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Research Techniques for High Pressure and High Temperature

Author: Gene C Ulmer
Publisher: Berlin, Heidelberg : Springer Berlin Heidelberg, 1971.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Summary:
Within the last two decades, the experimental technology for the study of high temperature solid-vapor and liquid-vapor equilibria has mushroomed so fast that· both academic and industrial research ers desirous of working in this field -- be they physical chemists, metallurgists, ceramists, petrologists, crystal chemists, or mem bers of any of the several branches of materials science -- find themselves in the  Read more...
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Gene C Ulmer
ISBN: 9783642880971 3642880975
OCLC Number: 851381666
Description: 1 online resource (volumes)
Contents: 1 An Introduction to High Pressure-High Temperature Technology --
2 Gaseous Buffering for the Control of Oxygen Fugacity at One Atmosphere --
3 Electrochemical Measurements and Control of Oxygen Fugacity and Other Gaseous Fugacities with Solid Electrolyte Systems --
4 Direct Control of the Oxygen Vapor Phase Mainly at Pressures Greater than One Atmosphere --
5 Buffering Techniques for Hydrostatic Systems at Elevated Pressures --
6 Temperature Calibration in Cold-Seal Pressure Vessels --
7 Pressure Calibration in Piston-Cylinder Apparatus at High Temperature --
8 Internally Heated Pressure Vessels --
9 Compressibility Measurements of Gases Using Externally Heated Pressure Vessels --
10 The Boiling-Point Technique for the Determination of Vapor Pressure of Silicate Melts --
11 Experimental Techniques in Dry Sulfide Research --
12 Investigations in Hydrothermal Sulfide Systems.
Responsibility: edited by Gene C. Ulmer.

Abstract:

Within the last two decades, the experimental technology for the study of high temperature solid-vapor and liquid-vapor equilibria has mushroomed so fast that· both academic and industrial research ers desirous of working in this field -- be they physical chemists, metallurgists, ceramists, petrologists, crystal chemists, or mem bers of any of the several branches of materials science -- find themselves in the situation that in order to learn the art of the latest techniques, a period of apprenticeship or residency needs be spent at an institution or laboratory currently engaged in this type.

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