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Structure, Dynamics, and Properties of Silicate Melts

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9780939950393
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  • Product Details

    Author:
    Jonathan F. Stebbins, Paul F. McMillan, Donald B. Dingwell
    Format:
    Paperback
    Pages:
    632
    Publisher:
    De Gruyter (May 7, 2018)
    Language:
    English
    Audience:
    Professional and scholarly
    ISBN-13:
    9780939950393
    ISBN-10:
    0939950391
    Weight:
    33.92oz
    Dimensions:
    9.06" x 6.1"
    File:
    TWO RIVERS-PERSEUS-Metadata_Only_Perseus_Distribution_Customer_Group_Metadata_20260407163711-20260408.xml
    Folder:
    TWO RIVERS
    List Price:
    $51.99
    Country of Origin:
    Germany
    Series:
    Reviews in Mineralogy & Geochemistry
    As low as:
    $49.39
    Publisher Identifier:
    P-PER
    Discount Code:
    H
    Pub Discount:
    35
    Imprint:
    De Gruyter
  • Overview

    Volume 32 of Reviews in Mineralogy introduces the basic concepts of melt physics and relaxation theory as applied to silicate melts, then to describe the current state of experimental and computer simulation techniques for exploring the detailed atomic structure and dynamic processes which occur at high temperature, and finally to consider the relationships between melt structure, thermodynamic properties and rheology within these liquids. These fundamental relations serve to bridge the extrapolation from often highly simplified melt compositions studied in the laboratory to the multicomponent systems found in nature. This volume focuses on the properties of simple model silicate systems, which are usually volatile-free. The behavior of natural magmas has been summarized in a previous Short Course volume (Nicholls and Russell, editors, 1990: Reviews in Mineralogy, Vol. 24), and the effect of volatiles on magmatic properties in yet another (Carroll and Holloway, editors, 1994: Vol. 30).

    The Mineralogical Society of America sponsored a short course for which this was the text at Stanford University December 9 and 10, 1995, preceding the Fall Meeting of the American Geophysical Union and MSA in San Fransisco, with about 100 professionals and graduate students in attendance.