Kim, H.-R.; Jang, M.-S.; Nam, Y.-G.; Kim, Y.-S.; Yang, S.-S.; Kim, Y.-J.; Jeong, J.-W.
Enhanced Permeability of Fe-Based Amorphous Powder Cores Realized through Selective Incorporation of Carbonyl Iron Powders at Inter-Particle Voids. Metals 2021, 11, 1220.
https://doi.org/10.3390/met11081220
AMA Style
Kim H-R, Jang M-S, Nam Y-G, Kim Y-S, Yang S-S, Kim Y-J, Jeong J-W.
Enhanced Permeability of Fe-Based Amorphous Powder Cores Realized through Selective Incorporation of Carbonyl Iron Powders at Inter-Particle Voids. Metals. 2021; 11(8):1220.
https://doi.org/10.3390/met11081220
Chicago/Turabian Style
Kim, Hea-Ran, Min-Sun Jang, Yeong-Gyun Nam, Yun-Seok Kim, Sang-Sun Yang, Yong-Jin Kim, and Jae-Won Jeong.
2021. "Enhanced Permeability of Fe-Based Amorphous Powder Cores Realized through Selective Incorporation of Carbonyl Iron Powders at Inter-Particle Voids" Metals 11, no. 8: 1220.
https://doi.org/10.3390/met11081220
APA Style
Kim, H.-R., Jang, M.-S., Nam, Y.-G., Kim, Y.-S., Yang, S.-S., Kim, Y.-J., & Jeong, J.-W.
(2021). Enhanced Permeability of Fe-Based Amorphous Powder Cores Realized through Selective Incorporation of Carbonyl Iron Powders at Inter-Particle Voids. Metals, 11(8), 1220.
https://doi.org/10.3390/met11081220