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    Plasma interactions monitoring system

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    The plasma environment around the space station is expected to be different from that environment which occurs naturally at these altitudes because of the unprecedented size of the space station, its orbital motion, and its high power distribution system. Although there are models which predict the environment around the station, they do not take into account changes in configuration, changes in the natural and induced environments, nor interactions between the different environments. There will be unique perturbations associated with the space station, which will vary as the space station is being developed. Even after the developed space station has been completed environmental conditions will change as the payloads are changed and as the station systems and materials undergo degradation and modification. Because the space station will be a point of many varied activities the environment will continually undergo perturbations from effluents resulting from operations of the reboost module, EVA, airlock operations, and vacuum venting. The use of the Mobile Service Center will cause disturbances which cannot, at this time, be predicted. Also, the natural environment will be affected by solar flares. In addition, the operations of attached payloads, (e.g., ASTROMAG) themselves will undoubtedly cause perturbations to the ambient environment. Finally, the natural environment will change as a result of natural perturbations such as solar flares and geomagnetic storms

    Approximating C1,0C^{1,0}-foliations

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    We extend the Eliashberg-Thurston theorem on approximations of taut oriented C2C^2-foliations of 3-manifolds by both positive and negative contact structures to a large class of taut oriented C1,0C^{1,0}-foliations, where by C1,0C^{1,0} foliation, we mean a foliation with continuous tangent plane field. These C1,0C^{1,0}-foliations can therefore be approximated by weakly symplectically fillable, universally tight, contact structures. This allows applications of C2C^2-foliation theory to contact topology and Floer theory to be generalized and extended to constructions of C1,0C^{1,0}-foliations.Comment: 52 pages, 5 figures. Final version with updated references, corrections and terminolog

    STATE-LEVEL ANALYSIS OF NATIONAL BEEF POLICY: THE USE OF STATE ECONOMETRIC MODELS

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    Interest has grown in analyzing the impact of national imports of foreign beef on state agricultural sectors. In this study, an interfaced Hawaiian-national model is simulated for a change in national beef imports. Hawaiian and national impacts demonstrate wide variation in both sign and magnitude. Usefulness of state models is emphasized for situations where state impacts of national policies are of interest.Agricultural and Food Policy,

    THE EFFECTS OF ALTERNATIVE BEEF IMPORT QUOTA REGIMES ON THE BEEF INDUSTRIES OF THE AGGREGATE UNITED STATES AND HAWAII

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    The effects of the 1964 and 1979 beef import laws on the beef industries of the aggregate United States and Hawaii are simulated for 1972-81 by linking Hawaii and national econometric models. Although impacts are slight for both models, Hawaii beef prices and production appear to be less affected by changes in beef import rules.International Relations/Trade, Livestock Production/Industries,
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