İ. Kotancı Et Al. , "Low Molarity Geopolymer Composites: Can Alternative Electrical Curring Influence and Enhance Key Harde-ning Properties?," 15th fib International PhD Symposium in Civil Engineering , Budapest, Hungary, pp.1-8, 2024
Kotancı, İ. Et Al. 2024. Low Molarity Geopolymer Composites: Can Alternative Electrical Curring Influence and Enhance Key Harde-ning Properties?. 15th fib International PhD Symposium in Civil Engineering , (Budapest, Hungary), 1-8.
Kotancı, İ., Uysal, M., Bilir, T., Çoşgun, T., & Aygun, B. F., (2024). Low Molarity Geopolymer Composites: Can Alternative Electrical Curring Influence and Enhance Key Harde-ning Properties? . 15th fib International PhD Symposium in Civil Engineering (pp.1-8). Budapest, Hungary
Kotancı, İlyas Et Al. "Low Molarity Geopolymer Composites: Can Alternative Electrical Curring Influence and Enhance Key Harde-ning Properties?," 15th fib International PhD Symposium in Civil Engineering, Budapest, Hungary, 2024
Kotancı, İlyas Et Al. "Low Molarity Geopolymer Composites: Can Alternative Electrical Curring Influence and Enhance Key Harde-ning Properties?." 15th fib International PhD Symposium in Civil Engineering , Budapest, Hungary, pp.1-8, 2024
Kotancı, İ. Et Al. (2024) . "Low Molarity Geopolymer Composites: Can Alternative Electrical Curring Influence and Enhance Key Harde-ning Properties?." 15th fib International PhD Symposium in Civil Engineering , Budapest, Hungary, pp.1-8.
@conferencepaper{conferencepaper, author={İlyas Kotancı Et Al. }, title={Low Molarity Geopolymer Composites: Can Alternative Electrical Curring Influence and Enhance Key Harde-ning Properties?}, congress name={15th fib International PhD Symposium in Civil Engineering}, city={Budapest}, country={Hungary}, year={2024}, pages={1-8} }