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THE UNIVERSE SIMULATORS BASED ON MEASUREMENT STANDARDS VARIABILITY

机译:基于测量标准可变性的通用仿真器

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Proposed approach is based on the combination of systems of differential equations and measurement standards variability used for the Universe simulators development. This approach permits us to predict some features of the Universe: spontaneous growth of distance between two resting objects detected by an observer at one of these objects, velocity/distance dependence is known to meet the Hubble Law, constancy of any solid body linear dimensions in time is believed to be caused by linear measurement standard shortening as well as by mass loss by physical objects. The latter permits us to propose simulators, describing gravity and inertia as manifestations of reaction forces.
机译:提议的方法基于微分方程系统和用于宇宙模拟器开发的测量标准可变性的组合。这种方法使我们能够预测宇宙的某些特征:观察者在其中一个物体上检测到的两个静止物体之间距离的自发增长,已知速度/距离相关性满足哈勃定律,任何固体线性尺寸的常数时间被认为是由线性测量标准缩短以及物理物体的质量损失引起的。后者允许我们提出模拟器,将重力和惯性描述为反作用力的体现。

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