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  • AIME
    Copper Ore Reduction

    By Archer E. Wheeler

    IN the copper industry, the year 1942 was one of striving for larger tonnage and increased production. The demands of the war program placed copper high in the list of strategic metals and the Governm

    Jan 1, 1943

  • AIME
    Requisites of Successful Mine Operation

    By C. W. Hall

    MINE executives, as a rule, have always been willing to adopt new ideas of operation, or to listen to proposals which might increase the effectiveness of their enterprise, more especially so if they c

    Jan 1, 1925

  • AIME
    Iron Ore Treatment as an Economic Problem

    By Carl Zapffe

    JUST as 85 per cent of the total ore produced annually in the United States comes from the Lake Superior region, so does one of its six producing districts-the Mesabi --dominate that region both as to

    Jan 1, 1938

  • AIME
    The Valuation of Oil and Natural Gas Properties as Distinguished from Mines

    By Lyon F. Terry

    ACCEPTED current practice for A the valuation of mineral property is based upon Hoskold's theory and valuation tables first published in 1877, and popularized by Herbert Hoover's "Principles

    Jan 1, 1940

  • AIME
    Part V – May 1969 - Communications - On "Veining" in Electropolished Thin Foils of Supersaturated Ni-Ti Alloys

    By A. J. Ardell

    SASS and cohenl (S-C) have recently reported some transmission electron microscope observations of an interesting effect which they call "veining". They observed veining in thin foils of solution-trea

    Jan 1, 1970

  • AIME
    No Real Scarcity of Lead Likely

    By Francis H. Brownell

    During the 1920's lead consumption in the United States reached the highest average total ever known. For the ten-year period 1921-'30, it was slightly over 600,000 tons per year, or say 50,

    Jan 1, 1941

  • AIME
    Bylaws – Article I – Members – Qualifications And Elections

    SEC. 1. The membership of the Institute shall comprise seven classes, namely: 1. Members; 2. Honorary Members; 3. Senior Members; 4. Associates; 5. Junior Members; 6. Rocky Mountain Members; 7. Junior

    Jan 1, 1946

  • AIME
    Chemical And Electrochemical Problems Involved In New Cornelia Copper Co.'S Leaching Process

    By Henry Mackay

    THE interesting paper recently submitted by Messrs. Tobelmann and Potter' shows that chemical problems have developed which are of great interest in this new and important branch of metallurgy. T

    Jan 9, 1919

  • AIME
    Hazelton Paper - The Wilmington, Illinois, Coal-Field

    By Jasper Johnson

    Taken in all its bearings there is, perhaps, no more interesting coal-field than that locally known and designated as " Wilmington," both on account of the superior qualities of its product as a house

  • AIME
    The Wilmington, Illinois, Coal-Field

    By Jasper Johnson

    TAKEN in all its bearings there is, perhaps, no more interesting coal-field than that locally known and designated as " Wilmington," both on account of the superior qualities of its product as a house

    Jan 1, 1875

  • AIME
    Bylaws – Article I - Member-Qualifications And Election

    SEC. 1. The membership of the Institute shall comprise seven classes, namely: 1. Members; 2. Honorary Members; 3. Senior Members; 4. Associates; 5. Junior Members; 6. Rocky Mountain Members; 7. Junior

    Jan 1, 1946

  • AIME
    New York Paper - Tooele Flue-type Cottrell Treater (with Discussion)

    By A. B. Young

    In the original design of the flue system, the flues from the roasters delivered their gases to a large brick dust chamber which discharged into another flue with stack connection, as shown in Fig. 1.

    Jan 1, 1921

  • AIME
    Grinding Performance Of The Ball Mill At The Dizon Operation Of Benguet Corporation

    By V. G. Cawagdan, E. M. Sacris

    The performance of the grinding circuit, from the initial stages of operation to the present, is discussed. The mill efficiency as measured by the Bond (Bond and Maxson, 1943) grindability data and th

    Jan 1, 1985

  • AIME
    Rheological Properties of Heavy Media Suspensions Stabilized by Polymers

    By Laszlo Valentyik

    To separate minerals on a small scale according to their specific gravity, heavy liquids are used, but because of high costs and health hazards they cannot be used in large scale plants. In order to s

    Jan 1, 1973

  • AIME
    Local Section News (ffeede40-48e3-4550-8b78-14f261044223)

    BOSTON SECTION R. L. AGASSIZ, Chairman, - JAMES G. CARLETON, Vice-Chairman, E. E. BUGBEE, Sec.-Treas., Mass. Inst. of Technology, Cambridge, Mass. W. E. C. EUSTIS, G. A. PACKARD. The forty-fift

    Jan 2, 1918

  • AIME
    Expansion Begins at Cordero to Double Mine Production

    Three years ago, when Sun Energy Development Co. (Sunedo) dedicated its Cordero mine in Wyoming, the company noted that its decision to venture into the coal industry was prompted by the need for dome

    Jan 9, 1979

  • AIME
    Recovering Fine-Size Coal from Alabama Washer Wastes Using Humphreys Spiral (74c21011-80c8-4eb1-abad-b657833f3ad4)

    By James S. Browning

    The Mineral Resources Institute and State Mine Experiment Station of the University of Alabama conducted Humphreys spiral tests on fine coal waste from nine preparation plants of Alabama strip mining

    Jan 1, 1980

  • AIME
    Pillar Extraction in the Pittsburgh Seam With Continuous Miners

    By W. E. Hess

    At the Vesta mines of Jones & Laughlin Steel Corp. on the Monongahela River, 35 miles south of Pittsburgh, JCM Joy continuous miners and 6-SC shuttle cars are used for pillar extraction in the Pittsbu

    Jan 2, 1955

  • AIME
    Replacement Of Capital Equipment

    By Henry J. Schwellenbach

    Lack of a system in scheduling the replacement of capital equipment can result in emergency purchases of units which may later be found unsuitable for the job. New York Trap Rock Corp., which produces

    Jan 10, 1959

  • AIME
    Activation And Deactivation Studies With Copper On Sphalerite

    By G. W. Mao, A. M. Gaudin, D. W. Fuerstenau

    Activation of sphalerite with copper salts has long been thought of as a chemical reaction of the following form: ZnS + Cu++ [=] CuS + Zn++ [ 1 ] Early experimentation1-3 showed that the reactio

    Jan 4, 1959