Physics of Minerals and Inorganic Materials: An Introduction
暫譯: 礦物與無機材料的物理學:入門指南

Marfunin, A. S., Egorova, N. G., Mishchenko, A. G.

  • 出版商: Springer
  • 出版日期: 2011-12-21
  • 售價: $4,670
  • 貴賓價: 9.5$4,437
  • 語言: 英文
  • 頁數: 342
  • 裝訂: Quality Paper - also called trade paper
  • ISBN: 3642670466
  • ISBN-13: 9783642670466
  • 相關分類: GAN 生成對抗網絡物理學 Physics
  • 海外代購書籍(需單獨結帳)

商品描述

The physics of minerals in a broad sense implies the fundamental aspects of understanding mineral matter: the electronic structure of atoms related to their behavior in geochemical processes; the atomic and electronic structures of minerals; the properties of minerals, with their genetic, geophysical, and technical significance, and their pressure and temperature dependence; the mechanisms of phenomena and reactions in mineral formation and transformation processes; the physical me- thods applied in mineralogical, geochemical and petrological studies, and to a great extent in geological surveys and prospecting. In a narrower sense, it is a branch lying in the border area between mineralogy and solid-state physics, dealing with those aspects of mine- ralogy which require, for their understanding and investigation, special knowledge in contemporary physics and chemistry of solids. The physics of minerals accounts for the third crucial change within this century in the conceptual foundations of mineralogy: after physi- cochemical mineralogy, from experimental studies of phase relations to parage netic analyses, and crystal chemistry of minerals, there followed solid-state physics, which has evolved to its present state over the past 25 years. The task of mineralogy has expanded greatly. In addition to the identification and description of minerals, it is becoming necessary to establish the relationships between structure, composition and properties of minerals and their genesis, their distribution within geological regions, magmatic, metamorphic and sedimentary formations and types of ore deposits. The development of new methods of investigation requires an understanding of the physical meaning of the parameters under evaluation.

商品描述(中文翻譯)

礦物物理學在廣義上暗示了理解礦物質的基本方面:與其在地球化學過程中行為相關的原子電子結構;礦物的原子和電子結構;礦物的性質,包括其基因、地球物理和技術意義,以及其對壓力和溫度的依賴性;礦物形成和轉化過程中現象和反應的機制;在礦物學、地球化學和岩石學研究中應用的物理方法,以及在地質調查和勘探中廣泛應用的物理方法。在狹義上,它是一個位於礦物學和固態物理學邊界區域的分支,處理那些需要當代固體物理和化學的特殊知識來理解和研究的礦物學方面。礦物物理學在本世紀的礦物學概念基礎中引入了第三個關鍵變化:在生理化學礦物學之後,從相關係的實驗研究到變質分析和礦物的晶體化學,隨之而來的是固態物理學,這一領域在過去25年中發展到了現在的狀態。礦物學的任務大大擴展。除了礦物的識別和描述外,建立礦物的結構、組成和性質與其成因之間的關係,以及它們在地質區域、岩漿、變質和沉積形成及礦床類型中的分佈變得越來越必要。新研究方法的發展需要理解所評估參數的物理意義。