Marczyk, J.; Ziejewska, C.; Pławecka, K.; Bąk, A.; Łach, M.; Korniejenko, K.; Hager, I.; Mikuła, J.; Lin, W.-T.; Hebda, M.
Optimizing the L/S Ratio in Geopolymers for the Production of Large-Size Elements with 3D Printing Technology. Materials 2022, 15, 3362.
https://doi.org/10.3390/ma15093362
AMA Style
Marczyk J, Ziejewska C, Pławecka K, Bąk A, Łach M, Korniejenko K, Hager I, Mikuła J, Lin W-T, Hebda M.
Optimizing the L/S Ratio in Geopolymers for the Production of Large-Size Elements with 3D Printing Technology. Materials. 2022; 15(9):3362.
https://doi.org/10.3390/ma15093362
Chicago/Turabian Style
Marczyk, Joanna, Celina Ziejewska, Kinga Pławecka, Agnieszka Bąk, Michał Łach, Kinga Korniejenko, Izabela Hager, Janusz Mikuła, Wei-Ting Lin, and Marek Hebda.
2022. "Optimizing the L/S Ratio in Geopolymers for the Production of Large-Size Elements with 3D Printing Technology" Materials 15, no. 9: 3362.
https://doi.org/10.3390/ma15093362
APA Style
Marczyk, J., Ziejewska, C., Pławecka, K., Bąk, A., Łach, M., Korniejenko, K., Hager, I., Mikuła, J., Lin, W.-T., & Hebda, M.
(2022). Optimizing the L/S Ratio in Geopolymers for the Production of Large-Size Elements with 3D Printing Technology. Materials, 15(9), 3362.
https://doi.org/10.3390/ma15093362