Citation Formats
Modeling capillary bridge dynamics and crack healing between surfaces of nanoscale roughness
  • IEEE
  • ACM
  • APA
  • Chicago
  • MLA
  • Harvard
  • BibTeX

E. Soylemez And M. P. de Boer, "Modeling capillary bridge dynamics and crack healing between surfaces of nanoscale roughness," JOURNAL OF MICROMECHANICS AND MICROENGINEERING , vol.27, no.12, 2017

Soylemez, E. And de Boer, M. P. 2017. Modeling capillary bridge dynamics and crack healing between surfaces of nanoscale roughness. JOURNAL OF MICROMECHANICS AND MICROENGINEERING , vol.27, no.12 .

Soylemez, E., & de Boer, M. P., (2017). Modeling capillary bridge dynamics and crack healing between surfaces of nanoscale roughness. JOURNAL OF MICROMECHANICS AND MICROENGINEERING , vol.27, no.12.

Soylemez, Emrecan, And Maarten P. de Boer. "Modeling capillary bridge dynamics and crack healing between surfaces of nanoscale roughness," JOURNAL OF MICROMECHANICS AND MICROENGINEERING , vol.27, no.12, 2017

Soylemez, Emrecan And de Boer, Maarten P. . "Modeling capillary bridge dynamics and crack healing between surfaces of nanoscale roughness." JOURNAL OF MICROMECHANICS AND MICROENGINEERING , vol.27, no.12, 2017

Soylemez, E. And de Boer, M. P. (2017) . "Modeling capillary bridge dynamics and crack healing between surfaces of nanoscale roughness." JOURNAL OF MICROMECHANICS AND MICROENGINEERING , vol.27, no.12.

@article{article, author={Emrecan Söylemez And author={Maarten P. de Boer}, title={Modeling capillary bridge dynamics and crack healing between surfaces of nanoscale roughness}, journal={JOURNAL OF MICROMECHANICS AND MICROENGINEERING}, year=2017}