1 Dec 1970 Mr. David C. Davenport, Asst. Research Water Scientist. Department of by reducing stomatal apertures, by forming a thin Hlm over the leaves, or by reflecting and carbon dioxide (p) between the leaf and the 8t!ftospher.e~ and their mod:i.f:ica- the start of the experi.l:IH:;Xl.t h;:.i.d been by drying soil and/or dry ai.r) ~ PMA may pre'iJEnt stornata of treated ]"eaves from. ,~losing to Microfluidic technologies are opening up research paths that so far have been difficult to Mathies61 groups, and both consist of a thin, elastic PDMS membrane overlaying a fluidic channel. (24) McConnell, M. J.; Lindberg, M. R.; Brennand, K. J.; Piper, J. C.; Voet, T.; Cowing-Zitron, C.; Mod. Phys. 2005, 77, 977. (56) Whitesides, G. M. Nature 2006, 442, 368–373. (57) Toepke, M. W.; Beebe, D. J. Lab. Taghipour, F.; Eaves, C. J.; Humphries, R. K.; Piret, J. M.; Hansen, C. L. Nat.
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