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F. Labdiad, M. Nasri, H. Khalfi, and I. Hafidi, VRP with Flexible Time Windows using the ALNS Metaheuristic Algorithm
N. Mehdi, M. Abdelmoutalib, H. Imad, VRPTW: From mathematical models to computing science tools
An anisotropic PDE for multi-frame super-resolution image reconstruction
A. Nachaoui, F. Aboud, and M. Nachaoui, Acceleration of the KMF algorithm convergence to solve the Cauchy problem for Poisson's Equation
S. LYAQINI and M. NACHAOUI, Identification of genuine from fake banknotes using an enhanced machine learning approach
L. AFRAITES, Identification of Robin coefficient in elliptic problem by a coupled complex boundary method
M. NACHAOUI, A. LAGHRIB, and M. Hakim, A new space-variant optimization approach for image segmentation
Y. Mezzan1 and M.H. Tber, A Lagrangian mixed finite elements method for advection-diffusion equations
J.-A. Desideri, Adaptation by Nash Games in gradient-based multi-objective/multi-disciplinary optimization
A. Ghazdali, A. Metrane, A. Ourdou, Blind Noisy Mixture Separation for Dependent Source
Blind Separation of Dependent Sources Using Copula.
N. Mehdi, M. Abdelmoutalib, H. Imad, VRPTW: From mathematical models to computing science tools
An anisotropic PDE for multi-frame super-resolution image reconstruction
A. Nachaoui, F. Aboud, and M. Nachaoui, Acceleration of the KMF algorithm convergence to solve the Cauchy problem for Poisson's Equation
S. LYAQINI and M. NACHAOUI, Identification of genuine from fake banknotes using an enhanced machine learning approach
L. AFRAITES, Identification of Robin coefficient in elliptic problem by a coupled complex boundary method
M. NACHAOUI, A. LAGHRIB, and M. Hakim, A new space-variant optimization approach for image segmentation
Y. Mezzan1 and M.H. Tber, A Lagrangian mixed finite elements method for advection-diffusion equations
J.-A. Desideri, Adaptation by Nash Games in gradient-based multi-objective/multi-disciplinary optimization
A. Ghazdali, A. Metrane, A. Ourdou, Blind Noisy Mixture Separation for Dependent Source
Blind Separation of Dependent Sources Using Copula.