G. KAPLAN Et Al. , "The effect of geopolymer slurries with clinker aggregates and marble waste powder on embodied energy and high-temperature resistance in prepacked concrete: ANFIS-based prediction model," Journal of Building Engineering , vol.67, 2023
KAPLAN, G. Et Al. 2023. The effect of geopolymer slurries with clinker aggregates and marble waste powder on embodied energy and high-temperature resistance in prepacked concrete: ANFIS-based prediction model. Journal of Building Engineering , vol.67 .
KAPLAN, G., ÖZ, A., Bayrak, B., & AYDIN, A. C., (2023). The effect of geopolymer slurries with clinker aggregates and marble waste powder on embodied energy and high-temperature resistance in prepacked concrete: ANFIS-based prediction model. Journal of Building Engineering , vol.67.
KAPLAN, Gökhan Et Al. "The effect of geopolymer slurries with clinker aggregates and marble waste powder on embodied energy and high-temperature resistance in prepacked concrete: ANFIS-based prediction model," Journal of Building Engineering , vol.67, 2023
KAPLAN, Gökhan Et Al. "The effect of geopolymer slurries with clinker aggregates and marble waste powder on embodied energy and high-temperature resistance in prepacked concrete: ANFIS-based prediction model." Journal of Building Engineering , vol.67, 2023
KAPLAN, G. Et Al. (2023) . "The effect of geopolymer slurries with clinker aggregates and marble waste powder on embodied energy and high-temperature resistance in prepacked concrete: ANFIS-based prediction model." Journal of Building Engineering , vol.67.
@article{article, author={Gökhan KAPLAN Et Al. }, title={The effect of geopolymer slurries with clinker aggregates and marble waste powder on embodied energy and high-temperature resistance in prepacked concrete: ANFIS-based prediction model}, journal={Journal of Building Engineering}, year=2023}