Al Salaheen, M.; Alaloul, W.S.; Malkawi, A.B.; de Brito, J.; Alzubi, K.M.; Al-Sabaeei, A.M.; Alnarabiji, M.S.
Modelling and Optimization for Mortar Compressive Strength Incorporating Heat-Treated Fly Oil Shale Ash as an Effective Supplementary Cementitious Material Using Response Surface Methodology. Materials 2022, 15, 6538.
https://doi.org/10.3390/ma15196538
AMA Style
Al Salaheen M, Alaloul WS, Malkawi AB, de Brito J, Alzubi KM, Al-Sabaeei AM, Alnarabiji MS.
Modelling and Optimization for Mortar Compressive Strength Incorporating Heat-Treated Fly Oil Shale Ash as an Effective Supplementary Cementitious Material Using Response Surface Methodology. Materials. 2022; 15(19):6538.
https://doi.org/10.3390/ma15196538
Chicago/Turabian Style
Al Salaheen, Marsail, Wesam Salah Alaloul, Ahmad B. Malkawi, Jorge de Brito, Khalid Mhmoud Alzubi, Abdulnaser M. Al-Sabaeei, and Mohamad Sahban Alnarabiji.
2022. "Modelling and Optimization for Mortar Compressive Strength Incorporating Heat-Treated Fly Oil Shale Ash as an Effective Supplementary Cementitious Material Using Response Surface Methodology" Materials 15, no. 19: 6538.
https://doi.org/10.3390/ma15196538
APA Style
Al Salaheen, M., Alaloul, W. S., Malkawi, A. B., de Brito, J., Alzubi, K. M., Al-Sabaeei, A. M., & Alnarabiji, M. S.
(2022). Modelling and Optimization for Mortar Compressive Strength Incorporating Heat-Treated Fly Oil Shale Ash as an Effective Supplementary Cementitious Material Using Response Surface Methodology. Materials, 15(19), 6538.
https://doi.org/10.3390/ma15196538