Solid earth
- 固定(完全)接地
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On the solid earth science and Earth System Science
浅谈固体地球科学与地球系统科学
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3-D visualization network of the solid earth structure of China
中国三维固体地球可视化网站的规划与设计
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Three viewpoints on the solid earth system and geological processes
关于固体地球系统与地质作用的三点认识
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Basic theory and numerical result of the love number of solid earth tide
固体潮Love数的基本理论和数值结果
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Chinese solid earth geophysical work in past 40 years
40年来我国的固体地球物理工作
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On Impacts of solid earth tide models on GPS coordinate time series
固体潮模型对GPS时间序列的影响研究
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These bodies eventually collected together to form solid earth .
这些固态物质最终聚集在一起,形成了固态的地球。
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Dynamics of Ocean - solid Earth Coupled System
海洋-固体地球耦合系统动力学
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Solid earth science and global change
固体地球科学与全球变化研究
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Solid earth science program of NASA in coming 25 years and Its Inspiration
NASA未来25年固体地球科学规划及其启示
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Solid Earth Response to Environmental Variation
固体地球的环境变化响应
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The research on fluid rock interaction has broken through the rather static solid earth philosophy .
流体-岩石相互作用的研究突破了静止的固体地球观。
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Tide Wave Formulas of the Effect of Solid Earth Tide on Station Displacements
测站位移固体潮效应的潮波公式
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To promote solid earth sciences through development of plate tectonics and continental tectonics study
深化大陆构造研究发展板块构造促进固体地球科学发展
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Generalized Remote Sensing for Solid Earth Hazards Under Condition of GEOSS
GEOSS条件下固体地球灾害的广义遥感监测
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2002 Western Pacific Geophysical Meeting & Progress of the Researches on the Solid Earth Physics
2002年西太平洋地球物理会议&固体地球物理部分研究进展
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Complexity and self-organized criticality of solid earth system
固体地球系统的复杂性与自组织临界性
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Plan for living on a restless planet sets NASA 's solid Earth agenda
生活在不平静的行星上的计划设立美国航空航天局的固体地球研究议程
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Spaceborne gravity measurements and insights into the solid Earth
星载重力测量和固体地球的透视
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Symposium on solid earth physics in shijiazhuang , 1985
1985年固体地球物理学术讨论会
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ODP and Chinese solid Earth Sciences
ODP与中国固体地球科学
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We used solid earth tide as the reference strain , the strain data from these two instruments are basically identical .
以地球应变固体潮为参照,确定两种应变观测数据基本一致。
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The study on rheological structure is becoming a frontier field of solid earth sciences in the 21 ~ st century .
流变学构造研究已成为21世纪固体地球科学的前沿领域。
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Climate change studies require scientific evidence from a network of atmospheric and oceanic sciences as well as solid earth geophysics .
全球气候变化是大气和海洋科学以及固体地球物理学等的交叉研究领域。
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Then , the paper mostly studies tides factors of tides of the solid earth and oceanic models and underground water .
同时对潮汐因子的取值、海潮模型的选取、非构造因素中地下水活动等问题进行了讨论。
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Mass transport of the atmosphere , ocean and the solid Earth results in the temporal variation in Earth 's gravitational field .
大气、固体地球及海洋组成了一个复杂、变化的地球动力学系统,这一系统中的任一质量分布变化都将产生地球引力场变化。
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It is predicted finally that Solid Earth science research in CAS will inevitably be in the front line of the whole world .
作者认为,中国科学院固体地球科学领域的研究将呈现更加光明的前景,力争在不久的将来跻身固体地球科学研究世界先进行列。
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I held her with all my strength then shook with joy to feel the solid earth under my feet .
我与我的实力,她当时与喜悦的感觉在我的脚下坚实的大地震撼。
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In this paper the theoretical and practical requirement of concept change from solid Earth view point to liquid ( especially gas ) Earth one is emphasized .
在本文中主要探讨从过去的固体地球观向今后流体(特别是气体)地球观转变的实际和理论上的必要性;
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Seismic anisotropy is an important tool in understanding dynamic processes in the Earth and carries potential information on the evolution and dynamics of the solid Earth .
地震各向异性是理解地球动力学过程的重要工具,携带了大量的关于固体地球演化与动力学过程的潜在信息。