| Style | Citing Format |
|---|---|
| MLA | Zare Y, et al.. "Nanodiamond Agglomeration in Polymer Composites: A Practical Model Predicting the Tensile Modulus." Journal of Materials Research and Technology, vol. 38, no. , 2025, pp. 5649-5656. |
| APA | Zare Y, Munir MT, Rhee KY, Park SJ (2025). Nanodiamond Agglomeration in Polymer Composites: A Practical Model Predicting the Tensile Modulus. Journal of Materials Research and Technology, 38(), 5649-5656. |
| Chicago | Zare Y, Munir MT, Rhee KY, Park SJ. "Nanodiamond Agglomeration in Polymer Composites: A Practical Model Predicting the Tensile Modulus." Journal of Materials Research and Technology 38, no. (2025): 5649-5656. |
| Harvard | Zare Y et al. (2025) 'Nanodiamond Agglomeration in Polymer Composites: A Practical Model Predicting the Tensile Modulus', Journal of Materials Research and Technology, 38(), pp. 5649-5656. |
| Vancouver | Zare Y, Munir MT, Rhee KY, Park SJ. Nanodiamond Agglomeration in Polymer Composites: A Practical Model Predicting the Tensile Modulus. Journal of Materials Research and Technology. 2025;38():5649-5656. |
| BibTex | @article{ author = {Zare Y and Munir MT and Rhee KY and Park SJ}, title = {Nanodiamond Agglomeration in Polymer Composites: A Practical Model Predicting the Tensile Modulus}, journal = {Journal of Materials Research and Technology}, volume = {38}, number = {}, pages = {5649-5656}, year = {2025} } |
| RIS | TY - JOUR AU - Zare Y AU - Munir MT AU - Rhee KY AU - Park SJ TI - Nanodiamond Agglomeration in Polymer Composites: A Practical Model Predicting the Tensile Modulus JO - Journal of Materials Research and Technology VL - 38 IS - SP - 5649 EP - 5656 PY - 2025 ER - |