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JOURNALS // Computational nanotechnology // Archive

Comp. nanotechnol., 2024 Volume 11, Issue 3, Pages 98–124 (Mi cn498)

MATHEMATICAL MODELING, NUMERICAL METHODS AND COMPLEX PROGRAMS

Interrelation and interpretation of effects in quantum mechanics and classical physics

R. Kh. Rakhimov

Institute for Material Sciencies of Academy of Sciencies of Republic Uzbekistan

Abstract: Quantum mechanics based on the probabilistic approach provides a powerful tool for accurate prediction and interpretation of quantum phenomena, allowing statistically sound predictions about the behavior of microparticles and quantum systems. This statement emphasizes the probabilistic nature of quantum mechanics, its applicability to quantum phenomena and microparticles, as well as the statistical nature of its predictions when applied to the macro effects of classical physics. In addition, the role of statistics and probability in various fields of science, such as particle physics, thermodynamics, biology, sociology, psychology, economics and finance, is discussed. The philosophical implications of the probabilistic approach and the associated limitations and challenges are also considered.

Keywords: quantum mechanics, probabilistic approach, statistical predictions, quantum phenomena, microparticles, pulsed tunnel effect, particle physics, thermodynamics.

UDC: 666.3.017:620.18

Language: Russian and English

DOI: 10.33693/2313-223X-2024-11-3-98-124



© Steklov Math. Inst. of RAS, 2025