Riba, A.; Garcia, M.; TarquÃs, A.M.; Domingo, F.; Antala, M.; Feng, S.; Liu, J.; Johnson, M.S.; Kim, Y.; Wang, S.
Integrating Remotely Sensed Thermal Observations for Calibration of Process-Based Land-Surface Models: Accuracy, Revisit Windows, and Implications in a Dryland Ecosystem. Remote Sens. 2025, 17, 3630.
https://doi.org/10.3390/rs17213630
AMA Style
Riba A, Garcia M, TarquÃs AM, Domingo F, Antala M, Feng S, Liu J, Johnson MS, Kim Y, Wang S.
Integrating Remotely Sensed Thermal Observations for Calibration of Process-Based Land-Surface Models: Accuracy, Revisit Windows, and Implications in a Dryland Ecosystem. Remote Sensing. 2025; 17(21):3630.
https://doi.org/10.3390/rs17213630
Chicago/Turabian Style
Riba, Arnau, Monica Garcia, Ana M. TarquÃs, Francisco Domingo, Michal Antala, Sijia Feng, Jun Liu, Mark S. Johnson, Yeonuk Kim, and Sheng Wang.
2025. "Integrating Remotely Sensed Thermal Observations for Calibration of Process-Based Land-Surface Models: Accuracy, Revisit Windows, and Implications in a Dryland Ecosystem" Remote Sensing 17, no. 21: 3630.
https://doi.org/10.3390/rs17213630
APA Style
Riba, A., Garcia, M., TarquÃs, A. M., Domingo, F., Antala, M., Feng, S., Liu, J., Johnson, M. S., Kim, Y., & Wang, S.
(2025). Integrating Remotely Sensed Thermal Observations for Calibration of Process-Based Land-Surface Models: Accuracy, Revisit Windows, and Implications in a Dryland Ecosystem. Remote Sensing, 17(21), 3630.
https://doi.org/10.3390/rs17213630