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  • AIME
    The Low-volatile Coal Field of Southern West Virginia

    By Howard Eavenson

    THE low-volatile, or smokeless, coal field of southern West Virginia is in Fayette, Raleigh, Wyoming, Mercer, Summers and McDowell counties, in the extreme southern portion of the state, and extends i

    Jan 1, 1931

  • AIME
    The Lucky Tiger Concentrator

    By A. B., Sabin

    THERE are many who know The Lucky Tiger and will remember the 35-mile road from Esqueda, a station on The Nacozari Railroad in northern Sonora, Mexico. They will remember the box canyons of the Agua C

    Jan 1, 1929

  • AIME
    The Machine Representation Of Geological Information

    By Colin J. Dixon

    The full realization of the potential of computers in geological in- formation system demands new approaches to the machine representation of information. At the same time, the feasibility of such a s

    Jan 1, 1969

  • AIME
    The Magma

    Human progress has a visible material phase, easily discernible, that is expressed in the standard of living. This material phase, however, is only the outward expression of a spiritual or mental phas

    Jan 1, 1950

  • AIME
    The Magmatic Origin Of Vein-Forming Waters In Southeastern Alaska

    By Arthur C. Spencer

    HAVING suggested magmatic waters as the probable agents of vein- and ore-deposition in southeastern Alaska in a paper entitled, The Geology of the Treadwell Ore-Deposits,1 it is with particular intere

    Jan 1, 1913

  • AIME
    The Magmont Operation

    By A. J. W. Schwandt

    Magmont is a venture jointly owned by Cominco American Incorporated of Spokane, Washington and Dresser Minerals, Division of Dresser Industries, Houston, Texas. Cominco American assumed direction of t

    Jan 1, 1970

  • AIME
    The Magnetic Concentration Of Low-Grade Iron Ores

    By S. Norton

    IN the West, capitalists have expended many millions of dollars developing the low-grade porphyry ores of copper. Half a dozen of these great enterprises have proved to be wonderful commercial success

    Jan 2, 1917

  • AIME
    The Magnetic Concentration of Low-Grade Iron Ores (7025364d-f8fd-4dba-868a-4ec75f57cb21)

    S. LE FEVRE, Forest Glen, N. Y. (communication to the Secretary*).¬F. L. Nason thinks I could not have studied Mr. Witherbee's paper and doubts the arithmetic used, but in his discussion arrives

    Jan 6, 1917

  • AIME
    The Magnetic Concentration of Low-Grade Iron Ores (e6fed46a-e2b9-40cf-90b8-a0788c4b26d4)

    By S. Norton

    GEORGE C. FOOTS, Port Henry, N. Y. (written discussion).-The paper by Mr. Norton and Mr. LeFevre will bear the most careful consideration by all interested in the iron business, particularly in the Ea

    Jan 4, 1917

  • AIME
    The Magnetic Iron Ores of New Jersey-Their Geographical Distribution and Geolog¬ Ical Occurrence

    By J. C. Smock

    THE magnetic iron ores of New Jersey are found in the northern part of the State, in the Highland Mountain range, which runs from the New York line on the northeast, to the Delaware River, near Easton

    Jan 1, 1874

  • AIME
    The Magnetic Properties Of Sintered Iron And Iron Base Alloys

    By W. Rostoker

    INTRODUCTION THE process of diffusion alloying of mixed powders offers attractive possibilities both commercially and experimentally. It avoids the fabrication difficulties arising from high alloy

    Jan 1, 1948

  • AIME
    The Magnetic Reflux Classifier

    By Lawrence A. Roe

    The magnetic reflux classifier, which utilizes the combined effects of magnetic fields and a hindered settling classifier, is a new tool for determining the quantity and quality of middlings in fine-s

    Jan 3, 1953

  • AIME
    The Magnetite Deposit near Humacao, Puerto Rico

    By R. J. Colony

    DEPOSITS of iron are widely scattered in the folded Cretaceous rocks and the associated igneous intrusives of Puerto Rico. Most of them are too small for commercial development, but a few have aroused

    Jan 1, 1935

  • AIME
    The Magneto-optic Method of Analysis with Particular Reference to the Detection of Elements 85 (Alabamine) and 87 (Virginium) and the Heavy Isotope of Hydrogen

    By Fred Allison

    THE magneto-optic method of analysis had its origin in experiments1 which were designed to detect and measure a time lag in the Faraday effect and later to study this time lag as a function of the wav

    Jan 1, 1932

  • AIME
    The Magnetometer As A Geological Instrument At Sudbury

    By F. McIntosh Galbraith

    THIS paper describes the use of the magnetometer, under geological direction, in exploration of the Sudbury nickel district. The writer's experience at Falconbridge has led him to the belief that

    Jan 1, 1942

  • AIME
    The Magnetometer As A Geological Instrument At Sudbury (cadea811-3f9b-4002-abc8-81cc006519a9)

    By McIntosh F. Galbraith

    This paper describes the use of the magnetometer, under geological direction, in exploration of the Sudbury nickel district. The writer's experience at Falconbridge has led him to the belief that

    Jan 1, 1942

  • AIME
    The Magnitude and Significance of Flotation in the Mineral Industries of The United States

    By Charles White Merrill, James W. Pennington

    No metallurgical process developed in the 20th century compares with froth flotation in its effect on the mineral industry. Processes like gravity - concentration, amalgamation, and pyrometallurgical

    Jan 1, 1962

  • AIME
    The Mahoning Valley Coal Region

    By Andrew Roy

    THE Mahoning Valley coal region lies on the extreme northern outcrop of the Ohio coal-field, and all the mines, with one exception, are opened on the lower coal of the series, No. 1 of the Ohio Geolog

    Jan 1, 1876

  • AIME
    The Main Mineral Zone Of The Santa Eulalia District, Chihuahua*

    By Basil Prescott

    Resume.-The district of Santa Eulalia lies 12 miles to the southeast of the city of Chihuahua, Mexico. The ore deposits occur in a Cretaceous limestone of unknown thickness, overlain by a series of rh

    Jan 2, 1915

  • AIME
    The Major Lead-Zinc Producing Mines In Morocco

    By Abderrafih Guessous

    INTRODUCTION Morocco is an important lead-zinc producing country: 120,000 tons of lead concentrates were produced in 1968. Zinc ore production is less, 67,000 tons of concentrates in 1968. Most of

    Jan 1, 1970