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  • AIME
    Production - Domestic - Oil and Gas Development in Ohio in 1941

    By Kenneth Cottingham

    The year 1941 brought a considerable increase in drilling activity in Ohio. In 1940, the total of wells completed was 1228, whereas in 1941 it was 1561, or an increase of approximately 27 per cent. Of

    Jan 1, 1942

  • AIME
    Coal - Operation of Nemacolin Mine

    By W. Z. Price

    The coal lands that the Nemacolin mine is to develop embrace over 8400 acres; the tract is oblong and its eastern edge is along the Monon-gahela river. As shown in Fig. 1, the mine is divided into two

    Jan 1, 1927

  • AIME
    Shot-Firing In Bituminous Mines (3501aa19-176e-4691-91a8-f59112f848d6)

    By M. D. Cooper

    LUCIEN EATON, Ishpeming, Mich.-It is not the custom in the Lake Superior region, as far as I know, to employ shot-firers. Each man, or pair of men (most of the contracts are given to two men) do their

    Jan 4, 1917

  • AIME
    Drilling–Equipment, Methods and Materials - The Differentiation Method in Rheology: II. Characteristic Derivatives of Ideal Models in Poiseuille Flow

    By G. C. Wallick, W. R. Foster, J. G. Savins

    Inasmuch as the differentiation and integration methods represent different modes of rheological analyses, a dual scheme of analysis using both methods should lead to a generalized method of data anal

  • AIME
    Technical Notes - A Modified Electrophoresis Apparatus

    By R. A. Deju, R. B. Bhappu

    The theory of electrophoresis is briefly outlined and an apparatus which may be used for electrophoretic studies is explained. The results obtained using this apparatus are in agreement with those obt

    Jan 1, 1967

  • AIME
    Use Of Petrofabric And Photoelastic Means In Comparing Stress Distribution Analyses In Rocks

    By M. H. Rana, W. D. Bullock

    A basic requirement in any geomechanical investigation is the establishment of the state of stress in the rock mass. So far, qualitative determinations have been more readily obtained than quantitat

    Jan 1, 1972

  • AIME
    Iron and Steel Division - Thermal Segregation in Molten Blast Furnace Iron

    By R. G. Ward

    The temperature gradient in the subhearth metal or "salamandern of the iron bhst furnace results in the establishment of gradients in the concentrations of silicon, manganese, carbon, and sulfur. The

    Jan 1, 1963

  • AIME
    Mountain Bumps At The Sunnyside Mines

    By John Peperakis

    Coal mine bumps are normally associated with pillar mining under moderate or deep cover. Severe bumps at Sunnyside, however, have not been confined to pillar lines. Many have occurred in virgin develo

    Jan 9, 1958

  • AIME
    Lake Champlain (Plattsburgh) Paper - The Making of Specifications for Structural Materials

    By Charles B. Dudley

    In view of various papers and discussion.;, at recent meetings of the Institute, upon testing, methods of testing, inspectors, inspection and specifications, it has occurred to me that my experience o

    Jan 1, 1893

  • AIME
    Production Engineering - Deep-well Pumping in California (With Discussion)

    By Hallan N. Marsh

    The subject of this paper is apt to bring to mind wells ranging from 6000 to over 8000 ft. in depth. However, it is uncommon to pump wells at depths greater than about 5000 ft. Fig. 1 shows the number

    Jan 1, 1929

  • AIME
    Reservoir Analysis And Geologic Structure

    By J. M. Bugbee

    THE engineer and the conservationist agree that effective water drive is the desirable reservoir production mechanism. Water drive may result either from the expansion of edge water, the reservoir wat

    Jan 1, 1942

  • AIME
  • AIME
    An Investigation Into Anode-Furnace Refining Of High-Nickel Blister Copper

    By Frederic Benard

    THIS paper constitutes a preliminary report on experimental work done to date on the anode-furnace treatment of blister copper containing relatively high percentages of nickel. The investigation has n

    Jan 1, 1938

  • AIME
    Transverse Faults. at Kennecott and Their Relation to the Main Fault Systems

    By Samuel Lasky

    FAULTING at Kennecott, with its attendant fracturing, is unusual, complex, and important. As study. and knowledge of the various fault systems have progressed, appreciation of that importance has help

    Jan 1, 1928

  • AIME
    Birmingham Paper - Note on Arsenic Determination

    By R. C. Canby

    The difficulty of exact neutralization by ammonia of the acid solution obtained in the determination of arsenic by the method of fusion with carbonate of soda and nitrate of potassium, led me to try t

    Jan 1, 1889

  • AIME
    Membership (81308bd9-67c1-4695-830d-98be959e744d)

    NEW MEMBERS The following list comprises the names of those persons who became members during the period Sept. 10 to Oct. 10, 1914: Members ALLEN, MILTON A., Min. Engr., Alaska Gastineau Mining C

    Jan 11, 1914

  • AIME
    Geophysics and Geochemistry - Structure Calculation from Gravity Data and Density Logs

    By Z. F. Danes

    Combination of gravity data and density logs makes it possible to determine the structural relief. Under a wide class of geologic conditions, the solution is unique, or limited to a single parametric

    Jan 1, 1962

  • AIME
    Planning And Design - A Crucial Phase In Open Pits And Quarries - Pit Planning And Layout

    Key elements of open-pit design fixing the ultimate pit limits are stripping ratio, pit slope angle, and grade cutoff. Results of exploratory and development drilling should be reduced to horizontal s

    Jan 10, 1967

  • AIME
    Rock Penetration By Jets From Lined Cavity Explosive Charges

    By George B. Clark, John W. Brown, Hemendra N. Kalia, Ronald R. Rollins

    A new theory for three dimensional collapse of conical liners shows why the two dimensional theory may offer a good approximation. Shaped charge design parameters and rock target properties were inves

    Jan 1, 1971

  • AIME
    The Gold-Aluminum System

    By Arthur S. Coffinberry, Ralph Hultgren

    WE have studied the gold-aluminum system by X-ray diffraction and by the microscope over the entire range of composition for temperatures between 300° and 500° C. Results obtained are shown in Fig. 1,

    Jan 1, 1938