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Salem ABDELMALEK
Salem ABDELMALEK
Professor of Mathematics ( Larbi Tebessi University, Tebessa, Algeria )
Adresse e-mail validée de univ-tebessa.dz - Page d'accueil
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Coexistence of some chaos synchronization types in fractional-order differential equations
A Ouannas, S Abdelmalek, S Bendoukha
Texas State University, Department of Mathematics, 2017
382017
Proof of existence of global solutions for m-component reaction–diffusion systems with mixed boundary conditions via the Lyapunov functional method
S Abdelmalek, S Kouachi
Journal of Physics A: Mathematical and Theoretical 40 (41), 12335, 2007
312007
On the global asymptotic stability of solutions to a generalised Lengyel–Epstein system
S Abdelmalek, S Bendoukha
Nonlinear Analysis: Real World Applications 35, 397-413, 2017
302017
Fractional order unknown inputs fuzzy observer for Takagi–Sugeno systems with unmeasurable premise variables
A Djeddi, D Dib, AT Azar, S Abdelmalek
Mathematics 7 (10), 984, 2019
282019
Elastic membrane equation with memory term and nonlinear boundary damping: global existence, decay and blowup of the solution
A Zarai, NE Tatar, S Abdelmalek
Acta Mathematica Scientia 33 (1), 84-106, 2013
282013
Secure communication systems based on the synchronization of chaotic systems
S Bendoukha, S Abdelmalek, A Ouannas
Mathematics Applied to Engineering, Modelling, and Social Issues, 281-311, 2019
222019
Invariant Regions and Global Existence of Solutions for Reaction‐Diffusion Systems with a Tridiagonal Matrix of Diffusion Coefficients and Nonhomogeneous Boundary Conditions
A Salem
Journal of Applied Mathematics 2007 (1), 012375, 2007
222007
On the stability and nonexistence of turing patterns for the generalized Lengyel‐Epstein model
S Abdelmalek, S Bendoukha, B Rebiai
Mathematical Methods in the Applied Sciences 40 (18), 6295-6305, 2017
202017
Global asymptotic stability of a diffusive SVIR epidemic model with immigration of individuals
S Abdelmalek, S Bendoukha
Electronic Journal of Differential Equations 2016 (129/324), 1-14, 2016
192016
Asymptotic stability conditions for autonomous time–fractional reaction–diffusion systems
R Douaifia, S Abdelmalek, S Bendoukha
Communications in Nonlinear Science and Numerical Simulation 80, 104982, 2020
182020
On the asymptotic stability of the time-fractional Lengyel–Epstein system
D Mansouri, S Abdelmalek, S Bendoukha
Computers & Mathematics with Applications 78 (5), 1415-1430, 2019
182019
A simple proof of Sylvester’s (determinants) identity
A Salem, K Said
Applied Mathematical Sciences 32 (2), 1571-1580, 2008
162008
A Lyapunov functional for a triangular reaction–diffusion system with nonlinearities of exponential growth
S Abdelmalek, M Kirane, A Youkana
Mathematical Methods in the Applied Sciences 36 (1), 80-85, 2013
132013
Bifurcations and pattern formation in a generalized Lengyel–Epstein reaction–diffusion model
D Mansouri, S Abdelmalek, S Bendoukha
Chaos, Solitons & Fractals 132, 109579, 2020
122020
A general method to study the co-existence of different hybrid synchronizations in fractional-order chaotic systems
A Ouannas, S Bendoukha, A Karouma, S Abdelmalek
International Journal of Nonlinear Sciences and Numerical Simulation 20 (3-4 …, 2019
122019
The fractional chua chaotic system: Dynamics, synchronization, and application to secure communications
S Bendoukha, S Abdelmalek
International Journal of Nonlinear Sciences and Numerical Simulation 20 (1 …, 2019
122019
A mathematical proof of Dodgson’s algorithm
S Kouachi, S Abdelmalek, B Rebai
arXiv preprint arXiv:0712.0362, 2007
122007
A Newton interpolation based predictor–corrector numerical method for fractional differential equations with an activator–inhibitor case study
R Douaifia, S Bendoukha, S Abdelmalek
Mathematics and Computers in Simulation 187, 391-413, 2021
102021
On the complete synchronization of a time-fractional reaction–diffusion system with the Newton–Leipnik nonlinearity
D Mansouri, S Bendoukha, S Abdelmalek, A Youkana
Applicable Analysis 100 (3), 675-694, 2021
102021
On the local and global asymptotic stability of the Degn‐Harrison reaction‐diffusion model
A Abbad, S Bendoukha, S Abdelmalek
Mathematical Methods in the Applied Sciences 42 (2), 567-577, 2019
102019
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