U.S. Highway 40, Sacramento to Reno, Dixie Valley and Sand Springs Range, Nevada
Author: Geological Society of Sacramento
Publisher:
Published: 1962
Total Pages: 134
ISBN-13:
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Author: Geological Society of Sacramento
Publisher:
Published: 1962
Total Pages: 134
ISBN-13:
DOWNLOAD EBOOKAuthor: R.R. Bowker Company
Publisher: R. R. Bowker
Published: 1978
Total Pages: 1436
ISBN-13:
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Publisher: NV Bureau of Mines & Geology
Published:
Total Pages: 188
ISBN-13:
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Publisher:
Published: 1982
Total Pages: 1374
ISBN-13:
DOWNLOAD EBOOKOver 220,000 entries representing some 56,000 Library of Congress subject headings. Covers all disciplines of science and technology, e.g., engineering, agriculture, and domestic arts. Also contains at least 5000 titles published before 1876. Has many applications in libraries, information centers, and other organizations concerned with scientific and technological literature. Subject index contains main listing of entries. Each entry gives cataloging as prepared by the Library of Congress. Author/title indexes.
Author: R.R. Bowker Company. Department of Bibliography
Publisher:
Published: 1978
Total Pages: 1408
ISBN-13:
DOWNLOAD EBOOKAuthor: Geological Society of Sacramento
Publisher:
Published: 1962
Total Pages: 132
ISBN-13:
DOWNLOAD EBOOKAuthor: Adrian M. Harvey
Publisher: Geological Society of London
Published: 2005
Total Pages: 258
ISBN-13: 9781862391895
DOWNLOAD EBOOKAlluvial fans are important sedimentary environments. They trap sediment delivered from mountain source areas, and exert an important control on the delivery of sediment to downstream environments, to axial drainages and to sedimentary basins. They preserve a sensitive record of environmental change within the mountain source areas. Alluvial fan geomorphology and sedimentology reflect not only drainage basin size and geology, but change in response to tectonic, climatic and base-level controls. One of the challenges facing alluvial fan research is to resolve how these gross controls are reflected in alluvial fan dynamics and to apply the results of studies of modern fan processes and Quaternary fans to the understanding of sedimentary sequences in the rock record. This volume includes papers based on up-to-date research, and focuses on three themes: alluvial fan processes, dynamics of Quaternary alluvial fans and fan sedimentary sequences. Linking the papers is an emphasis on the controls of fan geomorphology, sedimentology and dynamics. This provides a basis for integration between geomorphological and sedimentological approaches, and an understanding how fluvial systems respond to tectonic, climatic and base-level changes.
Author:
Publisher:
Published: 1999
Total Pages: 194
ISBN-13:
DOWNLOAD EBOOKAuthor: Marli Bryant Miller
Publisher: Kendall Hunt
Published: 2004
Total Pages: 144
ISBN-13: 9780757509506
DOWNLOAD EBOOKExplorea the geologic history, landforms, and geologic processes of Death Valley, which is the hottest area in the US and also features many rock types. Maps and photographs accompany the descriptions of rock types, mining, faults, and topography.
Author: National Research Council
Publisher: National Academies Press
Published: 2013-08-14
Total Pages: 238
ISBN-13: 0309253705
DOWNLOAD EBOOKIn the past several years, some energy technologies that inject or extract fluid from the Earth, such as oil and gas development and geothermal energy development, have been found or suspected to cause seismic events, drawing heightened public attention. Although only a very small fraction of injection and extraction activities among the hundreds of thousands of energy development sites in the United States have induced seismicity at levels noticeable to the public, understanding the potential for inducing felt seismic events and for limiting their occurrence and impacts is desirable for state and federal agencies, industry, and the public at large. To better understand, limit, and respond to induced seismic events, work is needed to build robust prediction models, to assess potential hazards, and to help relevant agencies coordinate to address them. Induced Seismicity Potential in Energy Technologies identifies gaps in knowledge and research needed to advance the understanding of induced seismicity; identify gaps in induced seismic hazard assessment methodologies and the research to close those gaps; and assess options for steps toward best practices with regard to energy development and induced seismicity potential.