa, T., & Maes, P. (2018, July 9-13). Words in motion: Kinesthetic language learning in virtual reality. In Proceedings of the 2018 IEEE 18th International Conference on Advanced Learning Technologies (ICALT), Mumbai, pp. 272–276.

Vidakis, N., Barianos, A. K., Trampas, A. M., Papadakis, S., Kalogiannakis, M., Vassilakis, K. (2019). Generating Education In-Game Data: The Case of an Ancient Theatre Serious Game. In CSEDU 2019—Proceedings of the 11th International Conference on Computer-Supported Education; SciTePress: Heraklion, Greece, Vol. 1, pp. 36–43.

Wang, Y., Anne, A., & Ropp, T. (2016). Applying the technology-acceptance model to understand aviation students’ perceptions towards augmented reality maintenance training instruction. International Journal of Aviation, Aeronautics, and Aerospace, 3(4), 1-13. https://doi.org/10.15394/ijaaa.2016.11

Wong Kung Teck. 2019. Measuring Learning Outcomes from Computer Usage among Mathematics Science and English Language Teachers (64 - 88). Jurnal Pendidikan Bitara UPSI, 2, 64-88.

Wu, H.-K., Lee, S. W.-Y., Chang, H.-Y., & Liang, J.-C. (2013). Current status, opportunities and challenges of augmented reality in education. Computers & Education, 62, 41–49. https://doi.org/10.1016/j.compedu.2012.10.024

Xiao, J., Cao, M., Li, X., & Hansen, P. (2020). Assessing the Effectiveness of the Augmented Reality Courseware for Starry Sky Exploration. International Journal of Distance Education Technologies, 18(1), 19–35. https://doi.org/10.4018/IJDET.2020010102

Ye Yang, Z. (2020). Modern piano teaching technologies: Accessibility, effectiveness, the need for pedagogues. ?lkö?retim Online, 1812–1819. https://doi.org/10.17051/ilkonline.2020.735171

Yoon, S., Anderson, E., Lin, J., & Elinich, K. (2017). How augmented reality enables conceptual understanding in challenging science content. Educational Technology & Society, 20(1), 156-168.

Young-Yong, K., Jun-Sik, K., & Jung-Min, P. (2015). Video-based augmented reality for immersive virtual-reality systems. 2015 12th International Conference on Ubiquitous Robots and Ambient Intelligence (URAI), 177–181. https://doi.org/10.1109/URAI.2015.7358859

Yusoff, R. M., Jamaludin, A. S., & Hameed, A. H. D. A. (2015, October). Tahap kesediaan pelajar dalam penggunaan teknologi, pedagogi, dan kandungan (TPACK) dalam pembelajaran kurikulum di IPT. In Proceeding of the 3rd International Conference on Artificial Intelligence and Computer Science (AICS2015) (pp. 12-13).

Zuckerberg, M. (2021). Meta (Facebook) Connect 2021 Metaverse Event Transcript. Founder’s Letter. https://about.fb.com/news/2021/10/founders-letter/


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