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Revealing the Uncertainty and Absolute Certainty Principles in the Kinetics of Objects Formation

机译:揭示物体形成动力学中的不确定性和绝对确定性原理

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The paper presents some examples revealing the uncertainty and absolute certainty principles in kinetics of objects formation that are different in their physical nature and in space scales: sub-stances of microcosm, nanoparticles and mesostructures, astrophysical and cosmological objects. Under the proposed kinetic approach, the uncertainty principle covers a wider spectrum of processes of approaching to equilibrium and object formation, than the absolute certainty principle. It refers, in particular, to nano-range-of-problems and mesoscopics as well as to cosmology. Both principles predict formation of objects that are not well-known or, at least, well-described so far. Among these are neutron-rich super-heavy and giant nuclei, biologic and organic-silicon mesoobjects, cosmological objects with the sizes considerably exceeding the size of a light sphere.
机译:本文提供了一些实例,揭示了物体形成动力学中不确定性和绝对确定性原理,这些原理在其物理性质和空间尺度上各不相同:微观世界,纳米粒子和介观结构的物质,天体物理学和宇宙学物体。在所提出的动力学方法下,与绝对确定性原理相比,不确定性原理涵盖了更广泛的接近平衡和物体形成的过程。它尤其是指纳米范围的问题和介观学以及宇宙学。两种原理都可以预测到目前为止尚不为人所知或至少尚未描述的对象的形成。其中包括富中子的超重和巨大核,生物和有机硅介观物体,宇宙物体的大小大大超过了轻球的大小。

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