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Physical Chemistry of Magmas: Advances in Physical Geochemistry, cartea 9

Editat de Leonid L. Perchuk Contribuţii de D. R. Baker Editat de Ikuo Kushiro Contribuţii de Y. Bottinga, A.S. Chekhmir, C.D. Doyle, M.B. Epel'baum, Pc Hess, I. Kushiro, A.D. Kuznetsov, B.O. Mysen, L.L. Perchuk, E.S. Persikov, N. Shimizu, Y. Tatsumi, E.B. Watson
en Limba Engleză Paperback – 26 sep 2011
Physical Chemistry of Magmas investigates the properties, structure, and phase relationships of silicate melts with invited contributions from an international team of experts. Data and some rules for estimating the properties and structures of melts, as well as the implications of the physical chemistry of silicate liquids to igneous petrology are presented. The second section then focuses on phase relationships, with particular attention on the application of experimental and theoretical petrology to modeling the origin of certain magmas.
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Specificații

ISBN-13: 9781461278061
ISBN-10: 1461278066
Pagini: 356
Ilustrații: X, 341 p.
Dimensiuni: 155 x 235 x 19 mm
Greutate: 0.5 kg
Ediția:Softcover reprint of the original 1st ed. 1991
Editura: Springer
Colecția Springer
Seria Advances in Physical Geochemistry

Locul publicării:New York, NY, United States

Public țintă

Research

Cuprins

1. The Viscosity of Magmatic Liquids: Experiment, Generalized Patterns. A Model for Calculation and Prediction. Applications.- 2. Relations Between Structure, Redox Equilibria of Iron, and Properties of Magmatic Liquids.- 3. Diffusion in Magmatic Melts: New Study.- 4. Chemical Diffusion in Magmas: An Overview of Experimental Results and Geochemical Applications.- 5. The Role of High Field Strength Cations in Silicate Melts.- 6. The Mobility of Mg, Ca, and Si in Diopside—Jadeite Liquids a High Pressures.- 7. Thermodynamic Properties of Silicate Liquids at High Pressure and Their Bearing on Igneous Petrology.- 8. The Relationship Between Activities of Divalent Cation Oxides and the Solution of Sulfide in Silicate and Aluminosilicate Liquids.- 9. Thermodynamics of the Liquidus in the System Diopside—Water: A Review.- 10. Origin of Subduction Zone Magmas Based on Experimental Pertrology.- 11. Effects of Fluid Composition on Melting Phase Relationships: The Application of Korzhinskii’s Open Systems.