Wang, X.-Y.; Bao, X.-Y.; Huang, Y.; Li, Z.-W.; Yong, J.-H.; Wu, Y.-P.; Feng, G.-L.; Sun, G.-Q.
Physical Explanation for Paradoxical Climate Change in Semi-Arid Inland Eurasia Based on a Remodeled Precipitation Recycling Ratio and Clausius–Clapeyron Equation. Atmosphere 2023, 14, 376.
https://doi.org/10.3390/atmos14020376
AMA Style
Wang X-Y, Bao X-Y, Huang Y, Li Z-W, Yong J-H, Wu Y-P, Feng G-L, Sun G-Q.
Physical Explanation for Paradoxical Climate Change in Semi-Arid Inland Eurasia Based on a Remodeled Precipitation Recycling Ratio and Clausius–Clapeyron Equation. Atmosphere. 2023; 14(2):376.
https://doi.org/10.3390/atmos14020376
Chicago/Turabian Style
Wang, Xi-Yu, Xin-Yue Bao, Yu Huang, Zhong-Wai Li, Jia-Hua Yong, Yong-Ping Wu, Guo-Lin Feng, and Gui-Quan Sun.
2023. "Physical Explanation for Paradoxical Climate Change in Semi-Arid Inland Eurasia Based on a Remodeled Precipitation Recycling Ratio and Clausius–Clapeyron Equation" Atmosphere 14, no. 2: 376.
https://doi.org/10.3390/atmos14020376
APA Style
Wang, X.-Y., Bao, X.-Y., Huang, Y., Li, Z.-W., Yong, J.-H., Wu, Y.-P., Feng, G.-L., & Sun, G.-Q.
(2023). Physical Explanation for Paradoxical Climate Change in Semi-Arid Inland Eurasia Based on a Remodeled Precipitation Recycling Ratio and Clausius–Clapeyron Equation. Atmosphere, 14(2), 376.
https://doi.org/10.3390/atmos14020376