Main Article Content
Abstract
Most high school students in Singkawang City and Bengkayang Regency still require a more comprehensive understanding regarding the application of geophysics, which can impact their skills in conducting field observations. This Community Service (PkM) aims to enhance students' skills in geophysical data acquisition through field observations at Karta Beach, Bengkayang Regency. The activity was carried out in three stages: preparation, implementation, and evaluation. During the implementation stage, participants were educated about geophysical data acquisition through field observations, including geoelectric, self-potential, meteorology, and geology practicums. Based on the evaluation results, a score of 87.31 (very good) was obtained, indicating an increase in students' skills in geophysical data acquisition through field observations.
Keywords
Article Details

This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.
References
- Adriat, R., Muliadi, Putra, Y. S., Zulfian, Muhardi, Perdhana, R., & Sutanto, Y. (2022). Peningkatan Pemahaman Mitigasi dan Kesiapsiagaan Bencana Alam bagi Siswa Sekolah Menengah Atas. Jurnal PKM Bina Bahari, 1(1), 25–30. https://doi.org/10.26418/binabahari.v1i1.5
- Afsas, S. K., Sutikno, & Fianti. (2023). Penerapan Pembelajaran Berbasis Praktikum untuk Meningkatkan Keterampilan Proses Sains Siswa SMP. Journal on Education, 6(1), 8913–8926. https://doi.org/10.37842/sinau.v5i2.55
- Agarwal, R., & Mittal, S. (2023). Environmental Metrology: An Introduction. In Handbook of Metrology and Applications (pp. 1519–1526). https://doi.org/10.1007/978-981-99-2074-7_84
- Budiaji, W. (2018). Skala Pengukuran dan Jumlah Respon Skala Likert. Jurnal Ilmu Pertanian Dan Perikanan, 2(2), 127–133. https://doi.org/10.31227/osf.io/k7bgy
- Davenport, C. E., & French, A. J. (2020). The Fundamentals in Meteorology Inventory: Validation of a tool assessing basic meteorological conceptual understanding. Journal of Geoscience Education, 68(2), 152–167. https://doi.org/10.1080/10899995.2019.1629193
- de la Vega, M., Bongiovanni, M. V, & Grünhut, V. (2021). Design of a Low-Cost Electrical Resistivity Meter for Near Surface Surveys. Earth and Space Science, 8(12). https://doi.org/10.1029/2020EA001575
- Delmonte, N., Spaggiari, D., Chiorboli, G., Fagandini, C., & Zanini, A. (2025). An electrical resistivity tomography system for imaging at laboratory scale. Measurement: Journal of the International Measurement Confederation, 252. https://doi.org/10.1016/j.measurement.2025.117366
- Hong, C.-H., Kim, J.-S., & Chong, S.-H. (2022). Theoretical resistance in cylindrical electrodes with conical tip. Geomechanics and Engineering, 30(4), 337–343. https://doi.org/10.12989/gae.2022.30.4.337
- Ishak, M. F., Zolkepli, M. F., Masyhur, E. M. H., Yunus, N. Z. M., Rashid, A. S. A., Hezmi, M. A., Hasbollah, D. Z. A., & Yusoff, A. R. (2022). Interrelationship between borehole lithology and electrical resistivity for geotechnical site investigation. Physics and Chemistry of the Earth, 128, 103279. https://doi.org/10.1016/j.pce.2022.103279
- Jackson, M. D. (2015). Tools and Techniques: Self-Potential Methods. In Treatise on Geophysics: Second Edition (Vol. 11, pp. 261–293). https://doi.org/10.1016/B978-0-444-53802-4.00208-6
- Jinmin, M., Saad, R., & Muztaza, N. M. (2021). The practical techniques in self-potential subsurface data acquisition. Journal of Mines, Metals and Fuels, 69(8), 419–428. https://www.scopus.com/inward/record.uri?eid=2-s2.0-85123521208&partnerID=40&md5=b33e881f9d61d091f8dfb7d66bf0e70e
- Koehn, W. J., & Kulesza, S. E. (2021). Electrical resistivity for seeing deep foundations: A new framework for identifying long, slender elements. Geotechnical Special Publication, 2021-May(GSP 323), 443–452. https://doi.org/10.1061/9780784483404.040
- Lang, M., Zhang, Z., Chen, Z., Cheng, Z., Santosh, M., & Kusky, T. M. (2023). Classification and nomenclature of volcanic rocks using immobile elements: A novel approach based on big data analysis. Lithos, 454–455. https://doi.org/10.1016/j.lithos.2023.107274
- Mahmudah, R. A., Akhyar, M., & Helmi. (2023). Peningkatan Minat Belajar Fisika Kelas XI IPA SMA Negeri 23 Makassar Melalui Metode Praktikum Sederhana. JP-3: Jurnal Pemikiran Dan Pengembangan Pembelajaran Peningkatan, 5(2), 1432–1438. https://doi.org/10.31970/pendidikan.v5i2.742
- Mase, L. Z., & Sugianto, N. (2020). Pengenalan Metode Geofisika dan Geoteknik dalam Pembelajaran Fisika bagi Siswa SMAN 3 Kota Bengkulu. Wikrama Parahita: Jurnal Pengabdian Masyarakat, 4(2), 81–90. https://doi.org/10.30656/jpmwp.v4i2.2085
- McNeal, P. M., Petcovic, H. L., Ladue, N. D., & Ellis, T. D. (2019). Identifying Significant Cognitive Factors for Practicing and Learning Meteorology. Journal of Operational Meteorology, 7, 1–26. https://doi.org/10.15191/nwajom.2019.0701
- Mufidah, S., Udin, Y., Fuadillah, M. N. A., Alfiansyah, D., Hartantyo, E., Muin, F., Wibowo, N., Yulisasongko, M. F., Nurdiyanto, B., Suroso, T., & Irnaka, T. M. (2024). Large Scale Deployment of Self-Potential Monitoring System in The Kawengan Oil Field. 30th European Meeting of Environmental and Engineering Geophysics, Held at the Near Surface Geoscience Conference and Exhibition 2024, NSG 2024. https://doi.org/10.3997/2214-4609.202420139
- Muhardi, Putra, Y. S., Ihwan, A., Muliadi, Sampurno, J., Adriat, R., Zulfian, Perdhana, R., Sutanto, Y., & Jumarang, M. I. (2024). Peningkatan Peran Pelajar Kota Pontianak dalam Mewujudkan Sekolah Tanggap Bencana. GERVASI: Jurnal Pengabdian Kepada Masyarakat, 8(2), 512–522. https://doi.org/10.31571/gervasi.v8i2.7104
- Nikmah, K. (2023). Penerapan Metode Pembelajaran Observasi Lapangan pada Mata Kuliah Studi Arsip untuk Meningkatkan Kemampuan Berpikir Kritis Mahasiswa. ASANKA: Journal of Social Science and Education, 4(1), 26–33. https://doi.org/10.21154/asanka.v4i1.5912
- Nosofsky, R. M., Sanders, C. A., Meagher, B. J., & Douglas, B. J. (2018). Toward the development of a feature-space representation for a complex natural category domain. Behavior Research Methods, 50(2), 530–556. https://doi.org/10.3758/s13428-017-0884-8
- Pranatawijaya, V. H., Widiatry, W., Priskila, R., & Putra, P. B. A. A. (2019). Penerapan Skala Likert dan Skala Dikotomi pada Kuesioner Online. Jurnal Sains Dan Informatika, 5(2), 128–137. https://doi.org/10.34128/jsi.v5i2.185
- Revil, A., & Jardani, A. (2010). The self-potential method: Theory and applications in environmental geosciences. In The Self-Potential Method: Theory and Applications in Environmental Geosciences (Vol. 9781107019270). https://doi.org/10.1017/CBO9781139094252
- Sarjan, A. F. N., & Muchtaranda, I. H. (2023). Kajian Geoteknik Bawah Permukaan dengan Menggunakan Pendekatan Metode Geofisika. Jurnal Pendidikan, Sains, Geologi, Dan Geofisika (GeoScienceEd Journal), 4(1), 1–8. https://doi.org/10.29303/goescienceedu.v4i1.217
- Schön, J. H. (2015). Rocks-Their Classification and General Properties. In Developments in Petroleum Science (Vol. 65, pp. 1–19). https://doi.org/10.1016/B978-0-08-100404-3.00001-9
- Singh, H., Dheeraj, P. B., Singh, Y. P., Rathore, G., & Bhardwaj, M. (2017). Electrodeposition of porous copper as a substrate for electrocatalytic material. Journal of Electroanalytical Chemistry, 785, 1–7. https://doi.org/10.1016/j.jelechem.2016.12.013
- Utami, D. P., & Aryani, I. (2024). Analisis Keterampilan Proses Sains Mahasiswa pada Praktikum Biologi Lingkungan Materi Bioindikator Pencemaran Air. BIOEDUSAINS: Jurnal Pendidikan Biologi Dan Sains, 15(1), 37–48. https://doi.org/10.31539/bioedusains.v7i1.9632
- Vrabec, M. (2020). Metamorphic rocks. Geografija v Soli, 28(3), 26–29.
- Widodo, W., Permana, H., Swamidharma, Y. C. A., Pinahalan, I., Cahyadi, A., & Krisnanto, Y. (2024). An Update to the Geology of Sebuku Island, South Kalimantan, Indonesia: Constraints From Petrological Studies. Rudarsko Geolosko Naftni Zbornik, 39(5), 121–138. https://doi.org/10.17794/rgn.2024.5.9