A. GÜNAY BULUTSUZ Et Al. , "Development of Fe-10% (HA/β-Tricalcium Phosphate) Composite via Solid-State Manufacturing Route and Investigation of Material Properties for Biodegradable Implant Applications," Advanced Engineering Materials , vol.26, no.11, 2024
GÜNAY BULUTSUZ, A. Et Al. 2024. Development of Fe-10% (HA/β-Tricalcium Phosphate) Composite via Solid-State Manufacturing Route and Investigation of Material Properties for Biodegradable Implant Applications. Advanced Engineering Materials , vol.26, no.11 .
GÜNAY BULUTSUZ, A., Chrominski, W., Bazarnik, P., & Bruder, E., (2024). Development of Fe-10% (HA/β-Tricalcium Phosphate) Composite via Solid-State Manufacturing Route and Investigation of Material Properties for Biodegradable Implant Applications. Advanced Engineering Materials , vol.26, no.11.
GÜNAY BULUTSUZ, Aslı Et Al. "Development of Fe-10% (HA/β-Tricalcium Phosphate) Composite via Solid-State Manufacturing Route and Investigation of Material Properties for Biodegradable Implant Applications," Advanced Engineering Materials , vol.26, no.11, 2024
GÜNAY BULUTSUZ, Aslı G. Et Al. "Development of Fe-10% (HA/β-Tricalcium Phosphate) Composite via Solid-State Manufacturing Route and Investigation of Material Properties for Biodegradable Implant Applications." Advanced Engineering Materials , vol.26, no.11, 2024
GÜNAY BULUTSUZ, A. Et Al. (2024) . "Development of Fe-10% (HA/β-Tricalcium Phosphate) Composite via Solid-State Manufacturing Route and Investigation of Material Properties for Biodegradable Implant Applications." Advanced Engineering Materials , vol.26, no.11.
@article{article, author={Aslı GÜNAY BULUTSUZ Et Al. }, title={Development of Fe-10% (HA/β-Tricalcium Phosphate) Composite via Solid-State Manufacturing Route and Investigation of Material Properties for Biodegradable Implant Applications}, journal={Advanced Engineering Materials}, year=2024}