T. Trinh Et Al. , "Development of high-resolution 72 h precipitation and hillslope flood maps over a tropical transboundary region by physically based numerical atmospheric-hydrologic modeling," JOURNAL OF WATER AND CLIMATE CHANGE , vol.11, pp.387-406, 2020
Trinh, T. Et Al. 2020. Development of high-resolution 72 h precipitation and hillslope flood maps over a tropical transboundary region by physically based numerical atmospheric-hydrologic modeling. JOURNAL OF WATER AND CLIMATE CHANGE , vol.11 , 387-406.
Trinh, T., Ho, C., Do, N., Ercan, A., & Kawas, M. L., (2020). Development of high-resolution 72 h precipitation and hillslope flood maps over a tropical transboundary region by physically based numerical atmospheric-hydrologic modeling. JOURNAL OF WATER AND CLIMATE CHANGE , vol.11, 387-406.
Trinh, T. Et Al. "Development of high-resolution 72 h precipitation and hillslope flood maps over a tropical transboundary region by physically based numerical atmospheric-hydrologic modeling," JOURNAL OF WATER AND CLIMATE CHANGE , vol.11, 387-406, 2020
Trinh, T. Et Al. "Development of high-resolution 72 h precipitation and hillslope flood maps over a tropical transboundary region by physically based numerical atmospheric-hydrologic modeling." JOURNAL OF WATER AND CLIMATE CHANGE , vol.11, pp.387-406, 2020
Trinh, T. Et Al. (2020) . "Development of high-resolution 72 h precipitation and hillslope flood maps over a tropical transboundary region by physically based numerical atmospheric-hydrologic modeling." JOURNAL OF WATER AND CLIMATE CHANGE , vol.11, pp.387-406.
@article{article, author={T. Trinh Et Al. }, title={Development of high-resolution 72 h precipitation and hillslope flood maps over a tropical transboundary region by physically based numerical atmospheric-hydrologic modeling}, journal={JOURNAL OF WATER AND CLIMATE CHANGE}, year=2020, pages={387-406} }