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A.M.Wazwaz, The tanh method: exact solutions of the sine-Gordon and the sinh-Gordon equations, Appl. Math. Comput. 167 (2005) 11961210.
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A.M. Wazwaz, Partial Differential Equations and Solitary Waves Theory, (2009) (HEP and Springer, Peking and Berlin 2009.
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A.M.Wazwaz, Integrable (2+1)-dimensional and (3+1)-dimensional breaking soliton equations, Phys. Scr. 81 (2010) 035005.
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A.M.Wazwaz, M-component nonlinear evolution equations: multiple soliton solutions, Phys. Scr. 81 (2010) 055004.
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A.M.Wazwaz, Multiple-front solutions for the Burgers equation and the coupled Burgers equations, Appl. Math. Comput., 190 (2007) 1198-1206.
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A.M.Wazwaz, New solitons and kink solutions for the Gardner equation, Commun. Nonlinear Sci. Numer. Simulat. 12 (2007), 1395-1404.
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A.M.Wazwaz, Multiple-soliton solutions for the Boussinesq equation, Appl. Math. Comput., 192 (2007) 479-486.
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A. M. Wazwaz, The Hirota's direct method and the tanh-coth method for multiple-soliton solutions of the Sawada-Kotera-Ito seventh-order equation, Appl. Math. Comput., 199 (2008) 133-138.
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J. Chen, Z. Chen, and S. Cheng, Multilevel augmentation methods for solving the sine-Gordon equation, J. Math. Anal. Appl. 375 (2011) 706-724.
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M. Dehghan and A. Shokri, A numerical method for solution of the two-dimensional sine-Gordon equation using the radial basis functions, Math. Comput. Simul. 79 (2008) 700-715.
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W. Hereman and A. Nuseir, Symbolic methods to construct exact solutions of nonlinear partial differential equations, Math. Comput. Simul. 43 (1997), 13-27.
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J. Hietarinta, A search for bilinear equations passing Hirota's three-soliton condition I. KdV-type bilinear equations, J. Math. Phys., 28(1987) 1732-1742.
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J. Hietarinta, A search for bilinear equations passing Hirota's three-soliton condition. II. mKdV-type bilinear equations, J. Math. Phys., 28(1987) 2094-2101.
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R. Hirota, Exact three-soliton solution of the two-dimensional sine-Gordon equation, J. Phys. Soc. Jpn. 35 (1973). 1566
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R. Hirota, The Direct Method in Soliton Theory, Cambridge University Press, Cambridge, 2004.
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D. Mirzaei and M. Dehghan, Boundary element solution of the two-dimensional sine- Gordon equation using continuous linear elements, Engin. Anal. Bound. Elem. 33 (2009) 12-24.
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A.M. Wazwaz, Travelling wave solutions for the MKdV-sine-Gordon and the MKdV-sinh-Gordon equations by using a variable separated ODE method, Appl. Math. Comput. 181 (2006) 1713-1719.
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A. Biswas, 1-soliton solution of the B(m; n) equation with generalized evolution, Commun. Nonlinear Sci. Numer. Simul. 14 (2009) 3226-3229.
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A. Biswas, Daniela Milovic, Bright and dark solitons of the generalized nonlinear Schrodinger's equation, Commun. Nonlinear Sci. Numer. Simulat. 15 (2010) 1473-1484.
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A.M.Wazwaz, The tanh method and a variable separated ODE method for solving double sine-Gordon equation, Phys. Lett. A 350 (2006) 367-370.
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A.M.Wazwaz, Multiple-front solutions for the Burgers-Kadomtsev-Petvisahvili equation, Appl. Math. Comput., 200 (2008) 437-443.
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A.M.Wazwaz, Multiple-soliton solutions for the Lax-Kadomtsev-Petvisahvili (Lax-KP) equation, Appl. Math. Comput., 201 (2008) 168-174.
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A.M.Wazwaz, The Hirota's direct method for multiple-soliton solutions for three model equations of shallow water waves, Appl. Math. Comput., 201 (2008) 489-503.
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