Some new results on the new conformable fractional calculus with application using D’Alambert approach OS Iyiola, ER Nwaeze Progr. Fract. Differ. Appl 2 (2), 115-122, 2016 | 197 | 2016 |
Exact solutions of the generalized multidimensional mathematical physics models via sub-equation method L Akinyemi, M Şenol, OS Iyiola Mathematics and Computers in Simulation 182, 211-233, 2021 | 153 | 2021 |
A fractional diffusion equation model for cancer tumor OS Iyiola, FD Zaman AIP Advances 4 (10), 2014 | 114 | 2014 |
An inverse problem for a generalized fractional diffusion KM Furati, OS Iyiola, M Kirane Applied Mathematics and Computation 249, 24-31, 2014 | 113 | 2014 |
Exact and approximate solutions of time‐fractional models arising from physics via Shehu transform L Akinyemi, OS Iyiola Mathematical Methods in the Applied Sciences 43 (12), 7442-7464, 2020 | 101 | 2020 |
Efficient analytical techniques for solving time-fractional nonlinear coupled Jaulent–Miodek system with energy-dependent Schrödinger potential M Şenol, OS Iyiola, H Daei Kasmaei, L Akinyemi Advances in Difference Equations 2019 (1), 1-21, 2019 | 88 | 2019 |
An iterative algorithm for solving split feasibility problems and fixed point problems in Banach spaces Y Shehu, OS Iyiola, CD Enyi Numerical Algorithms 72, 835-864, 2016 | 81 | 2016 |
Strong convergence result for monotone variational inequalities Y Shehu, OS Iyiola Numerical Algorithms, 1-24, 2016 | 80 | 2016 |
Iterative methods for solving fourth and sixth order time-fractional Cahn-Hillard equation UA Lanre Akinyemi, Olaniyi Samuel Iyiola Mathematical Methods in the Applied Sciences, 1-25, 2020 | 76* | 2020 |
A fractional order approach to modeling and simulations of the novel COVID-19 I Owusu-Mensah, L Akinyemi, B Oduro, OS Iyiola Advances in difference equations 2020, 1-21, 2020 | 75 | 2020 |
On the analytical solutions of the system of conformable time-fractional Robertson equations with 1-D diffusion OS Iyiola, O Tasbozan, A Kurt, Y Çenesiz Chaos, Solitons & Fractals 94, 1-7, 2017 | 74 | 2017 |
Projection methods with alternating inertial steps for variational inequalities: weak and linear convergence Y Shehu, OS Iyiola Applied Numerical Mathematics 157, 315-337, 2020 | 73 | 2020 |
A reliable technique to study nonlinear time-fractional coupled Korteweg–de Vries equations L Akinyemi, OS Iyiola Advances in Difference equations 2020 (1), 169, 2020 | 65 | 2020 |
Subgradient extragradient method with double inertial steps for variational inequalities Y Yao, OS Iyiola, Y Shehu Journal of Scientific Computing 90, 1-29, 2022 | 62 | 2022 |
Weak and strong convergence theorems for solving pseudo-monotone variational inequalities with non-Lipschitz mappings DV Thong, Y Shehu, OS Iyiola Numerical Algorithms 84, 795-823, 2020 | 55 | 2020 |
Convergence analysis for the proximal split feasibility problem using an inertial extrapolation term method Y Shehu, OS Iyiola Journal of Fixed Point Theory and Applications 19, 2483-2510, 2017 | 55 | 2017 |
A new double-projection method for solving variational inequalities in Banach spaces G Cai, A Gibali, OS Iyiola, Y Shehu Journal of Optimization Theory and Applications 178, 219-239, 2018 | 53 | 2018 |
On the solutions of non-linear time-fractional gas dynamic equations: an analytical approach OS Iyiola Int. J. Pure Appl. Math 98 (4), 491-502, 2015 | 50 | 2015 |
On the analytical solution of Fornberg–Whitham equation with the new fractional derivative OS Iyiola, GO Ojo Pramana 85, 567-575, 2015 | 49 | 2015 |
Generalised homotopy analysis method (q-HAM) for solving foam drainage equation of time fractional type. OS Iyiola, ME Soh, CD Enyi Mathematics in Engineering, Science & Aerospace (MESA) 4 (4), 2013 | 49 | 2013 |