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1)  A Pair of Nodes Connected
节点连通对
2)  node connectivity
节点连通
3)  the nodules connectivity method
节点连通度法
4)  panpathical vertex pair
泛连通性点对
1.
We prove that there exists at least a panpathical vertex pair in every connected but not strongly connected tournament and the panpathical vertex pairs can be found in polynomial times.
证明了每个连通的但非强连通的竞赛图中至少存在一个泛连通性点对且该点对可在多项式时间内找到。
5)  pair-connected Reliability
点对连通可靠度
1.
Using the definition of probability random events based on the least Path Set and edge Cut Set between two arbitrary nodes in undirection simple networks,and according to the relationship points to pair-connected Reliability and two-Terminal Reliability,an approximate calculation formula about the reliability of a pair-connected Reliability under the edge failure is given out and validated too.
通过对无向简单网络中基于任意两点间最小路集和边割集的概率随机事件的定义,利用点对连通可靠度和两终端可靠度的关系,给出了边失效条件下无向简单网络点对连通可靠度的近似计算公式,并给予验证。
6)  Correspond Node
对应通信节点
补充资料:单连通和多(复)连通超导体(simplyandmultiplyconnectedsuperconductors)
单连通和多(复)连通超导体(simplyandmultiplyconnectedsuperconductors)

单连通超导体一般指的是不包含有非超导绝缘物质或空腔贯通的整块同质超导体,若有非超导绝缘物质或空腔贯通的超导体则称为多(复)连通超导体。从几何学上讲,在超导体外表面所包围的体积内任取一曲线回路,这回路在超导物质内可收缩到零(或点),且所取的任意回路均可收缩到零而无例外,则称单连通超导体。若有例外,即不能收缩到零,则称多连通超导体。例如空心超导圆柱体,则在围绕柱空腔周围取一回路就不能收缩为零。多连通超导体可有磁通量子化现象(见“磁通量子化”)。

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