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Technical Notes - The Calculation of Water Resistivities from Chemical AnalysisBy H. F. Dunlap, R. R. Hawthorne
A method of calculating formation water resistivities from chemical analyses is presented which is somewhat faster and more accurate than previously described methods. For 26 formation water samples t
Jan 1, 1951
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Technical Notes - The Calculation of Water Resistivities from Chemical AnalysisBy R. R. Hawthorne, H. F. Dunlap
A method of calculating formation water resistivities from chemical analyses is presented which is somewhat faster and more accurate than previously described methods. For 26 formation water samples t
Jan 1, 1951
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Institute of Metals Division - Dislocation Blocking in Face-Centered-Cubic MetalsBy I. R. Kramer
A delay time for yielding in cold-worked face-centered-cubic metals was found. Slip on (123) planes was observed. Glide on these planes occurred during the delay-time period before slip starts on
Jan 1, 1960
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Offsetting Increased Labor Cost in Southern Blast-furnace OperationBy J. M. Hassler
NOWHERE can there be found a more misleading statement than the old one that "Iron can be manufactured cheaper in the South." During the past decade ironmakers and users of iron have heard varied and
Jan 1, 1937
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The Metaline Plant Of The Inland Portland Cement Co., Metaline Falls, Wash.By Milo Krejci
(Butte Meeting, August, 1913.) THE plant and quarries of the Inland Portland Cement Co. are located at Metaline Falls, Wash., about 128 miles north of Spokane, on the Pend Oreille river, and within 1
Jan 7, 1913
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Institute of Metals Division - Determination of Interstitial Solid-Solubility Limit in Tantalum and Identification of the Precipitate Phases (Discussion)By Dale A. Vaughan, Oliver M. Stewart, Charles M. Schwartz
A. U. Seybolt (General Electric Research Laboratory)—The authors should be commended for adding some important information to our knowledge of the solubility of interstitial elements in metals. It is
Jan 1, 1962
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Boston Paper - A Suggested Cure for Blast-Furnace ChillsBy Henry M. Howe
The object of the present paper is to suggest injecting into the hearths of iron blast furnaces, whose temperature has become unduly lowered, some form of fuel whose calorific intensity, under the pec
Jan 1, 1883
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Chattanooga Paper - The Geology and Mineral Resources of Sesquachee Valley, TennesseeBy W. M. Brown
SEQUACHEE Valley includes portions of the counties of Marion, Sequachee, Bledsoe and Cumberland. It extends in a general direction parallel with the Great Valley of East Tennessee, some 75 miles north
Jan 1, 1886
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Reservoir Performance - Lakeview Pool, Midway-Sunset FieldBy W. G. Frailing, W. P. Sims
The Lakeview Pool of Kern County, California, was discovered in 1910 with the drilling of Lakeview No. 1 which blew out and produced an estimated 8,250,000 bbl of oil in 544 days of uncontrolled flow.
Jan 1, 1950
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Drilling-Equipment, Methods and Materials - Factors Involved in High-Temperature Drilling FluidsBy D. J. Weintritt, R. G. Hughes
Statistics show arz increase in the average depth of wells drilled in recent years. As a corollary to this trend, drilling fluids have been improved in an effort to meet the problems inherent at tempe
Jan 1, 1966
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Annual Review – Beneficiation Moves ForwardBy Stanley D. Michaelson, Norman Weiss
This was a year of realization. Some years are for planning and development, some for designing and building, others for fulfillment. With greater hopes and plans for the future than ever before, the
Jan 3, 1955
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Canada Cement Co. Building Highly Automated Plant In Nova ScotiaBy A. O. Drysdale
In Canada, the market for cement is not a national one but rather a collection of local or regional markets. Excess capacity on a national basis does not necessarily preclude a shortage on a regional
Jan 4, 1965
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Cleveland Paper - Notes on Ruff’s Carbon-Iron Equilibrium Diagram (with Discussion)By Henry M. Rowe
Professor Ruff's most illuminating paper' describing his extremely valuable investigation of the carbon-iron equilibrium diagram assigns definite temperatures to certain very important lines
Jan 1, 1913
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Penn State's Art Gallery of the Mineral IndustriesBy AIME AIME
FEW mining schools possess an art gallery and certainly none can equal the collection of paintings depicting the mineral industries now hanging in the comparatively new building of the School of Miner
Jan 1, 1936
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Thermal Drying Of Western Coal - A ReviewBy Bauer. Larry G.
The vast coal reserves in the Wyoming, Montana, North and South Dakota region are sufficient to supply the total energy needs of the United States for several hundred years. Not only is there an abund
Jan 1, 1983
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Iron and Steel Division - Silicon-Oxygen Equilibrium in Liquid Iron - DiscussionBy N. A. Gokcen, John Chipman
D. C. Hilty (Union Carbide and Carbon Research Laboratories, Niagara Falls, N. Y.)—This paper is a very nicely detailed analysis of a difficult problem. I would like to point out that the results that
Jan 1, 1953
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Part VIII - Papers - Progressive Shape Changes of the Void During SinteringBy C. S. Yust, Lida K. Barrett
The change in shape of the void in a sirzterir~g copper mass has been investigated as a juntction of' density. A serial sectioning' technique was used to eoaltrate the irregular shape of the
Jan 1, 1968
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Pittsburg Paper - Application of Descriptive Geometry to Mining-ProblemsBy Joseph W. Roe
MaNY questions arising in the work of the mining engineer may be solved quickly and with suffcient accuracy by the methods of descriptive geometry; but, unfortunately, this subject is more often consi
Jan 1, 1911
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Technical Notes - The Effect of a Short Term Shut-In on a Subsequent Pressure Build-Up Test on an Oil WellBy Robert G. Nisle
In conducting a pressure build-up test on an oil well, it is often necessary to shut-in the well for a short time prior to initiation of the test. The effect of such a short tern shut-in on the result
Jan 1, 1957
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Institute of Metals Division - Kinetics and Mechanism of the Oxidation of MolybdenumBy A. Spilners, M. Simnad
The rates of formation of the different oxides on molybdenum in pure oxygen at 1 atm pressure have been determined in the temperature range 500° to 770°C. The rate of vaporization of MOO, is linear wi
Jan 1, 1956