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RI 3962 Exploration of Silver Eagle Zinc Deposit Hudspeth County, TexasBy W. E. Dennis
"INTRODUCTION The strategic importance of zinc warranted investigation of the Silver Eagle zinc prospect, which was first examined by an engineer 3/ of the Bureau of Mines in January 1943.From October
Oct 1, 1946
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IC 9105 A Columbium-Bearing Regolith On Upper Idaho Gulch, Near Totty, AKBy J. Dean Warner
In 1984, as part of a project to evaluate Alaskan occurrences of certain critical and strategic minerals, the Bureau of Mines investigated a columbium-bearing regolith on upper Idaho Gulch, near Tofty
Jan 1, 1986
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RI 4478 Investigation Of The Mohawk Lead-Zinc Mine San Bernardino County, Calif.By Frank J. Wiebelt
The Mohawk lead-zinc mining in San Bernardino County, Calif., was examined by D. W. Butnor, an engineer or the Bureau of Mines, at the request of Dunton, Ray, and Greenwood, leaseholders. Current oper
Jan 1, 1949
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RI 3118 Explosive Shattering Of Minerals As A Substitute For Crushing Preparatory To Ore Dressing - Explosive Crushing Of Minerals - IntroductionBy R. S. Dean
The principle of explosive crushing depends upon the fact that an expandable substance contained within the pores of a solid body will disrupt such a body upon expansion. Such expansion may be obtaine
Jan 1, 1932
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RI 2286 Miners' Field Day, Butte, MTBy D. Harrington
"In order to stimulate general interest in mine safety among their employees the mining companies of Butte, Mont., instituted in 1918 a Miners' Field Day, and this field day has since been held annual
Oct 1, 1921
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IC 6703 Mining Laws of SwedenBy E. P. Youngman
The mining law of May 16, 1884, is still the basic mining legislation in Smeden. To satisfy a demand for a revision of the entire mining law, special commissions have been at work for a number of year
Apr 1, 1933
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IC 6449 Bibliography of the Metallurgical Work of the US Bureau of Mines in 1930By R. S. Dean
A general survey of the metallurgical work of the U. S. Bureau of Mines has been given in an article in the Missouri School of Mines Alumnus, and a somewhat more detailed review of the bureau work on
Apr 1, 1931
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IC 6424 Exposions in Tennessee Coal MinesBy H. B. Humphrey
In the 39 years from 1891 to 1929 , gas and dust explosions in the coal mines of Tennessee caused 413 deaths , or one- third of the fatalities in the mines for that period . Inasmuch as explosions cau
Apr 1, 1931
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IC 7531 Publications of the Bureau of Mines on Coal Washing, compiledBy William L. Crentz
1. SALES PUBLICATIONS
Nov 1, 1949
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RI 3118 Explosive Crushing Of MineralsBy R. S. Dean
The principle of explosive crushing depends upon the fact that an expandable substance contained within the pores of a solid body will disrupt such a body upon expansion. Such expansion may be obtaine
Jan 1, 1931
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RI 4544 Diamond Drilling At The Rambler Copper Mine, Albany County, Wyo.By John I. Kasteler
The Rambler mine is in the Douglas mining district, Albany County, Wyo. (fig. 1). The property was first operated about 1870 for gold found in the outcrop of a leached ore body. Copper and metals of t
Jan 1, 1949
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RI 5685 Acid Curing And Countercurrent Decantation Washing Of An Oxidized Copper Ore From Pinal County, Ariz. ? SummaryBy W. A. McKinney
A sample of oxidized copper ore from a large deposit located in Pinal County, Ariz., about 50 miles northeast of Tucson, was treated by the Federal Bureau of Mines in a small-scale continuous pilot pl
Jan 1, 1960
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RI 2857 A Comparison Of Ground Temperatures At Different Depths And Temperature Fluctuations Of The Atmosphere ? IntroductionBy E. L. Rawlins
A previous report4 has explained that pipe lines for the transmission of natural gas should be buried to minimize temperature fluctuations because when excessive the latter decrease accuracy in measur
Jan 1, 1928
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RI 5298 Volatilization Of Tin Chlorides From Slime ? SummaryBy K. K. Kershner
The purpose of this investigation was to develop methods on a laboratory scale for recovering tin from metallurgical slime, Tin chlorides were volatilized using mixtures of hydrogen chloride and reduc
Jan 1, 1957
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On the Mechanism of the Chromate Reduction by Glutathioe: ESR Evidence for the Glutatbionyl Radical and an Isolable Cr(V) IntermediateBy N. S. Dalal, X. Shi
"With a view of elucidating the role of glutathione (GSH) in the biochemical pathways of the chromate-exposure related carcinogenesis, we carried out electron spin resonance (ESR) spectroscopic invest
Jan 1, 1988
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RI 2533 The Preparation and Properties of Normal Lead TrinitroresorcinateBy W. H. Rinkenbach, C. A. Taylor
"Among the recently patented detonating compounds that have been suggested as substitutes for the commonly used fulminate of mercury is the normal lead salt of trinitroresorcin, or styphnic acid. As n
Oct 1, 1923
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RI 8452 Chemical and Physical Characterization of Amosite, Chrysotile, Crocidolite, and Nonfibrous Tremolite for Oral Ingestion Studies by the National Institute of Environmental Health Sciences (296d2815-b2eb-4c7e-8bfa-fed8f7af8276)By William J. Campbell
The Federal Bureau of Mines provided five test materials--amosite, short-and long-fiber chrysotile, crocidolite, and nonfibrous tremo1ite--to the National Institute of Environmental Health Sciences (N
Jan 1, 1980
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MLA 48-85 - Mineral Resources Of The Battle Creek Wilderness Study Area, Owyhee County, Idaho ? SummaryBy Richard A. Winters
The 31,880-acre Battle Creek Wilderness Study Area (WSA) was evaluated for mineral resources by the U.S. Bureau of Mines in 1984. No mining district is in the area, nor were any mines or claims record
Jan 1, 1985
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Induction of Unscheduled DNA Synthesis in V79 Cells by Diesel Emission Particles Dispersed in Simulated Pulmonary SurfactantBy B. Z. Zhong, T. Ong, W. E. Wallace, W. Z. Whong, Z. W. Gu, M. J. Keane
"Abstract-Diesel emission particles (DEP) from an engine operating on the Federal Test Procedure VDC were dispersed in an aqueous mixture of dipalmitoyl lecithin (DPL). a major component of pulmonary
Dec 1, 1995
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RI 8548 An Apparatus and Procedure for Calibrating a Water Vapor Analyzer in the 0.1-to 15-ppm RangeBy Harold L. Rhodes
The Bureau of Mines has developed a quantitative method to determine water vapor in helium in the range of 0.1 to 15 ppm by volume. This method uses the quantitative chemical reaction of H20 with CaH2
Jan 1, 1981