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  • AIME
    Experiments In Induced Polarization

    By Robert G. Van Nostrand, John H. Henkel

    TRANSIENT potentials obtained in resistivity prospecting can be separated into two classes. The first is electromagnetic, has a comparatively short time constant, and increases in relative amplitude a

    Jan 3, 1957

  • AIME
    Geophysics - Experiments in Induced Polarization

    By Robert G. Van Nostrand, John H. Henkel

    TRANSIENT potentials obtained in resistivity prospecting can be separated into two classes. The first is electromagnetic, has a comparatively short time constant, and increases in relative amplitude a

    Jan 1, 1958

  • AIME
    Reservoir Engineering-General - Feasibility of Underground Storage of Liquid Methane

    By D. A. Flanagan, P. B. Crawford

    A study has been made of the feasibility of storing liquid meihane at low pressures in undergrohd caverns. Methane liquefies at — 258°F at atmospheric pressure. It is shown that the methane evaporatio

  • AIME
    Gold Mining in California

    By Edwin Higgins

    SINCE the "Days of Forty-nine" California has been the premier gold producing state of the union. The greatest production was recorded in 1.852, during which year the state's placer and lode depo

    Jan 1, 1925

  • AIME
    Part VIII – August 1968 - Papers - Iron-Sulfur System. Part II: Rate of Reaction of Hydrogen Sulfide with Ferrous Sulfide

    By E. T. Turkdogan, W. L. Worrell

    The rate of reaction of hydrogen sulfide with ferrous sulfide was studied by measuring the initial rates of sulfidation of iron strips in hydrogen sulfide-hydrogen-argon mixtures at 670°, 800°, and 90

    Jan 1, 1969

  • AIME
    Chlorides in Oil-Field Waters

    By C. W. Washburne

    THE waters of many oil fields have been regarded as buried sea water which has been retained in the sediments since the time of their deposition. The preservation of connate water through geological t

    Jan 3, 1914

  • AIME
    New York Paper - Chlorides in Oil-Field Waters (with Discussion)

    By C. W. Washburne

    The waters of many oil fields have been regarded as buried sea water which has been retained in the sediments since the time of their deposition. The preservation of connate water through geological t

    Jan 1, 1915

  • AIME
    William Wallace Mein - Director, AIME

    By AIME

    WILLIAM WALLACE MEIN, known to his intimates as "Will" or "Billy", is a mining engineer who has taken the fundamentals of successful mining--operating, engineering, and financial-and applied them to t

    Jan 1, 1947

  • AIME
    Institute of Metals Division - An Analysis of Powder Compaction Phenomena

    By R. W. Heckel

    The conzpaction of metal powders is analyzed through density-pressure curves as a three-stage process — die filling, individual particle motion, gross compact deformatim. The densification occurring

    Jan 1, 1962

  • AIME
    Papers - Non-ferrous Metallurgy - Formation of Insoluble Zinc Compounds during Roasting (With Discussion)

    By H. R. Hanley

    IT is a well-known fact that the solubility of zinc compounds decreases when these compounds are roasted in contact with iron compounds, but descriptions of tests to quantitatively express the fact ha

    Jan 1, 1929

  • AIME
    Technical Notes - Precipitation and Diffuse Scattering in an Fe-Mo-Co Alloy

    By F. E. Steigert, A. H. Geisler

    THE permanent magnet alloy comol, which contains 17 pct Mo, 12 pct Co, balance Fe, exhibits a precipitation reaction analogous to that at the iron end of the binary Fe-Mo system. The equilibrium preci

    Jan 1, 1952

  • AIME
    Properties and Alloys of Beryllium

    By Louis Stott

    IT is well known that the oxide of beryllium was identified as a new "earth" in 17971 and the metal first isolated in 18272. The history of the many difficulties encountered by early investigators, th

    Jan 1, 1936

  • AIME
    Montana Section to Entertain

    By AIME AIME

    SINCE the preparation of the Fall Meeting announcement the Montana Section has extended an invitation to the members traveling to Spokane to make at least a short stop at Butte, en route. Accordingly,

    Jan 1, 1929

  • AIME
    Part III - Papers - A Semiconductor-Metal-Semiconductor Light Detector

    By J. H. Reynolds

    The possibility of using a semiconductor, metal, semiconductor structure as a light detector is discussed. A brief theoretical argument is presented which predicts that this structure should have pho-

    Jan 1, 1968

  • AIME
    Flotation And Lead Smelting: Zinc And Fluxes (9fd13099-210d-4cf0-af6b-6c23a7136c3b)

    By A. B. Young

    THE difficulties encountered in the preparation of. the lead smelter charge for the blast furnace and in the roasting and sintering of the ores, and the expert means taken for the preparation of these

    Jan 1, 1928

  • AIME
    Flotation and Lead Smelting: Zinc and Fluxes

    By A. B. Young

    The difficulties encountered in the preparation of the lead smelter charge for the blast furnace and in the roasting and sintering of the ores, and the expert means taken for the preparation of these

    Jan 1, 1928

  • AIME
    Constitution

    SEC. 1. This Institute is incorporated under the Membership Corporations law of the State of New York; its corporate name in American Institute of Mining and Metallurgical Engineers, Incorporated; and

    Jan 1, 1937

  • AIME
    Vanadium In Pig-Iron.

    By Porter W. Shimer

    (New York Meeting, February, 1912.) IT does not seem to be generally known that some American pig-irons contain notable amounts of vanadium, and while the present investigation is far from covering

    Aug 1, 1912

  • AIME
    New York Paper - Arsenical Bearing Metals (with Discussion)

    By C.F. Pascoe, H.J. Roast

    The object of this investigation was to compare the arsenical antimony-lead alloy with some of the regular bearing-metal alloys. With this end in view, the following tests were made: 1. Chemical an

    Jan 1, 1923

  • AIME
    New York Paper - Arsenical Bearing Metals (with Discussion)

    By C. F. Pascoe, H. J. Roast

    The object of this investigation was to compare the arsenical antimony-lead alloy with some of the regular bearing-metal alloys. With this end in view, the following tests were made: 1. Chemical an

    Jan 1, 1923