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NON-RELATIVISTIC TIME, EXISTENCE AND ADAPTATION

机译:非相对论时间,存在与适应

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By using non-dimensional Navier-Stokes equations in systems where partial modelling complications can be avoided, it is shown that geometrically similar systems can exhibit identical behaviour but according to different time scales where the latter are also within our own control. These models indicate that the physical nature of time is not related to a fundamental constant, but the passage of time can have a different but still constant value in a particular system of our own choosing. This observation also adds to our knowledge relating to the dichotomy of interpreting time either as a flowing parameter or, alternatively, just accepting it as a part of space-time. The observation adds evidence in favour of both viewpoints. The conclusions also seem relevant to biological species, chemical processes in general and other branches of physics. Using earlier work of Prigogine and others, it also appears that instantaneous time has important properties dividing past and future time into two segments which differ fundamentally in physical characteristics. This seems to explain the 'raison d'tre' of the second law of thermodynamics and the necessarily asymmetrical nature of time in our own world where mathematical symmetry of physical laws is the norm. This entropic time barrier also seems to explain the physically intangible nature of past events and their possible natural importance as former lower entropy forms of existence. It is concluded that these physical features of time are necessary for the existence of any form of life and Darwinian evolution, in particular. The conclusions may also help to throw further light on other suggested theories and observations in physics and the role of quantum decoherence in life and its adaptive ability.
机译:通过在可以避免部分建模复杂性的系统中使用无量纲的Navier-Stokes方程,可以证明,几何相似的系统可以表现出相同的行为,但是根据不同的时标,后者也处于我们自己的控制范围内。这些模型表明,时间的物理性质与基本常数无关,但是时间的流逝在我们自己选择的特定系统中可以具有不同但仍恒定的值。这种观察还增加了我们关于将时间解释为流动参数或仅接受其作为时空一部分的二分法的知识。观察结果增加了支持这两种观点的证据。这些结论似乎也与生物物种,一般的化学过程以及物理学的其他分支有关。使用Prigogine等人的早期工作,似乎瞬时时间也具有重要的属性,将过去和将来的时间分为两个部分,这两个部分的物理特性根本不同。这似乎可以解释热力学第二定律的“成因”,以及在我们自己的世界中时间的必然非对称性,而物理定律的数学对称性是常态。这种熵的时间障碍似乎也解释了过去事件的物理无形性质,以及它们作为以前的较低熵形式存在的可能的自然重要性。结论是,时间的这些物理特征对于任何形式的生命和达尔文进化论的存在都是必不可少的。这些结论也可能有助于进一步阐明物理学中其他建议的理论和观察以及量子退相干在生命及其适应能力中的作用。

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