Open Access
Issue
E3S Web of Conf.
Volume 508, 2024
International Conference on Green Energy: Intelligent Transport Systems - Clean Energy Transitions (GreenEnergy 2023)
Article Number 04017
Number of page(s) 9
Section Mathematical Physics and Mathematics
DOI https://doi.org/10.1051/e3sconf/202450804017
Published online 05 April 2024
  1. Nasirov M. Z., Yuldasheva N. M., Matbabayeva S. D. Simulation of physical processes based on Mobile Basic. Universuim: Technical sciences. 11(80), 32 (2020). [Google Scholar]
  2. Aliev R., Nasirov M. Z., Tulanova B. A., Bazarov O. O. Studying the electric field on a computer using animations and numerical methods. Physics at school. 1, 40 (2011) [Google Scholar]
  3. Mayer R. V. Computer modeling of physical phenomena. Glazov: GGPI; 112 p. ISBN 978-5-93008-115-2. (2009) [Google Scholar]
  4. Malikov R. F. Workshop on computer modeling of physical phenomena and objects. Ufa: BashSPU; 291 p. JSBN 5-87978-223-9. (2005) [Google Scholar]
  5. Suxanova M. D., Krutova I. A., Stepanova G. P. Modeling physical phenomena using software packages. School of the future. 5, 148 (2021) [Google Scholar]
  6. Getmanova E. E. Computer modeling of physical processes and phenomena. School technologies. 6, 136 (2010) [Google Scholar]
  7. Malyutin V. M., Sklyarova E. A. Computer modeling of physical phenomena. Tomsk: TPU; 156 p. (2004) [Google Scholar]
  8. Medvedev D. A., Kupershtox A. L. et al. Simulation of physical processes and phenomena on a PC. Novosibirsk: NSU; 101 p. ISBN 978-5-94356-933-3. (2010) [Google Scholar]
  9. Semenov M. E., Nekrasova N. N. Mathematical modeling of physical processes. Voronej: GASU; 94 p. ISBN 978-5-89040-628-6. (2016) [Google Scholar]
  10. Shirokova O. A. Workshop on computer mathematical modeling. Part II: Computer modeling of physical processes. Kazan: KFU; 85 p. (2015) [Google Scholar]
  11. Shepotyeva Yu. G., Valieva E .I. Modeling physical processes. Technical sciences in Russia and abroad: materials of the IV International. scientific conf. M.: Buki-Vedi; 2015. p. 16-19: https://moluch.ru/conf/tech/ archive/124/7013/. [Google Scholar]
  12. Berkinbaev M. O. Modelling as method of scientific knowledge of physical processes. Young scientist. 44(178), 148 (2017) URL: https://moluch.ru/archive/178/46298/. [Google Scholar]
  13. Huang C., Vahid F. and Givargis T. Automatic synthesis of physical system differential equation models to a custom network of general processing elements on FPGAs. ACM Trans. Embedd. Comput. Syst. 13, 2 (2013). DOI: http://dx.doi.org/10.1145/ 2514641.2514650 [Google Scholar]
  14. Stevens R. Visual Basic. Ready-made algorithms. M.: DMK Press; 2019. 386 p. [Google Scholar]
  15. Seagrave W. B4A: Rapid application development in BASIC Published by Penny Press Ltd, 176 Greendale Road, Coventry, CV5 8AY, United Kingdom. 2017. 618 p. [Google Scholar]
  16. Safronov I. Visual Basic in problems and examples (2nd edition), BHB-Petersburg; 2014. 394 p. [Google Scholar]
  17. Strelkov S. P. Mechanics. M.: Lan; 2019. 560 p. ISBN 978-5-8114-4104-4. [Google Scholar]
  18. Bugaenko G. A., Malanin V. V., Yakovlev V. I. Mechanics: textbook for universities. 2nd ed., rev. and additional. M.: Yurayt Publishing House; 2023. 368 p. ISBN 978-5-534-02640-5. [Google Scholar]
  19. Matveev A. N. Mechanics and the territory of relativity. M.: AST; 2003. 432 p. ISBN: 5-329-00742-9. [Google Scholar]
  20. Guld X., Tobochnik Ya. Computer modeling in physics. M.: Mir; 1990. 400 p. [Google Scholar]

Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.

Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.

Initial download of the metrics may take a while.