Exploring the Compton Scattering Phenomenon with Virtual Learning Under Project Based Learning Model (PjBL)
DOI:
https://doi.org/10.37891/kpej.v4i1.159Keywords:
compton scattering, concept understanding, PjBL, virtual mediaAbstract
In physics learning, some concepts cannot be explored through experimentation and direct observation, especially abstract concepts. One of the efforts made to overcome this problem is to use interactive visualization through the Project Based Learning model. This study aims to examine the effect of using visualization / virtual media on the Compton Scattering phenomenon through Project Based Learning on students' conceptual understanding. This research is a quasi-experimental study using a non-equivalent pretest-posttest control group design pattern. The research instrument uses a concept understanding test that has been validated by experts. Hypothesis testing using the t-polled variant test. Improved understanding of the concept is determined based on the results of the N-gain test. The results showed an increase in students' understanding of concepts in both classes. The experimental class experienced a higher understanding of the concept than the control class with N-Gain 55.79% and 12.84%, respectively. Therefore, there is a positive and significant influence on the use of virtual media with the PjBL model on Compton's Scattering material.References
Aldrich, C. (2009). Learning Online with Games, Simulations, and Virtual Worlds: Strategies for Online Instruction. San Fransisco: John Wiley & Sons.
Amin, B. D., & Swandi, A. (2016). Development of Physics Learning Instrument Based on Hypermedia and Its Influence on Concept Comprehension of Physics Student. Proceeding of International Seminar on Mathematics, Science and Computer Science Education (pp. 68-74). Bandung: Universitas Pendidikan Indonesia. Retrieved January 25, 2021
Amin, B. D., Haris, A., & Swandi, A. (2019). Implementation of physics learning based on hypermedia to enhance studentʼs problem solving skill. International Journal of Teaching and Education, 7(2), 1-11.
Amin, B. D., Nurhayati, N., Azis, A., & Swandi, A. (2019). Identifikasi Potensi Penggunaan Bahan Ajar Fisika Berbasis Simulasi Komputer yang Interaktif dengan Model Inkuiri Terbimbing pada Konsep Abstrak: Studi Literatur and Survey. In Seminar Nasional LP2M UNM.
Barak, M., & Dori, Y. J. (2005). Enhancing Undergraduate Students’ Chemistry Understanding Through Project Based Learning in An IT Environment. Science Education, 89(1), 117-139.
Bell, S. (2010). Project-based Learning for The 21st Century: Skills for The Future. The Clearing House, 83(2), 39-43.
Blumenfeld, P. C., Soloway, E., Marx, R. W., Krajcik, J. S., Guzdial, M., & Palincsar, A. (1991). “Motivating Project-Based Learning: Sustaining The Doing, Supporting The Learningâ€. Educational psychologist, 26(3-4), 369-398.
Byron, K., Khazanchi, S., & Nazarian, D. (2010). The Relationship Between Stressors and Creativity: A Meta-Analysis Examining Competing Theoretical Modelsâ€. Journal of Applied Psychology, 95(1), 201-212.
Candra, R., Flaminggo, N., Natalia, A., Yuliza, E., & Khairurrijal, K. (2019). Making Counter Clockwise Analog Thermometer Under Project-based Learning Method. In Journal of Physics: Conference Series (Vol. 1204, No. 1, p. 012116). IOP Publishing.
Çelik, H., Sarý, U., & Harwanto, U. N. (2015). Developing and Evaluating Physics Teaching Material with Algodoo (Phun) in Virtual Environment: Archimedes’ Principle. International Journal of Innovation in Science and Mathematics Education (formerly CAL-laborate International), 23(4), 40-50.
ChanLin, L. J. (2008). Technology Integration Applied to Project Based Learning in Science. Innovations in Education and Teaching International, 45(1), 55-65.
Cheng, K. K., Thacker, B. A., Cardenas, R. L., & Crouch, C. (2004). Using An Online Homework System Enhances Students’ Learning of Physics Concepts in An Introductory Physics Course. American Journal of Physics, 72(11), 1447-1453.
Ekasari, R. R., Gunawan, G., & Sahidu, H. (2016). Pengaruh Model Pembelajaran Langsung Berbantuan Media Laboratorium Terhadap Kreatifitas Fisika Mahasiswa SMA. Jurnal Pendidikan Fisika dan Teknologi, 2(3), 106-110.
Evans, K. L., Yaron, D., & Leinhardt, G. (2008). Learning Stoichiometry: A Comparison of Text and Multimedia Formats. Chemistry Education Research and Practice, 9(3), 208-218.
Gunawan, G., Sahidu, H., Harjono, A., & Suranti, N. M. Y. (2017). The effect of project based learning with virtual media assistance on student's creativity in physics. Cakrawala Pendidikan, (2), 167-179
Gunawan, G & Liliasari, L. (2012). Model Virtual Laboratory Fisika Modern untuk Meningkatkan Disposisi Berpikir Kritis Calon Dosen. Jurnal Cakrawala Pendidikan, Th. XXXI, No.2, 185-199.
Gunawan, G., Setiawan, A., & Widyantoro, D. H. (2013). Model Virtual Laboratory Fisika Modern untuk Meningkatkan Keterampilan Generik Sains Calon Dosen. Jurnal Pendidikan dan Pembelajaran (JPP), 20(1), 25-32.
Harms, U. (2000). Virtual and Remote Labs in Physics Education. Paper presented at Second European Conference on Physics Teaching in Engineering Education.
Husein, S., Herayanti, L., & Gunawan, G. (2015). “Pengaruh Penggunaan Multimedia Interaktif Terhadap Penguasaan Konsep dan Keterampilan Berpikir Kritis Mahasiswa pada Materi Suhu dan Kalorâ€. Jurnal Pendidikan Fisika dan Teknologi, 1(3), 221-225.
Kollöffel, B., & Jong, T. (2013). Conceptual understanding of electrical circuits in secondary vocational engineering education: Combining traditional instruction with inquiry learning in a virtual lab. Journal of engineering education, 102(3), 375-393.
Krajcik, J. S., & Blumenfeld, P. C. (2006). Project- based Learning. The Cambridge Handbook and Learning Science.
Luthvitasari, N.,& Linuwih, S. (2012). Implementasi Pembelajaran Fisika Berbasis Proyek terhadap Keterampilan Berpikir Kritis, Berpikir Kreatif dan Kemahiran Generik Sains. Journal of Innovative Science Education, 1(2), 92-97.
Magyar, Z., & Žáková, K. (2010). “Using Scilab for Building of Virtual Labâ€. In Information Technology Based Higher Education and Training (ITHET), 2010 9th International Conference on (pp. 280-283). IEEE.
Nisrina, N., Gunawan, G., & Harjono, A. (2016). “Pembelajaran Kooperatif dengan Media Virtual untuk Peningkatan Penguasaan Konsep Fluida Statis Mahasiswaâ€. Jurnal Pendidikan Fisika dan Teknologi, 2(2), 66-72.
Palloan, P., & Swandi, A. (2019). Development of learning instrument of active learning strategy integrated with computer simulation in physics teaching and learning on makassar state university. In Journal of Physics: Conference Series (Vol. 1157, No. 3, p. 032016). IOP Publishing. Retrieved January 25, 2021
Romansky, R. (2010). Virtual Research Laboratory–Conceptual Model and Preliminary Stochastic Investigation. In Proc. of The Int’l Conference on e-Learning and Knowledge Society (e-Learning’10), 26-27.
Suranti, N. M. Y., Gunawan, G., & Sahidu, H. (2016). “Pengaruh Model Project Based Learning Berbantuan Media Virtual Terhadap Penguasaan Konsep Peserta didik pada Materi Alat-alat Optikâ€. Jurnal Pendidikan Fisika dan Teknologi, 2(2), 73-79.
Swandi, A., Amin, B. D., Haris, A., & Subaer, S. (2015). Development of virtual laboratory hypermedia based on atomic physics at sman 1 pinrang. Proceeding of International Conference On Research, Implementation And Education Of Mathematics And Sciences 2015, Yogyakarta State University. Retrieved January 25, 2021
Swandi, A., Amin, B. D., & Muin, F. (2018). 21th century physics learning in senior high school through interactive computer simulation to enhance students achievement. In International Conference on Mathematics and Science Education of Universitas Pendidikan Indonesia (Vol. 3, pp. 130-135). Retrieved January 25, 2021
Swandi, A., & Amin, B. D. (2016). The Development of Student’s Worksheet of Physics Based on Virtual Simulation and Its Influence on Physics Learning Outcomes of Students. In Proceeding International Conference on Mathematic, Science, Technology, Education and their Applications (Vol. 1, No. 1). Retrieved January 25, 2021
Swandi, A., Hidayah, S. N., & Irsan, L. J. (2014). Pengembangan Media Pembelajaran Laboratorium Virtual untuk Mengatasi Miskonsepsi Pada Materi Fisika Inti di SMAN 1 Binamu, Jeneponto. Jurnal Fisika Indonesia, 18(52), 20-24
Swandi, A., Amin, B. D., Viridi, S., & Eljabbar, F. D. (2020). Harnessing technology-enabled active learning simulations (TEALSim) on modern physics concept. In Journal of Physics: Conference Series (Vol. 1521, No. 2, p. 022004). IOP Publishing. Retrieved January 25, 2021
Swandi, A., Aprianto, F., & Rahmadhanningsih, S. (2020). Project Based Learning Based on Laboratory Experiments to Produce Laser Diffraction Experimental Devices on CD and DVD with 2 Measurement Methods. Indonesian Journal of Educational Studies, 23(2), 108-117.
Swandi, A., Rahmadhanningsih, S., Viridi, S., Nurhayati, N., Putri, R. A., & Suryadi, A. (2021). Simulasi Gerak Translasi Dan Gerak Melingkar Menggunakan Vba Macro Excel Melalui Project Based Learning (PBL). Jurnal Pendidikan Fisika, 9(1), 33-42.
Thomas, J. W. (2000). A Review of Research on Project-Based Learning. California: The Autodesk Foundation.
Trianto, I. B. (2014). Mendesain Model Pembelajaran Inovatif, Progresif, dan Kontekstual. Jakarta: Prenadamedia Group.
Tüysüz, C. (2010). The Effect of the Virtual Laboratory on Students’ Achievement and Attitude in Chemistry. International Online Journal of Educational Sciences, 2(1), 37-53.
Yusuf, I., & Widyaningsih, S. W. (2017). Penerapan Laboratorium Virtual pada Mata Kuliah Eksperimen Fisika terhadap Keterampilan Berpikir Kritis Mahasiswa Pendidikan Fisika Universitas Papua. Sainsmat: Jurnal Ilmiah Ilmu Pengetahuan Alam, 6(1), 75-81.
Yusuf, I., & Widyaningsih, S. W. (2018). Implementasi pembelajaran fisika berbasis laboratorium virtual terhadap keterampilan proses sains dan persepsi mahasiswa. Berkala Ilmiah Pendidikan Fisika, 6(1), 18-28.
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