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  • AIME
    Part IV – April 1968 - Papers - Chemical Vapor Deposition of Hafnium Carbide

    By R. A. Corley, W. R. Wilcox, J. R. Teviotdale

    Chemical vapor deposition of hafnium carbide yielded whiskers, needles, dendrites, faceted crystals, and adherent coatings. The gas stream compositiom and the mass transfer conditions determined the

    Jan 1, 1969

  • AIME
    Mining Technology In 1964 – Underground Mining

    By C. David Mann

    Metal prices continued to improve in 1964, resulting in the opening of new mines and re- activation of old ones. Larger and deeper shafts are being bored. At the AEC's Nevada Test Site, a 72-in

    Jan 2, 1965

  • AIME
    Geology - Uranium Deposits at Kane Creek, Utah

    By D. M. Davidson, P. F. Kerr

    The Permian Cutler Formation in Kane Creek, Utah bears uranium ore in fissure-type vertical veins. This fissure vein formation and its associated host rock bleaching, weak argillic alteration, and bas

    Jan 1, 1967

  • AIME
    Notes On The Metallography Of Alloys.

    By William Campbell

    (Cleveland Meeting, October, 1912.) [SECRETARY'S NOTE.-To avoid repetitions of foot-notes, references to authorities are made in the paper by means of figures, referring to a numbered list in th

    Dec 1, 1912

  • AIME
    Hot-Dip Galvanizing-Zinc's Biggest Consumptive Use

    By John G. McLain

    OF all the zinc that the world consumed in 1936-'38 the United States took about 31 per cent, and almost 14 per cent of the world's zinc supply in that period was used for galvanizing purpos

    Jan 1, 1941

  • AIME
    Geology - Shallow Expressions of Silver Belt Ore Shoots. Coeur d'Alene District, Idaho

    By Robert E. Sorenson

    EXPLORATION for deep-seated orebodies in the Silver Belt area of the Coeur d'Alene mining district is complicated by meager surface expressions of diagnostic criteria, lack of knowledge of the si

    Jan 1, 1952

  • AIME
    23. Geology of the Iron Ores of the Lake Superior Region in the United States

    By Ralph W. Marsden

    The natural iron ores of the Lake Superior Region in the United States are being replaced by iron-ore concentrates produced from magnetite- or hematite-rich horizons in the Precambrian cherty iron for

    Jan 1, 1968

  • AIME
    How Detachable Bits Have Cut Mining Costs

    By W. M. Ross

    AMONG the comparatively few A radical changes in mining equipment in recent years is the introduction and use to an ever greater degree of detachable bits for rock drills. Just how great the possible

    Jan 1, 1939

  • AIME
    Forthcoming Meetings Of Societies

    Organization Place Date 1917 American Electro-Chemical Society Detroit; Mich. May 2-5 American Waterworks Association Richmond, Va. May 7-11 American Institute of Electrical Engineers New York Cit

    Jan 5, 1917

  • AIME
    Postwar Symposium of Mining Geology Committee Biggest Session of Meeting

    By HUGH E. McKinstry

    OPENING the sessions of the Mining Geology Committee, the program on postwar mineral controls drew a larger attendance than any other session of the entire meeting. In view of its general interest, th

    Jan 1, 1944

  • AIME
    Estimating Minnesota's Natural Iron Ore Reserves

    By Goerge F. Weaton

    Since 1909, when an agreement between Minnesota's Tax Commission and the University of Minnesota's School of Mines was worked out, it has been the annual responsibility of the School to eval

    Jan 1, 1965

  • AIME
    The Mining, Preparation and Smelting of Virginia Zinc-Ores

    By THOMAS LEONBRD WATSON

    INTRODUCTION. IN a paper read by title at the Washington meeting of the Institute, May, 1905,1 discussed at considerable length the geological relations, node of occurrence, and the genesis of the le

    Mar 1, 1906

  • AIME
    15. The Iron Mountain Mine, Iron Mountain, Missouri

    By John E. Murphy, Ernest L. Ohle

    Hematite-magnetite ore bodies at Iron Mountain, Missouri, have produced nearly 9 million tons of iron ore concentrates since 1844. The ore minerals occur principally as open-space filling in fractured

    Jan 1, 1968

  • AIME
    Problems in Student Employment

    By Arthur S. Huey

    AS the end of the collegiate year approaches, the problem of student employment again becomes acute. This subject divides itself into two phases: (1) employment prior to graduation and (2) employm

    Jan 1, 1932

  • AIME
    Production Engineering

    By F. B. Plummer

    PROGRESS during 1940 in oil-production technology has been confined largely to a steady advancement in practices inaugurated in previous years, rather than the introduction of any new startling proce

    Jan 1, 1941

  • AIME
    Peak U.S. Crude-Oil Production in 1943 Not Offset by New Discoveries

    By W. P. Haynes

    ESTIMATED United States crude-oil production during 1943 established a new annual peak of 1,500,000,000 barrels, a daily average of 4,118,000 barrels. This would be an increase of 315,000 barrels per

    Jan 1, 1944

  • AIME
    The Development and Use of High-Speed Tool-Steel.

    By J. M. GLEDHILL

    IT would doubtless have been felt by many but a few years back that there was little left to be said on the subject of crucible tool-steel, and that something akin to finality had been arrived at in i

    Mar 1, 1905

  • AIME
    Effect of Ba Cl2 and Other Activators on Soap Flotation of Quartz

    By Brahm Prakash, R. Schuhmann

    Chemical conditions for flotation and nonflotation of quartz with oleic acid as collector and barium, calcium, aluminum, iron, and tin as activators were studied using a simple vacuum-flotation techni

    Jan 1, 1950

  • AIME
    Geology - The Gem Stocks and Adjacent Orebodies, Coeur d'Alene District, Idaho

    By G. M. Crosby

    Seven mines with important production records in the Coeur d'Alene lie adjacent to the Gem stocks —the Frisco (Gem), Hercules, Interstate, Rex (Sixteen to One), Success (Granite), Sunset, and Tam

    Jan 1, 1960

  • AIME
    Industrial Minerals - Mining and Milling of Lithium Pegmatites at Kings Mountain, N. C.

    By D. L. Rainey, E. R. Goter, W. R. Hudspeth

    THE area in which spodumene-bearing pegmatites occur extends from Gaffney, S. C., in a northerly direction to Lincolnton, N. C., a distance of about 16 miles. The zone averages 2 miles in width. I

    Jan 1, 1954