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RI 9157 - Permeability and Corrosion Resistance of Reinforced Sulfur ConcreteBy W. R. Wrzensinski
This report presents the findings from a l-yr Bureau of Mines program in which sulfur concrete reinforcing materials were tested and evaluated to determine their resistance to corrosion. It also summa
Jan 1, 1988
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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 3107 A Practical Method Of Solving The Emergency Manganese ProblemBy Jr. Harty
Intensive work on the deoxidation of steel with manganese-silicon alloys by the U. S. Bureau of Mines has shown that the use of those alloys, which may be produced from our domestic manganese ores, wo
Jan 1, 1931
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RI 8113 Dewatering Electrochemical Machining SludgeBy P. T. Brooks
Electrochemical machining sludge, a troublesome fluid waste product, was dewatered on a bench-scale basis by three alternative methods tested by the Federal Bureau of Mines. These methods would enable
Jan 1, 1976
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MLA 59-85 - Mineral Resources Of The Worm Creek Roadless Study Area, Bear Lake County, Idaho ? SummaryBy Richard L. Rains
The 15,770-acre Worm Creek Roadless Study Area is in southeastern Idaho about 8 miles (mi) west of the northern portion of Bear Lake. U.S. Bureau of Mines personnel examined the roadless, area during
Jan 1, 1985
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IC 7076 Bureau Of Mines Midget ImpingerBy H. H. Schrenk
The Bureau of Mines midget impinger dust-sampling apparatus was described first in 1937.4/ Two supplementary reports5/6 were published in 1938. These reports are now out of print. The material publish
Jan 1, 1939
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RI 4531 Sampling And Determination Of Aldehydes In Diesel-Engine Exhaust Gas And In Mine AirBy Henry W. Busch
Determination of the aldehyde content of Diesel-engine exhaust gas has proved rather cumbersome and unsatisfactory when carried out in its entirety in field investigations; therefore, studies were con
Jan 1, 1949
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RI 9399 - Jet Fan Ventilation in Very Deep Cuts-A Preliminary AnalysisBy Gerrit V. R. Goodman, Charles D. Taylor, Edward D. Thimons
Future coal mining systems will be able to cut from crosscut to crosscut where advances could exceed 100 ft. However, limitations arise when ventilating such mining systems. In deep advance mining, th
Jan 1, 1992
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RI 7470 Microseismic And Displacement Investigations In An Unstable SlopeBy Raymond M. Stateham
Microseismic noise rates and slope movements were measured in an unstable area along the north wall of the Tripp-Veteran pit, Kennecott Copper Corp., Ruth, Nev. Low-noise, wide-band microseismic geoph
Jan 1, 1971
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RI 4346 Sampling Methods And Results At The Sullivan Creek Tin Placer Deposits Manley Hot Springs, Tofty, AlaskaBy Robert L. Thorne
Cassiterite deposits on Sullivan Creek in central Alaska were investigated by the Bureau of Mines in the spring of 1943. Gold miners in the area have been recovering cassitorite each season as a bypro
Jan 1, 1948
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IC 6799 Mining Methods And Costs At Herron And Laster Lease, Superior, Ariz. ? IntroductionBy E. D. Gardner
About 300 tons of gold ore per week was being produced in February 1934 by Thomas D, Herron and Con Laster from the old lake Superior and Arizona workings; the ground was leased from the Magma Copper
Jan 1, 1934
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Experimental Studies on Dust Dispersion in Mine AirwaysBy R. V. Ramani, R. Bhaskar
"The spatial distribution of airborne dusts, deposition of dust in the airway, as well as the effect of airflow velocity and particle density on dust behavior in mine airways were studied in a set of
Mar 1, 1989
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Review Of Metallurgical Technology (d061847f-8c76-450e-a2e9-461b00a550ba)By Kenneth B. Higbie
Expenditures to advance scientific technology in general reached an all time high in 1965 with some $22.2 billion estimated to have been allocated by government and industry. Federal Government expend
Jan 1, 1966
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Summary Report Of Uplink And Downlink Communications Working Group - I. OverviewBy Robert L. Lagace
The attention of this group was focussed on four through-the-earth communication systems that are presently of high interest to the U.S. Bureau of Mines; four systems for providing operational/emergen
Jan 1, 1973
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RI 4317 Investigation Of The Crescent Lead And Zinc Mine, Iowa County, Wis.By M. Howard Berliner
During the spring of 1944, the Bureau of Mines investigated the Crescent mine area near the village of Rewey, Iowa County, Wis., as part of a general investigation of the zinc-producing area of southw
Jan 1, 1948
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RI 2936 Beneficiation Of Oxidized Manganese Ores By Magnetic Separation Of Roasted Jig ConcentratesBy F. D. DeVaney
An examination of the physical properties of manganese ores is being made at the Mississippi. Valley Station of the United States Bureau of Mines in cooperation with the Missouri School of Mines and M
Jan 1, 1929
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How You SeeDespite the strange names given to its parts, the eye is not a very complicated organ. If you think of the eye simply as a detector of light, you will be able to understand the mechanics of central vi
Jan 1, 1976
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RI 5879 Effect Of Temperature In Ion-Exchange Separation Of Rare-Earth Elements And Recovery Of EDTA From Effluent Solutions ? SummaryBy R. E. Lindstrom
Separation efficiency of a 4 percent divinylbenzene (DVB) resin is not altered over a wide range in temperature. A 12 percent DVB resin, however, exhibits a marked sensitivity to temperature. When flo
Jan 1, 1961
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RI 4434 Investigation Of Douglas Fluorite Property Pope County, Ill.By O. M. Bishop
The Douglas fluorite property is in the Empire district of eastern Pope County, Ill., which lies near the west boundary of the productive Southern Illinois fluorspar field in Hardin and Pope Countios.
Jan 1, 1949
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RI 6906 Extraction Of Euxenite Metal Values By Fusion With Ammonium Sulfate Or Ammonium BisulfateBy Van E. Shaw
Fusion of an 86-percent euxenite concentrate with ammonium sulfate was investigated by the Bureau of Mines. Reaction for 4 hours at 400° C results in conversion of both the rare-earth elements and the
Jan 1, 1967