Keïta, A.; Zorom, M.; Faye, M.D.; Damba, D.D.; Konaté, Y.; Hayde, L.G.; Lidon, B.
Achieving Real-World Saturated Hydraulic Conductivity: Practical and Theoretical Findings from Using an Exponential One-Phase Decay Model. Hydrology 2023, 10, 235.
https://doi.org/10.3390/hydrology10120235
AMA Style
Keïta A, Zorom M, Faye MD, Damba DD, Konaté Y, Hayde LG, Lidon B.
Achieving Real-World Saturated Hydraulic Conductivity: Practical and Theoretical Findings from Using an Exponential One-Phase Decay Model. Hydrology. 2023; 10(12):235.
https://doi.org/10.3390/hydrology10120235
Chicago/Turabian Style
Keïta, Amadou, Malicki Zorom, Moussa Diagne Faye, Djim Doumbe Damba, Yacouba Konaté, László G. Hayde, and Bruno Lidon.
2023. "Achieving Real-World Saturated Hydraulic Conductivity: Practical and Theoretical Findings from Using an Exponential One-Phase Decay Model" Hydrology 10, no. 12: 235.
https://doi.org/10.3390/hydrology10120235
APA Style
Keïta, A., Zorom, M., Faye, M. D., Damba, D. D., Konaté, Y., Hayde, L. G., & Lidon, B.
(2023). Achieving Real-World Saturated Hydraulic Conductivity: Practical and Theoretical Findings from Using an Exponential One-Phase Decay Model. Hydrology, 10(12), 235.
https://doi.org/10.3390/hydrology10120235