Numerical and Analitic Solution for the Integrodifferential Equation of Dna Vibrational Dynamics

Authors

  • Milton Milciades Cortez Gutierrez Universidad Nacional de trujillo
  • Hernan Oscar Cortez Gutiérrez Universidad nacional del Callao
  • Lenin Rolando Cabracancha Montesinos Universidad nacional del Callao
  • Pascual Fermín Onofre Mayta Universidad nacional del Callao
  • Liv Jois Cortez Fuentes Rivera Universidad Nacional del Callao
  • Jesús Yuncar Alvaron Universidad nacional del Callao

DOI:

https://doi.org/10.63332/joph.v5i1.687

Keywords:

DNA Vibrational Dynamics, Sobolev Spaces, Faedo-Galerkin Method, Fourier Series, Software Development

Abstract

We analyze the numerical and analytical   of solution for the mathematical modelling of DNA vibrational dynamics with relaxing function is studied using an integrodifferential equation which takes past information from the dynamics of DNA based on the Peyrard-Bishop model for vibrational motion of DNA dynamics, some other researchers have tried from the analytical point of view. In addition, we add the boundary  conditions and initial data, for that one, we consider the Sobolev spaces and some other result from the theory of functional analysis. We apply the Faedo-Galerkin method in order to obtain the required solution. Using Matlab and Fourier Series, we can obtain numerical solutions as an educational strategy for mathematical research and software development in the areas of bioinformatics.

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Published

2025-04-08

How to Cite

Gutierrez, M. M. C., Gutiérrez, H. O. C., Montesinos, L. R. C., Mayta, P. F. O., Rivera, L. J. C. F., & Alvaron, J. Y. (2025). Numerical and Analitic Solution for the Integrodifferential Equation of Dna Vibrational Dynamics. Journal of Posthumanism, 5(1), 1432–1440. https://doi.org/10.63332/joph.v5i1.687

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