RFPN - Faculty of Political Science Repository
University of Belgrade - Faculty of Political Science
    • English
    • Српски
    • Српски (Serbia)
  • English 
    • English
    • Serbian (Cyrillic)
    • Serbian (Latin)
  • Login
View Item 
  •   RFPN
  • FPN
  • Radovi istraživača / Researchers' papers
  • View Item
  •   RFPN
  • FPN
  • Radovi istraživača / Researchers' papers
  • View Item
JavaScript is disabled for your browser. Some features of this site may not work without it.

Brownian fractal nature coronavirus motion

No Thumbnail
Authors
Mitić, V.
Lazović, G.
Milošević, D.
Ristanović, E.
Simeunović, Dragan M.
Tsay, S.-C.
Milošević, M.
Vlahović, B.
Article (Published version)
Metadata
Show full item record
Abstract
The goal of our research is to establish the direction of coronavirus chaotic motion to control corona dynamic by fractal nature analysis. These microorganisms attaching the different cells andorgans in the human body getting very dangerous because we don't have corona antivirus prevention and protection but also the unpredictable these viruses motion directions what resulting in very important distractions. Our idea is to develop the method and procedure to control the virus motion direction with the intention to prognose on which cells and organs could attach. We combined very rear coronavirus motion sub-microstructures images from worldwide experimental microstructure analysis. The problem of the recording this motion is from one point of view magnification, but the other side in resolution, because the virus size is minimum 10 times less than bacterizes. But all these images have been good data to resolve by time interval method and fractals, the points on the motiontrajectory. We ...successfully defined the diagrams on the way to establish control over Brownian chaotic motion as a bridge between chaotic disorder to control disorder. This opens a very new perspective to future research to get complete control of coronavirus cases.

Keywords:
Brownian motion / Coronavirus / fractals / time interval method
Source:
Modern Physics Letters B, 2020
Publisher:
  • World Scientific

DOI: 10.1142/S0217984921500767

ISSN: 0217-9849

WoS: 000617332000011

Scopus: 2-s2.0-85098965318
[ Google Scholar ]
6
2
URI
http://rfpn.fpn.bg.ac.rs/handle/123456789/769
Collections
  • Radovi istraživača / Researchers' papers
Institution/Community
FPN
TY  - JOUR
AU  - Mitić, V.
AU  - Lazović, G.
AU  - Milošević, D.
AU  - Ristanović, E.
AU  - Simeunović, Dragan M.
AU  - Tsay, S.-C.
AU  - Milošević, M.
AU  - Vlahović, B.
PY  - 2020
UR  - http://rfpn.fpn.bg.ac.rs/handle/123456789/769
AB  - The goal of our research is to establish the direction of coronavirus chaotic motion to control corona dynamic by fractal nature analysis. These microorganisms attaching the different cells andorgans in the human body getting very dangerous because we don't have corona antivirus prevention and protection but also the unpredictable these viruses motion directions what resulting in very important distractions. Our idea is to develop the method and procedure to control the virus motion direction with the intention to prognose on which cells and organs could attach. We combined very rear coronavirus motion sub-microstructures images from worldwide experimental microstructure analysis. The problem of the recording this motion is from one point of view magnification, but the other side in resolution, because the virus size is minimum 10 times less than bacterizes. But all these images have been good data to resolve by time interval method and fractals, the points on the motiontrajectory. We successfully defined the diagrams on the way to establish control over Brownian chaotic motion as a bridge between chaotic disorder to control disorder. This opens a very new perspective to future research to get complete control of coronavirus cases.
PB  - World Scientific
T2  - Modern Physics Letters B
T1  - Brownian fractal nature coronavirus motion
DO  - 10.1142/S0217984921500767
ER  - 
@article{
author = "Mitić, V. and Lazović, G. and Milošević, D. and Ristanović, E. and Simeunović, Dragan M. and Tsay, S.-C. and Milošević, M. and Vlahović, B.",
year = "2020",
abstract = "The goal of our research is to establish the direction of coronavirus chaotic motion to control corona dynamic by fractal nature analysis. These microorganisms attaching the different cells andorgans in the human body getting very dangerous because we don't have corona antivirus prevention and protection but also the unpredictable these viruses motion directions what resulting in very important distractions. Our idea is to develop the method and procedure to control the virus motion direction with the intention to prognose on which cells and organs could attach. We combined very rear coronavirus motion sub-microstructures images from worldwide experimental microstructure analysis. The problem of the recording this motion is from one point of view magnification, but the other side in resolution, because the virus size is minimum 10 times less than bacterizes. But all these images have been good data to resolve by time interval method and fractals, the points on the motiontrajectory. We successfully defined the diagrams on the way to establish control over Brownian chaotic motion as a bridge between chaotic disorder to control disorder. This opens a very new perspective to future research to get complete control of coronavirus cases.",
publisher = "World Scientific",
journal = "Modern Physics Letters B",
title = "Brownian fractal nature coronavirus motion",
doi = "10.1142/S0217984921500767"
}
Mitić, V., Lazović, G., Milošević, D., Ristanović, E., Simeunović, D. M., Tsay, S.-C., Milošević, M.,& Vlahović, B.. (2020). Brownian fractal nature coronavirus motion. in Modern Physics Letters B
World Scientific..
https://doi.org/10.1142/S0217984921500767
Mitić V, Lazović G, Milošević D, Ristanović E, Simeunović DM, Tsay S, Milošević M, Vlahović B. Brownian fractal nature coronavirus motion. in Modern Physics Letters B. 2020;.
doi:10.1142/S0217984921500767 .
Mitić, V., Lazović, G., Milošević, D., Ristanović, E., Simeunović, Dragan M., Tsay, S.-C., Milošević, M., Vlahović, B., "Brownian fractal nature coronavirus motion" in Modern Physics Letters B (2020),
https://doi.org/10.1142/S0217984921500767 . .

DSpace software copyright © 2002-2015  DuraSpace
About RFPN | Send Feedback

OpenAIRERCUB
 

 

All of DSpaceCommunitiesAuthorsTitlesSubjectsThis institutionAuthorsTitlesSubjects

Statistics

View Usage Statistics

DSpace software copyright © 2002-2015  DuraSpace
About RFPN | Send Feedback

OpenAIRERCUB