Cite
Direct numerical simulation of electrokinetic transport phenomena: variational multi-scale stabilization and octree-based mesh refinement
MLA
Kim, Sungu, et al. Direct Numerical Simulation of Electrokinetic Transport Phenomena: Variational Multi-Scale Stabilization and Octree-Based Mesh Refinement. Jan. 2023. EBSCOhost, widgets.ebscohost.com/prod/customlink/proxify/proxify.php?count=1&encode=0&proxy=&find_1=&replace_1=&target=https://search.ebscohost.com/login.aspx?direct=true&site=eds-live&scope=site&db=edsair&AN=edsair.doi.dedup.....cb88944474733983bd2fe1e1e0ed40b2&authtype=sso&custid=ns315887.
APA
Kim, S., Saurabh, K., Khanwale, M. A., Mani, A., Anand, R. K., & Ganapathysubramanian, B. (2023). Direct numerical simulation of electrokinetic transport phenomena: variational multi-scale stabilization and octree-based mesh refinement.
Chicago
Kim, Sungu, Kumar Saurabh, Makrand A. Khanwale, Ali Mani, Robbyn K. Anand, and Baskar Ganapathysubramanian. 2023. “Direct Numerical Simulation of Electrokinetic Transport Phenomena: Variational Multi-Scale Stabilization and Octree-Based Mesh Refinement,” January. http://widgets.ebscohost.com/prod/customlink/proxify/proxify.php?count=1&encode=0&proxy=&find_1=&replace_1=&target=https://search.ebscohost.com/login.aspx?direct=true&site=eds-live&scope=site&db=edsair&AN=edsair.doi.dedup.....cb88944474733983bd2fe1e1e0ed40b2&authtype=sso&custid=ns315887.