• 每个原子团中子质子组成

    Each atomic cluster is made up of neutrons and protons.

    《柯林斯英汉双解大词典》

  • 寻找合成原子团方法

    Objective: Searching for new method of synthesizing macroscopic quantities compounds of cluster.

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  • 液相原子团一种非线性光学介质

    The Au clusters in liquid is a nonlinear optical medium.

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  • 研究建立了激光原子团相互作用实验系统

    Experimental system of laser interaction with atomic clusters was founded.

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  • 文章介绍了原子团脉冲激光作用加热、电离膨胀等机制。

    Very intense X ray emission, high energy ions and neutrons with energies up to MeV have been produced in the interaction process of ultrashort laser pulses with atomic clusters.

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  • 本文使用原子模型激光场中的团动力学过程进行了数值模拟

    A simplified version together with a double-array 1D atomic hydrogen cluster model is presented for simulating cluster dynamics when exposed to intense light.

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  • 用三维原子探针(3dap)时效处理方法研究压力容器模拟中富铜原子团析出过程

    Three-dimensional atom probe (3dap) and thermal aged method were used to characterize precipitation of Cu-rich clusters in pressure vessel model steel.

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  • 本文简要报导了采用二级轻气炮产生动态超高压来合成微球形原子团理论分析初步实验结果

    The theory and experimental results for the formation of micro-spherical cluster of carbon atoms obtained by high Dynamic pressure method are described in this paper.

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  • 原子团生长过程及其富勒烯形成机理,是近十余年科学界孜孜以求又一直无法求解的难题

    Growth and formation of fullerenes and other carbon clusters has presented a mechanistic puzzle to physical and organic chemists.

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  • 微米微米尺度内采用原子力显微镜(afm)研究沉积原子团(凝聚体)微观结构特征

    We also study the microstructure of the ag clusters or aggregates at the micro and sub-micro scales by using the AFM measurement.

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  • 研究表明,奇异的矫顽力特性与液相基底表面薄膜中的原子团尺寸分布、无序薄膜表面各向异性以及间的磁性相互作用等因素有关。

    Our experimental results show that the anomalous magnetic properties are due to the non-uniform particle size distribution, random surface anisotropy and interparticle interactions in the films.

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  • 研究表明,奇异的矫顽力特性与液相基底表面薄膜中的原子团尺寸分布、无序薄膜表面各向异性以及间的磁性相互作用等因素有关。

    Our experimental results show that the anomalous magnetic properties are due to the non-uniform particle size distribution, random surface anisotropy and interparticle interactions in the films.

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