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The exploration of our solar system by spacecraft has been one of the greatest scientific achievements of the twentieth century. The mapping of other worlds has resulted from numerous space missions by NASA, extending over many years. The data from these planetary missions have been synthesised by the US Geological Survey to produce detailed maps. Every planet, moon, or small body investigated in NASA missions is discussed and where appropriate mapped. Geological maps, reference maps, shaded relief maps, synthetic aperture radar mosaics and colour photomosaics marvellously present the features of planets and their satellites. This is truly a 'road map' of our solar system. All maps are fully indexed. The gazetteer lists the names of all features officially approved by the International Astronomical Union. The Compact NASA Atlas of the Solar System is the definitive reference atlas for planetary science.
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Petrophysical Characterization and Fluids Transport in Unconventional Reservoirs presents a comprehensive look at these new methods and technologies for the petrophysical characterization of unconventional reservoirs, including recent theoretical advances and modeling on fluids transport in unconventional reservoirs. The book is a valuable tool for geoscientists and engineers working in academia and industry. Many novel technologies and approaches, including petrophysics, multi-scale modelling, rock reconstruction and upscaling approaches are discussed, along with the challenge of the development of unconventional reservoirs and the mechanism of multi-phase/multi-scale flow and transport in these structures. - Includes both practical and theoretical research for the characterization of unconventional reservoirs - Covers the basic approaches and mechanisms for enhanced recovery techniques in unconventional reservoirs - Presents the latest research in the fluid transport processes in unconventional reservoirs
The findings of Voyager have brought Jupiter's moons out from the shadows. Now as much of interest to geologists as to astronomers, these satellites are brought under closer scrutiny by more than 50 international authorities in this volume. Included is research on thermal evolution, surface composition, cratering time scales, and other subjects; but also key chapters focusing on the satellite Io's volcanic eruptions, thermodynamics, phase composition and more. These 24 contributions constitute a reference that will stand as the decade's definitive work on Jupiter's satellites--and a springboard to further hypotheses.