Marin, R.J.; MarÃn-Sánchez, J.C.; Mira, J.E.; GarcÃa, E.F.; Zhao, B.; Zambrano, J.
Landslide Hazard and Rainfall Threshold Assessment: Incorporating Shallow and Deep-Seated Failure Mechanisms with Physics-Based Models. Geosciences 2024, 14, 280.
https://doi.org/10.3390/geosciences14100280
AMA Style
Marin RJ, MarÃn-Sánchez JC, Mira JE, GarcÃa EF, Zhao B, Zambrano J.
Landslide Hazard and Rainfall Threshold Assessment: Incorporating Shallow and Deep-Seated Failure Mechanisms with Physics-Based Models. Geosciences. 2024; 14(10):280.
https://doi.org/10.3390/geosciences14100280
Chicago/Turabian Style
Marin, Roberto J., Julián Camilo MarÃn-Sánchez, Johan Estiben Mira, Edwin F. GarcÃa, Binru Zhao, and Jeannette Zambrano.
2024. "Landslide Hazard and Rainfall Threshold Assessment: Incorporating Shallow and Deep-Seated Failure Mechanisms with Physics-Based Models" Geosciences 14, no. 10: 280.
https://doi.org/10.3390/geosciences14100280
APA Style
Marin, R. J., MarÃn-Sánchez, J. C., Mira, J. E., GarcÃa, E. F., Zhao, B., & Zambrano, J.
(2024). Landslide Hazard and Rainfall Threshold Assessment: Incorporating Shallow and Deep-Seated Failure Mechanisms with Physics-Based Models. Geosciences, 14(10), 280.
https://doi.org/10.3390/geosciences14100280