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  • AIME
    Personal (c3b3afdf-3e09-49e9-bac9-dbc745a2be32)

    The following is a partial list of members and guests who called at Institute headquarters during the period July 10, 1917, to Aug. 10, 1917: G. A. Collins, Seattle, Wash. Norman Picot, Melbourne,

    Jan 9, 1917

  • AIME
    Employment (b61d5b20-72c1-4f20-90ed-35238e66f149)

    ENGINEERS AVAILABLE (Under this heading will be published notes sent to the Secretary of the Institute of members or other persons introduced by members.) Member, Cornell M. E., graduate, aged 31,

    Jan 10, 1916

  • AIME
    Predicting Blasting Strengths Of Explosives From Underwater Tests

    By Joseph J. Yancik

    From previous work, it was learned that relative strengths of blasting agents can be reasonably predicted from heats of detonation modified by their (D/D*)2 ratio.(1) Bulk Strength = Q x d x (D/D*)

    Jan 1, 1971

  • AIME
    Library (3f756b46-020e-4183-9ef2-8cd67066697e)

    Accessions AMERICAN ELECTROCHEMICAL SOCIETY, TRANSACTIONS, vol. 33. Bethlehem, Pa. 1918. AMERICAN ASSOCIATION OF PETROLEUM GEOLOGISTS, BULLETIN, vol. 2. 1918. (Gift of the Association.) AMERICAN Y

    Jan 6, 1919

  • AIME
    International Aspects Of Geological Data Storage And Retrieval

    By S. C. Robinson

    International interest in storage and retrieval of geological data stems from a desire to tap this large and potentially valuable, but little-used resource. The data will be used primarily for develop

    Jan 1, 1969

  • AIME
    Measurement Of Impact Forces In Ball Mills (3203c5bc-b8f1-4703-9e3b-281b13e62f34)

    By David J. Dunn, Richard G. Martin

    Of many physical parameters critical to design of grinding processes, impact of grinding media is among the most difficult to measure or predict. Yet impact of falling grinding balls, pebbles, or rods

    Jan 1, 1979

  • AIME
    Members, Associates and Junior Members (4905031b-ebb2-4799-9243-e6781c1f184f)

    THOSE NOT MARKED ARE MEMBERS; MARKED THUS t ARE ASSOCIATES. HEAVY-FACED TYPE SIGNIFIES HONORARY MEMBERSHIP. JUNIOR MEMBERS ARE MARKED II. THE FIGURES AT THE END OF THE ADDRESS INDICATE THE YEAR OF ELE

    Jan 1, 1917

  • AIME
    Iron Ore Co. of Canada's Computerized Analysis Method Speeds Mine Planning and Pit Design

    By Mara Kosovac, Sujan K. Kundu

    The Iron Ore Co. of Canada (IOC) has developed a computerized plan analysis method for its open-pit iron mining operations which will eliminate much of the tedious manual drafting of pit design plans

    Jan 7, 1978

  • AIME
    Small Gold Dredges

    BECAUSE of the impetus given to placer mining since the price of gold was advanced to $35, several types of small dredges have made their appearance, especially in the Lincoln and Oroville areas of Ca

    Jan 1, 1938

  • AIME
    Oxidation Method for Investigating Petrographic Composition of Some Coals

    By Reynold Q. Shotts

    Data are presented which show that fractions of varying densities-from the same coals are oxidized at different rates by nitric acid. From oxidation data, the approximate quantity of "bright" and "dul

    Jan 1, 1950

  • AIME
    Mining Engineering Reporter (5e0adceb-413a-4b65-bd4a-f309219796ad)

    Objective stockpile goals have been met for antimony, bismuth, fluorspar, and iridium, while those for bauxite, cadmium, copper, lead, zinc, manganese, mercury, platinum, tin, and vanadium have not, a

    Jan 3, 1953

  • AIME
    Technical Note - Danger Period In Coal Mines Following A Low Pressure Passage

    By Charles Barron McIntosh

    BECAUSE of the well known relationship between a low atmospheric pressure and increased amounts of methane in coal mines, attempts have been made to find associations between low pressures and coal mi

    Jan 10, 1957

  • AIME
    Student Chapters and Faculty Sponsors (2db5041b-e57b-4b7a-9a47-adc75de1e9d3)

    (There are 67 Student Chapters in the United States, 2 in Canada ) University of Alabama-University, Alabama, Mining & Metallurgical Society, James W Stewart University of Alaska-College, Alaska, Mi

    Jan 1, 1954

  • AIME
    Technical Committee?s Activities (4346e80c-2692-4962-87e4-cbf0672dc3b4)

    IRON AND STEEL COMMITTEE ALBERT SAUVEUR, Chairman .A. A. STEVENSON, Vice-Chairman HERBERT M. BOYLSTON, Secretary, Abbot Bldg., Cambridge, Mass. Guilliaem Aertsen, Robert W. Hunt, .-E: Gybbon Sp

    Jan 2, 1914

  • AIME
    Acquire First, Explore Last

    By William C. Peters

    The experiences of exploration crews with mineral land acquisition could be graphed to show a correlation with the natural law that everything tends to become more so. A single step, such as that of

    Jan 1, 1970

  • AIME
    Leaching Studies on Chrysocolla

    By R. Dugdale, F. Habashi

    Studies on hand-picked samples of chrysocolla from Arizona showed that heating in an inert atmosphere enhances greatly copper extraction by ammoniacal-ammonium carbonate solutions. Heating in hydrogen

    Jan 1, 1974

  • AIME
    Electroosmotic Stabilization of Mine Materials

    By L. A. Morley, W. T. Parry

    Laboratory prepared clay-quartz sand samples and fault gouge from an open pit slope undergoing plane-type failure were tested in the laboratory to determine potential mining applications of electroosm

    Jan 1, 1975

  • AIME
    Oxidation of Aqueous Sulfur Dioxide (f740e221-5dee-4d99-bef3-86fb86b0987a)

    By J. B. Hiskey, W. J. Schlitt, W. G. Pitt

    Aqueous SO2 (sulfurous acid) is an interesting chemical compound. It functions as a reagent in various hydrometallurgical systems, but also represents an undesirable constituent in gyro- and hydrometa

    Jan 1, 1984

  • AIME
    Extractive Metallurgy Division - Arc Melting and Fabrication of Tungsten

    By S. J. Noesen, J. R. Hughes

    Several four-inch-diameter tungsten ingots were arc melted in vacuum or in hydrogen atmospheres. Melting pressures, melt-off rates, effect of atmospheres, and other pertinent factors were examined. T

    Jan 1, 1961

  • AIME
    Sinking Large Diameter Mine Shafts By Rotary Drilling

    By Thomas N. Williamson, Victor Zeni

    A 6-ft diam core drilling machine has successfully completed seven mine shafts in Virginia and West Virginia to depths as great as 465 ft. There is no practical depth limitation to this new system-a p

    Jan 4, 1957