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Appendix P – SI Equivalents of U. S. UnitsBy R. V. Ramani, R. Stefanko, G. W. Luxbacher
Le Système International d'Unités (SI) Equivalents of Common United States Units Length 1 ft (foot) = 0.30480 m Mass 1 lbm (pound mass) = 0.45359 kg Force 1 lb (pound) = 4.4482 N Volume
Jan 1, 1977
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RI 8451 Thermodynamic Properties of Petalite (Li2Al2Si8O20)By K. O. Bennington
The thermodynamic properites of petalite (Li2A12Si8O20) were determined by the Bureau of Mines. The enthalpy of formation was determined by hydro-fluoric acid solution calorimetry. The values from the
Jan 1, 1980
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RI 7719 Conversion Of Ilmenite To Rutile By A Carbonyl ProcessBy A. Visnapuu
High-grade synthetic rutile has been produced in the laboratory from domestic ilmenite concentrates by a new carbonyl process. The ilmenite was first reduced to convert the iron oxides to metal and th
Jan 1, 1973
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MLA 53-87 - Mineral Resources Of The Alvord Desert And East Alvord Study Areas, Harney And Malheur Counties, Oregon ? SummaryBy Alan R. Buehler
In 1986, at the request of the U.S. Bureau of Land Management, the U.S. Bureau of Mines studied part of the 256,430-acre Alvord Desert and part of the 22,240-acre East Alvord Wilderness Study Area (OR
Jan 1, 1987
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RI 7790 - Methane Control By Isolation Of A Major Coal Panel-Pittsburgh CoalbedBy Charles Findlay, Stephen Krickovic, J. E. Carpetta
As one of its projects for degasification of major panels of coal prior to mining within them, the Bureau of Mines conducted methane emission studies during development of a set of three headings 1,80
Jan 1, 1973
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IC 6515 Mining Methods And Costs At The Champion Copper Mine, Painesdale, Mich. - IntroductionBy Albert Mendelsohn
This paper, describing the mining practice at the Champion mine of the Copper Range Copper Mining Co., is one of a series of papers on mining methods and costs being prepared by the United States Bure
Jan 1, 1931
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IC 6556 - 250 vs 500 Volts or More for Circuits in Gassy Coal MinesBy L. C. IlsLey
"The maintenance of permissible equipment which is tested and inspected at the Pittsburgh Experiment Station of the United States Bureau of Mines is dependent to a surprisng degree upon the voltage at
Apr 1, 1932
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RI 3475 Hazard Of Mercury Vapor In Analytical Petroleum Laboratories ? IntroductionBy C. F. McCarroll
[Laboratory research and, control in the production an. utilization of petroleum and it 3 products have expanded greatly during the past decade, and much of the routine control and experimental equipm
Jan 1, 1939
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Design Of An ELF Noise ProcessorBy A. S. Griffiths, J. E. Evans
Noise processing experiments with ELF (3 to 300 Hz) atmospheric noise and signals in the 40 to 80 Hz range are described. The primary purpose of the experiments was to record and analyze wideband ELF
Jan 1, 1973
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IC 7411 Peat-Bog Fires - Their Origin and ControlBy D. J. Parker, J. B. Benson, J. H. Bird, F. E. Cash
"INTRODUCTION The organic act that became effective July 1, 1910, imposes two very definite primary obligations upon the Bureau of Mines: (1) The prevention of loss of life and limb and the protection
Jul 1, 1947
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Program Description (8a6a65e5-9080-4b9a-96d4-f8314d0d74a7)By David Hoadley, Kenneth R. Maser, Ashok B. Boghani, James E. Billar, D. Randolph Berry, Mackenzie Burnett, Robert H. Trent
A. 4 Illustrative Simulations The capabilities of the program are demonstrated by simulating various evacuation cases in different situations for a particular mine. The mine selected for the illust
Jan 1, 1976
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RI 7340 An Improved Maximum-Bubble-Pressure System For Measuring Surface Tension Of Molten MetalsBy Alfred E. Schwaneke
An improved maximum-bubble-pressure system using the Sugden twin-capillary method for measuring the surface tension and density of molten metals is described. Improvements include (1) internally groun
Jan 1, 1970
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RI 8486 Electrochemical Determination of Gibbs Energies of Formation of MnS and Fe0.9SBy Seth C. Schaefer
[As part of the Bureau of Mines effort to provide thermodynamic data for advancement of mineral resources technology, the standard Gibbs energies of formation (?G°f) of MnS (manganese sulfide) and Fe0
Jan 1, 1980
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Design And Development Contract For Uplink Environmental MonitorBy T. G. Mayhew, A. A. Bergeron, R. J. Mahany
This report describes an operational communications system which provides remote intra-terrestrial wireless transmission of environmental information. Design and modification specifications of requisi
Jan 9, 1976
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RI 3910 Supplement to Active List of Permissible Explosives and Blasting Devices Approved Previous to December 31, 1945By J. E. Tiffany, Z. C. Gaugler
This supplement has been prepared to furnish information on amendments to the regulations that were approved by acting secretary of the Interior on June 24, 1946, while this report was in the press. P
Jan 1, 1947
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RI 3249 Chemical Method For Removing Mud Sheaths In Oil Wells ? IntroductionBy H. C. Miller
The removal of the mud sheaths that are deposited against the faces of productive oil sands during rotary drilling is one of the important problems confronting operators, especially in semidepleted fi
Jan 1, 1934
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RI 3249 Chemical Method For Removing Mud Sheaths In Oil WellsBy H. C. Miller
The removal of the mud sheaths that are deposited against the faces of productive oil sands during rotary drilling is one of the important problems confronting operators, especially in semidepleted fi
Jan 1, 1934
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RI 2207 Tests of Carbon Monoxide Detector In MinesBy D. Harrington, B. W. Dyer
"One of the products of the activities of the United States Chemical Warfare Service is a simple device and method for nearly instantaneous determination of small quantities of carbon monoxide in air.
Jan 1, 1921
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RI 3541 Diesel Engines Underground ? II. Effect Of Adding Exhaust Gas To Intake AirBy L. B. Berger
Studies showing the effect of mixing hot exhaust gases with tie intake air of a four-stroke-cycle Diesel engine are described. The results indicate a marked increase in carbon monoxide in tip exhaust
Jan 1, 1940
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RI 7986 Electrochemical Anodic Reaction Rate of Vanadium Metal With Molten VC12-VC13-NaC1 MixturesBy A. E. Raddatz
The Bureau of Mines has determined the electrochemical rate of anodic dissolution of vanadium metal in a VC12-VC13-NaC1 electrolyte at 860' C for the purpose of elucidating the reaction mechanism
Jan 1, 1974