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1)  Kubo-Mori metric
Kubo-Mori度量
1.
As an important case the Kubo-Mori metric is introduced.
重点考虑了Kubo-Mori度量
2)  Green-Kubo formulation
Green-Kubo公式
3)  Kubo formula
Kubo公式
1.
In this paper, from the non-linear Kubo formula, GMR effects at the interfaces of sandwiches structure have been studied.
从非线性Kubo公式出发 ,计算了磁三明治结构的巨磁阻效应。
2.
The Kubo formula for the conductivity of a mesoscopic system has been extended to a generalized form that includes higher-order corrections using a new formalism based on a subdynamics approach which may be a suitable formula to calculate the current-voltage relations of mesoscopic systems.
利用子动力学理论将计算电导率的Kubo公式被推广成为一个包含高阶项的公式,并利用此公式,计算巨磁阻,显示了高阶影响的重要性。
3.
From the non-linear Kubo formula,considering quantization of electron spin-dependent bulk scattering, GMR effects of spin-valve sandwiches have been calculated.
从非线性Kubo公式出发 ,考虑电子自旋相关体散射 ,研究了自旋阀结构磁电阻效应。
4)  Kubo-Streda Formula
Kubo-Streda公式
5)  Mori-Tanaka method
Mori-Tanaka方法
1.
A modified Mori-Tanaka method considering the doubly periodic distribution of inclusions;
考虑周期微结构分布特征的Mori-Tanaka方法
2.
In this paper,several micromechanics methods are described detailedly,and using Eshelby equivalent inclusion method and Mori-tanaka method,matlab programme is developed to analyse the effective elastic modulus of the composite that con- tains damaged fiber and crack.
本文分析了几种常用的细观力学方法,并采用Eshelby等效夹杂理论与Mori-tanaka方法,编制Matlab程序,分析了含有基体裂纹的纤维增强复合材料的有效弹性模量。
3.
The physical model describes the saturated concrete microstructure with the saturated concrete elastic modulus based on inclusion theory and the Mori-Tanaka method.
为了研究饱和混凝土中的孔隙水压力对混凝土力学性能的影响,根据饱和混凝土的微观结构建立了研究饱和混凝土力学性能的理论模型,利用夹杂、等效弹性模量的思想和Mori-Tanaka方法研究了饱和状态时孔隙水对混凝土弹性模量的影响。
6)  Mori-Tanaka's model
Mori-Tanaka模型
1.
The elasto-plastic secant moduli and effective stress of the composite materials are predicted by using Mori-Tanaka's model, and the influence of interfacial compliances on the stress-strain curve of composite materials is discussed.
利用Mori-Tanaka模型,得到弱界面复合材料的割线弹塑性模量和有效应力,进而通过算例讨论了界面柔度对复合材料宏观应力应变曲线的影响。
补充资料:[styrene-(2-vinylpyridine)copolymer]
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性质:学名苯乙烯-2-乙烯吡啶共聚物。微黄色粉末或透明小颗粒晶体。无臭,无味。不溶于水,溶于酸、乙醇、丙酮、氯仿。有抗水、防潮性能,适用于多种药片的包衣等。

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