"The Treatise on Geophysics" is the only comprehensive, state-of-the-art, and integrated summary of the present state of geophysics. Offering an array of articles from some of the top scientists around the world, this 11-volume work deals with all major parts of Solid-Earth Geophysics, including a volume on the terrestrial planets and moons in our solar system. This major reference work will aid researchers, advanced undergrad and graduate students, as well as professionals in cutting-edge research that can be conducted easily, with all the relevant information that they need right at their fingertips. Volume 1 - "Seismology and Structure of the Earth" is edited by Barbara Romanowicz and Adam Dziewonski. Volume 1 provides an overview of the status of geophysics and is divided into three parts. Part I is devoted to various aspects of seismic wave propagation theory, data analysis and inversion methods, and documents the increasingly important role of numerical computational methods.Part II addresses the internal structure from the crust to the core, considering elastic, anelastic and anisotropic views of the Earth at global and regional scales. And, Part III reviews mineral physics and geodynamics to further progress in the understanding of Earth's internal dynamics and of the forces that drive plate tectonics by combining constraints from different disciplines. Volume 2 - "Mineral Physics" is edited by G. David Price. "Mineral Physics" provides the fundamental information needed to interpret deep Earth geophysical data in terms of Earth structure, composition, temperature and dynamics. Containing 23 chapters and divided into three parts, this volume contains summaries of what is known of the mineralogy and chemistry of the deep crust, the upper mantle, the transition zone, the lower mantle and the core of the Earth.It also addresses the underlying theory, techniques, and methods used in mineral physics,and in the final sections of the volume, reviews the major physical properties of deep Earth minerals. Volume 3 - "Geodesy" is edited by Thomas Herring. "Geodesy" explores the theory, instrumentation and results from modern geodetic systems. The beginning sections of the volume cover the theory of the Earth's gravity field, the instrumentation for measuring the field, and its temporal variations. The measurements and results obtained from variations in the rotation of the Earth are covered in the sections on short and long period rotation changes. Space based geodetic methods, including the global positioning system (GPS) and Interferometric synthetic aperture radar (SAR), are also examined in detail. Volume 4 - "Earthquake Seismology" is edited by Hiroo Kanamori. Volume 4 presents the most recent findings on the physics of earthquakes.It includes chapters on seismicity studies from pre-historic periods to the most modern studies on a global scale, deep earthquakes, nucleation, stress transfer, triggering, hydrological processes, and recently discovered slow slips at plate boundaries. It also covers closely related fields including tsunami, volcanic seismology and physics, interaction between solid earth, atmosphere and ionosphere. Discussions on strong-motion seismology and its social implications are also reviewed. Volume 5 - "Geomagnetism" is edited by Masaru Kono. "Geomagnetism" presents various aspects of the magnetic field of Earth. After an overview, topics covered include magnetospheric interactions, secular variation, mag-netic induction, archeomagnetism, reversals, excursions, oceanic and continental magnetic anomalies, and long-term behaviors of the magnetic field. The mathematical techniques for treating these phenomena are discussed in detail.The electric and magnetic properties of Earth materials, as well as basic experimental and observational techniques are also described. Volume 6 - "Crustal and Lithosphere Dynamics" is edited by Anthony B. Watts. Volume 6 brings together the results of studies that are fundamental to our understanding of crust and lithosphere dynamics. It begins with a discussion of plate kinematics and mechanics. Then it considers the evidence from surface heat flow, stress measurements, and magmatism for the thermal and mechanical structure of the lithosphere. Finally, consideration is given to the structural styles of faulting, the deformation of the crust and lithosphere in extensional (e.g. rifting) and compressional (e.g. mountain building) regions, and the implications of plate mechanics for sedimentary basin evolution. Volume 7 - "Mantle Dynamics" is edited by David Bercovici. "Mantle Dynamics" provides an in-depth overview of the field of mantle dynamics in its present state.It surveys the physics and fluid dynamics of mantle convection, with theoretical, laboratory and computational methods. The volume also reviews the present understanding of convection in Earth's mantle, including energy sources and thermal evolution, upper-mantle flow, the fate of subducting slabs, hotspots and mantle plumes, and convective mixing and mantle geochemistry. Volume 8 - "Core Dynamics" is edited by Peter Olson. This volume is a connected account of the dynamics at the heart of our planet. The range of subjects reflects the breadth and the fast pace of research in core dynamics. Topics include structure and composition of the outer and inner core, energetics of the core, convection, rotation, flow and turbulence in the outer core, solidification of the inner core, dynamo theory and numerical dynamo models, magnetic polarity reversals, laboratory experiments on the core and the geodynamo and the interactions between the core and the other parts of the Earth.Volume 9 - "Evolution of the Earth" is edited by David Stevenson. Volume Nine focuses on the formation of Earth, core and continents, outgassing and volcanism, development of plate tectonics, origin and persistence of Earth's magnetic field, growth of the inner core, changes in mantle convection through time, and impact of biology. The emphasis is on an interdisciplinary viewpoint that emphasizes the interplay of geophysics with other aspects of earth science and evolution. An effort is made to identify the areas where current knowledge is incomplete and alternative histories are possible.Volume 10 - "Planets and Moons" is edited by Tilman Spohn. "Planets and Moons" covers topics relating to the physics of the major planetary bodies in the solar system, starting with an introductory description of the solar system and collection of pertinent data, continuing with a discussion of the early history of the planets, and finishing with articles about planet dynamics, thermal evolution of planets and satellites, the thermal evolution of planets and satellites, descriptions of their magnetic fields, and the processes that generate these. In addition to providing a review on the solid planets and the satellites, this volume addresses the interactions of the solid surfaces with the atmospheres as well as the roles of water and ice to shape the surfaces. Volume 11 - "Index".The self-contained volumes start with an overview of the subject then explores each topic with in depth detail. Extensive reference lists and cross references with other volumes to facilitate further research. Full-color figures and tables support the text and aid in understanding. The content is suited for both the expert and non-expert. The fully searchable text will be available on Science Direct shortly after publication.
这本书的装帧设计着实让人眼前一亮,那种沉稳而又不失内敛的蓝色调,配上烫金的书名和作者信息,一下子就抓住了我的眼球。拿到手里,那种厚重的质感,让人立刻能感受到内容的份量。内页纸张的选取也非常考究,米白色的纸张,在灯光下阅读起来非常舒适,不刺眼。排版布局上,看得出设计者在细节上的用心,字体的选择既专业又不失美感,段落之间的留白恰到好处,让整个阅读过程变得非常流畅。我特别喜欢它在章节开头的插图设计,虽然是理论性很强的书籍,但这些艺术化的图示却巧妙地引导了读者的思路,让人在进入复杂概念之前,先有了一个直观的印象。
评分内容深度上,这本书展现出了令人惊叹的广博与精深。它不仅仅是对现有知识的简单罗列,更像是一部思想的提炼和体系的构建。每一个理论的提出,作者都追溯了其发展的脉络和不同学派之间的争论,这种辩证性的探讨方式,极大地提升了本书的学术价值。我尤其欣赏它在方法论部分的处理,详细介绍了从早期观测到现代计算模拟的演变过程,这不仅仅是技术介绍,更是一种科学思维的传递。书中的案例分析部分更是教科书级别的典范,每一个案例都选择得恰到好处,能够完美地支撑起前文提出的理论框架,使得理论不再是空中楼阁,而是扎根于坚实的观测基础之上的。
评分这本书的叙事节奏把握得极其精准,简直像一位经验丰富的大师在娓娓道来。它没有一上来就抛出那些令人望而生畏的复杂公式和晦涩的术语,而是从一个宏大的历史背景入手,缓缓地将我们引入到地球科学的深邃世界。作者的笔触非常细腻,尤其是在描述那些跨越时间尺度的地质过程时,那种史诗般的叙事感让人仿佛亲历了数亿年的沧海桑田。他擅长用生动的比喻来阐释抽象的物理现象,比如将地幔对流比作一锅慢炖的浓汤,这种接地气的描述方式,极大地降低了初学者的理解门槛。读起来一点都不觉得枯燥,反而像在听一场精彩绝伦的专业讲座,引人入胜。
评分这本书在图表的使用上,达到了一个极高的水准,这些图表绝非简单的装饰,而是理解复杂系统的关键钥匙。它们不仅仅是数据的可视化,更是作者构建逻辑的工具。我翻阅了很多专业书籍,但很少有能像这本书一样,在关键概念处配有如此清晰、信息密度适中且美观的图示。例如,在讨论地震波传播路径的章节,那张三维的地球内部结构图,清晰地标示了反射面和折射点,配合文字的解释,我瞬间就明白了那些原本模糊的概念。这些图表本身就具有极强的自洽性,即使脱离正文单独来看,也能传达出重要的信息量。
评分阅读完此书,我最大的感受是它成功地构建了一种全局性的视角。它没有沉溺于单一学科的细枝末节,而是巧妙地将物理学、化学、甚至一些数学模型,有机地编织到了对地球系统的整体认知中。作者的视野非常开阔,总能在看似不相关的现象之间找到深刻的内在联系,比如将行星演化与地球内部热力学紧密结合起来。这种跨学科的整合能力,让读者在合上书本时,不再是记住了一堆孤立的知识点,而是拥有了一套完整且相互关联的“地球操作系统”。它激发了我对未知领域探索的渴望,是一本真正能够提升思维层次的学术著作。
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