M. Furjan Et Al. , "RFOR-DQHFEM: Hybrid relaxed first-Order reliability and differential quadrature hierarchical finite element method for multi-physics reliability analysis of conical shells," Thin-Walled Structures , vol.205, 2024
Furjan, M. Et Al. 2024. RFOR-DQHFEM: Hybrid relaxed first-Order reliability and differential quadrature hierarchical finite element method for multi-physics reliability analysis of conical shells. Thin-Walled Structures , vol.205 .
Furjan, M., Kolahchi, R., & YAYLACI, M., (2024). RFOR-DQHFEM: Hybrid relaxed first-Order reliability and differential quadrature hierarchical finite element method for multi-physics reliability analysis of conical shells. Thin-Walled Structures , vol.205.
Furjan, M., R. Kolahchi, And MURAT YAYLACI. "RFOR-DQHFEM: Hybrid relaxed first-Order reliability and differential quadrature hierarchical finite element method for multi-physics reliability analysis of conical shells," Thin-Walled Structures , vol.205, 2024
Furjan, M. Et Al. "RFOR-DQHFEM: Hybrid relaxed first-Order reliability and differential quadrature hierarchical finite element method for multi-physics reliability analysis of conical shells." Thin-Walled Structures , vol.205, 2024
Furjan, M. Kolahchi, R. And YAYLACI, M. (2024) . "RFOR-DQHFEM: Hybrid relaxed first-Order reliability and differential quadrature hierarchical finite element method for multi-physics reliability analysis of conical shells." Thin-Walled Structures , vol.205.
@article{article, author={M. Furjan Et Al. }, title={RFOR-DQHFEM: Hybrid relaxed first-Order reliability and differential quadrature hierarchical finite element method for multi-physics reliability analysis of conical shells}, journal={Thin-Walled Structures}, year=2024}