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ARDUINO IN TEACHING LABS: A BIBLIOMETRIC ANALYSIS

Cilt: 12 Sayı: 2 28 Ağustos 2026
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ARDUINO IN TEACHING LABS: A BIBLIOMETRIC ANALYSIS

Öz

Arduino microprocessors are increasingly used in teaching laboratories as a technology that attracts attention with its superior features and ease of use. In this study, it is aimed to carry out a bibliometric analysis to examine the studies using Arduino in teaching laboratories and to assist researchers by predicting the direction of future studies. This study used bibliometric and content analysis. By scanning the WoS and Scopus databases 404 studies were reached and according to various exclusion criteria 215 of them were included in this study. Biblioshiny software was used for analysis, and the studies were also examined with content analysis based on technology-based learning. It is found that Arduino in Teaching Lab. (ATL) research has a high growth rate and the publications in this field mostly have two or more authors, the country with the most publications is the USA. In the studies, it was seen that the majority of the studies aimed at developing the laboratory setups/devices/equipment available on the market at a lower cost, and the majority of studies were carried out in the engineering laboratory with university students. It can be concluded that the use of Arduino in science laboratories is important both in terms of eliminating concerns about laboratory costs and creating opportunities in the learning process. This study focuses on the use of technologies like Arduino in education. The findings presented in this study can be considered as guiding principles for future research.

Anahtar Kelimeler

Arduino, bibliometric analysis, science teaching, laboratory

Destekleyen Kurum

There is no supporting institution for this study.

Etik Beyan

This study is a bibliometric analysis study and therefore does not require Ethics Committee approval.

Kaynakça

  1. Arduino. (2022, January 25). What is Arduino? Arduino Documentation. https://docs.arduino.cc/learn/starting-guide/whats-arduino (reached at 10.07.2024). Aria, M. & Cuccurullo, C. (2017). A brief introduction to bibliometrix. Journal of Informetrics, 11 (4), 959-975. https://doi.org/10.1016/j.joi.2017.08.007
  2. Bradford, S.C. (1985). Sources of information on specific subjects. Journal of Information Science, 10 (4), 173–180.
  3. Bretz, S.L. (2019). Evidence for the importance of laboratory courses. Journal of Chemical Education, 96 (2), 193-195. https://doi.org/10.1021/acs.jchemed.8b00874
  4. Cakir, N. K. & Guven, G. (2019). Arduino-assisted robotic and coding applications in science teaching: pulsimeter activity in compliance with the 5E learning model. Science Activities, 56 (2), 42-51. https://doi.org/10.1080/00368121.2019.1675574
  5. Castillo-Vilcatoma, D. A., Loarte, S. J., Fernandez-Chillcce, A. A., Pastrana, E. C. & Pastrana, R. Y. (2022). Designing and fabrication of a low-cost dip-coater for rapid production of uniform thin films. Quimica Nova, 45 (1), 97-100. https://doi.org/10.21577/0100- 4042.20170805
  6. Chagas, A.M., Prieto-Godino, L. L., Arrenberg, A. B. & Baden, T. (2017). The € 100 lab: a 3Dprintable open-source platform for fluorescence microscopy, optogenetics, and accurate temperature control during behaviour of zebrafish, drosophila, and caenorhabditis elegans. PloS Biology, 15 (7), e2002702. http://doi.org/10.1371/journal.pbio.2002702
  7. Chaudry, A. M. (2020). Using arduino uno microcontroller to create interest in physics. The Physics Teacher, 58 (6), 418-421. http://doi.org/10.1119/10.0001841
  8. Cvjetkovic, V. M. & Stankovic, U. (2017). Arduino based physics and engineering remote laboratory. International Journal of Online and Biomedical Engineering (iJOE), 13 (1), 87–105. https://doi.org/10.3991/ijoe.v13i01.6375
  9. Fidai, A., Capraro, M. M. & Capraro, R.M. (2020). Scratch-ing computational thinking with arduino: a meta-analysis. Thinking Skills and Creativity, 38, 100726. https://doi.org/10.1016/j.tsc.2020.100726
  10. Furlong, A.J. & Pegg, M.J. (2023). Low-cost heat exchanger benches for remote operation, Education for Chemical Engineers, 44, 14-23. https://doi.org/10.1016/j.ece.2023.04.002

Kaynak Göster

APA
Atabek-Yiğit, E., & Şenöz, A. B. (2026). ARDUINO IN TEACHING LABS: A BIBLIOMETRIC ANALYSIS. Uluslararası Eğitim Bilim ve Teknoloji Dergisi, 12(2), 95-126. https://doi.org/10.47714/uebt.1890914
AMA
1.Atabek-Yiğit E, Şenöz AB. ARDUINO IN TEACHING LABS: A BIBLIOMETRIC ANALYSIS. UEBT. 2026;12(2):95-126. doi:10.47714/uebt.1890914
Chicago
Atabek-Yiğit, Elif, ve Ahmet Burak Şenöz. 2026. “ARDUINO IN TEACHING LABS: A BIBLIOMETRIC ANALYSIS”. Uluslararası Eğitim Bilim ve Teknoloji Dergisi 12 (2): 95-126. https://doi.org/10.47714/uebt.1890914.
EndNote
Atabek-Yiğit E, Şenöz AB (01 Ağustos 2026) ARDUINO IN TEACHING LABS: A BIBLIOMETRIC ANALYSIS. Uluslararası Eğitim Bilim ve Teknoloji Dergisi 12 2 95–126.
IEEE
[1]E. Atabek-Yiğit ve A. B. Şenöz, “ARDUINO IN TEACHING LABS: A BIBLIOMETRIC ANALYSIS”, UEBT, c. 12, sy 2, ss. 95–126, Ağu. 2026, doi: 10.47714/uebt.1890914.
ISNAD
Atabek-Yiğit, Elif - Şenöz, Ahmet Burak. “ARDUINO IN TEACHING LABS: A BIBLIOMETRIC ANALYSIS”. Uluslararası Eğitim Bilim ve Teknoloji Dergisi 12/2 (01 Ağustos 2026): 95-126. https://doi.org/10.47714/uebt.1890914.
JAMA
1.Atabek-Yiğit E, Şenöz AB. ARDUINO IN TEACHING LABS: A BIBLIOMETRIC ANALYSIS. UEBT. 2026;12:95–126.
MLA
Atabek-Yiğit, Elif, ve Ahmet Burak Şenöz. “ARDUINO IN TEACHING LABS: A BIBLIOMETRIC ANALYSIS”. Uluslararası Eğitim Bilim ve Teknoloji Dergisi, c. 12, sy 2, Ağustos 2026, ss. 95-126, doi:10.47714/uebt.1890914.
Vancouver
1.Elif Atabek-Yiğit, Ahmet Burak Şenöz. ARDUINO IN TEACHING LABS: A BIBLIOMETRIC ANALYSIS. UEBT. 01 Ağustos 2026;12(2):95-126. doi:10.47714/uebt.1890914