Atıf Formatları
Hydrothermal analysis of nanoparticles transportation through a porous compound cavity utilizing two temperature model and radiation heat transfer under the effects of magnetic field
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

Z. Li Et Al. , "Hydrothermal analysis of nanoparticles transportation through a porous compound cavity utilizing two temperature model and radiation heat transfer under the effects of magnetic field," Microsystem Technologies , vol.26, no.2, pp.333-344, 2020

Li, Z. Et Al. 2020. Hydrothermal analysis of nanoparticles transportation through a porous compound cavity utilizing two temperature model and radiation heat transfer under the effects of magnetic field. Microsystem Technologies , vol.26, no.2 , 333-344.

Li, Z., SELİMEFENDİGİL, F., Sheikholeslami, M., Shafee, A., & Alghamdi, M., (2020). Hydrothermal analysis of nanoparticles transportation through a porous compound cavity utilizing two temperature model and radiation heat transfer under the effects of magnetic field. Microsystem Technologies , vol.26, no.2, 333-344.

Li, Zhixiong Et Al. "Hydrothermal analysis of nanoparticles transportation through a porous compound cavity utilizing two temperature model and radiation heat transfer under the effects of magnetic field," Microsystem Technologies , vol.26, no.2, 333-344, 2020

Li, Zhixiong Et Al. "Hydrothermal analysis of nanoparticles transportation through a porous compound cavity utilizing two temperature model and radiation heat transfer under the effects of magnetic field." Microsystem Technologies , vol.26, no.2, pp.333-344, 2020

Li, Z. Et Al. (2020) . "Hydrothermal analysis of nanoparticles transportation through a porous compound cavity utilizing two temperature model and radiation heat transfer under the effects of magnetic field." Microsystem Technologies , vol.26, no.2, pp.333-344.

@article{article, author={Zhixiong Li Et Al. }, title={Hydrothermal analysis of nanoparticles transportation through a porous compound cavity utilizing two temperature model and radiation heat transfer under the effects of magnetic field}, journal={Microsystem Technologies}, year=2020, pages={333-344} }