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Production - Foreign - Petroleum Development in Germany during 1938By Walter Kauenhowen
The crude-oil production of Germany without Austria during 1938 amounted to 3,864,518 bbl., representing an increase of 21.7 per cent over the 3,173,373 bbl. produced in 1937. Adding the Austrian prod
Jan 1, 1939
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Production - Foreign - Petroleum Development in Germany during 1938By Walter Kauenhowen
The crude-oil production of Germany without Austria during 1938 amounted to 3,864,518 bbl., representing an increase of 21.7 per cent over the 3,173,373 bbl. produced in 1937. Adding the Austrian prod
Jan 1, 1939
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Institute of Metals Division - Uranium-Silicon AlloysBy A. Kaufmann, B. Cullity, G. Bitsianes
T0 determine the bulk of the phase diagram, techniques for melting, thermal analysis, heat treatment, metallography, and X-ray diffraction that have already been described were used.' It proved d
Jan 1, 1958
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Government Regulation of Surface Subsidence Due to Underground MiningBy David E. Jones, Dean K. Hunt, C. Y. Chen
INTRODUCTION Of all the numerous geological hazards that threaten the well-being of urban areas in the United States, probably none is so widespread, persistent, and diversified as surface subside
Jan 1, 1982
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Canadian Production of Minerals and MetalsBy R. B. Toombs
The national and international importance of Canada's minerals and metals producing industry is reported. The growth of the Canadian industry is traced from 1945, through the period of rapid deve
Jan 8, 1964
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Preparation of Industrial Minerals - Froth Flotation of a North Carolina Ilmenite Ore (Mining Tech., Jan. 1944, T.P. 1653)By L. L. McMurray
Ilmenite is the most important raw material for manufacture of titanium dioxide.' Industrially, several other products are made from ilmenite, the most important of which are: ferro titanium, fer
Jan 1, 1948
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Preparation of Industrial Minerals - Froth Flotation of a North Carolina Ilmenite Ore (Mining Tech., Jan. 1944, T.P. 1653)By L. L. McMurray
Ilmenite is the most important raw material for manufacture of titanium dioxide.' Industrially, several other products are made from ilmenite, the most important of which are: ferro titanium, fer
Jan 1, 1948
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Discussion of Papers - A Discussion of Metallurgical Testing Procedures in Use at Pima Mining Co.By D. C. Shelton, C. S. Ek
Corneille S. Ek (Assistant Professor in Ore Dressing, University of Liege, Liege, Belgium) — This is a very valuable paper, in that it shows how it is possible to take care of a multitude of laborator
Jan 1, 1965
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Some Miscellaneous Wood Oils for Flotation.By R. C. Palmer
THE testing of flotation oils has occupied a large part of the time of the testing departments of various companies using the flotation process in the beneficiation of their ores. The great difference
Jan 8, 1916
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Canadian Mining-Law.By J. M. Clark
(Wilkes-Barre Meeting, June, 1911.) For some years past, those interested in the development of the increasingly important mining industry of Canada, have urged the adoption by the Dominion Parliamen
Apr 1, 1911
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PART IV - Papers - The Influence of Small Cold Deformation Preceding Aging in 15 and 18 Pct Nickel Maraging SteelBy Klaus Detert
Fifteen and 18 pct Ni maraging steel and several binavy and ternary alloys of the iron-rich corner of the Fe-Co-Ni system have been studied. After annealing in the austenite range, these alloys were d
Jan 1, 1968
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Institute of Metals Division - Solubility and Precipitation of Boron Nitride in Iron-Boron AlloysBy R. W. Fountain, John Chipman
The solubility of nitrogen in Fe-B alloys (0.001 to 0.91 pet B) is determined by the Sieverts' technique for temperatures of 950° to 1150°C. The activity coefficient of nitrogen is decreased by
Jan 1, 1962
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Part VIII – August 1968 - Papers - Iron-Sulfur System. Part II: Rate of Reaction of Hydrogen Sulfide with Ferrous SulfideBy E. T. Turkdogan, W. L. Worrell
The rate of reaction of hydrogen sulfide with ferrous sulfide was studied by measuring the initial rates of sulfidation of iron strips in hydrogen sulfide-hydrogen-argon mixtures at 670°, 800°, and 90
Jan 1, 1969
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Notes On Potash ProductionBy J. Marshall Downey
The most fortunately situated U. S. potash producer-whether in New Mexico, California, or Utah--once simply took from the ground a mixture of sodium chloride and potassium chloride, crushed it to a ma
Jan 12, 1958
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Optimizing Roof Truss Installations With Body-Loaded Photoelastic ModelsBy Christopher Haycocks, Lawrence P. Johnson, George M. Neall, James M. Townsend
No method of roof control yet devised has proven to be universally acceptable for the wide range of strata conditions experienced in U. S. coal mines. However, a relatively new innovation, the roof tr
Jan 6, 1978
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Butte Paper - Notes on the Occurrence of Some of the Rarer Metals in Blister CopperBy A. Eilers
A number of the copper refineries in this country have lately separated some of the rarer metals from the slimes in the refinery tanks. One of these has furnished me the following table of recoveries
Jan 1, 1914
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Placing Concrete in a Deep MineBy Bruce A. Lamberton
In U. S. underground mines concrete work is not widely used. Timber and steel are cheaper, and there are few serious water problems. But in the Union of south Africa men dig deeper, more persistently,
Oct 1, 1956
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Part IX – September 1969 – Papers - Fluid Motion Through the Partially Solid Regions of a Casting and Its Importance in Understanding A type SegregationBy J. D. Hunt, R. J. McDonald
It is proposed that extensive fluid motion occurs between the dendrites of a Partially solid casting and it is suggested the A segregates in steel castings are a direct result of this motion. The flu
Jan 1, 1970
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Use of Isopachous and Related Maps in the Florida Phosphate DistrictBy Thomas E. Wayland
AN isopachous map is one on which lines connect points of equal thickness of a given unit. This type of map is used by the Florida Phosphate Project of the U. S. Geological Survey to represent the eco
Jan 11, 1951
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Ore from the OrincoA PROSPECTOR stood atop a Venezuelan mountain called El Florero just 25 years ago, and shouted to the world that he had found a large, rich new source of iron ore. But his words were lost in the big g
Jan 5, 1951