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RI 6778 Using Probability Models As A Basis For Making Decisions During Mineral Deposit ExplorationBy Jr. Hazen
This report documents 653 sets of sample data involving 78,366 assays obtained from past exploration for various minerals and metals. Most of these data have been taken from published reports describi
Jan 1, 1966
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RI 2847 Prevention Of Hydrogen Sulphide Poisoning In Handling And Refining High-Sulphur Petroleums ? IntroductionBy H. C. Fowler
Hydrogen sulphide associated with the gasps and vapors from certain crude oils now produced in the United States has forced a serious health and safety problem upon the petroleum industry. Although th
Jan 1, 1927
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RI 9164 - Effect of Fluoride Inclusions on Induction-Slag-Melted Ti-6A1-4V AlloyBy J. I. Paige
The effect of fluoride inclusions on the properties of titanium produced from the Bureau of Mines developed induction slag melting process is of concern to members of the titanium industry. The object
Jan 1, 1988
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RI 5154 Theory Of Model Testing As Applied To Roof Bolting ? Introduction And SummaryBy Louis A. Panek
The practice of roof bolting or rock bolting to stabilize rock surrounding underground excavations has increased tremendously within a few years. This widespread application has led to many questions
Jan 1, 1956
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IC 6099 Mudlting in Coal MinesBy D. Harrington, F. E. Cash
For a number of years the efforts of the coal -mining industry , as well as of the Bureau of Mines , have been directed largely towards the limitation and prevention of explosions in coal mines . The
Jan 1, 1929
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RI 6212 A Metal Diaphragm Apparatus For Measuring Vapor Pressures - Vapor Pressure Of Arsenic (III) OxideBy F. D. Stevenson
A metal diaphragm pressure relay system was constructed to measure vapor pressures of the metal halides, oxyhalides, and other substances at temperatures up to 700° or 800° C. The vapor pressure of ar
Jan 1, 1963
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IC 6984 Mineral Wool ? Introduction And AcknowledgmentsBy J. R. Thoenen
In June 1929 the Bureau of Mines issued a 13-page Information Circular entitled "Mineral wool." This was one of the first publications to present to the public some technical aspects of the mineral-wo
Jan 1, 1938
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IC 9404 Modified Shearer Clearer System For Dust And Methane ControlBy Andrew B. Cecala
This U.S. Bureau of Mines report provides a detailed description of the Bureau-designed modified shearer clearer system. Engineering drawings are provided for all major components of this system. The
Jan 1, 1994
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IC 6830 Minor Mineral Fertilizer Materials ? ForewordBy Bertrand L. Johnson
The major elements essential to plant growth are nitrogen, potassium, and phosphorus. These three constituents of the soil are removed relatively rapidly by growing crops and consequently are the main
Jan 1, 1935
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RI 4228 Copper Flat Zinc Deposit, Central Mining District, Grants Co. N. Mex.By Donald H. Mullen, Walter R. Storms
"INTRODUCTION The Copper Flat area of the Central mining district, Grant County, N. Mex., has been visited by numerous engineers 4/ of the Bureau of Mines and geologists 5/ of the Federal Geological S
Apr 1, 1948
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RI 3620 Manganese Investigations-Metallurgical DivisionBy S. M. Shelton, F. D. DeVaney, M. M. Fine
Ferrograde manganese ore or its equivalent is essential to the manufacture of every ton of steel produced ; although it is well -known that there are large deposits of low - grade ore in the United St
Feb 1, 1942
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IC 7280 Standardized Construction Of Mine Ventilating Doors - IntroductionBy J. C. Hartley
The most important single operation in mining is the ventilation of underground areas in a manner conducive to the health and safety of employees. Adequate volumes of pure air must be supplied at the
Jan 1, 1944
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RI 4542 Investigation Of Oat Hill Mercury Mine Napa County, Calif.By Fremont T. Johnson
Credited with production of more than 164,000 flasks Of quicksilver from 1876 to 1944, the Oat Hill mine has ranked third in output in the United States. During World War II, when the demand for merc
Jan 1, 1949
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IC 7061 Accident Prevention At A Copper Smelter ? IntroductionBy E. A. Anundsen
The prevention of accidents is considered a necessity at all branches and divisions of the Phelps Dodge Corporation copper-producing operations, and since there is a continual exchange of data on safe
Jan 1, 1939
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RI 4169 Investigations of Explosion Hazards of Perchloric Acid and Mixtures of Perchloric Acid and Organic MaterialsBy M. A. Elliott, F. W. Brown
"INTRODUCTION During the recent war the Bureau of Mines, at the request of one of the armed services, investigated the hazards that night be encountered 5n handling perchloric acid, particularly if sp
Jan 1, 1948
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RI 9540 - Operational Characteristics of Trailing Cable SplicesBy Michael R. Yenchek
The U.S. Bureau of Mines investigated the operational characteristics of spliced portable power cables. This research had a dual purpose: (1) to determine the thermal and mechanical performance of rep
Jan 1, 2010
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RI 2931 Consumption Of Reagents Used In Flotation, 1927 ? IntroductionBy A. M. Gaudin
A study of the consumption of reagents used in flotation gives useful data as to the market which employment of the flotation process creates for the manufacturers of the necessary chemicals and oils,
Jan 1, 1929
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RI 3623 Manganese Investigations - Metallurgical Division 10. Ore-Dressing Studies of Manganese OresBy S. M. Shelton, W. A. Calhoun, M. M. Fine, T. L. Johnston
"FOREWORDFerrograde manganese ore or its equivalent is essential to the manufacture of every ton of steel produced; although it is well known that there are large deposits of low-grade are in the Unit
Mar 1, 1942
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RI 4660 Investigation Of Gilley Fluorspar Deposits Cherokee County, Ala.By James F. Neill, O&apos
Investigation of the Gilley fluorite deposit was based upon examinations made by several of the Bureau's mining engineers. Fluorspar was found in the dump talus of sloughed and water-filled trenc
Jan 1, 1950
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RI 4082 Use of Molten Lead as Quenching Medium in Carbothermic Production of MagnesiumBy M. J. Spendlove, P. P. Zapponi
"INTRODUCTION In carbothermic processes for the production of magnesium, magnesium oxide is reduced by carbon according to the following equation:(1) MgO + C = Mg(g) + CO.The reaction is virtually com
Jun 1, 1947