Sоlving mоleculаr physics problems with grаphicаl methоds using digitаl technоlоgies

  • Assistant, Uzbekistan-Finland Pedagogical Institute

DOI

https://doi.org/10.47689/2181-1415-vol5-iss11/S-pp34-43

Keywords

Mоleculаr physics , digitаl technоlоgies , grаphicаl methоds , Pythоn prоgrаmming lаnguаge , NumPy librаry , Mаtplоtlib librаry , density , temperаture , pressure , scientific reseаrch , educаtiоnаl prоcess

Abstract

This article explores the application of digital technologies in solving problems within the molecular physics section of physics through a graphical approach. It demonstrates the use of the Python programming language and its libraries for graphically solving molecular physics problems. Specifically, the relationships between gas density, temperature, and pressure are modeled, allowing for a deeper understanding of these variables' interdependence.

By analyzing variations in gas density, temperature, and pressure, a Python-based model is developed to generate corresponding graphs. The integration of digital technologies in this approach significantly improves the efficiency of studying physical processes in molecular physics. The results obtained through this methodology provide students and researchers with enhanced opportunities to bridge scientific theory with practical applications.

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Published

Sоlving mоleculаr physics problems with grаphicаl methоds using digitаl technоlоgies

How to Cite

Ташмуродов, Н. (2024). Sоlving mоleculаr physics problems with grаphicаl methоds using digitаl technоlоgies. Society and Innovation, 5(11/S), 34–43. https://doi.org/10.47689/2181-1415-vol5-iss11/S-pp34-43