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  • AIME
    Phosphate - Mining Practice in the Florida Pebble Phosphate Field (T. P. 662, with discussion)

    By Chester A. Fulton

    In Polk County, Florida, the mining of raw phosphates began some 50 years ago with dredging operations on the Peace River, and in other near-by places by removal of shallow overburden with negroes and

    Jan 1, 1938

  • AIME
    Reservoir Rock Characteristics - Unsteady-State Behavior of Naturally Fractured Reservoirs

    By A. S. Odeh

    ABSTRACT A simplified model was employed to develop mathematically equations that describe the unsteady-state behavior of naturally fractured reservoirs. The analysis resulted in an equation of flo

    Jan 1, 1966

  • AIME
    Papers - Nepheline Syenite: A New Ceramic Raw Material from Ontario (T. P. 951, with discussion)

    By Hugh S. Spence

    The use of natural feldspathic rocks, as opposed to straight feldspar, for ceramic purposes is not new. "Cornwall stone," a semi-kaolinized granite containing fluorite, has long been used by the Engli

    Jan 1, 1942

  • AIME
    New York Paper - The Conservation of Phosphate Rock in the United States (with Discussion)

    By W. C. Phalen

    Introduction............................... 100 Production and Exportation of Phosphate Rock.............. 101 Methods of Conservation........................ 101 Introductory Note.................

    Jan 1, 1918

  • AIME
    Papers - Nepheline Syenite: A New Ceramic Raw Material from Ontario (T. P. 951, with discussion)

    By Hugh S. Spence

    The use of natural feldspathic rocks, as opposed to straight feldspar, for ceramic purposes is not new. "Cornwall stone," a semi-kaolinized granite containing fluorite, has long been used by the Engli

    Jan 1, 1942

  • AIME
    Sublevel Stoping In Small Mines

    By J. J. Lillie

    Sublevel stoping was first developed in the Michigan iron mines many years ago. Since that time this method, and modifications with long hole drilling, have been used in a number of non-ferrous mines

    Jan 1, 1949

  • AIME
    The Melting Of Molybdenum In The Vacuum Arc

    By John L. Ham, Robert M. Parke

    THE melting point of molybdenum is 2625° ± 50°C. Heretofore the metal has been considered too refractory to be melted in commercial quantities; hence, it has been formed into rod, wire, and sheet by t

    Jan 1, 1946

  • AIME
    New York Paper - Manganese Ores of Russia, India, Brazil and Chile (with Discussion)

    By E. C. Harder

    The situation in the United States, at the present time, regarding the supply of manganese ores and alloys of manganese is one of great seriousness and is likely to become increasingly so while the Eu

    Jan 1, 1917

  • AIME
  • AIME
    The American Bloomary Process For Making Iron Direct From The Ore.*

    By T. Egleston

    THE direct process for the manufacture of iron which is principally used in the United States, in New York and New Jersey, is called the Jersey forge, the Champlain forge, the Catalan forge, the Bloom

    Jan 1, 1880

  • AIME
    New York Paper - The American Bloomary Process for Making Iron Direct from the Ore

    By T. Egleston

    The direct process for the manufacture of iron which is principally used in the United States, in New York and New Jersey, is called the Jersey forge, the Champlain forge, the Catalan forge, the Bloom

    Jan 1, 1880

  • AIME
    Papers - - Production - Foreign - The Petroleum Industry of the Union of Soviet Socialist Republics

    The following paper, submitted by the Russian petroleum authorities, was secured through the courtesy of G. V. Ackerman, Vice President of Amtorg Trading Corporation, and N. V. Vannikoff, Representati

    Jan 1, 1934

  • AIME
    Review Of Present Knowledge Regarding The Petroleum Resources Of South America

    By Frederick Clapp

    INTRODUCTION - SCOPE OF DISCUSSION There has hitherto been no systematic effort to make public the available information on petroleum in South America and the object of this paper, therefore, is to

    Jan 10, 1917

  • AIME
    Taxation Of Mineral Properties

    By Granville S. Borden

    The fruits of industry are divided between capital, labor, and governments. Capital takes its redemption and remuneration through profits or dividends; labor takes its share through wages; governments

    Jan 1, 1959

  • AIME
    Underground Space For American Industry

    By GEORGE A. KIERSCH

    The awesome destructive power of known and projected weapons of war presages a new need for geologists and engineers, who may be called upon to locate vital industry underground, thereby protecting it

    Jan 1, 1949

  • AIME
    Papers - Permanent Growth of Gray Cast Iron (With Discussion)

    By W. E. Remmers

    The fact that gray iron increases in volume, cracks and distorts upon repeated heating and cooling is rather conlmon knowledge. In ingot molds, Diesel engine pistons, carburizing boxes, continuous fur

    Jan 1, 1931

  • AIME
    Part IX - Papers - Hydrogen Solubility in Alpha Ti-O Alloys

    By A. E. Jenkins, A. Jostsons

    Isothermal sections of the Ti-0-H phase diagvam at 600°, 700°, and 800°C have been constructed from equilibrium hydrogen pressure measurements over a range of Ti-0-H alloys containing up to 34 at. pct

    Jan 1, 1968

  • AIME
    Reservoir Engineering - General - A Method for Calculating Multi-Dimensional Immiscible Displacem...

    By B. Zondek, W. T. Cardwell, J. W. Sheldon

    The fundamental equations that are used to describe two-phase fluid flow in porous media are Darcy's law for each phase and an equation of continuity for each component. The special case of one-d

  • AIME
    Papers - New York Meeting – February, 1929 - Corrosion of Tin and Its Alloys. (With Discussion)

    By C. L. Mantell

    Although so common and well known a metal, tin is really a less abundant element than many of those less familiar and usually ranked with the scarce or rare elements, such as cerium, yttrium, lithium,

    Jan 1, 1929

  • AIME
    Papers - New York Meeting – February, 1929 - Corrosion of Tin and Its Alloys. (With Discussion)

    By C. L. Mantell

    Although so common and well known a metal, tin is really a less abundant element than many of those less familiar and usually ranked with the scarce or rare elements, such as cerium, yttrium, lithium,

    Jan 1, 1929