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However the different alkali metal azides RN3 show different reactivity with β-MNCl, and the properties of the products such as superconducting fractions, the lattice constant, and stability against thermal or air, are very dependent on the kinds of alkali metals used.

但是,不同的碱金属叠氮化物具有不同的可反应性,其反应产物也具有不同的性质,例如超导体积百分率、晶格常数、热稳定性和在空气中的稳定性等都和碱金属离子有关。

The calculational results show that on one hand,the phosphorus atom only affect the bondings of a few atoms of its vicinity,the conductivity increases as the doped concentration increases; while on the other hand ,the doped concentration is higher,the integrity of the diamond lattices are much worse.

计算的结果表明,一方面,磷原子只对它附近的几个原子内的成键有影响,电导率随着掺杂浓度的增加而增加;而另一方面,金刚石晶格的完整性则随着掺杂浓度的增加而降低。

Based on the results from the Kaiser effect test, disengagement density dislocation test calcspar mineral crystal lattice, and physical simulation results, the numerical simulation models are constructed, and the boundary conditions for simulation analysis is decided.

利用Kaiser效应、方解石矿物晶体的晶格自由密度位错的测试结果,结合物理模拟的结果,建立了研究区数值模拟分析的地质模型,确定了数值分析的边界条件。

The photos show that almost every tumor cell strainsiiiinfected with BTV-HbC3 could produce different amount of bluetongue virus particles. In some cells, numerous virus particles arranged like crystals with many vacuum virus capsids.

几乎每一株感染BTV-HbC_3的肿瘤细胞内都能产生数量不等的蓝舌病毒粒子,有些细胞中大量的病毒颗粒排列成晶格状;以及较多病毒空衣壳。

And, the effect of mismatch strain in epitaxial GaN1-xPx of the t.

但是由于GaN和GaP间较大的晶格失配,使得具有高P组分的GaN1-xPx三元合金的生长非常困难。

Finally the effect of quantum lattice fluctuation in exciton state is studied by variational method.

论文的最后研究了量子晶格涨落对激子态的影响,通过对哈密顿量的幺正变换,得到激子态的激发能,对计算结果进行分析最后给出结论。

Consideration of microstructure, the metal material has a face-centered cubic lattice of the austenitic steel, Reducing Valves copper and aluminum do not appear in the low temperature low temperature brittleness, but the hardness of aluminum and aluminum alloys is not high, the sealing surface of the wear-resistant aluminum , anti-scratch performance is poor, so the use of low-temperature valves have certain limitations, only used in low voltage and small-caliber valve.

从金相考虑,金属材料中具有面心立方晶格的奥氏体钢、铜和铝在低温状态下不会出现低温脆性,但因铝及铝合金的硬度不高,铝密封面的耐磨、耐擦伤性能差,所以在低温阀门中的使用有一定的限制,仅用于低压和小口径阀门中。

SEM patterns and transmission spectra show that the crystals exhibit a face-centered cubic structure with low defect density, and the band gap agrees with the calculated result very well.

实验结果表明,该光子晶体呈面心立方结构,内部晶格完整,缺陷较少,带隙中心波长的实验值与计算值符合得较好。

The results show that, for the elasto-plastic contact of tip-substrate approach and separation process, the material plastic yielding in the atomic level is still governed by the von Mises criterion. For the adhesion of flat-ended wedges, continuum mechanics can be still applied down to a few lattice constants within the contact region, and give reasonable results, apart from the discrepancies near the contact edges. Moreover, adhesion hysteresis occurs during unloading due to the atomic steps, where the unloading curve does not coincide with the loading one. This in turn supports the presumption proposed by Pollock for the adhesion of stepped spheres.

本文首先对针尖—基体模型的弹塑性接触机理进行了深入研究,指出在原子水平上材料的塑性屈服仍由Von Mises准则控制;对平底锥冲头粘着接触的模拟表明,除了在接触区边缘附近有一定差别外,接触力学方法在接触区内几个晶格常数范围内仍能给出令人满意的结果;由于原子台阶效应,加载与卸载曲线不重合,出现粘着滞后,证实了Pollock关于具有纳米阶梯结构的球体粘着滞后现象的推测。

The features of thermodynamics and particle emission during the disassembly of 129 Xe are investigated as functions of temperature and freeze-out density in the framework of the lattice gas model.

晶格气体模型的框架中研究了129Xe系统在破裂过程中的热力学性质和轻粒子发射性质随核温度和系统的冻结密度的变化规律。

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