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Engineering geology

Ortoleva, P. (1984). The self-organization of Liesegang Bands and other precipitate patterns. In Chemical Instabilities Applications in Chemistry, Engineering, Geology and Material Science, ed. G. Nicolis F. Baras, pp. 289-97. Dordrecht Reidel. [Pg.534]

SURFICIAL AND ENGINEERING GEOLOGY OF PART OF THE MAMMOTH CREEK AREA, MONO COUNTY, CA. (1973) (Sponsor National Science Foundation)... [Pg.210]

Clark, L., 1979, The Analysis and Planning of Step Drawdown Tests Quarterly Journal of Engineering Geology. Vol. 10, No. 2, pp. 125-143. [Pg.86]

Testa, S. M., 1992, Groundwater Remediation at Petroleum-Handling Facilities, Los Angeles Coastal Plain In Engineering Geology Practice in Southern California (edited by B. W. Pipkin and R. J. Proctor), Association of Engineering Geologists, pp. 67-79. [Pg.394]

Sanroman M, Pazos M, Ricart M, Cameselle C Decolourisation of Textile Indigo Dye by DC Electric Current. Engineering Geology 2005, 77 (3-4),253-61... [Pg.146]

Smellie, J. A. T. Karlsson, F. 1999. The use of natural analogues to assess radionuclide transport. Engineering Geology, 52, 193-220. [Pg.34]

Dunrud, C. R. 1984. Coal mine subsidence - western United States. In Holzer, T. L. (ed) Man-Induced Land Subsidence. Geological Society of America, Boulder, Reviews in Engineering Geology, VI, 151-194. [Pg.205]

Rapid failures of colliery spoil heaps in the South Wales Coalfield. Quarterly Journal of Engineering Geology, 29, 103—132. [Pg.207]

Taylor, R. K. 1975. English and Welsh colliery spoil heaps - mineralogical and mechanical relationships. Engineering Geology, 9, 39-52. [Pg.208]

Banks, D., Burke, S. P. Gray, C. G. 1997a. Hydrogcochemistry of coal mine drainage and other ferruginous waters in north Derbyshire and south Yorkshire, UK. Quarterly Journal of Engineering Geology, 30, 257-280. [Pg.512]

O.Kutsnashvili. New general rules of engineering geology, Material of Georgian Technical University Scientific Technical Conference, Tbilisi 1993... [Pg.270]

Mulligan, C.N., Yong, R.N. and Gibbs, B.F. (2001) Remediation technologies for metal-contaminated soils and ground-water an evaluation. Engineering Geology, 60(1-4), 193-207. [Pg.8]

Jdid, E.A., Blazy, P., Kamoun, S. et al. (1999) Environmental impact of mining activity on the pollution of the Medjerda River, north-west Tunisia. Bulletin of Engineering Geology and the Environment, 57(3), 273-80. [Pg.213]

Pedersen, A.J., Kristensen, I.V., Ottosen, L.M. et al. (2005) Electrodialytic remediation of CCA-treated waste wood in pilot scale. Engineering Geology, 77(3-4 Special Issue), 331-38. [Pg.301]

Tong, N.T. (2002) Arsenic Pollution in Groundwater in the Red RiverDelta, Geological Survey of Vietnam, Northern Hydrogeological-Engineering Geological Division. [Pg.349]

Yokota, H., Tanabe, K., Sezaki, M. et al. (2001) Arsenic contamination of ground and pond water and water purification system using pond water in Bangladesh. Engineering Geology, 60(1-4), 323-31. [Pg.430]

Heffern EL, Reiners PW, Naeser CA, Coates DA, (2007) Geochronology of clinker and implications for evolution of the Powder River Basin landscape, Wyoming and Montana, in Stracher, G., ed., Reviews in Engineering Geology Geol Soc Am Spec Pap. (in press)... [Pg.265]

Balabanov IP, Kvirkeliya BD, Ostrovsky AB (1981) Recent history of the formation of the engineering-geological conditions and long-term forecast of the coastal zone evolution of the Pitzunda Peninsula. Metsniereba, Tbilisi, Georgia (in Russian)... [Pg.327]

A comprehensive method to inventory inactive waste disposal sites should integrate all available historic, engineering, geologic, land use, water supply, and public agency or private company records in order to develop a complete and accurate site profile. Detailed information on site contents may not be available but areas of potential impact can be evaluated. Where people or drinking water supplies are affected, further investigation is indicated. [Pg.55]

Grant, K. Aitchison, G.D. (1970) The engineering significance of silcretes and ferricretes in Australia. Engineering Geology 4, 93-120. [Pg.89]

The language we use to describe the forms of matter and the changes in its composition is not limited to use in chemistry courses it appears throughout the scientific world. Chemical symbols, formulas, and equations are used in such diverse areas as agriculture, home economics, engineering, geology, physics, biology, medicine, and dentistry. In this chapter we describe the simplest atomic theory. We shall use it as we represent the chemical formulas of elements and compounds. Later, after additional facts have been introduced, this theory will be expanded. [Pg.47]

Grozdova 01 (1979) Mapping and regional predictions of man-caused modifications of underground hydrosphere, hydrogeology and engineering geology. VIEMS Press, Moscow... [Pg.49]

Smith, J.W.N. and Lerner, D.N. (2007) A framework for rapidly assessing the pollutant retardation capacity of aquifers and sediments. Quarterly Journal of Engineering Geology Hydrogeology, 40, pp. 137-146. [Pg.240]

Anonymous (1%7). Engineering Geology of the Northeast Corridor, Washington, D.C., to Boston, Massachusetts, Coastal plain and surficial geology. U.S., Geol. Sur. Misc. Geol. Invest. Map 1-514-B. [Pg.104]


See other pages where Engineering geology is mentioned: [Pg.84]    [Pg.86]    [Pg.452]    [Pg.1]    [Pg.208]    [Pg.208]    [Pg.512]    [Pg.400]    [Pg.127]    [Pg.66]    [Pg.4]    [Pg.156]    [Pg.115]    [Pg.71]    [Pg.63]    [Pg.200]    [Pg.204]    [Pg.211]    [Pg.47]    [Pg.231]    [Pg.373]   
See also in sourсe #XX -- [ Pg.6 ]




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