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Industrial Minerals - Fluoride in Ground Water of AlabamaBy Phillip E. La Moreaux
Fluoride, generally less than 0.5 ppm, is present in ground water from rocks of Paleozoic age and older, in northern and eastern Alabama. Some of the water-bearing formations in the Coastal Plain area
Jan 1, 1951
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Industrial Minerals - Fluoride in Ground Water of AlabamaBy Phillip E. La Moreaux
Fluoride, generally less than 0.5 ppm, is present in ground water from rocks of Paleozoic age and older, in northern and eastern Alabama. Some of the water-bearing formations in the Coastal Plain area
Jan 1, 1951
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Electrical Energy Required to Cut and Deliver Coal Out of a Continuous Miner SectionBy George J. Conroy, James H. Green
Results of a long-term program of electrical parameter measurement in underground coal mine working sections, performed by The Pennsylvania State University under US Bureau of Mines (USBM) sponsorship
Jan 1, 1980
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Industrial Minerals - New York Talcs, Their Geological Features, Mining, Milling, and UsesBy A. E. J. Engel
The New York talc deposits of commercial importance are in St. Lawrence and Lewis counties, in the northwest Adirondack Mountains (Fig 1). All of the deposits are of pre-Cambrian age and occur within
Jan 1, 1950
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Reservoir Engineering-Laboratory Research - Effect of Transverse Diffusion on Fingering in Miscible-Phase DisplacementBy R. A. Thomas, R. L. Solbod
The importance of transverse diffusion on the finger development in a miscible-phase displacement at an adverse mobility ratio of tbree was studied in a porous plate 1/4-in. thick, 3-in. wide and 18-i
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Electric Logging - Resistivity Logging in Thin BedsBy Leendert de Witte
Conventional resistivity logs consisting of a short normal, a long normal, and one or more long lateral curves do not give data that allow a complete quantitative interpretation in beds thinner than 2
Jan 1, 1955
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Production - Domestic - Oil and Gas Development in Illinois in 1939By Alfred H. Bell, George V. Cohee
In 1939 Illinois produced 94,302,000 bbl. of oil—almost three times the amount of oil produced at the peak in 1908, when development in the southeastern Illinois field was at its height (Fig. I). It r
Jan 1, 1940
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Production - Domestic - Oil and Gas Development in Illinois in 1939By Alfred H. Bell, George V. Cohee
In 1939 Illinois produced 94,302,000 bbl. of oil—almost three times the amount of oil produced at the peak in 1908, when development in the southeastern Illinois field was at its height (Fig. I). It r
Jan 1, 1940
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Production - Domestic - Kansas Oil and Gas during 1936By W. A. Ver Wiebe
It is becoming increasingly apparent that the State of Kansas contains one of the largest reserve areas for oil exploration in the United States. During the year 1936 no less than 54 new oil pools wer
Jan 1, 1937
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Institute of Metals Division - Grain Boundary Sliding and Migration and Intercrystalline Failure Under Creep Conditions (Discussion page 1579)By H. C. Chang, N. J. Grant
Creep of very coarse grained, high purity aluminum was studied at 400° to 1100°F with an initial stress range of 50 to 1200 psi. The process of boundary sliding and migration was studied. The driving
Jan 1, 1954
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Technical Papers and Discussions - Magnesium - Production of Magnesium at Painesville, Ohio (Metals Tech., April 1945, TP 1829)By R. F. Evans, J. M. Avert
Much has been written of the glamour of magnesium from sea water, the Aladdin-like creation of a huge magnesium plant in the Nevada desert using cheap hydroelectric power from Boulder Dam; the marvels
Jan 1, 1949
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Hypervelocity Impact On RockBy D. A. Summers, C. J. Haas, G. B. Clark, J. W. Brown
While significant advances have been made in excavation of rock, largely in improvements in drilling, blasting, loading, and haulage, conventional operations have been improved until little feasible i
Jan 1, 1970
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Papers - Flotation - Self-diffusion in Minerals, Particularly Copper Sulphides (T. P. 1663, Min. Tech., Jan. 1944, with discussion)By Kenneth C. Vincent, A. M. Gaudin
In a study1 of the action of amyl xan-thate on chalcocite in water suspension, it was found that if the xanthate is added in relatively large quantity the xanthate group can be accounted for in three
Jan 1, 1947
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Papers - Flotation - Self-diffusion in Minerals, Particularly Copper Sulphides (T. P. 1663, Min. Tech., Jan. 1944, with discussion)By Kenneth C. Vincent, A. M. Gaudin
In a study1 of the action of amyl xan-thate on chalcocite in water suspension, it was found that if the xanthate is added in relatively large quantity the xanthate group can be accounted for in three
Jan 1, 1947
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Self-Diffusion In Minerals, Particularly Copper SulphidesBy Kenneth C. Vincent, A. M. Gaudin
IN a study1of the action of amyl xanthate on chalcocite in water suspension, it was found that if the xanthate is added in relatively large quantity the xanthate group can be accounted for in three fo
Jan 1, 1944
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Arizona Paper - A Combined Hydraulic and Mechanical ClassifierBy M. G. F. Söhnlein
In a Bolivian tin concentrator an appliance was needed to furnish a suitable product for fine jigging from a pulp of the following composition: Mesh Per Cent. + 20 8.0 40 36.5 + 60 9.0
Jan 1, 1917
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A Combined Hydraulic and Mechanical ClassifierBy M. G. F. Sohnlein
IN a Bolivian tin concentrator an appliance was needed to furnish a suitable product for fine jigging from a pulp of the following composition: Mesh Per Cent. +20 8.0 +40 36.5 +60 9.0 +80 10.5
Jan 4, 1916
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Geological Investigations To Evaluate StabilityBy Richard E. Goodman
Rock slope stability assumes different roles in decision making as a mining venture develops and, accordingly, geological investigations vary in thought and in deed according to the project stage. Dur
Jan 1, 1972
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Part VIII – August 1969 – Papers - On Spherical Phase Growth in Multicomponent SystemsBy J. Szekely, G. P. Martins
A formulation is given and a general analytical solution is presented for the problem of spherical phase growth in multicomponent systems. The results are valid for describing the rate of bubble growt
Jan 1, 1970
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Applications Of Gravity Beneficiation In Gold Hydrometallurgical Systems (1984)By D. E. Spiller
Introduction Precious metals recovery from ore can generally be accomplished using gravity concentration, flotation, and/or hydrometallurgical (leaching) techniques. The objective of this paper is
Jan 1, 1985