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  • AIME
    Metal Mining - Use of Concrete Underground

    By Joseph Bernhardt

    THE Cornwall Ore Mines, Division of the Bethlehem Steel Co., at Cornwall, Lebanon County, consists of two separate magnetite ore bodies, approximately one mile apart. The one ore body was an outcrop

    Jan 1, 1951

  • AIME
    Metal Mining - Use of Concrete Underground

    By Joseph Bernhardt

    THE Cornwall Ore Mines, Division of the Bethlehem Steel Co., at Cornwall, Lebanon County, consists of two separate magnetite ore bodies, approximately one mile apart. The one ore body was an outcrop

    Jan 1, 1951

  • AIME
    Institute of Metals Division - Rare-Earth Gallium Compounds Having the Aluminum-Boride Structure (TN)

    By S. E. Haszko

    SEVERAL new XGa2 intermetallic compounds, Table 1, where X is a rare earth, having the AlB, structure were prepared as part of a continuing study of the magnetic and structural properties of rare-eart

    Jan 1, 1962

  • AIME
    Missouri School of Mines and Metallurgy, Mining Experiment Station

    The State Mining Experiment Station, Missouri School of Mines and Metallurgy, Rolla, Mo Charles H. Fulton, Director of the School of Mines Martin H. Thornberry, Director of the Mining Experiment S

    Jan 1, 1933

  • AIME
    Review of the Month (115dfdd8-36ca-476a-aa74-22e1dd40a5d9)

    EUROPE continued to be unsettled, financially, commercially and socially. October opened with Germany in a state of turmoil following the Government's cessation of passive resistance to the Frenc

    Jan 10, 1923

  • AIME
    Production - Foreign - Petroleum Developments in Venezuela 1941 to 1944 Inclusive

    By D. C. Porterfield

    ProUuction of crude oil in Venezuela increased from 186,134,000 bbl. in 1940 to 2~8,131,ooo bbl. in 1941, or 22.6 per cent, to establish a new all-time high for the country. While the average producti

    Jan 1, 1945

  • AIME
    The Kurzwernhart Gas-Saving Process

    By Joseph Hartshorne

    EVER since the introduction of the Siemens regenerative furnace, it has been recognized that a certain amount of gas is lost each time the furnace-action is reversed. This loss comes, first, from the

    Mar 1, 1906

  • AIME
    Non-Metallic Minerals Session

    By AIME AIME

    THE program of government drilling, conducted jointly by the U. S. Geological Survey and the Bureau of Mines, has demonstrated the presence in Texas and New Mexico of potash-bearing beds of considerab

    Jan 1, 1929

  • AIME
    Enter Wollastonite - New Commercial Nonmetallic Mineral

    By R. B. Ladoo, C. A. Stokes, R. N. Secord, A. L. Hall

    INDUSTRIAL mineral history shows that the entrance of new, nonmetallic minerals into commercial production can be expected to occur from time to time. Latest entrant into the field is wollastonite. Ex

    Jan 1, 1952

  • AIME
    Coal Slurry A New Commodity?

    Pumping coal to market may help Appalachian coal operators increase their share of the eastern seaboard fuel business. Transporting it by pipeline is already an accomplished fact, but until recently i

    Jan 1, 1962

  • AIME
    Mining - Mining Methods at the Iron King Mine

    By L. Bombardieri, H. F. Mills

    IRON KING mine, producing gold-silver-lead-zinc ore, is 10 miles east of Prescott, Ariz. At present the 1806 level is being developed. The echelon pattern of ore deposit continues at depth but is less

    Jan 1, 1957

  • AIME
    Graphical Representation of Theoretical Soluble Losses by CCD

    By R. J. Woody

    DESIGN of the most economic continuous counter-current decantation (CCD) circuit is based on selection of the number of stages and the wash volume that will give the minimum summation of the followin

    Jan 7, 1958

  • AIME
    "The Economics of Enhanced Oil Recovery and its Position Relative to Synfuel s "

    By Charles W. Perry

    The options of enhanced oil recovery, coal syncrude, and shale syncrude are compared by approximately equivalent economics. The physical constraints for the major enhanced oil recovery processes are d

    Jan 1, 1982

  • AIME
    Education for the Petroleum Industry (a1221f1c-e785-4d3f-96da-6d1a4f800ee7)

    By Thomas T., Read

    E DUCATION for the mineral industry was at first a single comprehensive curriculum, but it was early recognized that the main basis of mining is physics, while that of metallurgy is chemistry. The fir

    Jan 1, 1941

  • AIME
    Lucky Friday Mine: History, Geology, And Development

    By William T. Folwell

    The Lucky Friday mine east of Mullan, Idaho, is an outstanding example of a property in the Coeur d’Alene district where a small and insignificant- appearing silver-lead-zinc vein at the surface has c

    Jan 12, 1958

  • AIME
    Recent Progress in the Mineral Industry of South America

    By LESTER W. STRAUSS

    OUR early knowledge of history and geography attracted most of us to the mineral resources of South America. The romantic tales of the Spanish activities, which were curiously alluring, and Prescott&a

    Jan 1, 1930

  • AIME
    Why Not an Electrolytic Zinc Plant in the South-western United States

    By Tenney, J. B.

    DEVELOPMENT of complex ores in the south- western part of the Rocky Mountain region has been retarded by the prohibitive distance to the nearest suitable zinc treatment plants. In the north- western a

    Sep 1, 1928

  • AIME
    Introductory Review – Computer Applications In Mining

    By Milton T. Pana

    Computer techniques now have been applied to the solution of a wide variety of scientific and engineering problems in the mining industry, but generally not in great depth in any one area. In mining,

    Jan 1, 1969

  • AIME
    Interatomic Forces In Metals And Alloys

    By Robert F. Mehl

    THE mechanical behavior of metals and alloys is presumably conditioned by two factors; namely, the crystalline symmetry and the interatomic forces. Considerable attention has been given to the first o

    Jan 1, 1928

  • AIME
    Part X - The 1967 Howe Memorial Lecture – Iron and Steel Division - Internal Friction in Hydrogen-Charged Iron

    By R. Gibala

    Internal-friction measurements on hydrogen-charged iron over the temperature range 4° to 300°K are reported. Two relaxation peaks, the hydrogen Snoek peak at 48 °K and the hydrogen cold-work peak in

    Jan 1, 1968