By National Research Council, Division on Engineering and Physical Sciences, Space Studies Board, Committee on Microgravity Research
For thirty years, the NASA microgravity software has used area as a device to review primary movement phenomena which are very important to fields starting from combustion technological know-how to biotechnology. This publication assesses the earlier impression and present prestige of microgravity examine courses in combustion, fluid dynamics, basic physics, and fabrics technology and provides ideas for promising issues of destiny learn in each one self-discipline. advice is given for environment priorities throughout disciplines via assessing every one steered subject by way of the chance of its good fortune and the importance of its power influence on clinical wisdom and figuring out; terrestrial purposes and expertise wishes; and NASA know-how wishes. At NASA's request, the ebook additionally comprises an exam of rising learn fields akin to nanotechnology and biophysics, and makes suggestions relating to themes that may be compatible for integration into NASA's microgravity application.
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Extra resources for Assessment of Directions in Microgravity and Physical Sciences Research at NASA
Approximately 50 percent of the chemical industry products and at least 75 percent of the raw materials are in granular form (Nedderman, 1992) amounting to $61 billion annually. S. industrial plants is wasted because of problems related to the transport of granular materials. Thus, the impact on industry of even small gains in understanding the dynamics of granular media should be profound. , 1994) revealed new forms of matter: quasi-neutral, self-organized plasmas. Pieper and Goree (1996) resolved a long-standing controversy over the applicability of fluidbased dispersion relations to strongly coupled dusty plasmas.
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73(5): 652-655. A. 2001. Jamming phase diagram for attractive particles. Nature 411: 772-775. L. 1997. Long-wavelength surface-tensiondriven Bénard convection: Experiment and theory. J. Fluid Mech. 345: 45-78. , and Lichter, S. 1998. Capillary flow in an interior corner. J. Fluid Mech. 373: 349-378. N. 1995. Boiling heat transfer in the quenching of a hot tube under microgravity. J. Thermophys. Heat Transfer 9: 302. M. 1997. Crystallization of hard-sphere colloids in microgravity. Nature 387: 883-885.