Interdisciplinary Applied Mathematics

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Ratulowski, J. and Chang, H.-C. (1990). Marangoni effects of trace impurities on the motion of long gas bubbles in capillaries. J. Fluid Mech., 210:303-328.


Reed, L. (October 1993). Near term applications of microelectromechanical systems. 4th International Symposium on Micro Machine and Human Science, Nagoya, Japan, page 77.


Reed, L. D. and Morrison, F. A. (1976). Hydrodynamic interactions in electrophoresis. J. Colloid Interface Sci., 54(1):117-133.


Reuss, F. (1809). Sur un nouvel effet de l’electricite galvanique. Mdmoires de la Societe Imperiale de Naturalistes de Moscou, 2:327-337.


Revenga, M., Espanol, P., and Zuniga, I. (1999). Boundary conditions in dissipative particle dynamics. Computer Physics Communications, 121-122:309311.


Rewienski, M. and White, J. (2001). A trajectory piecewise-linear approach to model order reduction and fast simulation of nonlinear circuits and micro-machined devices. In Proceedings of ICCAD, pages 252-257.


Rewienski, M. and White, J. (2002). Improving trajectory piecewise-linear approach to nonlinear model order reduction for micromachined devices using an aggregated projection basis. In Modeling and Simulation of Microsystems, pages 128-131.


Reyes, D. R., Lossifidis, D., Auroux, P., and Manz, A. (2002). Micro total analysis systems. 1. Introduction, theory, and technology. Anal. Chem., 74:26232636.


Reynolds, O. (1879). On certain dimensional properties of matter in the gaseous state. Part I. Experimental researches on thermal transpiration of gases through porous    plates    and    on    the    laws    of transpiration    and    impulsion,    in


cluding an experimental proof that gas is not a continuous plenum. Part II. On an extension of the dynamical theory of gas, which includes the stresses, tangential and normal, caused by a varying condition of gas, and affords an explanation of the phenomena of transpiration and impulsion. Phil. Trans. Royal Society London, B 170:727-845.

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