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RI 2185 Analysis of Air from Burning BuildingsBy S. H. Katz
"At the annual meeting of the International Association of Fire Engineers at Kansas City, Mo., in June, 1919, the Bureau of Mines offered to cooperate with municipal fire departments for the purpose o
Nov 1, 1920
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RI 4691 Investigation Of The Tapley Copper Deposit Hancock County, MaineBy Kenneth M. Earl
In its program of investigation of deposits of strategic minerals, the Bureau of Mines did some development drilling at the Tapley deposit in an endeavor to find an additional source of copper. There
Jan 1, 1950
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IC 8670 Construction Of An Interface Between A Minicomputer And An X, Y DigitizerBy Richard G. Burdick
This Bureau of Hines report describes an interface between a minicomputer and peripheral device, The logic used to develop the device is discussed briefly, after which the device is described in detai
Jan 1, 1975
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RI 6410 Activities of Copper and Nickel in Liquid Copper-Nickel AlloysBy S. L. Payne, E. F. Foerster, C. W. Schultz, G. R. Zellars
The vapor pressure of copper in a series of liquid copper - nickel alloys was determined by the carrier gas method . The activity and activity coefficient of copper were calculated over the entire ran
Jan 1, 1964
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IC 8253 Rock-Dust Disseminator Used In Return Air Currents, Koehler Mine, Kaiser Steel Corp., Koehler, N. Mex. (df5c3003-f1d4-4088-9a36-dbc53936f6fd)By A. Z. Dimitroff
An improvised rock- dust disseminator, consisting of a 10-gallon galvanized metal milk can that dispenses rock dust in return air currents by the injection of compressed air has reduced the float dust
Jan 1, 1965
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RI 2109 Safe Storage of CoalBy H. H. Stoek
It would permit coal mines to operate continuously instead of intermittently . Intermittent operation increases the cost per ton for mining , and makes the yearly return to labor low . These condition
Apr 1, 1920
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Industry / University Research & DevelopmentBy Industrial Research Office
"The U.S. Bureau of Mines established on August 15, 1983, the Generic Mineral Technology Center for Respirable Dust within the Mining and Mineral Resources Research Institutes (MRIs) at The Pennsylvan
Aug 31, 1989
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IC 6780 Meerschaum ? IntroductionBy Alice V. Peter
Meerschaum or sepiolite is employed principally in tobacco pipes and cigar and cigarette holders, although a few other uses of minor importance are Down. The unique value of a meerschaum pipe is deriv
Jan 1, 1934
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RI 7570 Dispersion Strengthening Of Lead By CoprecipitationBy M. M. Tilman
The Bureau of Mines conducted research into the dispersion strengthening of lead by the coprecipitation method. Commercially available reagents in water solutions were reacted to form homogeneous prec
Jan 1, 1971
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IC 8931 Economic Evaluation Of A Method To Regenerate Waste Chromic Acid-Sulfuric Acid EtchantsBy Deborah A. Spotts
Researchers at the Bureau of Mines have developed a technique for re- generating chromic acid-sulfuric acid etching solutions used in metal surface treatment operations. The technique utilizes a diaph
Jan 1, 1983
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Dusts, Tests, Samples and Analysis"As stated earlier the primary goal of the Generic Mineral Technology Center for Respirable Dust is to reduce the incidence and severity of respirable dust disease through advancing the fundamental un
Jan 1, 1988
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Mineral Content Variability of Coal Mine Dust by Coal Seam, Sampling Location, and Particle SizeBy H. Kim, R. W. Plummer, T. J. Stobbe
"The probability of developing coal workers' pneumoconiosis (CWP) varies among miners in different geographic areas, coal seams, and jobs. Many studies have revealed the correlation between mineral co
Jan 1, 1988
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IC 7214 Questions And Answers On Storage Of Coal In The Rocky Mountain Area ? Who Should Store Coal And Why?By V. F. Parry
Under the present emergency every consumer should store as much coal as he can. Although there is no shortage of coal, there is likely to be a shortage of labor to mine excessive quantities in the fal
Jan 1, 1942
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RI 6101 Columbium-Hafnium Binary Alloys For Elevated-Temperature ServiceBy H. R. Babitzke
The purpose of this investigation was to evaluate the potential of columbium-hafnium alloys as structural materials for use at elevated temperatures. The work described in this report was conducted to
Jan 1, 1962
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RI 5886 Simulated Nuclear Reactor System For High-Temperature Process Heat: 1,000-Hour Demonstration Run At 2,500° F. ? SummaryBy N. H. Coates
As part of a joint program of the U.S. Atomic Energy Commission and the Federal Bureau of Mines for using nuclear energy to supply process heat, the Bureau designed and constructed a pilot-scale simul
Jan 1, 1961
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Rock-Bit Interaction during Rock CuttingBy A. W. Kbair, L. D. Gehl
"INTRODUCTION The rock-bit interaction during the cutting process in underground mines has been a matter of great concern to mining operators, researchers and manufacturers, particularly after the pas
Dec 1, 1995
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RI 7863 Effects of Jointing and Bedding Separation on Limestone Breakage at a Reduced ScaleBy William C. Larson
A study was conducted by the Bureau of Mines to provide quarry operators with information regarding (1) the effects of jointing and bedding on rock fragmentation when bench blasting in two small-scale
Jan 1, 1974
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OFR-21-88 Personal Equipment For Low Seam Coal Miners: X. Improved Knee Pads, A Modified DesignBy Mark S. Sanders
The purpose of this work was to develop and field test improved knee protection for underground coal miners working in low seam mines. In a previous phase of this contract (Sanders, 1982), experimenta
Jan 1, 1986
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RI 6915 Rhenum And Rhenum-Tungsten Deposition By Thermochemical Reduction Of The Hexaflourides?A Preliminary StudyBy F. W. Hoertel
Near-optimum parameters were determined by the Bureau of Mines for vapor deposition of rhenium on heated copper substrates by hydrogen reduction of rhenium hexafluoride (ReF6). High-purity deposits of
Jan 1, 1967
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RI 6247 Oxidation Of Coal Mine PyritesBy Walter C. Lorenz
Samples of materials containing pyrite from various coal mines and coalbeds were studied to compare their compositions and oxidizing characteristics. Pyrite was the only form of iron sulfide identifie
Jan 1, 1963