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1)  probability explanation
几率解释
1.
This paper analyzed the contradiction of Born s probability explanation when particles of microcosm interference through an ideal experiment, proposed a new explanation about the wave-particle duality in microcosm, and described a test experiment that examed the new explanation.
通过理想实验分析微观粒子相干涉时玻恩的几率解释出现的矛盾,提出了微观粒子波粒二象性的新解释,给出了检验新解释的实验设想。
2)  geometrical explanation
几何解释
1.
The paper presents a geometrical explanation of low dimension Kalman filter,which provides a intuitionistic comprehension to Kalman filter.
对低维卡尔曼滤波算法作了几何解释 ,这种解释对卡尔曼滤波有一种直观的理解 ,使人们对卡尔曼滤波有更本质的认识。
2.
Based on the polygons of the differential equation,geometrical explanation for some algebraic direct methods is given,and its generalization of differential system is presented.
基于微分方程多边形的概念,就一些直接代数方法给出了几何解释,同时将这种解释推广到方程组的情形,最后以变形Boussinesq方程组为例说明了该几何解释的合理性。
3)  geometric explanation
几何解释
1.
By means of the graphic function of Mathematica, this article discus how to give the correctly geometric explanation of the unexisting limit of a bivariate function at a point and the existing partial derivative of an uncontinuous bivariate function at a point.
的图形功能,对微积分中二元函数在一点极限不存在的情形及二元函数在点不连续但偏导数存在的情形给出几何解释。
4)  Dissociation probability
解离几率
5)  interpretations of probability
概率解释
1.
The article thoroughly probes into the evolution and developing of interpretations of probability.
本文就概率解释的演变与发展进行了详尽的探讨。
2.
Discussing Pascal probability from the view of philosophy involves the following several issues: monism and pluralism, epistemological interpretations and objective interpretations, relations of probability and causality, the Hume\'s problem which puzzles philosophers at all times and adequacy of interpretations of probability.
从哲学角度对帕斯卡概率进行研究涉及以下一些问题:一元论与多元论、认识论解释与客观解释、概率与因果关系的联系、休谟问题及概率解释的恰当性等。
6)  the frequency interpretation
频率解释
1.
In addition,the propensity interpretation also obviously overmachs the frequency interpretation in other aspects.
频率解释和性向解释都属于现代归纳逻辑理论中的客观解释。
补充资料:激发几率
分子式:
CAS号:

性质:又称激发几率。处于低能级的原子受到外界热能、电能或光能激发时,可从较低能级跃迁到某一高能级,即被激发到激发态。在单位时间内从一个能级被激发到另一个能级的激发态原子数与激发前原能级上的原子总数之比,即激发概率。

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