Main Article Content

Abstract

This research aims to explore the understanding of Physics Education students of the class of 2021 regarding the concept and application of X-rays in various fields. Through a qualitative approach with an in-depth interview method, this study involved three participants to gain insight into their understanding of the basic principles of X-rays, the formation process, as well as aspects of radiation safety and risk. The results show that although students have a basic understanding of X-rays as electromagnetic radiation, there are misconceptions about the scope of their application and the principles of physics that underlie the formation of X-rays. The study also found limitations in lecture materials in emphasizing aspects of radiation protection and its applications outside the medical world, which is important to strengthen a comprehensive understanding. Based on these findings, the study provides recommendations to develop a more applicable curriculum, improve practicum facilities, and integrate cross-disciplinary studies so that students have a broader understanding of X-rays.

Keywords

X-ray Physics Education Concept Understanding

Article Details

How to Cite
Sembiring, G. K. V., Fadilah, N., & Sitio, A. A. (2025). Physics Education Students’ Understanding of X-Ray Concepts and Applications: An Interview Study on Stambuk Students 2021. Golden Ratio of Data in Summary, 5(1), 28–32. https://doi.org/10.52970/grdis.v5i1.840

References

  1. Anwar. E. D. 2011. Sistem Proteksi Radiasi: Analisis Terhadap Bidang Radiologi Rumah Sakit. Jurnal Phenomenon, 1.
  2. Aryawijayanti, R., Susilo, S., & Sutikno, S. (2015). Analisis Dampak Radiasi Sinar-X Pada Mencit Melalui Pemetaan Dosis Radiasi Di Laboratorium Fisika Medik. Indonesian Journal of Mathematics and Natural Sciences, 38(1), 25-30.
  3. Hidayatullah, R. (2017). Dampak tingkat radiasi pada tubuh manusia. Jurnal Mutiara Elektromedik, 1(1), 24-33.
  4. Muliyono, S., & Subagiada, K. (2020). Penentuan Nilai Faktor Mesin Pesawat Sinar-X Radiografi Digital Merek Shimadzu di RSUD Dr. Kanujoso Djatiwibowo Balikpapan. Progressive Physics Journal, 1(1), 29-39.
  5. Nugraheni, F., Anisah, F., & Susetyo, G. A. (2022). Analisis Efek Radiasi Sinar-X pada Tubuh Manusia. In Prosiding SNFA (Seminar Nasional Fisika Dan Aplikasinya) (Vol. 7, pp. 19-25).
  6. R, Aryawijayanti, S. S. (2015). Analisis Dampak Radiasi Sinar-X Pada Mencit Melalui Pemetaan Dosis. Jurnal MIPA, 38(1), 25-30.
  7. Rahmat, P. S. (2009). Penelitian Kualitatif. Equilibrium, 5(9), 1-8.
  8. Rani, S. R. A. (2022). Studi Analisis Data Difraksi Sinar-X Pada Material Zircon Pasir Alam Melalui Metode Rietveld. JFT: Jurnal Fisika dan Terapannya, 9(1), 16-22.
  9. Suyatno, F., Yuniarsari, L., & Syawaludin, B. (2017). Perekayasaan Prototip Pesawat Sinar-X Diagnosis Berbasis Mikrokontroler. PRIMA-Aplikasi dan Rekayasa dalam Bidang Iptek Nuklir, 6(12), 376-380.
  10. Wardani, T. S. (2022). Analisis Pemahaman Mahasiswa Pendidikan Fisika Universitas Jember terhadap Manfaat Serta Dampak Sinar-X bagi Kesehatan. Karst: Jurnal Pendidikan Fisika dan Terapannya, 5(1), 28-38.
  11. Wiharja, U., & Al Bahar, A. K. (2019). Analisa Uji Kesesuaian Pesawat Sinar-X Radiografi. Prosiding Semnastek.
  12. Yuliamdani, R., Sahara, S., & Fuadi, N. (2020). Pengujian Paparan Radiasi Sinar-X Di Unit Radiologi RSUD Kota Makassar. JFT: Jurnal Fisika dan Terapannya, 7(1), 53-61.

Similar Articles

1 2 3 4 5 6 7 8 9 10 > >> 

You may also start an advanced similarity search for this article.