Main Article Content
Abstract
The purpose of this paper is to analyze the need for the development of wave practicum guidelines in the Physics Education study program at the University of Bengkulu. This study uses a direct survey method, interview techniques, and the distribution of online form-based questionnaires to students, practicum assistants, laboratory assistants, and lecturers. Based on the data obtained and analyzed, the results show that the Physics Education study program has not carried out practicums in the laboratory directly for a long time after the post-covid era, and the existing practicum guidelines have not been updated since the last curriculum change, while laboratory equipment has been updated, and students find it difficult to receive material due to the lack of guidance for direct wave practicums both in groups and independently, this is because students only do wave practicums through Phet Simulation, resulting in a lack of direct experience with the laboratory, and also assembling tools. Based on the results of the analysis, it was concluded that the need for the development of wave practicum guidelines based on the STEM approach to meet the practical needs of students in higher education.
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References
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References
(1). Tinggi DJP. Panduan Penyusunan Kurikulum Pendidikan Tinggi: MPK Pendidikan Kewarganegaraan. 2024;
(2). Susilawati S, Doyan A, Harjono A. Development of Learning Media for Wave Ripple Tanks with the Implementation of Guided Inquiry Models on Students’ Mastery of Concepts and Scientific Creativity. J Penelit Pendidik IPA. 2022;8(2):985–91.
(3). Imul T, Fitri Mardhotillah A, Achmadi Indriyani L, Ayu Wulandari V, Permata Sari Kuraesin P, Laily Sa N, et al. Indonesian Journal of Science Learning. Indones J Sci Learn [Internet]. 2020;1(2):67–75. Available from: http://jurnalftk.uinsby.ac.id/index.php/IJSL
(4). Michel Rada. INDUSTRY 5.0 definition [Internet]. 2017. Available from: medium.com/@michael.rada/industry-5-0-definition-6a2f9922dc48
(5). FHI360. Education and the SDGs. Occas Pap [Internet]. 2016;2(October):13–28. Available from: http://educationaboveall.org/uploads/library/file/2a8e15847d.pdf
(6). Hussein HB. The Trends of Research in STEM Education in High Scholarly Journals. 13th IEEE Integr STEM Educ Conf ISEC 2023. 2023;(March 2023):5–9.
(7). Anak Agung Ayu Dwijayanthi. Systematic Literature Review: Pengembangan Pembelajaran Berbasis ICT (Information Communication Technology) Sebagai Upaya Realisasi Kemerdekaan Belajar Peserta Didik. J Pendidik Mipa. 2022;12(2):270–81.
(8). Saefullah A, Suherman A, Utami RT, Antarnusa G, Rostikawati DA, Zidny R. Implementation of PjBL-STEM to Improve Students’ Creative Thinking Skills On Static Fluid Topic. JIPF (Jurnal Ilmu Pendidik Fis. 2021;6(2):149.
(9). Rabbani GF, Abdurrahman A, Maulina H, Herlina K, Haryanti SS. An Introduction to the Level of Inquiry Model: Validity and Practicality of Inquiry STEM-Based Learning Sequence e-Worksheet to Stimulate Student Communication Skill. JIPF (Jurnal Ilmu Pendidik Fis. 2024;9(1):1.
(10). Asrizal A, Zan AM, Mardian V, Festiyed F. The Impact of Static Fluid E-Module by Integrating STEM on Learning Outcomes of Students. J Educ Technol. 2022;6(1):110–8.
(11). Ndoa YAA, Jumadi. Physics E-Book based on STEM Integrated Modelling Instruction in Circular Motion. J Educ Technol. 2022;6(4):711–21.
(12). Sinaga M, Silaban R, Jahro IS. Development of Chemistry Practicum Guidelines with the Support of STEM (Science, Technology, Engineering, and Mathematics) Integrating Character Education. J Phys Conf Ser. 2021;
(13). Sari DK. Pengembangan E-Modul Praktikum Fisika Dasar 1 dengan Pendekatan STEM untuk Menumbuhkan Kemandirian Belajar. DWIJA CENDEKIA J Ris Pedagog. 2021;5(1):44.
(14). Tahulending AW, Rumampuk R, Aloanis AA. Pengembangan Penuntun Praktikum Reaksi Reduksi dan Oksidasi Berbasis Bahan Alam dengan Menggunakan Model ADDIE. Oxyg J Chem Educ. 2019;1(2):61.
(15). Sari CE. Identifikasi Sikap Ilmiah Dalam Melakukan Praktikum Fisika Pada Peserta Didik Sman 12 Makassar. J Sains dan Pendidik Fis. 2020;16(1):27.
(16). Sari SP, Murniati, Sudirman, Saparini, Pasaribu A, Kistiono. Pengembangan Panduan Praktikum Tangki Riak pada Mata Kuliah Gelombang dan Optik. J Literasi Pendidik Fis. 2024;5(1):59–69.
(17). Khoirun Nisa M, Kurniawan W, Harto Nuroso dan. Tren Penggunaan Software Tracker dalam Fisika: Systematic-Review. J Lontar Phys Today [Internet]. 2024;3(3):120–9. Available from: http://journal.upgris.ac.id/index.php/UPT
(18). Yuliani HR. Matematika Berbasis Ms Excel. 2021. 167–186 p.
(19). Mediana Jr NL, Dio R V. Systematic Review on the Efficacy of Desmos Integration in Mathematics Education: Unveiling Impacts on Learning Outcomes and Pedagogical Strategies. Int J Futur Eng Innov. 2025;2(4):104–15.
(20). Mahrawi Mahrawi, Ika Rifqiawati DM. of Nusantara Education. J Nusant Educ. 2021;1(1):9–18.
(21). Marisda DH, Nurlina N, Nurazmi N, Handayani Y, Hasin A, Hamzah H. Needs Analysis in the Development of Basic Physics Practical E-Module Based on Interactive Flipbook with STEM Approach. JIPF (Jurnal Ilmu Pendidik Fis. 2024;9(3):404.
(22). SUSANTI R. Pembelajaran Berbasis Praktikum Untuk Meningkatkan Hasil Belajar Dengan Soal Hots Mata Pelajaran Ipa. Teach J Inov Kegur dan Ilmu Pendidik. 2023;3(1):74–82.
(23). Anjani MY. Pentingnya Writing Skills pada Mahasiswa Fisika untuk Penulisan Laporan Pentingnya Writing Skills pada Mahasiswa Fisika untuk Penulisan Laporan Praktikum. ResearchGate [Internet]. 2023;1(2):2–13. Available from: https://www.researchgate.net/profile/Melly-Anjani/publication/372284448_Pentingnya_Writing_Skills_pada_Mahasiswa_Fisika_untuk_Penulisan_Laporan_Praktikum/links/64adf7668de7ed28ba914c2f/Pentingnya-Writing-Skills-pada-Mahasiswa-Fisika-untuk-Penulisan-Lapora
