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February 26, 2026Scientific ReportsOpen Access

Comparison of neural and traditional techniques for soliton structures and dynamical behavior in a double-chain DNA model

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Authors

SMSheikh Zain MajidKhazar UniversityFSFatma Nur Kaya SağlamCappadocia UniversityMUMohammad Safi Ullah

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Implication

Comparison of analytical techniques reveals diverse wave behaviors in a double-chain DNA model, suggesting rich dynamics.

Key Points

  • This research explores wave dynamics in a double-chain DNA model, aiming to derive various soliton structures.
  • Utilized the generalized Riccati equation mapping method and neural network techniques.
  • Derived exact solutions, including hyperbolic, trigonometric, rational, and hybrid waveforms.
  • Analyzed the qualitative behavior of the governing system using Lyapunov exponent analysis.
  • Expanded the spectrum of wave structures, including bright, dark, kink, and anti-kink solutions.
  • Identified parameter regimes with significant sensitivity to initial conditions.
  • Illustrated findings through 3D surface plots and contour diagrams.

Cite This Study

Majid et al. (2026) studied this question.

synapsesocial.com/papers/699fe3af95ddcd3a253e7b21https://doi.org/10.1038/s41598-026-41229-4
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