New explicit and exact traveling wave solutions of \((3+1)\)-dimensional KP equation
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Publication:2063707
DOI10.3934/mfc.2021006zbMath1489.35025OpenAlexW3156297387MaRDI QIDQ2063707
Jie Xin, Xiaoxiao Zheng, Yuan-Qing Xu
Publication date: 11 January 2022
Published in: Mathematical Foundations of Computing (Search for Journal in Brave)
Full work available at URL: https://doi.org/10.3934/mfc.2021006
exact traveling wave solutionsimplest equation methodextended tanh methodsimplified homogeneous balance method\((3+1)\)-dimensional KP equation
Solutions to PDEs in closed form (35C05) Other special methods applied to PDEs (35A25) Traveling wave solutions (35C07) Soliton solutions (35C08)
Cites Work
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- Rational and complexiton solutions of the \((3+1)\)-dimensional KP equation
- Solving the \((3+1)\)-dimensional generalized KP and BKP equations by the multiple exp-function algorithm
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- Wronskian and Grammian solutions to a \((3 + 1)\)-dimensional generalized KP equation
- Complex version KdV equation and the periods solution
- Two-soliton solution to a generalized KP equation with general variable coefficients
- The decomposition method for solving (2+1)-dimensional Boussinesq equation and (3+1)-dimensional KP equation
- New multiple soliton-like solutions to the generalized \((2+1)\)-dimensional KP equation
- Painlevé analysis and Bäcklund transformation for a three-dimensional Kadomtsev-Petviashvili equation
- Two new classes of exact solutions for the KdV equation via Bäcklund transformations
- Analysis on the \(M\)-rogue wave solutions of a generalized \((3+1)\)-dimensional KP equation
- Painlevé analysis, soliton solutions and lump-type solutions of the (3+1)-dimensional generalized KP equation
- Multiple-soliton solutions for the KP equation by Hirota's bilinear method and by the tanh-coth method
- Multiple solution profiles to the higher-dimensional Kadomtsev-Petviashvilli equations via Wronskian determinant
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