A. Aytekin Et Al. , "A bipolar neutrosophic combined compromise solution-based hybrid model for identifying blockchain application barriers and Benchmarking consensus algorithms," ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE , vol.133, 2024
Aytekin, A. Et Al. 2024. A bipolar neutrosophic combined compromise solution-based hybrid model for identifying blockchain application barriers and Benchmarking consensus algorithms. ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE , vol.133 .
Aytekin, A., BOZKURT, E., ORAKÇI, E., Uysal, M., Simic, V., Korucuk, S., ... Pamucar, D.(2024). A bipolar neutrosophic combined compromise solution-based hybrid model for identifying blockchain application barriers and Benchmarking consensus algorithms. ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE , vol.133.
Aytekin, Ahmet Et Al. "A bipolar neutrosophic combined compromise solution-based hybrid model for identifying blockchain application barriers and Benchmarking consensus algorithms," ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE , vol.133, 2024
Aytekin, Ahmet Et Al. "A bipolar neutrosophic combined compromise solution-based hybrid model for identifying blockchain application barriers and Benchmarking consensus algorithms." ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE , vol.133, 2024
Aytekin, A. Et Al. (2024) . "A bipolar neutrosophic combined compromise solution-based hybrid model for identifying blockchain application barriers and Benchmarking consensus algorithms." ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE , vol.133.
@article{article, author={Ahmet Aytekin Et Al. }, title={A bipolar neutrosophic combined compromise solution-based hybrid model for identifying blockchain application barriers and Benchmarking consensus algorithms}, journal={ENGINEERING APPLICATIONS OF ARTIFICIAL INTELLIGENCE}, year=2024}