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  • AIME
    PART XII – December 1967 – Communications - Application of a Solid Electrolytic Cell for Measuring Equilibrium P O2 over Liquid Metal-Oxygen Solutions

    By N. A. D. Parlee, M. M. A. El-Naggar, G. 8. Horsley

    The apparatus was of a modified Sieverts type1'2 with a reaction tube designed to function also as the cell component of an oxygen pressure gage. The reaction tube assembly is shown in Fig. 1

    Jan 1, 1968

  • AIME
    Coal - Evaluation of Coal Flotation Frothers on a Yield-Selectivity-Cost Basis

    By F. J. Chernosky

    Most previous studies of coal flotation utilized chemically pure reagents. Since such reagents are not available in quantity, a study of various wmmercially available reagents as frothers was undertak

    Jan 1, 1963

  • AIME
    Coal - Subsurface Disposal of Mine Water

    By Robert Stefanko

    With passage of the Clean Streams Act of the Commonwealth of Pennsylvania and its impact on the coal industry, considerable research has been conducted to explore various approaches to the problem, in

    Jan 1, 1971

  • AIME
    The Control of Oxide in the Basic Open Hearth Process

    By C. F., Christopher

    The purpose of any steel-making process is to convert the two raw materials iron and scrap into steel. The chemical analysis of the steel is set within certain limits which involve the physical proper

    Jan 1, 1957

  • AIME
    Institute of Metals Division - A Study of the Spectral Emissivities and Melting Temperatures of Osmium and Ruthenium

    By E. F. Adkins, R. W. Douglas

    The variation of the spectral emissivity of osmium and ruthenium with temperature can be expressed by the following relations: DURING a study of the sintering characteristics of osmium and rutheniu

    Jan 1, 1962

  • AIME
    Technical Notes - Structure of the Phase TiMn and the Indexing of Powder Patterns of Sigma-Type Phases

    By W. Rostoker, R. P. Elliott

    TWO intermediate phases enter into equilibrium with the primary solid solutions of titanium.' The TiMn2 phase was identified by Wallbaum2 as of the C14 type isomorphous with MgZn2. Contrary to Ma

    Jan 1, 1954

  • AIME
    New York Paper - A Study of the Silica Refractories (with Discussion)

    By J. Spotts McDowell

    Ackowledgments........................... 5 Introduction............................. 5 The Silica Minerals. Stability Relations......................... 6 Optical Properties......................

    Jan 1, 1918

  • AIME
    Natural Gas Technology - The Cricondentherm and Temperatures of Multicomponent Hydrocarbon Mixtures

    By G. Thodos, R. B. Grieves

    A method has been developed for the accurate calculation of the cricondentberm and cricondenbar temperatures of multicomponent hydrocarbon mixtures of known composition. The mixtures may contain any n

  • AIME
    Minerals Beneficiation - Advances in Magnetic Separation of Ores

    By L. A. Roe

    Magnetic separation of iron ores is one of the fastest-growing segments of the minerals beneficiation industry. The tonnage of taconite ores processed annually by magnetic separation will, in a few ye

    Jan 1, 1959

  • AIME
    The Copper Deposits Of San Cristobal, Santo Domingo

    By Thomas Donnelly

    Introduction THE Province of San Cristobal is situated on the south side of the island of Santo Domingo about 25 miles west of Santo Domingo city, the capital of the republic. The copper mineralizati

    Jan 8, 1915

  • AIME
    Are Too Many Students Taking Mining Courses?

    By William B. Plank

    IN this paper are presented the results of a complete statistical survey of the enrolment, courses and degrees, and the employment situation of recent graduates in all of the 46 institutions in the Un

    Jan 1, 1934

  • AIME
    Concentration - Sink-float Separation - A Suggested Approach to the Analysis of Mineral Suspensions by High-frequency Electrical Measurements (Mining Tech., Sept. 1948, TP 2462)

    By John D. Morgan, Sylvain J. Pirson

    An instantaneous and continuous analysis of a mineral suspension should be of great value in controlling various mineral preparation processes. Described herein is a method of analysis based on the us

    Jan 1, 1949

  • AIME
  • AIME
    Reservoir Engineering- Laboratory Research - Casing Temperature Studies in Steam Injection Wells

    By K. Leutwyler

    The key to realistic casing stress analysis in thermal recovery installations is accurate knowledge of the temperatures involved. Much information leading to prediction of heat losses from tubing stri

    Jan 1, 1967

  • AIME
    Papers - Production - Foreign - Development of Oil-field Activities in Argentina during 1940

    By Mario L. Villa

    Argentina's oil production continues in its upward trend. The year 1940 closed with an important increase over 1939; that is, 1,996,371 bbl., or 10.72 per cent. The Government oil fields (Y.P.

    Jan 1, 1941

  • AIME
    Papers - Production - Foreign - Development of Oil-field Activities in Argentina during 1940

    By Mario L. Villa

    Argentina's oil production continues in its upward trend. The year 1940 closed with an important increase over 1939; that is, 1,996,371 bbl., or 10.72 per cent. The Government oil fields (Y.P.

    Jan 1, 1941

  • AIME
    Institute of Metals Division - The Determination of Solid Solubilities by Quantitative Metallography of a Single Alloy (TN)

    By R. E. Morgan, D. L. Douglass

    The determination of phase relationships and solid-solubility limits can be performed by quantitative metallography in addition to the usual X-ray and metallographic techniques. For example, Beck and

    Jan 1, 1960

  • AIME
    Pelletizing Fine Coal Recovered From Pumped Refuse

    By H. N. Egan

    Faced with a severe disposal problem of their fines from a coal mine in the heart of the Appalachian Mountains of extreme eastern Kentucky, Eastern Coal Corporation has built a special plant to pellet

    Jan 11, 1967

  • AIME
    Coal Output Equals That of 1934 - Producers Actively Meet Competition - Introduction

    By J. T. Ryan

    FIGURES for the first 11 months of 1935 indicate that the total coal production of the United States for 1935 will be approximately 416,000,000 tons, or almost identical with the production figures fo

    Jan 1, 1936

  • AIME