A. Kaptan Et Al. , "In Vitro Comparison of Surface Roughness, Flexural, and Microtensile Strength of Various Glass-Ionomer-Based Materials and a New Alkasite Restorative Material.," Polymers , vol.15, no.3, 2023
Kaptan, A. Et Al. 2023. In Vitro Comparison of Surface Roughness, Flexural, and Microtensile Strength of Various Glass-Ionomer-Based Materials and a New Alkasite Restorative Material.. Polymers , vol.15, no.3 .
Kaptan, A., Oznurhan, F., & Candan, M., (2023). In Vitro Comparison of Surface Roughness, Flexural, and Microtensile Strength of Various Glass-Ionomer-Based Materials and a New Alkasite Restorative Material.. Polymers , vol.15, no.3.
Kaptan, ALPER, FATİH ÖZNURHAN, And Merve Candan. "In Vitro Comparison of Surface Roughness, Flexural, and Microtensile Strength of Various Glass-Ionomer-Based Materials and a New Alkasite Restorative Material.," Polymers , vol.15, no.3, 2023
Kaptan, ALPER Et Al. "In Vitro Comparison of Surface Roughness, Flexural, and Microtensile Strength of Various Glass-Ionomer-Based Materials and a New Alkasite Restorative Material.." Polymers , vol.15, no.3, 2023
Kaptan, A. Oznurhan, F. And Candan, M. (2023) . "In Vitro Comparison of Surface Roughness, Flexural, and Microtensile Strength of Various Glass-Ionomer-Based Materials and a New Alkasite Restorative Material.." Polymers , vol.15, no.3.
@article{article, author={ALPER KAPTAN Et Al. }, title={In Vitro Comparison of Surface Roughness, Flexural, and Microtensile Strength of Various Glass-Ionomer-Based Materials and a New Alkasite Restorative Material.}, journal={Polymers}, year=2023}