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Explicit solutions of the generalized Kudryashov’s equation with truncated M-fractional derivative
by
Gu, Musong
, Liu, Fanming
, Peng, Chen
, Li, Jiale
, Li, Zhao
in
639/705
/ 639/766
/ Complete discriminant system
/ Explicit solution
/ Fiber optics
/ Generalized Kudryashov’s equation
/ Humanities and Social Sciences
/ M-fractional derivative
/ multidisciplinary
/ Ordinary differential equations
/ Partial differential equations
/ Science
/ Science (multidisciplinary)
/ Spatial distribution
2024
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Explicit solutions of the generalized Kudryashov’s equation with truncated M-fractional derivative
by
Gu, Musong
, Liu, Fanming
, Peng, Chen
, Li, Jiale
, Li, Zhao
in
639/705
/ 639/766
/ Complete discriminant system
/ Explicit solution
/ Fiber optics
/ Generalized Kudryashov’s equation
/ Humanities and Social Sciences
/ M-fractional derivative
/ multidisciplinary
/ Ordinary differential equations
/ Partial differential equations
/ Science
/ Science (multidisciplinary)
/ Spatial distribution
2024
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Explicit solutions of the generalized Kudryashov’s equation with truncated M-fractional derivative
by
Gu, Musong
, Liu, Fanming
, Peng, Chen
, Li, Jiale
, Li, Zhao
in
639/705
/ 639/766
/ Complete discriminant system
/ Explicit solution
/ Fiber optics
/ Generalized Kudryashov’s equation
/ Humanities and Social Sciences
/ M-fractional derivative
/ multidisciplinary
/ Ordinary differential equations
/ Partial differential equations
/ Science
/ Science (multidisciplinary)
/ Spatial distribution
2024
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Explicit solutions of the generalized Kudryashov’s equation with truncated M-fractional derivative
Journal Article
Explicit solutions of the generalized Kudryashov’s equation with truncated M-fractional derivative
2024
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Overview
The main purpose of this article is to study the generalized Kudryashov’s equation with truncated M-fractional derivative, which is commonly used to describe the propagation of wide pulses in nonlinear optical fibers. By employing the complete discriminant system of fourth-order polynomials, various types of explicit solutions are systematically classified, which include periodic solutions, the trigonometric functions, the double-period solutions, and the elliptic function solutions. Additionally, a series of 2D, 3D, and contour plots are generated to visually depict the spatial distribution and evolution of various solutions. This not only advances the development of nonlinear equations in theory but also provides valuable guidance in practical applications.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
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