Obtaining the soliton solutions of local M-fractional magneto-electro-elastic media
暂无分享,去创建一个
[1] Chunhua Liu,et al. Generic Carrier-Based PWM Solution for Series-End Winding PMSM Traction System With Adaptative Overmodulation Scheme , 2023, IEEE Transactions on Transportation Electrification.
[2] Weili Li,et al. Temperature Analysis for the Asymmetric Six-Phase Permanent Magnet Synchronous Motor in Healthy and Fault-Tolerant Modes , 2023, IEEE Transactions on Industrial Electronics.
[3] L. Natalucci,et al. Bright X-ray bursts from 1E1724-3045 in Terzan 2 , 2000, astro-ph/0003333.
[4] M. Khater. In solid physics equations, accurate and novel soliton wave structures for heating a single crystal of sodium fluoride , 2022, International Journal of Modern Physics B.
[5] M. Khater,et al. Analytical and hybrid numerical simulations for the (2+1)-dimensional Heisenberg ferromagnetic spin chain , 2022, Results in Physics.
[6] M. Khater. De Broglie waves and nuclear element interaction; Abundant waves structures of the nonlinear fractional Phi-four equation , 2022, Chaos, Solitons & Fractals.
[7] M. Khater. Novel computational simulation of the propagation of pulses in optical fibers regarding the dispersion effect , 2022, International Journal of Modern Physics B.
[8] M. Khater. Nonlinear elastic circular rod with lateral inertia and finite radius: Dynamical attributive of longitudinal oscillation , 2022, International Journal of Modern Physics B.
[9] T. Botmart,et al. Unidirectional shallow water wave model; Computational simulations , 2022, Results in Physics.
[10] M. Khater. Analytical and numerical-simulation studies on a combined mKdV–KdV system in the plasma and solid physics , 2022, The European Physical Journal Plus.
[11] M. Khater. Nonlinear biological population model; computational and numerical investigations , 2022, Chaos, Solitons & Fractals.
[12] M. Khater. Recent electronic communications; optical quasi–monochromatic soliton waves in fiber medium of the perturbed Fokas–Lenells equation , 2022, Optical and Quantum Electronics.
[13] Xibo Yuan,et al. Low-Complexity Model-Predictive Control for a Nine-Phase Open-End Winding PMSM With Dead-Time Compensation , 2022, IEEE Transactions on Power Electronics.
[14] M. Khater. Abundant accurate solitonic water and ionic liquid wave structures of the nanoparticle hybrid system , 2022, Computational and Applied Mathematics.
[15] Samir A. Salama,et al. Computational investigation on a nonlinear dispersion model with the weak non-local nonlinearity in quantum mechanics , 2022, Results in Physics.
[16] Arwa A. Mashat,et al. Optical Soliton Wave Solutions of the Fractional Complex Paraxial Wave Dynamical Model Along with KERR Media , 2022, Fractals.
[17] M. Khater. Nonparaxial pulse propagation in a planar waveguide with Kerr–like and quintic nonlinearities; computational simulations , 2022, Chaos, Solitons & Fractals.
[18] Houde Dai,et al. Liquid-Metal Magnetic Soft Robot With Reprogrammable Magnetization and Stiffness , 2022, IEEE Robotics and Automation Letters.
[19] M. Khater. Lax representation and bi-Hamiltonian structure of nonlinear Qiao model , 2022, Modern Physics Letters B.
[20] M. Khater. Two-component plasma and electron trapping’s influence on the potential of a solitary electrostatic wave with the dust-ion-acoustic speed , 2022, Journal of Ocean Engineering and Science.
[21] Harikesh S. Nair,et al. A Ferrotoroidic Candidate with Well‐Separated Spin Chains , 2022, Advanced materials.
[22] M. Khater,et al. Diverse Soliton wave solutions of for the nonlinear potential Kadomtsev–Petviashvili and Calogero–Degasperis equations , 2022, Results in Physics.
[23] Ngakan Ketut Acwin Dwijendra,et al. Multi Project Scheduling and Material Planning Using Lagrangian Relaxation Algorithm , 2021, Industrial Engineering & Management Systems.
[24] A. Yang,et al. Split-core magnetoelectric current sensor and wireless current measurement application , 2021, Measurement.
[25] F. Bouchaala,et al. Compressional and shear wave attenuations from walkway VSP and sonic data in an offshore Abu Dhabi oilfield , 2021, Comptes Rendus. Géoscience.
[26] M. Khater. Abundant breather and semi-analytical investigation: On high-frequency waves’ dynamics in the relaxation medium , 2021 .
[27] M. Khater,et al. Analytical versus numerical solutions of the nonlinear fractional time–space telegraph equation , 2021 .
[28] M. Khater. Diverse solitary and Jacobian solutions in a continually laminated fluid with respect to shear flows through the Ostrovsky equation , 2021 .
[29] M. Khater,et al. On semi analytical and numerical simulations for a mathematical biological model; the time-fractional nonlinear Kolmogorov–Petrovskii–Piskunov (KPP) equation , 2021 .
[30] M. El-Shorbagy,et al. Abundant stable computational solutions of Atangana–Baleanu fractional nonlinear HIV-1 infection of CD4+ T-cells of immunodeficiency syndrome , 2021 .
[31] A. Mousa,et al. Analytical and semi-analytical solutions for Phi-four equation through three recent schemes , 2021 .
[32] A. Seadawy,et al. A model of solitary waves in a nonlinear elastic circular rod: Abundant different type exact solutions and conservation laws , 2021 .
[33] Yi-Peng Xu,et al. Optimal structure design of a PV/FC HRES using amended Water Strider Algorithm , 2021 .
[34] M. Khater. On the dynamics of strong Langmuir turbulence through the five recent numerical schemes in the plasma physics , 2020, Numerical Methods for Partial Differential Equations.
[35] Dianchen Lu,et al. On the numerical investigation of the interaction in plasma between (high & low) frequency of (Langmuir & ion-acoustic) waves , 2020 .
[36] A. Wazwaz. Two new Painlevé-integrable (2+1) and (3+1)-dimensional KdV equations with constant and time-dependent coefficients , 2020, Nuclear Physics B.
[37] M. Khater,et al. The plethora of explicit solutions of the fractional KS equation through liquid–gas bubbles mix under the thermodynamic conditions via Atangana–Baleanu derivative operator , 2020 .
[38] Mostafa M. A. Khater,et al. Analytical, semi-analytical, and numerical solutions for the Cahn–Allen equation , 2020 .
[39] C. Tunç,et al. Construction of soliton and multiple soliton solutions to the longitudinal wave motion equation in a magneto-electro-elastic circular rod and the Drinfeld-Sokolov-Wilson equation , 2020, Miskolc Mathematical Notes.
[40] 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).
[41] J. F. Gómez‐Aguilar,et al. New singular soliton solutions to the longitudinal wave equation in a magneto-electro-elastic circular rod with M-derivative , 2019, Modern Physics Letters B.
[42] Mostafa M. A. Khater,et al. Lump soliton wave solutions for the (2+1)-dimensional Konopelchenko–Dubrovsky equation and KdV equation , 2019, Modern Physics Letters B.
[43] Dianchen Lu,et al. Numerical solutions of nonlinear fractional Wu–Zhang system for water surface versus three approximate schemes , 2019, Journal of Ocean Engineering and Science.
[44] Mostafa M. A. Khater,et al. Explicit Lump Solitary Wave of Certain Interesting (3+1)-Dimensional Waves in Physics via Some Recent Traveling Wave Methods , 2019, Entropy.
[45] Yi Tian,et al. Quasi hyperbolic function expansion method and tanh-function method for solving vibrating string equation and elastic rod equation , 2019, Journal of Low Frequency Noise, Vibration and Active Control.
[46] M. Khater,et al. Analytical and semi-analytical wave solutions for longitudinal wave equation via modified auxiliary equation method and Adomian decomposition method , 2019, Thermal Science.
[47] Mostafa M. A. Khater,et al. Modified Auxiliary Equation Method versus Three Nonlinear Fractional Biological Models in Present Explicit Wave Solutions , 2018, Mathematical and Computational Applications.
[48] Aly R. Seadawy,et al. New soliton solution to the longitudinal wave equation in a magneto-electro-elastic circular rod , 2018 .
[49] H. M. Baskonus,et al. On the solitary wave solutions to the longitudinal wave equation in MEE circular rod , 2018 .
[50] J. Sousa,et al. A new truncated $M$-fractional derivative type unifying some fractional derivative types with classical properties , 2017, 1704.08187.
[51] T. Xu,et al. 1-Soliton and peaked solitary wave solutions of nonlinear longitudinal wave equation in magneto–electro–elastic circular rod , 2017 .
[52] M. Younis,et al. Bright, dark, and singular solitons in magneto-electro-elastic circular rod , 2015 .
[53] Ernian Pan,et al. Solitary waves in a magneto-electro-elastic circular rod , 2011 .
[54] M. A. Abdou,et al. Exact Travelling Wave Solutions in a Nonlinear Elastic Rod Equation , 2009 .
[55] Zhifang Liu,et al. Nonlinear waves and periodic solution in finite deformation elastic rod , 2006 .
[56] Jonatan Lenells,et al. Traveling waves in compressible elastic rods , 2005 .
[57] I. Semenova,et al. Reflection of a longitudinal strain soliton from the end face of a nonlinearly elastic rod , 2001 .
[58] M. Velarde,et al. STRAIN SOLITARY WAVES IN AN ELASTIC ROD EMBEDDED IN ANOTHER ELASTIC EXTERNAL MEDIUM WITH SLIDING , 1998 .
[59] M. Planat,et al. Observation of soliton‐like envelope modulations generated in an anisotropic quartz plate by metallic interdigital transducers , 1989 .
[60] Zhuang Wei,et al. The propagation of solitary waves in a nonlinear elastic rod , 1986 .
[61] Mark J. Ablowitz,et al. Multidimensional nonlinear evolution equations and inverse scattering , 1986 .
[62] Yuji Kodama,et al. Note on Asymptotic Solutions of the Korteweg‐de Vries Equation with Solitons , 1982 .
[63] A. Sedov,et al. Burgers's-Korteweg-De Vries equation for viscoelastic rods and plates , 1970 .