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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
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24. The Marquette District, Michigan
By Gerald J. Anderson
The Marquette District of Central Northern Michigan is the oldest of the Lake Superior iron districts with a mining history dating from 1852 up to the present. The total production of all types of ore
Jan 1, 1968
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25. The Mesabi Iron Range, Minnesota
By J. S. Owens, R. W. Marsden, J. W. Emanuelson, R. F. Werner, N. E. Walker
The iron ores of the Mesabi Range occur in a 340 to 750-foot thick, Precambrian cherty iron formation termed "taconite." For about 65 years, extensive natural iron ore bodies were mined, and the ores
Jan 1, 1968
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26. Iron Ore Deposits of the Menominee District, Michigan
By Paul W. Zimmer, Carl E. Dutton
Iron ore in the Menominee district is mined from two iron-formations of middle Precambrian age. The older formation is present in the northeastern part; is composed mainly of hematite, magnetite, quar
Jan 1, 1968
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27. Geologic Setting and Interrelationships of Mineral Deposits in the Mountain Province of Colorado and South-Central Wyoming
By Ogden Tweto
The classes of ore deposits in the mountain province of Colorado that have been the most productive in the past and that offer the greatest promise for the future are: (1) disseminated or stockwork mo
Jan 1, 1968
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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
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29. Multiple Intrusion and Mineralization at Climax, Colorado
By David C. Jonson, W. Bruce MacKenzie, Arthur A. Bookstrom, Vaughn E. Surface, Neil K. Muncaster, Stewart R. Wallace
In mid-Tertiary time a wet silici-alkalic magma penetrated the Precambrian rocks of what is now the Tenmile Range of Central Colorado and formed the Climax Stock. The stock is a composite one and was
Jan 1, 1968
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2nd Pan-American Scientific Congress
The Second Pan-American Scientific Congress will be held under the auspices of the United States Government in Washington, D. C., Dec. 27, 1915, to Jan. 8, 1916. The organization officers are John Bar
Jan 12, 1915
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3-D Pit Design With Variable Wall Slope Capabilities
By T. Chen
One of the limitations of the 3-dimensional Lerchs-Grossmann pit optimisation algorithm has been the difficulty in calculating an optimum pit with variable wall slopes. The difficulties have been rela
Jan 1, 1977
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3. Directors Of Phelps, Dodge & Co., Inc., And Phelps Dodge Corporation
By Robert Glass Cleland
[George B. Agnew Cleveland H. Dodge James Douglas E. Hayward Ferry Francis L. Hine Arthur Curtiss James1908-1941 1908-1926 1908-1918 1908-1935 1908-1927 1908-1941]
Jan 1, 1952
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3. The Benson Mines Iron Ore Deposit, Saint Lawrence County, New York
By Edward L. Beutner, Robert M. Crump
Benson Mines low-grade iron ore reserve is a replacement deposit within the Grenville gneisses of the Adirondacks. The average grade of the crude ore is about 23 per cent iron. The iron minerals are p
Jan 1, 1968
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3.13 Fuels – Coal
By Ramesh Malhotra, Hubert E. (Deceased) Risser
THE WORLD Coal, as a source of energy and as a source of coke for the smelting of iron ore, has contributed significantly to the development of every major industrial nation of the world A number o
Jan 1, 1976
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3.14 - Metals - Iron Ore
By Franz R. Dykstra
DEFINITIONS The ores of iron are classified in three general categories: direct shipping, concentrates, and agglomerated-i.e., pelletized or sintered. Direct Shipping As the name implies, dir
Jan 1, 1976
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3.15 – Nonmetallics - Construction Minerals
By Robert M. Dreyer
AGGREGATE With an annual domestic production of over 1.6 billion tons at a value of over $2 billion (see Table 15.1.1), the production of aggregate (crushed rock, sand, and gravel) is a basic indus
Jan 1, 1976
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3.15.4 - Other Nonmetallics - Abrasives
By Robert M. Dreyer
During the past two decades, synthetic abrasives have taken over successively greater percentages of the high-grade abrasive market, so that now, with the exception of natural diamonds (discussed in s
Jan 1, 1976
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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
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31. The Titaniferous Magnetite Deposit at Iron Mountain, Wyoming
By Arthur F. Hagner
The titaniferous magnetite deposit at Iron Mountain, Wyoming, is in Precambrian anorthosite. Individual ore bodies are lenses, commonly arranged en echelon, conformable to the platy crystal structure
Jan 1, 1968
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32. Leadville District, Colorado
By Ogden Tweto
The Leadville district, on the west flank of the Mosquito Range in central Colorado, has produced silver, zinc, lead, gold, and minor metals valued at $512,000,000. The ore deposits are in a sequence
Jan 1, 1968
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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
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34. Geology and Ore Deposits of the Western San Juan Mountains, Colorado
By Wilbur S. Burbank, Robert G. Leudke
The impressive western San Juan Mountains of Colorado were carved by Pleistocene and Recent erosion from a thick blanket of Tertiary volcanic rocks that rests upon a basement of metamorphic, sedimenta
Jan 1, 1968