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1)  generalized extension field
广义可拓域
1.
he concepts of the generalized extension field and the generalized stable fieldare established; their practical background and the relationship beween theextension field and the stable field are discussed; and their basic properties arestudied.
给出了广义可拓域和广义稳定域的概念,讨论了它们的实际背景以及与可拓域、稳定域的关系,并获得了它们的若干性质。
2)  prolongable general relativity
可拓展广义相对论
1.
Spatiotemporal relation of prolongable general relativity in the irreversible process of a dissipative system;
耗散系统不可逆过程中的可拓展广义相对论时空关系
3)  generalized topology
广义拓扑
1.
To discuss the basic feature of the road network in city roundly and detailedly,the paper proposes the modeling method for the road network in city which bases on feature and generalized topology,meanwhile it provides the prohibition restraint,the basic parameters and the expression method for describing the relationship between the organization and the road.
本文在比较全面、详细地讨论道路网基本特性之后,结合路口分岔特征定义,给出了基于特征与广义拓扑的道路网建模,及其禁忌约束、基本参数和机构同道路之间关系的表示方法。
4)  extension field
可拓域
1.
In order to study contradictory problems of multilayer multidimensional complex systems, based on the concept of n-dimensional matter element extension set, the concepts of multilayer multidimensional matter element system extension set and its positive field, negative field, zero boundary and its extension field as well as its stable field were given.
为了研究多层多维复杂系统的矛盾问题,运用可拓学原理,在n维物元可拓集概念的基础上,提出了多层多维物元系统可拓集及其正域、负域、零界的概念,给出了多层多维物元系统可拓集的可拓域、稳定域的定义,讨论了多层多维物元系统可拓集的一些性质。
2.
The difinitions of the n-dimensional extension set and its extension field were given.
本文给出了n维可拓集合及其可拓域的定义,并讨论了有关的运算和性质,最后提出了k维正域等概念。
3.
Definitions of an extension field,and a stable field of multilayer multidimensional relation element extension set are given.
给出了多层高维关系元可拓集的可拓域、稳定域的定义。
5)  Extensive domain
可拓域
1.
In this paper, We study some properties of positive domain and negative domain and zero domain and extensive domain and stable domain about stochastic extensive set.
本文研究随机可拓集的正域、负域、零域及可拓域、稳定域的一些性质。
6)  extension σfield
可拓σ-域
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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