固体物理学

  • 网络Solid State Physics;Solid-state physics;Solid Physics
固体物理学固体物理学
  1. Delaunay三角剖分已广泛地应用于计算流体力学、统计学、气象学、固体物理学、计算几何学等多个领域。

    Delaunay triangulation has been widely used in many fields such as computational fluid dynamics , statistics , meteorology , solid state physics , computational geometry and so on .

  2. 本文把固体物理学中的电子态密度概念推广到分子晶体的电子结构研究。

    The concept of electronic density of states in Solid State Physics has been extended to study of electronic structure of molecular crystal .

  3. 连续系统Lagrangian和Hamiltonian表述:用于固体物理学较精确模型

    Lagrangian and Hamiltonian representation of continuous systems : application to exact models of solid-state physics

  4. 对于固体物理学中采用自由能F最小作为热力学平衡态的条件进行了分析和讨论,在压强为大气压或压强足够低的条件下,自由焓Φ最小近似为自由能F最小。

    In the condition of atmosphere or low pressure , the condition of the minimization of free enthalpy is approximated to the minimization of free energy .

  5. 对分子动力学基本理论和方法进行了深入研究,将固体物理学中的Debye模型引入到单晶硅原子动能和温度之间的转换过程中,建立了适合于单晶硅纳米级磨削过程的分子动力学仿真模型。

    It also has been introduced to machining in 1990 ' s.Through profound research of basic MD theory and method , Debye model is introduced from solid-state physics for conversion between kinetic energy and temperature of the silicon atom , the grinding model of monocrystalline silicon are established .

  6. 固体物理学中平衡态的热力学条件分析

    The analysis of thermodynamic equilibrium conditions in solid state physics

  7. 光电池是现代固体物理学的产物。

    Photovoltaic cells are a product of modern solid-state physics .

  8. GB3102.13-1993固体物理学的量和单位

    Quantities and units of solid state physics

  9. 本文提出了具有固体物理学元胞意义的集团概念;

    A concept of cluster with meaning of soild state physics cell is proposed in this paper .

  10. 第二次世界大战期间,微波雷达的发展对固体物理学也产生了巨大影响。

    The development of microwave radar during the World War II also had immense consequences for solid-state physics .

  11. 因此,这一领域的每一进展都成为当代固体物理学和固体器件领域最引人注目的事情。

    Each progress of the domain becomes remarkable thing in the domain of modern solid-state physics and solid-state device .

  12. 集成光学是近十年发展起来的一门光学、电子学和固体物理学的新的边缘学科。

    The integrated optics is a marginal science which includes optics , electronics and solid state physics , developed in the recent ten years .

  13. 冲击破碎研究不仅是粉体技术等行业共同关注的问题,也是固体物理学的主要课题之一。

    Impact breakage Study is not only powder technology issues of common concern , but also one of the main topics in solid-state physics .

  14. 随着量子力学、固体物理学、材料科学的发展,借助于计算机对材料进行设计已经成为材料科学发展的趋势。

    With the development of quantum mechanics and solid state physics , materials design by agency of computation aid has been the trend to materials science .

  15. 通过对一维晶格晶体性质的研究,我们得到了学习固体物理学的简单方法,并加深了对固体物理学相关知识的巩固和理解。

    This paper study One-Dimensional lattice , the correct way that study solid state physics are discussed , then consolidated and understand the knowledge of Solid State Physics .

  16. 象力是固体物理学中的概念。1979年我们曾提出把它应用于震源物理和地震预报的研究。

    The image force is a conception ot solid physics , In1979 , we suggested that it be used inthe study of earthquake source physics and of earthquake prediction .

  17. 在理论研究方面,对新型器件的设计、计算和模拟以及基于固体物理学和波动光学的基础理论研究是目前研究热点;

    The theoretical study focuses on the design and simulation of new type integrated devices , as well as on the new concept investigation based on solidstate physics and wave optics ;

  18. 从固体物理学的一维双原子复式格子的振动带隙出发,推导了无限周期弹簧振子结构的能带结构计算方法及有限周期的振动传输特性计算方法。

    Based on the one-dimensional double atomic chain model in solid physics , the calculation methods of the band structure and vibration transmission property of the periodic mass-spring structures are derived .

  19. 本文用对称分析方法,分析计算了力学、电学、固体物理学、原子和分子光谱学中的转动惯量、极化率、选择定则等。

    In this paper , the symmetry analysis method is used to compute and analyse the rotation inertia , polarizability , selection rule in mechanics , electricity , atomic and molecular spectroscopy .

  20. 以物理、化学和其他科学为基础,学生还将进一步学习高分子科学、固体物理学、相位变换、结晶学以及其他相关课程。

    Beginning with a foundation in physics , chemistry , and other sciences , a student advances to study polymer science , solid-state physics , phase transformations , crystallography , and related subjects .

  21. 根据两种密排晶格结构的特点,在计算机辅助教学中采用三维动画的形式模拟原子球的动态堆积,解决了传统教学方式在固体物理学中遇到的困难。

    According to the characteristics of two kind of close packed lattice structures , three dimensional animations was used to simulate atoms'dynamic accumulation in Computer Assisted Instruction . By this means , difficulties in traditional teaching of solid state physics were resolved successfully .

  22. 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。

    Climate change studies require scientific evidence from a network of atmospheric and oceanic sciences as well as solid earth geophysics .

  23. 在这里,着重介绍锂电池固体电解质物理学的研究方法,以期对锂离子电池有更深入的了解。

    In this paper , we will introduce the solid electrolytic physical research method of lithium battery emphatically , and will be in the hope of having a deeper knowledge of lithium ion battery .

  24. 地磁观测资料在地磁学、空间物理学、固体地球物理学及其它相关领域的研究和应用中,具有十分重要的作用。资料质量对研究工作有重要影响。

    Magnetic observatory data play a very important role in the research and application of geo-magnetism , space physics , solid-earth physics and other related fields , The data quality has im-portant influence on the researches above .

  25. 重力场是反应地球特性的地球物理基本物理场,重力场信息对固体地球物理学、空间物理、地球动力学和地震学等基础学科的研究具有重要意义。

    Gravitational field is one of Geophysical fields which reflected the properties of the Earth , the information which contain are meaningful to the research of fundamental subjects such as solid Geophysics , space Geophysics , Geodynamics and seismology .

  26. 21世纪的地球物理学(主要指固体地球物理学)面临着机遇,同时也面临着挑战,其研究的核心领域应为地球深部物质与能量的交换,圈层耦合和其深层动力过程。

    The geophysics of 21st century ( major solid geophysics ) are faced with a opportunity and challenge . The scientific problems of exchange of substance and energy , of the different sphere coupling and of the deep process within the Earth are the core domain in geophysicals study .

  27. 固体表面化学物理学

    Chemical physics of solid surfaces

  28. 矩阵特征值反问题来源非常广泛,在固体力学,物理学,量子力学,自动控制等许多领域都有应用。

    Source of inverse eigenvalue problem is very extensive , which has been applied to solid mechanics , physics , quantum mechanics , automation , and many other fields .