M. YAYLACI Et Al. , "Implementation of finite element and artificial neural network methods to analyze the contact problem of a functionally graded layer containing crack," Steel and Composite Structures , vol.45, no.4, pp.501-511, 2022
YAYLACI, M. Et Al. 2022. Implementation of finite element and artificial neural network methods to analyze the contact problem of a functionally graded layer containing crack. Steel and Composite Structures , vol.45, no.4 , 501-511.
YAYLACI, M., Yaylacı, E. U., Özdemir, M. E., Ay, S., & ÖZTÜRK, Ş., (2022). Implementation of finite element and artificial neural network methods to analyze the contact problem of a functionally graded layer containing crack. Steel and Composite Structures , vol.45, no.4, 501-511.
YAYLACI, MURAT Et Al. "Implementation of finite element and artificial neural network methods to analyze the contact problem of a functionally graded layer containing crack," Steel and Composite Structures , vol.45, no.4, 501-511, 2022
YAYLACI, MURAT Et Al. "Implementation of finite element and artificial neural network methods to analyze the contact problem of a functionally graded layer containing crack." Steel and Composite Structures , vol.45, no.4, pp.501-511, 2022
YAYLACI, M. Et Al. (2022) . "Implementation of finite element and artificial neural network methods to analyze the contact problem of a functionally graded layer containing crack." Steel and Composite Structures , vol.45, no.4, pp.501-511.
@article{article, author={MURAT YAYLACI Et Al. }, title={Implementation of finite element and artificial neural network methods to analyze the contact problem of a functionally graded layer containing crack}, journal={Steel and Composite Structures}, year=2022, pages={501-511} }