Digital-Based Photoelectric Effect Practicum Toolkit: Curriculum and Student Analysis

Authors

Dewi Hikmah Marisda , Ana Dhiqfaini Sultan , Syamsuriana Basri , Irma Sakti Tahir , Nurjannah

DOI:

10.29303/jppipa.v9i11.5014

Published:

2023-11-25

Issue:

Vol. 9 No. 11 (2023): November

Keywords:

Arduino uno, Curriculum analysis, Modern physics, Photoelectric effect, Practicum tools

Research Articles

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How to Cite

Marisda, D. H., Sultan, A. D., Basri, S., Tahir, I. S., & Nurjannah, N. (2023). Digital-Based Photoelectric Effect Practicum Toolkit: Curriculum and Student Analysis. Jurnal Penelitian Pendidikan IPA, 9(11), 9410–9415. https://doi.org/10.29303/jppipa.v9i11.5014

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Abstract

Physics education study programs at several private universities in South Sulawesi are still limited in implementing Modern Physics practicum. The implementation of Modern Physics practicum at College A is limited to three practicum units, while College B has never held a Modern Physics practicum. This is because college B does not yet have a modern physics laboratory and practicum unit. Therefore, researchers developed modern physics practical tools. The Modern Physics practicum device is designed using Arduino Uno which is equipped with a digital practicum module. The aim of this research is to describe the stages of definition in aspects of curriculum analysis, beginning and end, and student needs. This research is research and development using the 4D-Thiagarajan model. Research data was analyzed descriptively. The results of the research show that one of the important Modern Physics practicum contents according to course achievements is the Photoelectric Effect. It is hoped that the development of the Photoelectric Effects practicum equipment can become a learning medium for students and a precursor to the development of other Modern Physics practicum units at the two universities

References

Aiken, L. R. (1980). Content validity and reliability of single items or questionnaires. Educational and Psychological Measurement, 40(4), 955–959. https://doi.org/10.1177/001316448004000419

Aksakalli, A., Salar, R., & Turgut, U. (2021). Investigation of the reasons of negative perceptions of undergraduate students regarding the modern physics course. European Journal of Science and Mathematics Education, 4(1), 44–55. https://doi.org/10.30935/scimath/9452

Balta, N., & Eryılmaz, A. (2020). Development of Modern Physics Achievement Test: Validity and Reliability Study. The European Educational Researcher, 3(1), 29–38. https://doi.org/10.31757/euer.313

Berlian, L., Taufik, A. N., & Triyani, I. (2023). Need Analysis for Developing a Natural Science Learning Website with the Theme of Biotechnology in Improving Digital Literacy. Jurnal Penelitian Pendidikan IPA, 9(7), 4999–5006. https://doi.org/10.29303/jppipa.v9i7.2934

Darmaji, D., Kurniawan, D. A., & Irdianti, I. (2019). Physics education students’ science process skills. International Journal of Evaluation and Research in Education (IJERE), 8(2), 293. https://doi.org/10.11591/ijere.v8i2.16401

Ediyanto, E., Sunandar, A., Ramadhani, R. S., & Aqilah, T. S. (2022). Sustainable Instrument Development in Educational Research. Discourse and Communication for Sustainable Education, 13(1), 37–47. https://doi.org/10.2478/dcse-2022-0004

Febrian, A., Yennita, Y., & Ma’ruf, Z. (2021). The Need Analysis for E-Learning Based on Massive Open Online Course (MOOC) for High School Students. Jurnal Penelitian Pendidikan IPA, 7(4), 502–507. https://doi.org/10.29303/jppipa.v7i4.772

Hamzah, H., Sartika, D., & Agriawan, M. N. (2022). Development of Photoelectric Effect Learning Media based on Arduino Uno. Indones. Rev. Phys, 5(1), 8–15. https://doi.org/10.12928/irip.v5i1.5830

Imanda, R., Rahmi, A., Setiawaty, S., Dandina, A. D., & Humaira, N. (2022). Development of Chemistry Textbooks Based Scientific Approach in Efforts to Implement Prototype Curriculum at Schools. Jurnal Penelitian Pendidikan IPA, 8(6), 3153–3158. https://doi.org/10.29303/jppipa.v8i6.2317

Kan, ayse ulku, & Murat, A. (2020). Investigation of Prospective Science Teachers ’ 21st Century Skill Competence Perceptions and Attitudes Toward STEM. International Online Journal of Educational Sciences, 10(4), 251–272. Retrieved from https://iojes.net/?mod=makale_tr_ozet&makale_id=42378

Khasanah, A. N., Sajidan, S., & Widoretno, S. (2017). Effectiveness of critical thinking indicator-based module in empowering student’s learning outcome in respiratory system study material. Jurnal Pendidikan IPA Indonesia, 6(1), 187–195. Retrieved from https://doi.org/10.15294/jpii.v6i1.8490

King, D., Varsavsky, C., Belward, S., & Matthews, K. (2017). Investigating students’ perceptions of graduate learning outcomes in mathematics. International Journal of Mathematical Education in Science and Technology, 48(S1), S67–S80. https://doi.org/10.1080/0020739X.2017.1352044

Levrini, O., & Fantini, P. (2013). Encountering Productive Forms of Complexity in Learning Modern Physics. Science and Education, 22(8), 1895–1910. https://doi.org/10.1007/s11191-013-9587-4

Maria Umma, B., & Sucahyo, I. (2017). Percobaan Efek Fotolistrik Berbasis Mikrokontroller Dengan Led Rgb Sebagai Sumber Cahaya. Inovasi Fisika Indonesia, 6(3), 90–96. Retrieved from https://ejournal.unesa.ac.id/index.php/inovasi-fisika-indonesia/article/view/20553

Marisda, D H, Handayani, Y., & Rahmawati, R. (2020). The combination of interactive conceptual learning models and multimedia interactive to minimize misconceptions on the science content. In The 9th International Conference on Theoretical and Applied Physics (ICTAP), 1–8. https://doi.org/10.1088/1742-6596/1572/1/012069

Marisda, D. H., & Basri, S. (2022). Analyzing the Validity of Interactive Multimedia-based Learning on Acid Rain Content. KnE Social Sciences, 296-307. Retrieved from https://doi.org/10.18502/kss.v7i12.11534

Marisda, D. H., Rahmawati, R., Ma’ruf, M. R., & Bancong, H. (2023). Preliminary research on the development of digital hypercontent modules in mathematical physics subjects. In AIP Conference Proceedings, 2540(1). https://doi.org/10.1063/5.0105890

Michelini, M., Santi, L., & Stefanel, A. (2014). Teaching modern physics in secondary school. In Proceedings of Science, 1–10. https://doi.org/10.22323/1.224.0231

Nurlina, Marisda, D. H., Riskawati, Sultan, A. D., Sukmawati, & Akram. (2022). Assessment On Digitalization Of Basic Physics Courses: Need Analysis On The Use Of Digital-Based Assessment. Jurnal Pendidikan IPA Indonesia, 11(4), 531–541. https://doi.org/10.15294/jpii.v11i4.39191

Park, W., Yang, S., & Song, J. (2019). When Modern Physics Meets Nature of Science: The Representation of Nature of Science in General Relativity in New Korean Physics Textbooks. Science and Education, 28(9–10), 1055–1083. https://doi.org/10.1007/s11191-019-00075-9

Qian, W. (2023). On the Physical Process and Essence of the Photoelectric Effect. Journal of Applied Mathematics and Physics, 11(06), 1580–1597. https://doi.org/10.4236/jamp.2023.116104

Rezeqi, S., Brata, W. W. W., Handayani, D., & Gani, A. R. F. (2020). Analisis Kebutuhan Bahan Ajar Taksonomi Organisme Tingkat Rendah Terhadap Capaian Pembelajaran Berbasis KKNI. Jurnal Pelita Pendidikan, 8(2). https://jurnal.unimed.ac.id/2012/index.php/pelita/article/view/17697

Rianti, S., Akhsan, H., & Ismet, I. (2020). Development Modern Physics Digital Handout Based on Technology Literacy. Berkala Ilmiah Pendidikan Fisika, 8(1), 23–32. https://doi.org/10.20527/bipf.v8i1.7593

Riskawati, & Marisda, D. H. (2020). The Effectiveness of Experimental Method in Teaching Motion Topic at Senior High School Level. Jurnal Pendidikan Fisika Universitas Muhammadiyah Makassar, 8(1), 33–42. https://doi.org/10.26618/jpf.v8i1.3004

Roberts, R. E. (2020). Qualitative Interview Questions: Guidance for Novice Researchers. Qualitative Report, 25(9), 3185–3203. Retrieved from https://nsuworks.nova.edu/tqr/vol25/iss9/1/

Roulston, K., & Choi, M. (2018). Qualitative interviews. The SAGE handbook of qualitative data collection.

Saehana, S., Wahyono, U., Darmadi, I. W., Kendek, Y., & Widyawati, W. (2018). Development of website for studying modern physics. In Journal of Physics: Conference Series, 983. https://doi.org/10.1088/1742-6596/983/1/012052

Sitepu, B. P., & Lestari, I. (2018). Pelaksanaan Rencana Pembelajaran Semester dalam Proses Pembelajaran di Perguruan Tinggi. PERSPEKTIF Ilmu Pendidikan, 32(1), 43–51. Retrieved from http://journal.unj.ac.id/unj/index.php/pip/article/view/6697

Sugiyono. (2019). Metode Penelitian dan Pengembangan (Research and Development/R & D). Bandung: Penerbit Alfabeta.

Syafarina, G. A., & Setiawan, A. (2019). Perancangan Aplikasi Rencana Pembelajaran Semester (Rps) Untuk Meningkatkan Pencapaian Pembelajaran Bagi Dosen. Technologia: Jurnal Ilmiah, 10(4), 202. https://doi.org/10.31602/tji.v10i4.2362

Wahyu, T. A., Lufthansa, L., & Setiani, P. P. (2020). Analisis Kesesuaian Materi dengan Capaian Pembelajaran Lulusan pada Matakuliah Desain dan Strategi Pembelajaran. Prosiding Seminar Nasional IKIP Budi Utomo, 1(1), 524–528. https://doi.org/10.33503/prosiding.v1i01.1141

Yeşildağ Hasançevi, F., & Günel, M. (2013). College Students’ Perceptions toward the Multi Modal Representations and Instruction of Representations in Learning Modern Physics. Eurasian Journal of Educational Research, 53, 197–214. https://doi.org/10.14689/ejer.2013.53.11

Author Biographies

Dewi Hikmah Marisda, Muhammadiyah University of Makassar

Ana Dhiqfaini Sultan, muhammadiyah university of makassar

Physics Education

Syamsuriana Basri, Moeslim University of Maros

Physics Education

Irma Sakti Tahir, Moeslim University of Maros

Physics Education

Nurjannah, muhammadiyah university of makassar

Physics Education

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Copyright (c) 2023 Dewi Hikmah Marisda, Ana Dhiqfaini Sultan, Syamsuriana Basri, Irma Sakti Tahir, Nurjannah

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