M
M. G. Hafez
Researcher at Chittagong University of Engineering & Technology
Publications - 74
Citations - 1067
M. G. Hafez is an academic researcher from Chittagong University of Engineering & Technology. The author has contributed to research in topics: Nonlinear system & Plasma. The author has an hindex of 16, co-authored 60 publications receiving 735 citations. Previous affiliations of M. G. Hafez include University of Rajshahi.
Papers
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Traveling wave solutions for some important coupled nonlinear physical models via the coupled Higgs equation and the Maccari system
TL;DR: In this paper, the exp(− Φ ( ξ ))-expansion method has been successfully implemented to seek traveling wave solutions of the coupled Higgs field equation and the Maccari system.
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Exact traveling wave solutions to the Klein-Gordon equation using the novel (G′/G)-expansion method
TL;DR: In this paper, the authors proposed a (G ′/G )-expansion method for finding exact traveling wave solutions of nonlinear partial differential equations (NLEEs) using hyperbolic, trigonometric and rational functions.
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Oblique resonant optical solitons with Kerr and parabolic law nonlinearities and fractional temporal evolution by generalized exp(−Φ(ξ))-expansion
F. Ferdous,M. G. Hafez,Anjan Biswas,Anjan Biswas,Mehmet Ekici,Qin Zhou,Mohanad Alfiras,Seithuti P. Moshokoa,Milivoj R. Belic +8 more
TL;DR: In this article, the authors studied fractional temporal evolution of oblique resonant optical solitons in (3+1)-dimensions with Kerr-and parabolic-law nonlinearities.
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Exact Solutions to the (2+1)-Dimensional Boussinesq Equation via exp(Φ(η))-Expansion Method
TL;DR: In this article, the exp (?(?)) -expansion method is applied to find exact traveling wave solutions to the (2+1)-dimensional Boussinesq equation which is an important equation in mathematical physics.
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Exact traveling wave solutions to the (3+1)-dimensional mKdV–ZK and the (2+1)-dimensional Burgers equations via exp(−Φ(η))-expansion method
TL;DR: In this article, the exact traveling wave solutions to the (3+1)-dimensional mKdV-ZK equation and the (2+ 1)-dimensional Burgers equation are studied using the exp ( - Φ ( η ) -expansion method.