Integrating System Dynamics, Land Change Models, and Machine Learning to Simulate and Predict Ecosystem Carbon Sequestration Under RCP-SSP Scenarios: Fusing Land and Climate Changes
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Zhang, Y.; Zhang, Y.; Yang, J.; Wu, W.; Tao, R. Integrating System Dynamics, Land Change Models, and Machine Learning to Simulate and Predict Ecosystem Carbon Sequestration Under RCP-SSP Scenarios: Fusing Land and Climate Changes. Land 2024, 13, 1967. https://doi.org/10.3390/land13111967
Zhang Y, Zhang Y, Yang J, Wu W, Tao R. Integrating System Dynamics, Land Change Models, and Machine Learning to Simulate and Predict Ecosystem Carbon Sequestration Under RCP-SSP Scenarios: Fusing Land and Climate Changes. Land. 2024; 13(11):1967. https://doi.org/10.3390/land13111967
Chicago/Turabian StyleZhang, Yuzhou, Yiyang Zhang, Jianxin Yang, Weilong Wu, and Rong Tao. 2024. "Integrating System Dynamics, Land Change Models, and Machine Learning to Simulate and Predict Ecosystem Carbon Sequestration Under RCP-SSP Scenarios: Fusing Land and Climate Changes" Land 13, no. 11: 1967. https://doi.org/10.3390/land13111967
APA StyleZhang, Y., Zhang, Y., Yang, J., Wu, W., & Tao, R. (2024). Integrating System Dynamics, Land Change Models, and Machine Learning to Simulate and Predict Ecosystem Carbon Sequestration Under RCP-SSP Scenarios: Fusing Land and Climate Changes. Land, 13(11), 1967. https://doi.org/10.3390/land13111967

