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On the stochastic observation for the nonlinear system of the emigration and migration effects via artificial neural networks Cover

On the stochastic observation for the nonlinear system of the emigration and migration effects via artificial neural networks

Open Access
|Sep 2023

References

  1. Mears D.P., Stewart E.A., Siennick S.E., Simons R.L., The code of the street and inmate violence: Investigating the salience of imported belief systems, Criminology: An Interdisciplinary Journal, 51(3), 695-728, 2013.
  2. Craig S.E., The educational needs of children living with violence, Phi Delta Kappan, 74(1), 67-71, 1992.
  3. Sammut D., Kuruppu J., Hegarty K., Bradbury-Jones C., Which violence against women educational strategies are effective for prequalifying health-care students?: A systematic review, Trauma Violence Abuse, 22(2), 339-358, 2021.
  4. Murray J.D., Vignettes from the field of mathematical biology: the application of mathematics to biology and medicine, Interface Focus, 2(4), 397-406, 2012.
  5. Djilali S., Herd behavior in a predator-prey model with spatial diffusion: bifurcation analysis and turing instability, Journal of Applied Mathematics and Computing, 58, 125-149, 2018.
  6. Berezovskaya F.S., Song B., Castillo-Chavez C., Role of prey dispersal and refuges on predator-prey dynamics, SIAM Journal on Applied Mathematics, 70(6), 1821-1839, 2010.
  7. Djilali S., Impact of prey herd shape on the predator-prey interaction, Chaos Solitons and Fractals, 120, 139-148, 2019.
  8. Umar M., Sabir Z., Raja M.A.Z., Intelligent computing for numerical treatment of nonlinear prey-predator models, Applied Soft Computing, 80, 506-524, 2019.
  9. Chen S., Wei J., Yu J., Stationary patterns of a diffusive predator-prey model with Crowley-Martin functional response, Nonlinear Analysis: Real World Applications, 39, 33-57, 2018.
  10. Umar M., Sabir Z., Raja M.A.Z, Gómez-Aguilar J.F., Amin F., Shoaib M., Neuro-swarm intelligent computing paradigm for nonlinear HIV infection model with CD4+T-cells, Mathematics and Computers in Simulation, 188, 241-253, 2021.
  11. Guerrero-Sánchez Y., Umar M., Sabir Z., Guirao J.L.G., Raja M.A.Z., Solving a class of biological HIV infection model of latently infected cells using heuristic approach, Discrete and Continuous Dynamical Systems-S, 14(10), 3611-3628, 2021.
  12. Umar M., Sabir Z., Amin F., Guirao J.L.G., Raja M.A.Z., Stochastic numerical technique for solving HIV infection model of CD4+ T cells, The European Physical Journal Plus, 135, 403, 2020.
  13. Umar M., Sabir Z., Raja M.A.Z., Baskonus H.M., Yao S.W., Ilhan E., A novel study of Morlet neural networks to solve the nonlinear HIV infection system of latently infected cells, Results in Physics, 25(104235), 1-13, 2021.
  14. Umar M., Raja M.A.Z., Sabir Z., Alwabli A.S., Shoaib M., A stochastic computational intelligent solver for numerical treatment of mosquito dispersal model in a heterogeneous environment, The European Physical Journal Plus, 135(565), 1-23, 2020.
  15. Umar M., Sabir Z., Raja M.A.Z., Sánchez Y.G., A stochastic numerical computing heuristic of SIR nonlinear model based on dengue fever, Results in Physics, 19(103585), 1-9, 2014.
  16. Sabir Z., Raja M.A.Z., Alnahdi A.S., Jeelani M.B., Abdelkawy M.A., Numerical investigations of the nonlinear smoke model using the Gudermannian neural networks, Mathematical Biosciences and Engineering, 19(1), 351-370, 2022.
  17. Sánchez Y.G., Sabir Z., Gunerhan H., Baskonus H.M., Analytical and approximate solutions of a novel nervous stomach mathematical model, Discrete Dynamics in Nature and Society, 2020(5063271), 1-9, 2020.
  18. Veeresha P., Ilhan E., Prakasha D.G., Baskonus H.M., Gao W., A new numerical investigation of fractional order susceptible-infected-recovered epidemic model of childhood disease, Alexandria Engineering Journal, 61(2), 1747-1756, 2022.
  19. Gao W., Veeresha P., Prakasha D.G., Baskonus H.M., Regarding new numerical results for the dynamical model of romantic relationships with fractional derivative, Fractals, 30(1), 2240009 (11 pages), 2022.
  20. Ciancio A., Yel G., Kumar A., Baskonus H.M., Ilhan E., On the complex mixed dark-bright wave distributions to some conformable nonlinear integrable models, Fractals, 30(1), 2240018 (14 pages), 2022.
  21. Chen Q., Baskonus H.M., Gao W., Ilhan E., Soliton theory and modulation instability analysis: The Ivancevic option pricing model in economy, Alexandria Engineering Journal, 61(10), 7843-7851, 2022.
  22. Nisar K.S., Logeswari K., Vijayaraj V., Baskonus H.M., Ravichandran C., Fractional order modeling the gemini virus in capsicum annuum with optimal control, Fractal and Fractional, 6(2), 61, 2022.
  23. Gao W., Baskonus H.M., Deeper investigation of modified epidemiological computer virus model containing the Caputo operator, Chaos Solitons and Fractals, 158(112050), 1-6, 2022.
  24. Wang Y., Veeresha P., Prakasha D.G., Baskonus H.M., Gao W., Regarding deeper properties of the fractional order Kundu-Eckhaus equation and massive thirring model, Computer Modeling in Engineering and Sciences, 133(3), 697-717, 2022.
Language: English
Page range: 177 - 186
Submitted on: Jun 5, 2023
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Accepted on: Aug 6, 2023
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Published on: Sep 13, 2023
Published by: Harran University
In partnership with: Paradigm Publishing Services
Publication frequency: 2 issues per year

© 2023 Juan Luis García Guirao, published by Harran University
This work is licensed under the Creative Commons Attribution 4.0 License.