Li, H.; Lu, X.; Wei, Z.; Zhu, S.; Wei, N.; Zhang, S.; Yuan, H.; Shangguan, W.; Liu, S.; Zhang, S.;
et al. New Representation of Plant Hydraulics Improves the Estimates of Transpiration in Land Surface Model. Forests 2021, 12, 722.
https://doi.org/10.3390/f12060722
AMA Style
Li H, Lu X, Wei Z, Zhu S, Wei N, Zhang S, Yuan H, Shangguan W, Liu S, Zhang S,
et al. New Representation of Plant Hydraulics Improves the Estimates of Transpiration in Land Surface Model. Forests. 2021; 12(6):722.
https://doi.org/10.3390/f12060722
Chicago/Turabian Style
Li, Hongmei, Xingjie Lu, Zhongwang Wei, Siguang Zhu, Nan Wei, Shupeng Zhang, Hua Yuan, Wei Shangguan, Shaofeng Liu, Shulei Zhang,
and et al. 2021. "New Representation of Plant Hydraulics Improves the Estimates of Transpiration in Land Surface Model" Forests 12, no. 6: 722.
https://doi.org/10.3390/f12060722
APA Style
Li, H., Lu, X., Wei, Z., Zhu, S., Wei, N., Zhang, S., Yuan, H., Shangguan, W., Liu, S., Zhang, S., Huang, J., & Dai, Y.
(2021). New Representation of Plant Hydraulics Improves the Estimates of Transpiration in Land Surface Model. Forests, 12(6), 722.
https://doi.org/10.3390/f12060722