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Droplets and Bubbles

Bibliographic References tagged with Droplets and Bubbles

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Z. Nie, M. Seo, S. Xu, P. C. Lewis, M. Mok, E. Kumacheva, G. M. Whitesides, P. Garstecki, and H.A. Stone. 2008. “Emulsificaton in Microfluidic Flow-Focusing Device: Effect of the Viscosities of the Liquids”. Microfluid Nanofluid, 5, Pp. 585-94
Z. Nie, M. Seo, S. Xu, P. C. Lewis, M. Mok, E. Kumacheva, G. M. Whitesides, P. Garstecki, and H.A. Stone. 2008. “Emulsificaton in Microfluidic Flow-Focusing Device: Effect of the Viscosities of the Liquids”. Microfluid Nanofluid, 5, Pp. 585-94
M. Hashimoto, S. S. Shevkoplyas, Zasońska, T. Szymborski, P. Garstecki, and G. M. Whitesides. 2008. “Formation of Bubbles and Droplets in Parallel, Coupled Flow-Focusing Geometries”. Small, 4, Pp. 1795-1805
M. Hashimoto, S. S. Shevkoplyas, Zasońska, T. Szymborski, P. Garstecki, and G. M. Whitesides. 2008. “Formation of Bubbles and Droplets in Parallel, Coupled Flow-Focusing Geometries”. Small, 4, Pp. 1795-1805
C. A. Stan, G. F. Schneider, S. S. Shevkoplyas, M. Hashimoto, M. Ibanescu, B. J. Wiley, and G. M. Whitesides. 2009. “A Microfluidic Apparatus for the Study of Ice Nucleation in Supercooled Water Drops”. LOC, 9, Pp. 2293-2305
C. A. Stan, G. F. Schneider, S. S. Shevkoplyas, M. Hashimoto, M. Ibanescu, B. J. Wiley, and G. M. Whitesides. 2009. “A Microfluidic Apparatus for the Study of Ice Nucleation in Supercooled Water Drops”. LOC, 9, Pp. 2293-2305
S. K. Y. Tang, Z. Li, A. R. Abate, J. J. Agresti, D. A. Weitz, D. Psaltis, and G. M. Whitesides. 2009. “A Multi-Color Fast-Switching Microfluidic Droplet Dye Laser”. LOC, 9, Pp. 2767-71
S. K. Y. Tang, Z. Li, A. R. Abate, J. J. Agresti, D. A. Weitz, D. Psaltis, and G. M. Whitesides. 2009. “A Multi-Color Fast-Switching Microfluidic Droplet Dye Laser”. LOC, 9, Pp. 2767-71
D. B. Wolfe, D. Qin, and G. M. Whitesides. 2009. “Rapid Prototyping of Microstructures by Soft Lithography for Biotechnology”. In Microengineering in Biotechnology, edited by M. P. Hughes and K. F. Hoettges, Pp. 81-107. New York, NY: Humana Press
D. B. Wolfe, D. Qin, and G. M. Whitesides. 2009. “Rapid Prototyping of Microstructures by Soft Lithography for Biotechnology”. In Microengineering in Biotechnology, edited by M. P. Hughes and K. F. Hoettges, Pp. 81-107. New York, NY: Humana Press
P. J. A. Kenis, R. F. Ismagilov, S. Takayama, G. M. Whitesides, S. Li, and H. S. White. 2000. “Fabrication Inside Microchannels Using Fluid Flow”. Accounts of Chemical Research, 33, Pp. 841-47
P. J. A. Kenis, R. F. Ismagilov, S. Takayama, G. M. Whitesides, S. Li, and H. S. White. 2000. “Fabrication Inside Microchannels Using Fluid Flow”. Accounts of Chemical Research, 33, Pp. 841-47
R. F. Ismagilov, D. Rosmarin, P. J. A. Kenis, D. T. Chiu, W. Zhang, H.A. Stone, and G. M. Whitesides. 2001. “Pressure-Driven Laminar Flow in Tangential Microchannels: An Elastomeric Microfluidic Switch”. Analytical Chemistry, 73, Pp. 4682-87
R. F. Ismagilov, D. Rosmarin, P. J. A. Kenis, D. T. Chiu, W. Zhang, H.A. Stone, and G. M. Whitesides. 2001. “Pressure-Driven Laminar Flow in Tangential Microchannels: An Elastomeric Microfluidic Switch”. Analytical Chemistry, 73, Pp. 4682-87
M. J. Fuerstman, P. Deschatelets, R. S. Kane, A. Schwartz, P. J. A. Kenis, J. Deutch, and G. M. Whitesides. 2003. “Solving Mazes Using Microfluidic Networks”. Langmuir, 19, Pp. 4714-22
M. J. Fuerstman, P. Deschatelets, R. S. Kane, A. Schwartz, P. J. A. Kenis, J. Deutch, and G. M. Whitesides. 2003. “Solving Mazes Using Microfluidic Networks”. Langmuir, 19, Pp. 4714-22
P. Garstecki, I. Gitlin, W. R. DiLuzio, and G. M. Whitesides. 2004. “Formation of Monodisperse Bubbles in a Microfluidic Flow-Focusing Device”. Applied Physics Letters, 85, Pp. 2649-51
P. Garstecki, I. Gitlin, W. R. DiLuzio, and G. M. Whitesides. 2004. “Formation of Monodisperse Bubbles in a Microfluidic Flow-Focusing Device”. Applied Physics Letters, 85, Pp. 2649-51