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1)  aggregate rate
凝聚速率
1.
An aggregate rate possibility model is established and the conclusions drawn from the study of the possibility model concerning various deposition rates are in full agreement with the experimental data.
从沉积在液体基底上银原子的凝聚实验规律出发,对凝聚机理进行研究,提出了凝聚速率的几率模型,给出了由该几率模型所得到的结论,并对不同沉积速率下所得到的结论与实验数据进行比较,得到与实验数据相一致的结果。
2)  minimum rate of vacancy condensation
最低空位凝聚速率
3)  Fast aggregation
快速凝聚
4)  Slow aggregation
慢速凝聚
5)  aggregation efficiency
凝聚效率
1.
With the help of the analysis and of an elec trical aggregation efficiency equation deduced from reasonable hypotheses,the in fluence of three main factors in electrical aggregation,namely the urrent intens ity,operation time and the organic compound concentration in the wastewater,on t he aggregation efficiency has been discussed.
根据理论分析和合理假设推导出的电凝聚效率公式,描述了电凝聚过程中三个主要影响因素──电流强度、通电时间、废水中有机物浓度对电凝聚效率的影响。
6)  solidification rate
凝固速率
1.
The empirical results indicate that the increase of solidification rate can achieve intermetallic particles reinforced phase with ideal morphological features in Al-Ni alloy.
实验结果表明,提高凝固速率可以使Al-Ni合金获得理想形貌的金属间化合物强化相。
2.
Exporimental results show that the stress- rupture life of DZ22 at 980℃ and 220 MPa was increased from 71 hours and 50 nunutes to 168 hours and 5 minutes at relatively high solidification rate.
本文采用ZMLMC超高梯度定向凝固法(ZMLMC法),研究了两种凝固速率下DZ22合金的高温力学性能和组织。
3.
The dendritic arm spacings and microsegregations of directionally solidified superalloy DZ22 at various solidification rates have been studied with the help of a ZMLMC directional solidification equipment.
采用新研制的超高梯度定向凝固装置,研究了不同凝固速率下定向凝固高温合金DZ22的枝晶臂间距和枝晶偏析。
补充资料:BCS凝聚能(BCScondensationenergy)
BCS凝聚能(BCScondensationenergy)

一般将T=0K时的超导基态能量Es(0)与正常态费米球分布能量En(0)之差称BCS凝聚能。由BCS理论给出:

Es(0)-En(0)=-N(0)Δ2(0)/2

由此可知,Es(0)<En(0),能隙2Δ(0)的出现,系统将从正常态转入超导态而发生超导相变。

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