Development of Physics Providers Based on Arduino Uno Assisted With Infrared Sensors on Viscosity Materials


  • (1) * Suprianto            Universitas Islam Madura, Indonesia  
            Indonesia

  • (2)  Fila Rofah            Universitas Islam Madura, Indonesia  
            Indonesia

  • (3)  El Indahnia Kamariyah            Universitas Islam Madura, Indonesia  
            Indonesia

  • (4)  Maimon Sumo            Universitas Islam Madura, Indonesia  
            Indonesia

    (*) Corresponding Author

Abstract

The aim of this research is to (1) produce an Arduino Uno-based physics teaching aid product with the help of an infrared sensor on viscosity materials, (2) to test the feasibility of the developed teaching aid, (3) to determine the practicality of the developed teaching aid, (4) to find out responses from students regarding the teaching aids developed. The model used in this development is the 4D development model of Definition (Define), Planning (Design), Development (Development) and Dissemination (Dissemination). The feasibility test was carried out by two material expert lecturers and two media expert lecturers, the feasibility test carried out by two material expert lecturers received a percentage score of 98% in the "Very Eligible" category, and the feasibility test carried out by the media expert lecturer received a percentage score of 94 .17% with the category "Very feasible". Distribution was carried out to teachers to assess practicality and students to obtain responses from students regarding the teaching aids being developed. The practicality score carried out by two physics teachers received a practicality percentage score of 94% in the "Very Appropriate" category and for responses from students, the average response percentage score was 93% in the "Very Practical" category. So it can be concluded that the Arduino Uno-based teaching aids assisted by infrared sensors for viscosity materials are very feasible and practical to use during learning.

Author Biographies

Suprianto, Universitas Islam Madura, Indonesia

Physics Education Departmen

Fila Rofah, Universitas Islam Madura, Indonesia

Physics Education Departmen

El Indahnia Kamariyah, Universitas Islam Madura, Indonesia

Physics Education Departmen

Maimon Sumo, Universitas Islam Madura, Indonesia

Physics Education Departmen

References

Af'idah, NA, Manaksia, OA, & Fitriyah, LA (2023). Practicality and Effectiveness of Lever Teaching Aids as Science Learning Media for Class VIII Middle School Students. Journal of Physics Education, 11(1), 55. https://Doi.Org/10.24127/Jpf.V11i1.7406

Annisah, S. (2014). Mathematics Learning Props. 11.

Azhar, Z. (2020). Development of Digital "5 In 1 Mechanics" Teaching Aids Based on the Atmega328 Microcontroller as a High School/Ma's Physics Learning Media. Journal of the Physics Alumni Association, 6(2), 60. Https://Doi.Org/10.24114/Jiaf.V6i2.18890

Br Depari, SS, Hamdani, D., & Medriati, R. (2024). Development of a Viscosity Demonstrator Using a Mini Reed Switch Magnetic Sensor Based on Arduino Uno. Journal of Physics Learning Research, 15(1), 18–30. https://Doi.Org/10.26877/Jp2f.V15i1.17461

Ewar, HA, Nasar, A., & Ika, YE (2023). Development of Geothermal Power Plant (Pltp) Teaching Equipment as a Physics Learning Media on Renewable Energy Source Material. Optics: Journal of Physics Education, 7(1), 128–139. https://Doi.Org/10.37478/Optika.V7i1.2777

Gupitasari, DN, Sumarni, W., & Wardani, S. (2019). Development of Waste-Based Distillation Teaching Aids to Improve Students' Psychomotor Skills.

Halim, C. (2021). Feasibility Test of Turmeric Based Litmus Paper as a Practical Teaching Tool for Chemistry Learning.

Hartono, YP (2021). Innovation of a Falling Ball Viscometer Based on the Arduino Arduini Mega 2560 Microcontroller with Parallax Data Acquisition (Plx Daq) Optimization. Technological Intuition And Art, 13(1).

Hasanah, U., & Nulhakim, L. (2015). Development of Learning Media for Animation Films as a Media for Learning the Concept of Photosynthesis. Journal of Science Research and Learning, 1(1), 91. Https://Doi.Org/10.30870/Jppi.V1i1.283

Kaltsum, HU (2017). Utilization of Educational Teaching Aids as Elementary School English Learning Media.

Kania, N. (2018). Props for Understanding the Concept of Fractions. 2(2).

Mellu, RNK, & Boimau, I. (ND). Muhammadiyah University of Makassar.

Nomleni, FT, & Manu, TSN (2018). Development of Audio Visual Media and Teaching Aids to Improve Concept Understanding and Problem Solving. Scholaria: Journal of Education and Culture, 8(3), 219–230. https://Doi.Org/10.24246/J.Js.2018.V8.I3.P219-230

Nurvitasari, S., & Admoko, S. (2019). Development of Viscosity Teaching Aids as a Physics Learning Media Using the Guided Discovery Learning Model in High Schools. 08.

Permatasari, A., Yuberti, Y., & Anggraini, W. (2019). Development of an Arduino Uno Based Sensor Light as a Physics Teaching Tool. Indonesian Journal of Science and Mathematics Education, 2(3), 380–387. https://Doi.Org/10.24042/Ijsme.V2i3.4364

Pratiwi, U., & Luthfia, A. (2023). Measuring Oil and Cooking Oil Viscosity Using an Arduino-Based Mini Reed Switch Magnetic Sensor. Orbita: Journal of Education and Physical Sciences, 9(2), 277. Https://Doi.Org/10.31764/Orbita.V9i2.17342

Rizki, S., Linuhung, N., & Dacholfany, M. I. (2016). Design research and development 4D model for developing mathematics teaching materials. In The First International Conference on Education ICONLEE 1(1). pp. 288-291).

Romadhon, N., Pratiwi, U., & Al Hakim, Y. (2019). The Effectiveness of a Viscosity Demonstrator Using an Arduino-Based Mini Reed Switch Magnetic Sensor to Improve Students' Analyzing Ability. Muslim Heritage, 4(2). https://Doi.Org/10.21154/Muslimheritage.V4i2.1765

Saputro, KA, Sari, CK, & Winarsi, S. (2021). Utilization of Concrete Objects to Improve Motivation and Mathematics Learning Outcomes in Elementary Schools. Basicedu Journal, 5(4), 1735–1742. https://Doi.Org/10.31004/Basicedu.V5i4.992

Setyowati, D., & Sucahyo, I. (2020). Development of viscosity teaching aids to train science process skills in high school students. 09.

Sugiyono. (2008). Quantitative, Qualitative and R&D Research Methods. Alphabet.

Siti Nurvitasari, PS (2019). Development of Viscosity Teaching Aids as a Physics Learning Media Using the Guided Discovery Learning Model in High Schools. Physics Education Innovation, 8(2).

Yunita Rahmani, DH (2022). Development of Basic Physics Experiment Tools 1 on Fluid Viscosity Material. Journal of Physics Learning Science, 1(2)

Zahro, F., Tri Suci Ambarwati, & Jijah Septianingrum. (2023). Effectiveness of Using the "Raft Boat" Teaching Media and Virtual Laboratory on Archimedes' Law Material. Journal of Education and Learning Sciences, 1(2), 66–76. https://Doi.Org/10.58706/Jipp.V1n2.P66-76

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Published
2025-05-31
 
Section
Articles