Entropy and fractal nature
Autor: | Branislav Vlahovic, Hans Facht, M Mladen Stojiljkovic, Vojislav V. Mitić, M Goran Lazovic, Z Jelena Manojlovic, Wen-Chieh Huang |
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Rok vydání: | 2020 |
Předmět: |
Renewable Energy
Sustainability and the Environment lcsh:Mechanical engineering and machinery order-disorder 01 natural sciences thermodynamics Fractal nature Entropy (classical thermodynamics) fractals 0103 physical sciences ceramics materials lcsh:TJ1-1570 Statistical physics entropy 010306 general physics Mathematics |
Zdroj: | Thermal Science Thermal Science, Vol 24, Iss 3 Part B, Pp 2203-2212 (2020) |
ISSN: | 2334-7163 0354-9836 |
DOI: | 10.2298/tsci191007451m |
Popis: | Existing, the biunivocal correspondents between the fractal nature and the nature discovered by fractals is the source and meeting point from those two aspects which are similar to the thermodynamically philosophical point of view. Sometimes we can begin from the end. We are substantial part of such fractals space nature. The mathematics fractal structures world have been inspired from nature and Euclidian geometry imagined shapes, and now it is coming back to nature serving it. All our analysis are based on several experimental results. The substance of the question regarding entropy and fractals could be analyzed on different ceramics and materials in general. We have reported the results based on consolidation BaTiO3- ceramics by the standard sintering technology, performed with BaTiO3 and different additives (MnCO3, CeO2, Bi2O3, Fe2O3, CaZrO3, Nb2O5, Er2O3, Yt2O3, Ho2O3). Thermodynamic principles are very important. Beside the energy and temperature, the entropy as a measure between the order and disorder (chaos) is very important parameter. In this paper, we establish the relation between the entropy and fractal that opens new frontiers with the goal to understand and establish the order-disorder relation. |
Databáze: | OpenAIRE |
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