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From an entropic measure of time to laws of motion
Authors
L. M. Martyushev
E. V. Shaiapin
Publication date
1 January 2019
Publisher
'MDPI AG'
Doi
Abstract
A hypothesis proposed in the paper Entropy (Martyushev, L.M. Entropy 2017, 19, 345) on the deductive formulation of a physical theory based on explicitly- and universally-introduced basic concepts is further developed. An entropic measure of time with a number of properties leading to an analog of the Galileo-Einstein relativity principle is considered. Using this measure and a simple model, a kinematic law which relates time to the size and number of particles of a system is obtained. Corollaries of this law are examined. In particular, accelerated growth of the system size is obtained, whereas in systems with constant size, a decrease in the number of particles is observed. An interesting corollary is the emergence of repulsive and attractive forces inversely proportional to the square of the system size for relatively dense systems and constant for systems with sufficiently low density. © 2019 by the authors
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Institutional repository of Ural Federal University named after the first President of Russia B.N.Yeltsin
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Last time updated on 10/07/2019