Lam, T.-N.; Wu, C.-H.; Huang, S.-H.; Ko, W.-C.; Huang, Y.-L.; Ma, C.-Y.; Wang, C.-C.; Huang, E.-W.
Multi-Scale Microstructure Investigation for a PM2.5 Air-Filter Efficiency Study of Non-Woven Polypropylene. Quantum Beam Sci. 2019, 3, 20.
https://doi.org/10.3390/qubs3040020
AMA Style
Lam T-N, Wu C-H, Huang S-H, Ko W-C, Huang Y-L, Ma C-Y, Wang C-C, Huang E-W.
Multi-Scale Microstructure Investigation for a PM2.5 Air-Filter Efficiency Study of Non-Woven Polypropylene. Quantum Beam Science. 2019; 3(4):20.
https://doi.org/10.3390/qubs3040020
Chicago/Turabian Style
Lam, Tu-Ngoc, Chen-Hsien Wu, Sheng-Hsiu Huang, Wen-Ching Ko, Yu-Lih Huang, Chia-Yin Ma, Chun-Chieh Wang, and E-Wen Huang.
2019. "Multi-Scale Microstructure Investigation for a PM2.5 Air-Filter Efficiency Study of Non-Woven Polypropylene" Quantum Beam Science 3, no. 4: 20.
https://doi.org/10.3390/qubs3040020
APA Style
Lam, T. -N., Wu, C. -H., Huang, S. -H., Ko, W. -C., Huang, Y. -L., Ma, C. -Y., Wang, C. -C., & Huang, E. -W.
(2019). Multi-Scale Microstructure Investigation for a PM2.5 Air-Filter Efficiency Study of Non-Woven Polypropylene. Quantum Beam Science, 3(4), 20.
https://doi.org/10.3390/qubs3040020