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MiscelIaneous - Prospecting for Anthracite by the Earth-resistivity Method (With Discussion)By Maurice Ewing, J. A. Peoples, J. W. Peoples, A. P. Craby
The purpose of this paper is to present the results of the application of the earth-resistivity method of subsurface investigation to the problem of locating seams of anthracite coal beneath a mantle
Jan 1, 1936
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MiscelIaneous - Prospecting for Anthracite by the Earth-resistivity Method (With Discussion)By Maurice Ewing, A. P. Craby, J. W. Peoples, J. A. Peoples
The purpose of this paper is to present the results of the application of the earth-resistivity method of subsurface investigation to the problem of locating seams of anthracite coal beneath a mantle
Jan 1, 1936
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Miscellaneous - Mineralogical Studies of California Oilbearing Formations, I - Identification of ClaysBy P. G. Nahin, A. Grenall, R. S. Crog, W. C. Merrill
A progress report of an experimental investigation into the role of clay in reservoir performance is presented. The Paper gives some of the reasons for considering clay as a significant component and
Jan 1, 1951
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Miscellaneous - Mineralogical Studies of California Oilbearing Formations, I - Identification of ClaysBy W. C. Merrill, P. G. Nahin, A. Grenall, R. S. Crog
A progress report of an experimental investigation into the role of clay in reservoir performance is presented. The Paper gives some of the reasons for considering clay as a significant component and
Jan 1, 1951
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Miscellaneous - Relaxation Methods Applied to Oilfield ResearchBy Herman Dykstra, R. L. Parsons
A numerical method for solving partial differential equations in steady state fluid flow is described. This method, known as the "relaxation method," has two advantages over analytical methods: (1) pr
Jan 1, 1951
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Miscellaneous - Relaxation Methods Applied to Oilfield ResearchBy R. L. Parsons, Herman Dykstra
A numerical method for solving partial differential equations in steady state fluid flow is described. This method, known as the "relaxation method," has two advantages over analytical methods: (1) pr
Jan 1, 1951
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Miscellaneous Alloy-Forming Elements - Beryllium, Calcium, Cerium, Lithium, Manganese, Titanium, Vanadium And ZirconiumBy J. E. Harris
The metallic elements, beryllium, calcium, cerium, lithium, manganese, titanium, vanadium and zirconium are used in metallurgical practice in relatively small percentages for the purpose of improving
Jan 1, 1935
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Miscellaneous Announcements (1411d727-c602-47fc-839f-6ea02f28c860)INTERNATIONAL GEOLOGICAL CONGRESS. (For further particulars apply to the Secretary, 12th International Geological Congress, Victoria Memorial Museum, Ottawa, Canada ; cable address, Geocong, Ottawa.)
Jan 8, 1913
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Miscellaneous Metals and Alloys - An Electron Diffraction Study of Oxide Films Formed on Nickel-chromium .Alloys (Metals Tech., June, 1948, TP 2372)By E. A. Gulbransen, J. W. Hickman
DURING the past two decades considerable progress has been made in the art of manufacturing heater alloys. The conventional iron-chromium-nickel alloys have been improved by the addition of small quan
Jan 1, 1949
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Miscellaneous Metals and Alloys - Hydrogen Content of Electrolytic Manganese and Its Removal (Metals Technology, June 1945)By E. V. Potter, E. T. Hayes, H. C. Lukens
Large volumes of hydrogen are liberated at the cathode during electrolytic precipitation of manganese. Most of the gas escapes from the electrolyte, but a considerable amount may be entrapped in the m
Jan 1, 1945
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Miscellaneous Metals and Alloys - Oxide Films Formed on Metals and Binary Alloys. An Electron Diffraction Study (Metals Tech., Dec. 1948, TP 2483)By J. W. Hickman
Most of the electron diffraction studies of oxide films which form on metals and alloys have been carried out by oxidizing the specimens in an auxiliary furnace, cooling down to room temperature and t
Jan 1, 1949
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Miscellaneous Metals and Alloys - Platinum-tungsten Alloys (Metals Tech., Aug. 1948, TP 2420)By R. I. Jaffee, H. P. Nielsen
In recent years much attention has been given to high melting alloy systems. It has been of interest in this respect to investigate the alloys of platinum and tungsten, which were known from the liter
Jan 1, 1949
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Miscellaneous Underground Methods - Opening the Mather Mine (T.P. 1781, Mining Tech., Jan. 1945)By C. W. Allen, L. C. Moore
The Mather mine, of the Negaunee Mine Co., is within the limits of the City of Ishpeming. on the Marquette iron range in Michigan's Upper Peninsula. It is named for William G. Mather, who has ser
Jan 1, 1946
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Miscellaneous Underground Methods - Vertical Slice and Slot Stoping at Butte (T .P. 1894, Mining Tech., Sept.By L. F. Bishop
The ore bodies of the Butte district1 are found in many different vein systems having many different structural characteristics; some are narrow with self-supporting ore but with weak walls; some are
Jan 1, 1946
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Misfires: Their Causes, Prevention and Treatment on Occurrence (a00438da-b1a6-41da-9369-f311df34b9e9)By T. D. Thomas
CONTENTS PAGE T. D. Thomas-Misfires in Anthracite Coal Mines 3 W. H. Forbes-Misfires in Bituminous Coal Mines 12 A. W. Worthington-Misfires in Non-metallic Mining (Limestone) 18 Misfires i
Jan 1, 1929
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Misima Gold Mine – A Case Study in the Use of Historical Data for an Updated Mineral Resource EstimateBy C Switzer, R Logan, S Konopa, P Stoker, R Lewis
"An EXTENDED ABSTRACT is available for download. A full-length paper was not prepared for this presentation. The Misima gold mine, located on Misima Island within the Milne Bay Province of Papua New G
Mar 18, 2015
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Mission By-Products Plant Operation And ControlBy J. D. Vincent
The Mission By-Products Plant at the Mission Concentrator of the American Smelting and Refining Company, some 20 miles south of Tucson, Arizona in the Twin Buttes mining area, has been in operation sl
Jan 1, 1966
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Mission Valley Viaduct Piledriving - 1998 DFI Conference Seattle, Washington October 8, 1998By David A. Jack
The Mission Valley Viaduct is located in San Diego, California. This structure is the intersection of Interstate 8 and 805. The project consists of the main viaduct, 8 connecting ramps, and one highwa
Jan 1, 1998
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Missouri River Intake Screen Structure and Tunnel: Overcoming Underground Challenges to Build Vital Infrastructure - RETC2023By Ryan Ward
The Missouri River Intake Screen Structure and Tunnel (MRISST) is one phase of the Red River Valley Water Supply Project (RRVWSP), a vital piece of infrastructure in the state of North Dakota to trans
Jun 13, 2023
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Missouri S&T Experimental Mine Expansion and Associated Risk Safety AnalysisBy Patrick Cahill, Jacob Miller, Nolan Mundwiller, Catherine Johnson
"The Experimental Mine at the Missouri University of Science and Technology is undergoing major developments. The underground workings are being expanded to include a ramp down to a second level which
Jan 1, 2017