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  • AIME
    Iron and Steel Division - A Thermodynamic Study of the Reaction CaS + H2O [=] CaO + H2S and the Desulphurization of Liquid Metals with Lime - Discussion

    By Terkel Rosenqvist

    J. Chipman (Massachusetts Institute of Technology, Cambridge, Mass.)—The fact that the experimental work has been applied to copper rather than iron and that the paper is presented to the Iron and Ste

    Jan 1, 1952

  • AIME
    Minerals Beneficiation - Concerning the Adsorption of Dodecylamine on Quartz - Discussion

    By F. W. Bloecher, A. M. Gaudin

    H. H. Kellogg—There is one point that the author has failed to emphasize sufficiently in his paper. What is commonly called the equilibrium contact-angle (the author's "maximum contact-angle")

    Jan 1, 1951

  • AIME
    Minerals Beneficiation - Concerning the Adsorption of Dodecylamine on Quartz - Discussion

    By F. W. Bloecher, A. M. Gaudin

    H. H. Kellogg—There is one point that the author has failed to emphasize sufficiently in his paper. What is commonly called the equilibrium contact-angle (the author's "maximum contact-angle")

    Jan 1, 1951

  • AIME
    Federal Mining Act of 1872 and the Problems of Its Amendment

    By ARCHIBALD DOUGLAS

    AT various times during the past quarter century proposals have been made that the basic Federal mining law of 1872 be repealed or amended, and that in its place a new and simpler law be enacted to pr

    Jan 1, 1930

  • AIME
    Rocky Mountain Members (9e3b2c0c-3c1e-4085-a4e6-66221b5ef20e)

    Albin, B. R. Billings, Mont. '28 Amster, Nathan L 25 Broad St., New York, N. Y. '28 Bache, Jules S 42 Broadway, New York, N. Y. '28 Barrett, C. P 5338 Harper Ave., Chicago, Ill. &apo

    Jan 1, 1923

  • AIME
    Geographical List Of Members (c0760ab9-a513-4b70-b147-8bb81f921a4b)

    [United States Page 837 Europe Page 881 Canada Page 876 Africa Page 883 Mexico Page 878 Middle East Page 884 West Indies Page 879 Asia Page 88

    Jan 1, 1961

  • AIME
    Concentration - Flotation - Tailings and Mine-dump Reclamation in the Coeur d'Alenes during World War ?? (Mini

    By W. L. Zeigler

    During the middle 1880's, shortly after the discovery of silver-lead ores in the Coeur d'Alene district of northern Idaho, it became apparent that concentration of the ores would be necessar

    Jan 1, 1949

  • AIME
    Various Phases of Activity in Iron and Steel Reviewed ? Introduction

    By John A. Gann

    THE Iron and Steel Division has shared in the general increased activity of the industry. The fall meeting at Chicago was not only well attended but particularly characterized by the virility and scop

    Jan 1, 1936

  • AIME
    Flotation Of Apatite And Dolomite Using Sodium Oleate As The Collector (6f789bba-c730-4fa0-9a15-7e9abadbe184)

    By R. Chanchani

    Single and mixed mineral flotation behavior and the mechanisms for the loss of selectivity in 1:1 and 95:5 apatite: dolomite mineral mixtures are presented. Loss of selectivity in mixed mineral system

    Jan 1, 1986

  • AIME
    Industrial Minerals - Ground Water in California - Discussion

    By J. F. Poland

    B. C. Burgess-—Prior to hearing this paper presented at the San Francisco meeting, I travelled by car from Yuma, Ariz., across south-central California and up through the San Joaquin Valley. After hea

    Jan 1, 1951

  • AIME
    Industrial Minerals - Ground Water in California - Discussion

    By J. F. Poland

    B. C. Burgess-—Prior to hearing this paper presented at the San Francisco meeting, I travelled by car from Yuma, Ariz., across south-central California and up through the San Joaquin Valley. After hea

    Jan 1, 1951

  • AIME
    Iron and Steel Process Metallurgy ? Practice Gradually Returning to Normal ? Improvements Varied But Minor

    By Michael Tenenbaum

    A REVIEW of process metallurgy of iron and steel during 1944 in many ways reflects the political and military developments of the year. Early in 1944 the tremendous wartime emergency expansion program

    Jan 1, 1945

  • AIME
    Past and Present Officers (5e9bda90-1ee5-4752-97cf-b235472a2a4b)

    DAVID THOMAS 1871 R.W. RAYMOND 1872-1874 A.L. HOLLEY 1875 ABRAM S. HEWITT 1876 T. STERRY HUNT 1877 ECKLEY B. COXE 1878-1879 WILLIAM P. SHINN 1880 RICHARD P. ROTHWELL 1881

    Jan 1, 1932

  • AIME
    Graphic Solutions of Some Compressed-Air Calculations

    By C. W. Crispell

    THE four nomograms presented in this article were designed to simplify and make more, rapid the calculations connected with the compression and transmission of air. The formulae involved are rather co

    Jan 6, 1917

  • AIME
    Technical Notes - The Crystal Structure of V3Co

    By Pol Duwez

    IN the course of an investigation of the V-CO system, two intermediate phases were found. One of these phases corresponds approximately to the stoichiometric composition VCo and is isomorphous with th

    Jan 1, 1952

  • AIME
  • AIME
    Part V – May 1969 - Papers - The Enthalpy of Solid Tungsten from 2800°K to Its Melting Point

    By L. Leibowitz, M. G. Chasanov, L. W. Mishler

    A drop calorimeter system is described for use in measuring enthalpies to 3600°K. Data are presented for tungsten between 2800" and 3600°K. The enthalpy of tungsten in cal per mole between 2000° and

    Jan 1, 1970

  • AIME
    Technical Notes - Crystallographic Angles for Orthorhombic (Alpha) Uranium

    By R. B. Russell

    SINCE Cahn's¹ paper on plastic deformation in orthorhombic (a) uranium an increasing amount of work is to be expected on orientation of single crystals and preferred orientation in this metal. It

    Jan 1, 1954

  • AIME
    Phosphorus in the Metal Industries

    By Frank T. Sisco

    The discovery of phosphorous is usually credited to the German alchemist Brand, in 1669, and the element was rediscovered the next year by Boyle in England. IT was more than 100 years later, however,

    Jan 1, 1944

  • AIME
    Cleveland Paper - A Graphic Solution of D’Arcy’s Formula for the Transmission of Compressed Air in Pipes

    By Nathaniel Herz

    The formula very frequently used for computing the economical size of pipe to transmit compressed air is that of D'Arey, as follows: D = cV w1l Where, D = the volume of compressed air deliv

    Jan 1, 1913