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  • AIME
    Past Officers (8846f04d-ab07-4a99-b532-4ef9f55d4513)

    PRESIDENTS DAVID THOMAS 1871 R W RAYMOND 1872-1874 A L HOLLEY1875 ABRAM S HEWITT 1876 T STERRY HUNT 1877 ECKLEY B COXE 1878 - 1879 WILLIAM P SHINN 1880 WILLIAM METCALF 1881 RICHARD P ROTHWEL

    Jan 1, 1917

  • AIME
    Past Officers (5675a845-ce01-4eff-99c5-0276ecc3a87b)

    PRESIDENTS DAVID THOMAS 1871 R W RAYMOND 1872-1874 A L HOLLEY1875 ABRAM S HEWITT 1876 T STERRY HUNT 1877 ECKLEY B COXE 1878 - 1879 WILLIAM P SHINN 1880 WILLIAM METCALF 1881 RICHARD P ROTHWEL

    Jan 1, 1917

  • AIME
    Wet Concentration of Coarse Coal

    By Peter T. Luckie, Harold L. Lovell, E. R. Palowitch, A. W. Deurbrouck, James K. Kindig

    PART 1: DENSE MEDIUM SEPARATION by E. R. PALOWITCH and A. W. DEURBROUK INTRODUCTION During 1965, 64.9 percent of the 512 million tons of bituminous coal and lignite produced was cleaned me

    Jan 1, 1968

  • AIME
    Alaska: Regional Report

    To Americans, Alaska occupies a unique position, both geographically and historically. The only integral portion of the United States lying in the sub-Arctic and Arctic regions of the Earth, the early

    Jan 12, 1961

  • AIME
    The Selection of Coals for the Manufacture of Coke

    By H. J. Rose

    SIXTY-FIVE million net tons of coal were carbonized in the by-product and beehive coke ovens1 of the United States during 1924. This tonnage represented 13.4 per cent. of the bituminous coal which was

    Jan 7, 1926

  • AIME
    Prediction Of Inter-Strata Movements Above Longwall Faces

    By Neil Styler

    This paper presents an analysis of measurements of inter-burden deformations above six longwall faces. An attempt is made to demonstrate some correlation between the movements at the various sites, an

    Jan 1, 1984

  • AIME
    Hydrogen Embrittlement of Pure Copper and of Dilute Copper Alloys by Alternate Oxidation and Reduction

    By Frederick Rhines

    THE investigations of Wyman1 have demonstrated that copper deoxidized with several of the commonly used agents that confer immunity to ordinary hydrogen em-brittlement can still be embrittled if it is

    Jan 1, 1940

  • AIME
    PART VI - Effect of Rhenium on the Interface Energies of Chromium, Molybdenum, and Tungsten

    By B. C. Allen

    The interface energies of chronzium, molybdenunz. hugsten, and their solid-solution alloys Cv-35Re, MO-33Re, and UJ-25Re were studied at 0.6 to 1.0 of the absolllte liquidus ter)zpe,vature using fiz&a

    Jan 1, 1967

  • AIME
    Deep Ocean Floor Nodule Mining – First Generation Techniques Are Here

    Manganese nodules are essentially a surficial resource-there are four times as many nodules on the surface of the deep ocean floor as in the next 3 ft of underlying sediment. Target mine sites in the

    Jan 4, 1975

  • AIME
    Lead Metallurgists

    By W. T. Isbell

    Although the pressure to meet the heavy demand for lead still took precedence over new metallurgical developments in the field of roasting, smelting, and refining of lead in 1948 there nevertheless ha

    Jan 1, 1949

  • AIME
    Part IV – April 1969 - Papers - The Dependence of the Hardness of Cartridge Brass and a Leaded Brass on Grain Size

    By R. W. Armstrong, P. C. Jindal

    The hardness dependence on grain size for polycrys-talline cartridge brass and a leaded brass has been measured by Brine11 and Rockwell B testing. In each case, the hardness, H, depends on the avera

    Jan 1, 1970

  • AIME
    Shrinkage Stopes - Shovel Operations at Bingham, Utah Copper Co

    By H. C. Goodrich

    At the Utah Copper mine, steam shovels were first used, in 1906, for the removal of overburden, and in June, 1907, for the mining of ore. Prior to 1907, the ore came from underground development work

    Jan 1, 1925

  • AIME
    Electrical Coring; A Method Of Determining Bottom-Hole Data By Electrical Measurements

    By C. Schlumberger

    SINCE the beginning of .the year 1928 the senior authors and their associates have applied a series of procedures which makes possible the detailed study in situ of the formations traversed by a drill

    Jan 1, 1932

  • AIME
    Geographical List (2b7a4e1d-efb9-4b8d-9307-c49d913cfd68)

    ALABAMA Altoona.-Cain, J. America.-Foreman, J. T. Anniston.-Cowie, L. K. Foster, R. N. Ashland.-Sturdevant, J C Bessemer.-Ball, E. M. McKenzie, W. C., Jr Birmingham.-Abbott, C. E. Aldrich, T. H.

    Jan 1, 1923

  • AIME
    Historical Sketch of the Ontario Mine, Park City, Utah

    By G. W. LAAiIBOURNE

    FEW mines possess a history of more fascinating interest than the Ontario at Park City, Utah. The famous Bonanza's production record of over $50,000,000; the great extent of its workings; the rem

    Jan 1, 1925

  • AIME
    The Modern Pipe Still

    By H. S. Bell

    IT SEEMS unnecessary to dwell upon the advantages of the modern pipe still as compared with the older type of distillation equipment used by oil refiners. The relatively low installation cost, coupled

    Jan 1, 1928

  • AIME
    Past Officers (6c2280cf-e75f-4c59-8d5f-21b64713747a)

    PRESIDENTS DAVID THOMAS 1871 R W RAYMOND 1872-1874 A L HOLLEY1875 ABRAM S HEWITT 1876 T STERRY HUNT 1877 ECKLEY B COXE 1878 - 1879 WILLIAM P SHINN 1880 WILLIAM METCALF 1881 RICHARD P ROTHWEL

    Jan 1, 1917

  • AIME
    Past Officers (fd9ac713-2ad6-4020-bb7b-8e4ce80862be)

    PRESIDENTS DAVID THOMAS 1871 R W RAYMOND 1872-1874 A L HOLLEY1875 ABRAM S HEWITT 1876 T STERRY HUNT 1877 ECKLEY B COXE 1878 - 1879 WILLIAM P SHINN 1880 WILLIAM METCALF 1881 RICHARD P ROTHWEL

    Jan 1, 1910

  • AIME
    Past Officers (e29b9245-934b-4639-98bc-c78dbc2b0300)

    PRESIDENTS DAVID THOMAS 1871 R W RAYMOND 1872-1874 A L HOLLEY1875 ABRAM S HEWITT 1876 T STERRY HUNT 1877 ECKLEY B COXE 1878 - 1879 WILLIAM P SHINN 1880 WILLIAM METCALF 1881 RICHARD P ROTHWEL

    Jan 1, 1910

  • AIME
    PART II - Papers - Oxygen-Ion Diffusion in Hematite

    By William C. Hagel

    Oxygen-18 exchange between gaseous oxygen, held at a pressure of 125 mm Hg in a PL-IORh chamber, and splzeres of a Fe2O3 containing three or less grains was determined from 9000 to 1250°C. Isotope equ

    Jan 1, 1967