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Harnessing Fe 2 O 3 to Improve HAP Composites: Investigating Radiation Shielding, Mechanical Attributes, and Magnetic Field Effects
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R. B. Malidarre Et Al. , "Harnessing Fe 2 O 3 to Improve HAP Composites: Investigating Radiation Shielding, Mechanical Attributes, and Magnetic Field Effects," Research Square , vol.1, no.1, pp.1-23, 2023

Malidarre, R. B. Et Al. 2023. Harnessing Fe 2 O 3 to Improve HAP Composites: Investigating Radiation Shielding, Mechanical Attributes, and Magnetic Field Effects. Research Square , vol.1, no.1 , 1-23.

Malidarre, R. B., Akkurt, İ., Zakaly, H. M., Korkmaz, A. V., & Ekmekçi, İ., (2023). Harnessing Fe 2 O 3 to Improve HAP Composites: Investigating Radiation Shielding, Mechanical Attributes, and Magnetic Field Effects. Research Square , vol.1, no.1, 1-23.

Malidarre, Roya Et Al. "Harnessing Fe 2 O 3 to Improve HAP Composites: Investigating Radiation Shielding, Mechanical Attributes, and Magnetic Field Effects," Research Square , vol.1, no.1, 1-23, 2023

Malidarre, Roya B. Et Al. "Harnessing Fe 2 O 3 to Improve HAP Composites: Investigating Radiation Shielding, Mechanical Attributes, and Magnetic Field Effects." Research Square , vol.1, no.1, pp.1-23, 2023

Malidarre, R. B. Et Al. (2023) . "Harnessing Fe 2 O 3 to Improve HAP Composites: Investigating Radiation Shielding, Mechanical Attributes, and Magnetic Field Effects." Research Square , vol.1, no.1, pp.1-23.

@article{article, author={Roya Boodaghi Malidarre Et Al. }, title={Harnessing Fe 2 O 3 to Improve HAP Composites: Investigating Radiation Shielding, Mechanical Attributes, and Magnetic Field Effects}, journal={Research Square}, year=2023, pages={1-23} }