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  • AIME
    12. Geology and Ore-Deposits of the Ducktown District, Tennessee

    By Maurice Magee

    The Ducktown ore deposits have been known, explored, and mined for 120 years. Eight massive sulfide ore bodies occur in highly folded and metamorphosed graywacke, graywacke conglomerate, mica schist,

    Jan 1, 1968

  • AIME
    16. The Native-Copper Deposits of Northern Michigan

    By Walter S. White

    The Michigan native-copper district has produced about 5,400,000 tons of copper since mining began in 1845. The copper occurs primarily as open-space fillings and replacements in amygdaloidal flow top

    Jan 1, 1968

  • AIME
    28. Ore Deposits of the Atlantic City District, Fremont County, Wyoming

    By Richard W. Bayley

    The Atlantic City district encompasses several districts and has been previously called by different names, e.g., Atlantic gold district, Atlantic City-South Pass mining district, and Sweetwater minin

    Jan 1, 1968

  • AIME
    30. Geology and Ore Deposits of the Gilman (Red Cliff, Battle Mountain ) District, Eagle County, Colorado

    By R. E. Radabaugh, J. M. Brown, J. S. Merchant

    The Gilman district is on the northeast flank of the Sawatch Range in central Colorado. It has yielded a total of 10,000,000 tons of ore having a value of over $250,000,000. Paleozoic sediments intrud

    Jan 1, 1968

  • AIME
    33. Ore Deposits in the Central San Juan Mountains, Colorado

    By Thomas A. Steven

    Most mineralized areas in the central San Juan Mountains, Colorado, are associated with the youngest subsidence structures in a large volcanic cauldron complex that formed concurrently with eruption o

    Jan 1, 1968

  • AIME
    46. Fine Gold Occurrence at Carlin, Nevada

    By Paul F. Kerr, Donald M. Hausen

    Fine colloidal gold near Carlin, Nevada is disseminated in leached carbonate strata of the Roberts Mountains Formation in the Lynn "window" of the Roberts Mountains thrust fault. The ore body is gener

    Jan 1, 1968

  • AIME
    47. Geology and Ore Deposits of the East Tintic Mining District, Utah

    By D. R. Cook, W. M. Shepard, H. T. Morris

    The East Tintic district in central Utah has produced ores of gold, silver, copper, lead, and zinc valued at more than $120,000,000. All of this ore has been produced from blind ore bodies in Paleozoi

    Jan 1, 1968

  • AIME
    49. Iron Ore Deposits of the Iron Springs District, Southwestern Utah

    By J. Hoover Mackin

    The iron ore bodies of the Iron Springs district are replacement deposits of magnetite and hematite in Jurassic limestone around the borders of three intrusions of quartz-monzonite porphyry. Productio

    Jan 1, 1968

  • AIME
    58. Ore Deposits of the Central Mining District, Grant County, New Mexico

    By William R. Jones, Robert M. Hernon

    This report on the Central mining district of New Mexico is the partial culmination of an intensive U.S. Geological Survey effort dating back some 30 years. Robert M. Hernon went to Silver City in 194

    Jan 1, 1968

  • AIME
    59. The Geology of the Iron King Mine

    By Arthur R. Still, Paul Gilmour

    The ore deposit of the Iron King mine occurs in a group of steeply-dipping metamorphosed eugeosynclinal volcanic and sedimentary rocks of Precambrian age. Within this sequence, the ore deposit lies at

    Jan 1, 1968

  • AIME
    6. The Grace Mine Magnetite Deposit, Berks County, Pennsylvania

    By Samuel J. Sims

    The Grace mine magnetite deposit, located 2 miles north of Morgantown in Berks County, Pennsylvania, was discovered in 1948 by an aerial magnetometer survey. It is situated on the southern border of t

    Jan 1, 1968

  • AIME
    62. Massive Sulfide Deposits of the Bagdad District, Yavapai County, Arizona

    By Robert L. Clayton, Arthur Baker

    Two massive sulfide zinc-copper ore bodies are in quartz-sericite schist (probably formed by regional metamorphism of sediments) and andesite of the Precambrian Yavapai Series, on opposite sides of a

    Jan 1, 1968

  • AIME
    76. Geology of the Eagle Mountain Mine Area

    By Richard W. Brummett, Robert L. Dubms

    Located some 180 miles east of Los Angeles in Riverside County, California, the Eagle Mountain mine supplies iron ore concentrates for the Kaiser Steel Corporation steel plant in Fontana, California,

    Jan 1, 1968

  • AIME
    79. Geology of the Nickel Mountain Mine, Riddle, Oregon

    By John T. Cumberlidge, Frederic M. Chace

    Nickel-bearing saprolite developed during the early Tertiary over a northeast trending ultramafic body of Jurassic age near Riddle in southwestern Oregon. The principal nickel mineral is garnierite, b

    Jan 1, 1968

  • AIME
    8. Titaniferous Ores of the Sanford Lake District, New York

    By Stanford O. Grodd

    The Sanford Lake district encompasses an area covering 24 square miles in the central Adirondack Mountains of northern New York State. Discovery of the titaniferous magnetite deposits dates back to 18

    Jan 1, 1968

  • AIME
    81. Lindgren's Ore Classification after Fifty Years

    By L. C. Graton

    At the Tenth International Geological Congress, Mexico, 1906, Waldemar Lindgren presented "The Relation of Ore Deposition to Physical Conditions." Retrospect ranks it as the outstanding offering at th

    Jan 1, 1968

  • AIME
    82. Changes and Developments in Concepts of Ore Genesis - 1933 to 1967

    By John D. Ridge

    Here are summarized 162 papers, published between 1933 and 1967, that deal with various aspects of ore genesis. Emphasis is placed on additions to, or modifications of, ore-formation theory, no matter

    Jan 1, 1968

  • AIME
    A Commercial Fuel-Briquette Plant.

    By W. H. Blauvelt

    THE subject of fuel-briquetting has attracted much attention on the part of engineers and investors for the past 15 or 20 years, and especially in recent years, during which a number of plants have be

    Mar 1, 1910

  • AIME
    A Comparison of Block Caving Methods

    By C. L. Pillar

    INTRODUCTION The location, size, character of the ore de- posit and its adjacent formations will deter- mine the mining system best used for its ex- traction. The mining system chosen will have to

    Jan 1, 1981

  • AIME
    A Comparison Of Grain-Size Measurements And Brinell Hardness Of Cartridge Brass- Discussion

    ARTHUR PHILLIPS,* Bridgeport, Conn. (written discussion?).-It is to, be regretted that the very valuable paper by Messrs. Bassett and Davis did not appear in the early war period. The data presented w

    Jan 3, 1919