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The Effect of Unit Cell Geometry and Fill Rate on the Mechanical Strength of 3D Printed Poly–(Lactic) Acid Scaffolds
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M. Topuz, "The Effect of Unit Cell Geometry and Fill Rate on the Mechanical Strength of 3D Printed Poly–(Lactic) Acid Scaffolds," 9th International Engineering Architecture and Design Congress , İstanbul, Turkey, pp.1-7, 2022

Topuz, M. 2022. The Effect of Unit Cell Geometry and Fill Rate on the Mechanical Strength of 3D Printed Poly–(Lactic) Acid Scaffolds. 9th International Engineering Architecture and Design Congress , (İstanbul, Turkey), 1-7.

Topuz, M., (2022). The Effect of Unit Cell Geometry and Fill Rate on the Mechanical Strength of 3D Printed Poly–(Lactic) Acid Scaffolds . 9th International Engineering Architecture and Design Congress (pp.1-7). İstanbul, Turkey

Topuz, Mehmet. "The Effect of Unit Cell Geometry and Fill Rate on the Mechanical Strength of 3D Printed Poly–(Lactic) Acid Scaffolds," 9th International Engineering Architecture and Design Congress, İstanbul, Turkey, 2022

Topuz, Mehmet. "The Effect of Unit Cell Geometry and Fill Rate on the Mechanical Strength of 3D Printed Poly–(Lactic) Acid Scaffolds." 9th International Engineering Architecture and Design Congress , İstanbul, Turkey, pp.1-7, 2022

Topuz, M. (2022) . "The Effect of Unit Cell Geometry and Fill Rate on the Mechanical Strength of 3D Printed Poly–(Lactic) Acid Scaffolds." 9th International Engineering Architecture and Design Congress , İstanbul, Turkey, pp.1-7.

@conferencepaper{conferencepaper, author={Mehmet Topuz}, title={The Effect of Unit Cell Geometry and Fill Rate on the Mechanical Strength of 3D Printed Poly–(Lactic) Acid Scaffolds}, congress name={9th International Engineering Architecture and Design Congress}, city={İstanbul}, country={Turkey}, year={2022}, pages={1-7} }