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  • AIME
    Content of Metallurgical Engineering Curricula in the United States

    By Harold L. Walker

    ENGINEERING educators have recently been discussing the advisability of extending the undergraduate curricula to five or six years, and a plan has also been proposed requiring a preliminary period of

    Jan 1, 1940

  • AIME
    Contents

    Jan 1, 1970

  • AIME
    Contents

    Jan 1, 1963

  • AIME
    Contents

    By NONE N

    Jan 1, 1963

  • AIME
    Contents

    Jan 1, 1965

  • AIME
  • AIME
  • AIME
    Contents And Introduction - Looking Back-1958 Looking Ahead-1959

    ECONOMICS In the preceding pages you will find an attempt to judge the direction of one phase of the mining industry in Drift, and following that a quick round up of what happened to production in

    Jan 2, 1959

  • AIME
    Contents of 1943 Iron and Steel Volume

    The Development of Research and Quality Control in the Modern Steel Plant. By Leo F. Rein-artz. (Metals Technology, April 1943) Blast Furnace and Raw Materials Essential Considerations in the De

    Jan 1, 1943

  • AIME
    Contents of 1943 Iron and Steel Volume

    The Development of Research and Quality Control in the Modern Steel Plant. By Leo F. Rein-artz. (Metals Technology, April 1943) Blast Furnace and Raw Materials Essential Considerations in the De

    Jan 1, 1943

  • AIME
    Contents of 1945 of Metals Division Volume

    A New Microscopy and Its Pntentialities. By Charles S. Barrett. (Metals Technology, .April 1945) Physical Metallurgy Fundamental Principles Involved in Segregation in Alloy Castings. By R. M. B

    Jan 1, 1945

  • AIME
    Contents of Vol. 176, Iron and Steel Division, 1948

    Temperatures in the Open-hearth Furnace. By Robert B. Sosman. (Metals Tech. Aug. 1948, T.P. 2435) Steelmaking Direct Oxidation in the Basic Open Hearth Process. By E. R. Hughes and F. G. Norris

    Jan 1, 1949

  • AIME
    Contents of Volume 135 – Transaction A.I.M.E., 1939

    Some Things We Don't Know about the Creep of Metals. By H. W. Gillett (T.P. 1087) Reduction of Iron Ores under Pressure by Hydrogen. By Michael Tenenbaum and T. L. Joseph (T.P. loll,

    Jan 1, 1939

  • AIME
    Contents of Volume 135 – Transaction A.I.M.E., 1939

    Some Things We Don't Know about the Creep of Metals. By H. W. Gillett (T.P. 1087) Reduction of Iron Ores under Pressure by Hydrogen. By Michael Tenenbaum and T. L. Joseph (T.P. loll,

    Jan 1, 1939

  • AIME
    Contents of Volume 137 (Institute of Metals Division)

    Page Foreword. By Edmund M. Wise..................... 3 A.I.M.E. Officers and Dircctors...................... 4 Institute of Metals Division Officers and Committees............

    Jan 1, 1940

  • AIME
    Contents of Volume 137 (Institute of Metals Division)

    Page Foreword. By Edmund M. Wise..................... 3 A.I.M.E. Officers and Dircctors...................... 4 Institute of Metals Division Officers and Committees............

    Jan 1, 1940

  • CIM
    Contexte geologique et genese des gites d'amiante du sud du Quebec

    By Robert Y. Lamarche

    On exploite le chrysotile dans le sud du Quebec depuis plus de cent ans. Au cours des dernieres decennies, cette variete d'amiante est devenue une des principales substances minerales produites au Que

    Jan 1, 1984

  • AIME
    Continent-Margin Tectonics And Ore Deposits, Western United States

    By Daniel R. Shawe

    Ore deposits of the western U.S. are divisible broadly into two genetic groups, a smaller one that fits the plate tectonic model of subduction and a larger one that appears unrelated to subduction. So

    Jan 1, 1978

  • IMMS
    Continental Margin Hydrothermal Mineralization: Southern California Borderland

    By James R. Hein

    Barite and Fe-Mn-oxide deposits that occur along faults in the Southern California Borderland formed by low-temperature hydrothermal processes. The Borderland region consists of block-faulted continen

    Jan 1, 2002

  • AIME
    Continental Reviews Three Phases Of Uranium Mining

    By M. H. Brady, J. G. Roscoe

    Continental No. 1 This mine in Lisbon Valley has an orebody about 1200 ft long and varying from 250 to 70 ft wide. Average width is about 100 ft and stope heights average about 9 ft. It was developed

    Jan 7, 1958