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生长几率
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  growth probabilities
     The new kinetic renormalized groups is employed to study the phase transition of the model of diffusion limited aggregation,the result is that there is a phase transition in the multifractal spectrum of the growth probabilities {P i}of the model,and the value of the phase transition point q c is zoro. That is,if qgrowth probabilities has no multifractal feature,The conclusion obtained is unison with that of references document concerned.
     应用动力学重整化群研究扩散置限凝聚模型的相变,结果发现该模型的生长几率{Pi}的多分形谱存在相变点qс的值为零,即当q<qc时,该模型的生长几率{Pi}不再具有多分形性质,这一结论与目前有关文献结果一致.
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  growth probability
     By using finite element ( FE ) method and considering the stochastic dependence of the discharge growth probability on the local electric field, the discharge pattern and fractal dimension were obtained with calculation of distribution of electric field in system of needle-plate electrode by computer.
     采用有限元法计算了针-平板电极系统的电场分布,考虑放电生长几率与局部电场的随机关系,计算机模拟出放电图形。 借此求得分形维数。
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  “生长几率”译为未确定词的双语例句
     A detailed analysis of Schulz—Flory distribution has been given and a calculation method for growth rate and termination rate of Chain in Fischer Tropsch synthesis is presented here. Calculation method was based on experiment data and the development doesn't need to be confined by Postulating mechanism.
     经过对Fischer—Tropsch合成(简称F—T合成)产品分布和Schulz—Flory方程的研究与分析,、提出了对决定F—T合成产品分布的重要参数——链生长几率、链生长速率及链终止速率的直接计算方法。
短句来源
     A detailed analysis of Sehulz—Flory distribution has been given and a calculation method for growth rate and termination rate of Chain in Fischer Tropsch synthesis is presented here, Calculation method was based on experiment data and the development doesn't need to be confined by postulating mechanism.
     经过对Fischer—Tropsch合成(简称F—T合成)产品分布和schulz—Flory方程的研究与分析,提出了对决定F—T合成产品分布的重要参数——链生长几率、链生长速率及链终止速率的直接计算方法。
短句来源
     The position-space renormalization group is used to calculate struture fractal dimension of Epidemics Model on a square lattice. A finit lattice recursion relation into which the growth posibility P and the screen parameter Q are introduced is proposed . The fraoltal dimension Df obtained is 1. 857. It is in excellent aggrement with the accepted result.
     将位置空间重正化群方法用于求二维方形点阵上流行病模型的结构分维数D_f,引入生长几率P和屏蔽参数Q,建立一个有限点阵递推关系,求得分维数D_f等于1.857,与公认值符合甚好。
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  相似匹配句对
     THE WAYS OF CONFIGURATING IN THE GROWTH MODEL WITH IDENTICAL PROBABILITY
     等几率生长位形的成形方式
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     The Cluster Probabilities
     集团几率
短句来源
     growth of diameter ,height and volume;
     材积生长
短句来源
     Growth of Order
     秩序的生长
短句来源
     Cluster Growth under the Field of Nonhomogeneous Probability-Density
     广义簇合物在非均匀几率密度下的生长
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  growth probabilities
The experimental results also show that chain growth probabilities of hydrocarbons are not constant, but a function of carbon number.
      
Since all normalized growth probabilities have to be recalculated at each deposition step, the resulting update algorithm is rather slow.
      
The figure suggests a further increase in fL if more probe particles are used to estimate the growth probabilities.
      
  growth probability
Beginning with gas discharges we focus on the origin of the stochastic features and the dependence of growth probability on the local electric field.
      
The exponential variation is explained by a new growth probability model, which is consistent with experimental work.
      
Kinetic studies, for example, require a different approach from single end-point models, such as time to toxin detection or growth probability.
      
An investigation of chain growth probability in Fischer-Tropsch synthesis over an industrial Fe-Cu-K catalyst
      
The chain growth probability of Fischer-Tropsch synthesis (FTS) was investigated on the basis of data from a set of experiments over an industrial coprecipitated Fe-Cu-K catalyst developed by the Institute of Coal Chemistry (China).
      
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A detailed analysis of Schulz—Flory distribution has been given and a calculation method for growth rate and termination rate of Chain in Fischer Tropsch synthesis is presented here. Calculation method was based on experiment data and the development doesn't need to be confined by Postulating mechanism. Using the formulation suggested here one can extract calculation of various specific rate, probability and activation energy of chain growth and termination of the produ-cts in Fischer—Tropsch synthesis. Experiments...

A detailed analysis of Schulz—Flory distribution has been given and a calculation method for growth rate and termination rate of Chain in Fischer Tropsch synthesis is presented here. Calculation method was based on experiment data and the development doesn't need to be confined by Postulating mechanism. Using the formulation suggested here one can extract calculation of various specific rate, probability and activation energy of chain growth and termination of the produ-cts in Fischer—Tropsch synthesis. Experiments and calculated results confirmed that the equations presented here are completely correct and very helpful for improving the selectivity of catalyst. A fundamental comprehension to Schulz—Flory distribution and a deep dissection of the essence of various parameters in this equation of will bring about advance in the selectivity of Fischer—Tropsch synthesis.

经过对Fischer—Tropsch合成(简称F—T合成)产品分布和Schulz—Flory方程的研究与分析,、提出了对决定F—T合成产品分布的重要参数——链生长几率、链生长速率及链终止速率的直接计算方法。这些参数精确数值的获得,为深入理解F—T合成的本质、研究其反应机理以及提高产品选择性提供了可靠的科学依据。用10%Co/Al_2o_3做催化剂,在不同的空速、不同的原料气组成、不同的反应温度及不同载体上所作的F—T合成实验表明,理论计算值与实际实验值之间是非常吻合的。

A detailed analysis of Sehulz—Flory distribution has been given and a calculation method for growth rate and termination rate of Chain in Fischer Tropsch synthesis is presented here, Calculation method was based on experiment data and the development doesn't need to be confined by postulating mechanism. Using the formulation suggested here one can extract calculation of various specific rate, probabilitv and activation energy of chain growth and termination of the products in Fischer—Tropsch synthesis. Experiments...

A detailed analysis of Sehulz—Flory distribution has been given and a calculation method for growth rate and termination rate of Chain in Fischer Tropsch synthesis is presented here, Calculation method was based on experiment data and the development doesn't need to be confined by postulating mechanism. Using the formulation suggested here one can extract calculation of various specific rate, probabilitv and activation energy of chain growth and termination of the products in Fischer—Tropsch synthesis. Experiments and calculated results confirmed that the equations presented here are completely correct and very helpful for improving the selectivity of catalyst. A fundamental comprehension to Schulz—Flory distribution and a deep dissection of the essence of various parameters in this equation of will bring about advance in the selectivity of Fischer—Tropsch synthesis.

经过对Fischer—Tropsch合成(简称F—T合成)产品分布和schulz—Flory方程的研究与分析,提出了对决定F—T合成产品分布的重要参数——链生长几率、链生长速率及链终止速率的直接计算方法。这些参数精确数值的获得,为深入理解F—T合成的本质、研究其反应机理以及提高产品选择性提供了可靠的科学依据。用10%Co/Al_2o_3做催化剂,在不同的空速、不同的原料气组成、不同的反应温度及不同载体上所作的F—T合成实验表明,理论计算值与实际实验值之间是非常吻合的。

The position-space renormalization group is used to calculate struture fractal dimension of Epidemics Model on a square lattice. A finit lattice recursion relation into which the growth posibility P and the screen parameter Q are introduced is proposed . The fraoltal dimension Df obtained is 1. 857. It is in excellent aggrement with the accepted result.

将位置空间重正化群方法用于求二维方形点阵上流行病模型的结构分维数D_f,引入生长几率P和屏蔽参数Q,建立一个有限点阵递推关系,求得分维数D_f等于1.857,与公认值符合甚好。

 
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