Search Documents
Search Again
Search Again
Refine Search
Refine Search
- Relevance
- Most Recent
- Alphabetically
Sort by
- Relevance
- Most Recent
- Alphabetically
-
Trona In Wyoming (3b9e370f-a1a5-46cc-87d4-ad5e4f2e8a1a)By Howard I. Smith
THE mineral trona was discovered on Government land in 1938, about 18 miles west of the town of Green River, Wyo., in the core of the John Hay, Jr., well, a test well drilled for oil by the Mountain F
Jan 1, 1942
-
Papers - Trona in Wyoming (T .P. 1489)By Howard I. Smith
The mineral trona was discovered on Government land in 1938, about 18 miles west of the town of Green River, Wyo., in the core of the John Hay, Jr., well, a test well drilled for oil by the Mountain F
Jan 1, 1942
-
Papers - Trona in Wyoming (T .P. 1489)By Howard I. Smith
The mineral trona was discovered on Government land in 1938, about 18 miles west of the town of Green River, Wyo., in the core of the John Hay, Jr., well, a test well drilled for oil by the Mountain F
Jan 1, 1942
-
Trona In WyomingBy Howard I. Smith
THE mineral trona was discovered on Government land in 1938, about 18 miles west of the town of Green River, Wyo., in the core of the John Hay, Jr., well, a test well drilled for oil by the Mountain F
Jan 1, 1942
-
Floating Limestone at PermanenteBy John C. Kleiber, George M. Meisel
From time to time since the initial installation of an experimental flotation section in 1940, Permanente Cement Co. has made efforts to beneficiate the low-grade limestone fraction which occurs in it
Jan 3, 1964
-
Corrosion Of Copper Alloys In Sea WaterBy W. H. Bassett
A 10-year, sea-water, corrosion test of tubes of several copper alloys has shown that many alloys withstood attack by solution, pitting, and dezinkification; a 1-year, salt-spray test of sheet-metal s
Jan 1, 1925
-
Production - Foreign - Oil and Gas Production in Poland during 1936By Charles Bohdanowicz
The accompanying tables' show that in 1936 production of crude oil in Poland decreased very slightly (Tables 1 and 5), by about 1 per cent, and that gas production increased by about 11 per cent.
Jan 1, 1937
-
Papers - Coking - Relation of By-product Coke Ovens to the Natural Gas Supply of the Pittsburgh DistrictBy H. J. Rose
The peak of production from the Appalachian natural gas field was apparently reached about 10 years ago, and the annual production from Pennsylvania, West Virginia and Ohio has now dropped to about tw
Jan 1, 1930
-
Concentration Of Iron Ores In The United StatesBy T. B. Counselman
PROBABLY the earliest concentration of iron ore in this country was carried on in the northeastern magnetite areas. Magnetic concentration was relatively simple and gave a concentrate that, after aggl
Jan 1, 1943
-
Engineering Council (ENGINEERING COUNCIL)By Ira N. Holli
A meeting of Engineering Council was held on Thursday, Jan. 22, 1918, at the Engineering Societies Building, New York. Present: Chairman Ira N. Hollis (A. S. M. E.); Dr. Charles Warren Hunt, Alex. C.
Jan 3, 1918
-
Personal (dfdb9db5-54d8-4fe2-8e1b-65b0b7b4c790)(Members are urged to send in for this column any notes of interest concerning themselves or their fellow-members.) Members and guests who registered at Institute headquarters during the period May
Jan 7, 1914
-
Carbonization - A Carbonization Pressure Gauge (T. P. 1631)By M. A. Mayers, J. A. Thompson
In recent years, the problem of damage to coke-oven walls by expanding coal charges undergoing carbonization has engaged great attention on the part of research workers in this field, and has led to t
Jan 1, 1944
-
Carbonization - A Carbonization Pressure Gauge (T. P. 1631)By J. A. Thompson, M. A. Mayers
In recent years, the problem of damage to coke-oven walls by expanding coal charges undergoing carbonization has engaged great attention on the part of research workers in this field, and has led to t
Jan 1, 1944
-
The Metallurgical Factors Affecting The Production Of Seamless PipeBy J. W. Schroeder
SEAMLESS pipe, the product produced from piercing a solid round billet of steel by the Mannesmann process, was first produced in the latter half of the 19th century, the Mannesmann machine having been
Jan 1, 1951
-
Papers - Alpha Solubility Limit and the first intermediary phase in the Copper-silicon system (T. P. 1126, with discussion)By G. H. Anderson
During an investigation of the copper-rich portion of the copper-silicon-iron system as part of an extensive research program on P.M.G. alloys, which was begun in 1937 in the research laboratory of th
Jan 1, 1940
-
Papers - Alpha Solubility Limit and the first intermediary phase in the Copper-silicon system (T. P. 1126, with discussion)By G. H. Anderson
During an investigation of the copper-rich portion of the copper-silicon-iron system as part of an extensive research program on P.M.G. alloys, which was begun in 1937 in the research laboratory of th
Jan 1, 1940
-
Schuylkill Valley (Reading) Meeting - October, 1892Jerome L. Boyer, Reading, Chairman; William L. Sheafer, Pottsville, Secretary ; Levi Quier, Reading, Treasurer; Robert Allison, Port Carbon; James Archbald, Jr., Pottsville; William Atkins, Pottsville
Jan 1, 1893
-
PART XII – December 1967 – Papers - Heats of Solution of Aluminum, Copper, and Silicon in Liquid IronBy Frank Woolley, John F. Elliott
The high-temperatzrre solulion calorimeter has been modified and an extension dynamic analysis of i/s transient behavior has provided an improved basis for interpretation of the experimental data. Th
Jan 1, 1968
-
Papers - Physical Metallurgy - Phase Diagram of the Copper-iron-silicon System from go to 100 PerCent Copper (Metals Technology, Sept. 1942)By A. G. H. Anderson, A. W. Kingsbury
Silicon bronzes containing ken are used to a considerable extent in industry, under the trade name of P.M.G. alloys. Various classes of wrought alloys fall in the composition range 1.5 to 3.5 per cent
Jan 1, 1943
-
Papers - Physical Metallurgy - Phase Diagram of the Copper-iron-silicon System from go to 100 PerCent Copper (Metals Technology, Sept. 1942)By A. G. H. Anderson, A. W. Kingsbury
Silicon bronzes containing ken are used to a considerable extent in industry, under the trade name of P.M.G. alloys. Various classes of wrought alloys fall in the composition range 1.5 to 3.5 per cent
Jan 1, 1943