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Professor Shaher Momani has supervised numerous postgraduate students throughout his career, guiding them in research related to applied mathematics, differential equations, and other related fields. Here they are, as follows:
MSc Students
Khaled Moady: The numerical solution of obstacle boundary value problems, Mutah University, Jordan, (2004).
Salah Aldeen: Variational iteration method for solving ordinary and partial di erential equations, Mutah University, Jordan, (2005).
Rami Qaraleh: The numerical solution of fractional integro-differential equations, Mutah University, Jordan, (2005).
Saed Khorshaid: A modified homotopy perturbation Method for solving linear and nonlinear differential equations, Mutah University, Jordan, (2005).
Mohammad Al-Shboul: Numerical methods for fourth-order and fifth-order fractional boundary value problems, Mutah University, Jordan, (2005).
Nesreen Mkhaterh: Variational iteration method for solving fractional ordinary differential equation, Mutah University, Jordan, (2005).
Sora Al-Azawi: Local and global uniqueness theorems on fractional integro-differential equations via Bihari's and Gronwall's inequalities, Al-Nahrin University, Iraq (2006).
Sana Abu Gurrah: Modified differential transform method for solving strongly nonlinear oscillators, Mutah University, Jordan, (2007).
Banan Mai'a: Chaotic dynamics and phase synchronization of fractional order dynamical systems, Mutah University, Jordan, (2007).
Hazim Bashirah: Numerical solution of singular IVPs, Mutah University, Jordan, (2007).
Jamel Al-Rwalh: Synchronization of fractional di erential Chaotic System, Mutah University, Jordan, (2009).
Abdullah Abu Rqayiq: A non-standard finite difference scheme for two-sided space-fractional partial differential equations, Mutah University, Jordan, (2009).
Sumar Rawashdeh: Synchronization of fractional di erential Chaotic System, Mutah University, Jordan, (2010).
Ala'a Fuad Abu Hatab: The Application of Spline Functions to Fractional Differential Equations, The University of Jordan, Jordan, (2011).
Rabeea Hudieb: The Laplace Adomian Decomposition Method for approximating the Solution of a giving up smoking system, The University of Jordan, Jordan, (2012).
Mohammad Ayserah: The Laplace homtopy analysis method for approximating the solutions of a fractional order differential equation model of human T-cell lymphotropic virus I (HTLV-I) infection of CD4+ T-cells , The University of Jordan, Jordan, (2013).
M.J. Odeh: Controllable dynamical behaviors and the analysis of higher-order Burgers hierarchy with the full effects of inhomogeneities of media, The University of Jordan, Jordan, (2013).
Mohammad Saed: Representation of exact solutions for systems of integro-differential equations of Volterra type, The University of Jordan, Jordan, (2014).
Ph.D. Students
Mohammad Zuraiqat: An effcient numerical method for solving systems of ordinary differential equations of fractional order, The Jordan University, Jordan, (2007).
Omar Abdul Aziz Ali: Explicit method for nonlinear fractional equations, University Kebangsaan Malaysia, Malsysia, (2007).
Jadallah Rezqalla: Solutions of some constitutive equations containing fractional derivatives, University Kebangsaan Malaysia, Malsysia, (2009).
Khaled Moady: A non-standard finite difference schemes for solving fractional-order chaos and hyberchaos systems, University Kebangsaan Malaysia, Malsysia, (2009).
Asad Freihat: The muti-step differential transform method for solving systems of ordinary differential equations of fractional order, The Jordan University, Jordan, (2010).
Eman Abuteen: Fractional Differential Equations: Theory and Applications, The Jordan University, Jordan, (2010).
Samiah Saleh: On the Solution of Integro-di erential Equations of Fractional Order, The Jordan University, Jordan, (2011).
Banan Mai'a: Application of Reproducing Kernel Hilbert Space Method to Some Ordinary Differential Equations of Fractional Order, The Jordan University, Jordan, (2012).
Rania Yousef: Application of Reproducing Kernel Hilbert Space Method to Some Partial Differential Equations of Fractional Order, The Jordan University, Jordan, (2013).
Sana Abu-Gurrah: Application of Reproducing Kernel Hilbert Space Method to Some Partial Differential Equations of Fractional Order of Physical interest, The Jordan University, Jordan, (2013).
Shatha Hasan: Numerical Solution Of Fuzzy Initial Value Problems Using Reproducing Kernel Hilbert Space Method, The Jordan University, Jordan, (2016).
Laith Alhawahsheh: Parametric Marcinkiewicz Integral Operators, The Jordan University, Jordan, (2017).
Mohammad Fouad: Application of Reproducing Kernel Hilbert Space Method to Some Partial Differential Equations of Fractional Order, The Jordan University, Jordan, (2017).
Iqbal Batiha: Optimal design of fractional-order PID controllers using a particle swarm optimization technique, The Jordan University, Jordan, (2017).
Asia Khalaf Albzeirat: New implementation of reproducing kernel Hilbert space method for solving a fuzzy integro-differential equation of integer and fractional orders, Universiti Malaysia Perlis, Malaysia, (2018).
Nadir Djeddi: Optimal design of fractional-order PID controllers using a particle swarm optimization technique, The Jordan University, Jordan, (2019).
Soumia Elouissi, The solution of a class of fractional partial differential equations using a new numerical method, The Jordan University, Jordan, (2019).
Yassamine Chellouf, The numerical solution of partial differential equations of fractional order using a modified technique, The Jordan University, Jordan, (2019).
Fatima Youbi, Theoretical analysis of fractional Biological systems and bioinformatics systems by using a modified fractional RKM, The Jordan University, Jordan, (2019).
Nesrine Harrouche, Theoretical analysis of fractional dynamical systems by using a modified fractional RKM, The Jordan University, Jordan, (2019).
Ahlem ben Rabah, Mathematical modelling and simulating of fractional Neural Networks using spectral Jacobi technique, The University of Jordan , Jordan, (2019).
Soumia Tayebi, Mathematical modelling and simulating of fractional Neural Networks using Bernstein operation matrices approach, The Jordan University, Jordan, (2019).
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