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1)  Generalized optimal extension fields
广义最优扩域
2)  optimal extension field
最优扩域
1.
The definition and characters of Double-module quadratic residue is discussed in this paper,The arithmetic for choosing base point of Elliptic curve cryptosystem in optimal extension field is worked out and proven mathematically,moreover,the successful probability is also provided.
本文讨论了重模二次剩余的定义、性质,完整地设计出选取最优扩域上的椭圆曲线密码系统的基点的算法,并给出了选取成功的概率和相关数学证明。
3)  generalized optimization of polarimetric contrast enhancement
广义最优化
4)  broad-sense multiple optimal solutions
广义多重最优解
1.
Firstly,some interrelated conceptions of transportation problem are proposed,in which,the multiple optimal solutions is expanded to broad-sense category,the narrow-sense multiple optimal solutions and the broad-sense multiple optimal solutions are proposed and differentiated.
首先给出了运输问题最优解的相关概念,将最优解扩展到广义范畴,提出狭义多重最优解和广义多重最优解的概念及其区别。
2.
Based on dissertating the study of transportation problem,some concepts were proposed such as the multiple optimal solutions,the numbered multiple optimal solutions,the unnumbered multiple optimal solutions, the narrow-sense multiple optimal solutions and the broad-sense multiple optimal solutions etc.
在对运输问题研究成果综述的基础之上,归纳出了多重最优解、有限多重最优解、无限多重最优解、狭义多重最优解以及广义多重最优解等概念。
5)  generlized vector optimization
广义向量最优化
6)  Generalized extended dominance relation
广义扩展优势关系
补充资料:超导电性的局域和非局域理论(localizedandnon-localizedtheoriesofsuperconductivity)
超导电性的局域和非局域理论(localizedandnon-localizedtheoriesofsuperconductivity)

伦敦第二个方程(见“伦敦规范”)表明,在伦敦理论中实际上假定了js(r)是正比于同一位置r的矢势A(r),而与其他位置的A无牵连;换言之,局域的A(r)可确定该局域的js(r),反之亦然,即理论具有局域性,所以伦敦理论是一种超导电性的局域理论。若r周围r'位置的A(r')与j(r)有牵连而影响j(r)的改变,则A(r)就为非局域性质的。由于`\nabla\timesbb{A}=\mu_0bb{H}`,所以也可以说磁场强度H是非局域性的。为此,超导电性需由非局域性理论来描绘,称超导电性的非局域理论。皮帕德非局域理论就是典型的超导电性非局域唯象理论。

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