Department of Geology and Mining

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Laboni, M., Rahman, S. A., Sultana, S., Islam, M. M., Salman, M. A., and Rafiq, M. R., 2025, Comparative analysis of shallow and deep groundwater chemistry, focusing on spatial distribution and assessment of associated health risks at the south-central coastal areas of Bangladesh: Water Practice and Technology, v. 20, no. 6, p. 1422-1436.

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Rafiq, M. R., Kruisdijk, E., Ahmed, K. M., Rietveld, L. C., and van Breukelen, B. M., 2026, (Im)mobilization of iron, manganese, and arsenic during managed aquifer recharge in Bangladesh: Push-pull tests under oxidative and reductive conditions: Water Research, v. 289, p. 124878.

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  1. Goswami,S., Billah,M.M., Hossain,S., Ovi,M.H., Saha,S.C., Bhowmik,P.K., Farazi, A.H., Islam, Md.A., Roy, D.K., (2025) Geomorphic Index Alterations and Socioeconomic Implications: A Case Study of a Coastal River System in Bangladesh. Progress in Disaster Science, 100450. https://doi.org/10.1016/j.pdisas.2025.100450 

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Zanna, N., Farazi, A.H., Kamal, A.S.M., Rahman, M.Z., Hossain, Md. S. (2023) Diurnal seismic ambient noise and seismic station performance characterization in the Bengal Basin, Bangladesh. Geology, Geophysics & Environment, 49(3), 209–224. https://doi.org/10.7494/geol.2023.49.3.209

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Farazi, A.H., Hossain, Md.S., Piña-Flores, J., Ito, Y., Kamal, A.S.M., Rahman, M.Z. (2023) Shear wave velocity estimation in the Bengal Basin, Bangladesh by HVSR analysis: implications for engineering bedrock depth. Journal of Applied Geophysics, 211. https://doi.org/10.1016/j.jappgeo.2023.104967

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 Farazi, A.H., Ito, Y., Garcia, E.M.M., Lontsi, A.M., Sánchez-Sesma, F.J., Jaramillo, A. Ohyanagi, S. Hino, R., Shinohara, M. (2023) Shear wave velocity structure at the Fukushima forearc region based on H/V analysis of ambient noise recordings by ocean bottom seismometers. Geophysical Journal International, 222 (3), 1801–1820. https://doi.org/10.1093/gji/ggad028

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Mahmud, Md.I., Mia, A.J., Islam, Md.A., Peas, M.H., Farazi, A.H., et al. (2020) Assessing bank dynamics of the Lower Meghna River in Bangladesh: an integrated GIS-DSAS approach. Arabian Journal of Geosciences, 13 (14). 1-19. https://doi.org/10.1007/s12517-020-05514-4

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Hossain, Md.S., Kamal, A.S.M., Rahman, M.Z., Farazi, A.H., et al. (2020) Assessment of soil liquefaction potential: a case study for Moulvibazar town, Sylhet, Bangladesh. SN Applied Sciences, 2(4). https://doi.org/10.1007/s42452-020-2582-x

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Farazi, A.H., Mia, A.J., Mahmud, M.I., (2018) A case study based slope stability assessment in Chittagong City, Bangladesh. Journal of Geoscience, Engineering, Environment, and Technology (JGEET), 3(3), 164-173. https://doi.org/10.24273/jgeet.2018.3.3.1690

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Farazi, A.H., Ferdous, N., Kamal, A.S.M.M., (2018) LPI Based Earthquake Induced Soil Liquefaction Susceptibility Assessment at Probashi Palli Abasan Project Area, Tongi, Gazipur, Bangladesh. Journal of Scientific Research (JSR), 10(2), 105-116. http://dx.doi.org/10.3329/jsr.v10i2.34225

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