| Style | Citing Format |
|---|---|
| MLA | Khalil Arjmandi S, et al.. "Modeling of Electrical Conductivity for Polymer–Carbon Nanofiber Systems." Materials, vol. 15, no. 19, 2022, pp. -. |
| APA | Khalil Arjmandi S, Khademzadeh Yeganeh J, Zare Y, Rhee KY (2022). Modeling of Electrical Conductivity for Polymer–Carbon Nanofiber Systems. Materials, 15(19), -. |
| Chicago | Khalil Arjmandi S, Khademzadeh Yeganeh J, Zare Y, Rhee KY. "Modeling of Electrical Conductivity for Polymer–Carbon Nanofiber Systems." Materials 15, no. 19 (2022): -. |
| Harvard | Khalil Arjmandi S et al. (2022) 'Modeling of Electrical Conductivity for Polymer–Carbon Nanofiber Systems', Materials, 15(19), pp. -. |
| Vancouver | Khalil Arjmandi S, Khademzadeh Yeganeh J, Zare Y, Rhee KY. Modeling of Electrical Conductivity for Polymer–Carbon Nanofiber Systems. Materials. 2022;15(19):-. |
| BibTex | @article{ author = {Khalil Arjmandi S and Khademzadeh Yeganeh J and Zare Y and Rhee KY}, title = {Modeling of Electrical Conductivity for Polymer–Carbon Nanofiber Systems}, journal = {Materials}, volume = {15}, number = {19}, pages = {-}, year = {2022} } |
| RIS | TY - JOUR AU - Khalil Arjmandi S AU - Khademzadeh Yeganeh J AU - Zare Y AU - Rhee KY TI - Modeling of Electrical Conductivity for Polymer–Carbon Nanofiber Systems JO - Materials VL - 15 IS - 19 SP - EP - PY - 2022 ER - |