Making a Simple Prism as an Alternative Physics Practicum Tools

Via Monica Devi (1), Aris Doyan (2), Kosim Kosim (3)
(1) Universitas Mataram, Indonesia,
(2) University of Mataram, Indonesia,
(3) University of Mataram, Indonesia

Abstract

Refraction of light occurs due to the difference in the speed of light in the two mediums where the speed of light in a dense medium is smaller than the speed of light in a less dense medium. One of the refraction phenomena also occurs in prism glass. Prisms help scatter incoming light from monochromatic light sources. To prove this, refraction experiments can be carried out using a prism. Where the prism used is made manually using used glass made of acrylic. The prism that is made is then filled with water on the inside and a test is carried out to determine the refraction and the value of the angle of deviation. Based on the results obtained, the refraction of the prism glass made in where a beam of light that passes through the prism is deflected from its original direction, while the angle of deviation of the rays is proportional to the angle of incidence

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References

Ain, T.N. (2013). Pemanfaatan Visualisasi Video Percobaan Gravity Current untuk Meningkatkan Pemahaman Konsep Fisika Siswa Kelas XI Pada Materi Pokok Tekanan Hidrostatis. Jurnal Inovasi Pendidikan Fisika, 2(2), 97-102.

Anggarini, D., & Suyadi, S. (2019). Metode Demonstrasi sebagai Peningkatkan Perkembangan Kognitif Anak. Jurnal Ilmiah, 4(1), 13-24. DOI: https://doi.org/10.14421/jga.2019.41-02

Dewi, L., Hasanah, M., & Adi, N.P. (2021). Spektrum Cahaya Sebagai Alternatif Media Pembelajaran Praktikum Fisika. Jurnal Kajian Pendidikan Sains, 7(2), 141-146. DOI: https://doi.org/10.32699/spektra.v7i2.216

Hadiningrum, K., Yuningsih, N., & Martono, W. (2016). Penentuan Sudut Deviasi Minimum Prisma Melalui Peristiwa Pembiasan Cahaya Berbantuan Komputer. Sigma-Mu (Jurnal Penelitian dan Gagasan Sains dan Matematika Terapan, 8(1), 1-6. DOI: https://doi.org/10.35313/sigmamu.v8i1.827

Nurcahyo, A.W., Handayani, R.D., & Lesmono, A.D. (2014). Variasi Indeks Bias Air Pada Suhu 5 Derajat Celsius Hingga 50 Derajat Celcius dengan Panjang Gelombang Sinar Ungu, Hijau, dan Merah. Jurnal Pendidikan Fisika, 3(2), 137-144.

Saputra, R.E., & Sucahyo, I. (2015). Perancangan KIT Percobaan Untuk Pengukuran Sudut Deviasi dan Indeks Bias Prisma. Jurnal Inovasi Fisika Indonesia, 4(3), 77-83.

Sholikah, A., Febriyanti, D.S., & Kurniawan, B.R. (2020). Analisis Miskonsepsi Mahasiswa Calon Guru Fisika Menggunakan Quizziz Pada Pokok Bahasan Optika Geometri. Jurnal Penelitian Pembelajaran Fisika, 11(1), 27-35. DOI: https://doi.org/10.26877/jp2f.v11i1.4152

Winingsih, P.H. (2015). Rancang Bangun Laser untuk Pembelajaran Optika dalam Menentuka Indeks Bias dan Difraksi Kisi. Jurnal Pembelajaran IPA 1(1), 77-82. DOI: https://doi.org/10.30738/jst.v1i1.482

Yulianingsih, L. (2018). Laporan Praktikum Ilmiah Fisika. Universitas Cendrawasih.

Authors

Via Monica Devi
[email protected] (Primary Contact)
Aris Doyan
Kosim Kosim
Devi, V. M., Doyan, A., & Kosim, K. (2023). Making a Simple Prism as an Alternative Physics Practicum Tools. AMPLITUDO : Journal of Science and Technology Innovation, 2(1), 20–23. https://doi.org/10.56566/amplitudo.v2i1.20

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