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等离的英文

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"等离"怎么读用"等离"造句

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  • plasma dynamics

例句与用法

  • Most students who begin to study plasma physics are intrigued by the unstable nature of plasmas .
    大多数开始学习等离体物理的学生,总是会对等离体的不稳定性质着迷。
  • Multimedia systems and equipment - colour measurement and management - part 5 : equipment using plasma display panels iec 61966 - 5 : 2000 ; german version en 61966 - 5 : 2001
    多媒体系统和设备.颜色测定和管理.第5部分:使用等离
  • Since the steady state distribution of the plasma is related with the microwave field and its dielectric property varies with the electric field nonlinearly , the grating is nonlinear
    等离于体平衡态分布与微波场有关,并且其介电特性随电场不是线性变化,因而是一非线性的栅。
  • In this investigation , gas barrier property of pet has been improved by plasma enhanced chemical vapor deposition ( pecvd ) and plasma immersion ion implantation ( piii ) technologies
    本文通过等离子体化学气相沉积( pecvd )和等离体浸没离子注入( piii )技术在聚酯材料表面制备了阻隔碳膜来提高气体阻隔性能。
  • The dispersion equation of full relativistic longitudinal plasmon was numerically evaluated , and the dispersion curve and simulated dispersion relationship for full relativistic temperature were given
    摘要对完全相对论性纵“等离激元”的色散方程进行数值计算,得到完全相对论性温度下的色散曲线和拟合色散关系。
  • The dispersion equation represented by the plasma dispersion function is numerically evaluated , the dispersion relationship for nonrelativistic longitudinal oscillation is derived from the kinetic plasma equations
    摘要从等离了体动力论方程出发,通过对由原色散函数表示的色散方程进行数值计算来研究非相对论性等离子体纵振荡的色散关系。
  • The primary goal of heavy ion experiment is to create environment for the formation of quark - gluon plasma . the formation of this state depends on the initial conditions of the matter created at the early stage of heavy ion collisions
    高能重离子碰撞的一个重要目的是为夸克胶于等离于体( qgp )的形成创造条件, qgp的形成依赖于碰撞初期生成物质的初始状态。
  • As results of the investigations , some improvements of the abstracts principles of diagnostics have been achieved and some new analytical methods are derived for the design of diagnostic tools and the extraction of more accurate information
    本文在阐述等离于体静电诊断方法的基本理论的基础上提出一种原理较简单、但设计细致且需要详细理论分析计算为基础的负离子探针方法。
  • Using the microwave selective heating property for materials , by setup equivalent equation , and first time inducing the electromagnetic field perturbation theory to the design of heating materials for substrate in mpcvd , three temperature distribution modes were established , including temperature distribution comprehensive mode of inhomogeneous plasma , temperature distribution composite mode of composite substrate materials , temperature distribution perturbation mode of composite materials , which ii provided an whole new technology route to the design of substrate heating system in mpcvd and guided the preparation of heating materials for substrate . and then the heating materials for substrate were designed and optimized to obtain large area homogeneous temperature distribution even larger than substrate holder ' s diameter . as an important part , this thesis researched the nucleation and growth of diamond films in mpcvd , systematically researched the effects of substrate pretreatment , methane concentration , deposition pressure and substrate temperature etc experimental technologic parameters on diamond films " quality on ( 100 ) single crystal silicon substrate in the process of mpcvd , characterized the films qualities in laser raman spectra ( raman ) , x - ray diffraction ( xrd ) , scanning electron microscopy ( sem ) , infrared transmission spectra ( ir ) , atomic force microscopy ( afm ) , determined the optimum parameters for mpcvd high quality diamond in the mpcvd - 4 mode system
    该系统可通过沉积参数的精确控制,以控制沉积过程,减少金刚石膜生长过程中的缺陷,并采用光纤光谱仪检测分析等离子体的可见光光谱以监测微波等离体化学气相沉积过程;利用微波对材料的选择加热特性,通过构造等效方程,并首次将电磁场摄动理论引入到mpcvd的基片加热材料的设计中,建立了非均匀等离子体温度场综合模型、复合介质基片材料的复合温度场模型及复合介质材料温度场摄动模型,为mpcvd的基片加热系统设计提供了一条全新的技术路线以指导基片加热材料的制备,并对基片加热材料进行了设计和优选,以获取大面积均匀的温度场区,甚至获得大于基片台尺寸的均匀温度区;作为研究重点之一,开展了微波等离体化学气相沉积金刚石的成核与生长研究,系统地研究了在( 100 )单晶硅基片上mpcvd沉积金刚石膜的实验过程中,基片预处理、甲烷浓度、沉积气压、基体温度等不同实验工艺参数对金刚石薄膜质量的影响,分别用raman光谱、 x射线衍射( xrd ) 、扫描电镜( sem ) 、红外透射光谱( ir ) 、原子力显微镜( afm )对薄膜进行了表征,确立了该系统上mpcvd金刚石膜的最佳的实验工艺参数。
  • Excited with 228nm , the emission bands centered at about 365nm and 460nm originate from the electron transitions of 1d2 - 1s0 and 3d - 1s0 in ag + respectively , and the emission band at 400nm results from the surface plasma resonance of the silver nanoparticles , which aggregated near the surface of the films
    在228nm光激发下,复合膜中ag ~ +的电子的~ 1d _ 2 ~ 1s _ 0跃迁和~ 3d ~ 1s _ 0跃迁分别在365和460nm附近发光,聚集在复合膜表面的纳米银粒子的表面等离激元共振导致了400nm附近的发光。
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