Alshahrani, S.M.; Saqr, A.A.; Alfadhel, M.M.; Alshetaili, A.S.; Almutairy, B.K.; Alsubaiyel, A.M.; Almari, A.H.; Alamoudi, J.A.; Abourehab, M.A.S.
Application of CO2 Supercritical Fluid to Optimize the Solubility of Oxaprozin: Development of Novel Machine Learning Predictive Models. Molecules 2022, 27, 5762.
https://doi.org/10.3390/molecules27185762
AMA Style
Alshahrani SM, Saqr AA, Alfadhel MM, Alshetaili AS, Almutairy BK, Alsubaiyel AM, Almari AH, Alamoudi JA, Abourehab MAS.
Application of CO2 Supercritical Fluid to Optimize the Solubility of Oxaprozin: Development of Novel Machine Learning Predictive Models. Molecules. 2022; 27(18):5762.
https://doi.org/10.3390/molecules27185762
Chicago/Turabian Style
Alshahrani, Saad M., Ahmed Al Saqr, Munerah M. Alfadhel, Abdullah S. Alshetaili, Bjad K. Almutairy, Amal M. Alsubaiyel, Ali H. Almari, Jawaher Abdullah Alamoudi, and Mohammed A. S. Abourehab.
2022. "Application of CO2 Supercritical Fluid to Optimize the Solubility of Oxaprozin: Development of Novel Machine Learning Predictive Models" Molecules 27, no. 18: 5762.
https://doi.org/10.3390/molecules27185762
APA Style
Alshahrani, S. M., Saqr, A. A., Alfadhel, M. M., Alshetaili, A. S., Almutairy, B. K., Alsubaiyel, A. M., Almari, A. H., Alamoudi, J. A., & Abourehab, M. A. S.
(2022). Application of CO2 Supercritical Fluid to Optimize the Solubility of Oxaprozin: Development of Novel Machine Learning Predictive Models. Molecules, 27(18), 5762.
https://doi.org/10.3390/molecules27185762