Soliton solutions to the electric signals in telegraph lines on the basis of the tunnel diode
暂无分享,去创建一个
[1] Nehad Ali Shah,et al. Closed-Form Solutions in a Magneto-Electro-Elastic Circular Rod via Generalized Exp-Function Method , 2022, Mathematics.
[2] Nehad Ali Shah,et al. Application of the Exp(−φ(ξ)) −Expansion Method to Find the Soliton Solutions in Biomembranes and Nerves , 2022, Mathematics.
[3] T. Sulaiman,et al. On the optical soliton structures in the magneto electro-elastic circular rod modeled by nonlinear dynamical longitudinal wave equation , 2022, Optical and Quantum Electronics.
[4] T. Sulaiman,et al. Diversity of optical soliton structures in the spinor Bose–Einstein condensate modeled by three-component Gross–Pitaevskii system , 2022, International Journal of Modern Physics B.
[5] D. Baleanu,et al. Breather and lump-periodic wave solutions to a system of nonlinear wave model arising in fluid mechanics , 2022, Nonlinear Dynamics.
[6] D. Baleanu,et al. Lump Collision Phenomena to a Nonlinear Physical Model in Coastal Engineering , 2022, Mathematics.
[7] Nehad Ali Shah,et al. Application of modified exp-function method for strain wave equation for finding analytical solutions , 2022, Ain Shams Engineering Journal.
[8] D. Baleanu,et al. Optical solitons with nonlinear dispersion in parabolic law medium and three-component coupled nonlinear Schrödinger equation , 2022, Optical and Quantum Electronics.
[9] Shams A. Ahmed,et al. Exact Solutions of Nonlinear Partial Differential Equations via the New Double Integral Transform Combined with Iterative Method , 2022, Axioms.
[10] Shariful Islam,et al. Some new results of nonlinear model arising in incompressible visco‐elastic Kelvin–Voigt fluid , 2022, Mathematical Methods in the Applied Sciences.
[11] Jian-ming Qi,et al. Exact Solutions of the Nonlinear Space-Time Fractional Partial Differential Symmetric Regularized Long Wave (SRLW) Equation by Employing Two Methods , 2022, Advances in Mathematical Physics.
[12] A. S. Prakaash,et al. Novel Optical Soliton Waves in Metamaterials with Parabolic Law of Nonlinearity via the IEFM and ISEM , 2022, Journal of Function Spaces.
[13] Shafeeq Rahman Thottoli,et al. Computational modeling of the Balitsky–Kovchegov equation and its numerical solution using hybrid B-spline collocation technique , 2022, Partial Differential Equations in Applied Mathematics.
[14] Nehad Ali Shah,et al. Generalized Exp-Function Method to Find Closed Form Solutions of Nonlinear Dispersive Modified Benjamin–Bona–Mahony Equation Defined by Seismic Sea Waves , 2022, Mathematics.
[15] Nehad Ali Shah,et al. Modified Exp-Function Method to Find Exact Solutions of Ionic Currents along Microtubules , 2022, Mathematics.
[16] S. Sahoo,et al. The new optical behaviour of the LPD model with Kerr law and parabolic law of nonlinearity , 2022, Partial Differential Equations in Applied Mathematics.
[17] Vikas Kumar. Optical solitons and modulation instability for Cubic–quartic Fokas–Lenells equation , 2022, Partial Differential Equations in Applied Mathematics.
[18] Yaning Tang,et al. Exact solutions of a (3+1)-dimensional nonlinear evolution equation based on its Wronskian form , 2022, Partial Differential Equations in Applied Mathematics.
[19] M. S. Ullah,et al. Collision phenomena between lump and kink wave solutions to a (3+1)- dimensional Jimbo–Miwa-like model , 2022, Partial Differential Equations in Applied Mathematics.
[20] Yuan Zhou. Lump and rogue wave solutions to (1+1)-dimensional evolution equations , 2022, Partial Differential Equations in Applied Mathematics.
[21] Nehad Ali Shah,et al. Novel Analytical Technique to Find Closed Form Solutions of Time Fractional Partial Differential Equations , 2022, Fractal and Fractional.
[22] F. A. Mohammed. Soliton solutions for some nonlinear models in mathematical physics via conservation laws , 2022, AIMS Mathematics.
[23] H. Bulut,et al. Simulation of Wave Solutions of a Mathematical Model Representing Communication Signals , 2021, Journal of the Institute of Science and Technology.
[24] S. P. Joseph. New traveling wave exact solutions to the coupled Klein–Gordon system of equations , 2021, Partial Differential Equations in Applied Mathematics.
[25] Md. Nur Alam,et al. The unified technique for the nonlinear time-fractional model with the beta-derivative , 2021, Results in Physics.
[26] J Zhang,et al. Soliton solutions of the AB system via the Jacobi elliptic function expansion method , 2021 .
[27] Hijaz Ahmad,et al. New computational results for a prototype of an excitable system , 2021 .
[28] Serbay Duran,et al. Travelling wave solutions and simulation of the Lonngren wave equation for tunnel diode , 2021, Optical and Quantum Electronics.
[29] Serbay Duran,et al. Nematicons in liquid crystals with Kerr Law by sub-equation method , 2021, Alexandria Engineering Journal.
[30] H. Rezazadeh,et al. Soliton solutions of nonlinear Boussinesq models using the exponential function technique , 2021, Physica Scripta.
[31] M. Osman,et al. New soliton configurations for two different models related to the nonlinear Schrödinger equation through a graded-index waveguide , 2021, AIP Advances.
[32] A. Seadawy,et al. Analytical mathematical approaches for the double-chain model of DNA by a novel computational technique , 2021 .
[33] Kholod M. Abualnaja,et al. Stable and functional solutions of the Klein-Fock-Gordon equation with nonlinear physical phenomena , 2021 .
[34] Hamdy M. Ahmed,et al. Solitons in birefringent fibers for CGL equation with Hamiltonian perturbations and Kerr law nonlinearity using modified extended direct algebraic method , 2021, Commun. Nonlinear Sci. Numer. Simul..
[35] Onur Alp Ilhan,et al. New complex wave structures to the complex Ginzburg-Landau model , 2021 .
[36] M. Akbar,et al. Soliton solutions to voltage analysis in nonlinear electrical transmission lines and electric signals in telegraph lines , 2020 .
[37] T. Sulaiman. Three-component coupled nonlinear Schrödinger equation: optical soliton and modulation instability analysis , 2020, Physica Scripta.
[38] A. R. Adem,et al. Double-wave solutions and Lie symmetry analysis to the (2 + 1)-dimensional coupled Burgers equations , 2020 .
[39] D. Baleanu,et al. Analytical and numerical simulations for the kinetics of phase separation in iron (Fe–Cr–X (X=Mo, Cu)) based on ternary alloys , 2020 .
[40] Ozlem Ersoy Hepson,et al. Sine-Gordon expansion method for exact solutions to conformable time fractional equations in RLW-class , 2020 .
[41] Onur Alp Ilhan,et al. On the new wave behavior of the Magneto-Electro-Elastic(MEE) circular rod longitudinal wave equation , 2019, An International Journal of Optimization and Control: Theories & Applications (IJOCTA).
[42] M. Eslami,et al. Traveling wave solutions for (3+1) dimensional conformable fractional Zakharov-Kuznetsov equation with power law nonlinearity , 2019, Nonlinear Engineering.
[43] Hasan Bulut,et al. New Complex Hyperbolic Structures to the Lonngren-Wave Equation by Using Sine-Gordon Expansion Method , 2019, Applied Mathematics and Nonlinear Sciences.
[44] Samil Akcagil,et al. A new application of the unified method , 2018 .
[45] M. Akbar,et al. The generalized Kudryashov method to obtain exact traveling wave solutions of the PHI-four equation and the Fisher equation , 2017 .
[46] A. Wazwaz. The simplified Hirota’s method for studying three extended higher-order KdV-type equations , 2016 .
[47] T. Aydemir,et al. Comparison between the (G’/G) - expansion method and the modified extended tanh method , 2016 .