Similarities in a fifth-order evolution equation with and with no singular kernel EFD Goufo, S Kumar, SB Mugisha Chaos, Solitons & Fractals 130, 109467, 2020 | 223 | 2020 |
Application of the Caputo-Fabrizio fractional derivative without singular kernel to Korteweg--de Vries--Burgers equation EFD Goufo Mathematical Modelling and Analysis 21 (2), 188-198, 2016 | 216 | 2016 |
An analysis for heat equations arises in diffusion process using new Yang‐Abdel‐Aty‐Cattani fractional operator S Kumar, S Ghosh, B Samet, EFD Goufo Mathematical Methods in the Applied Sciences 43 (9), 6062-6080, 2020 | 207 | 2020 |
Extension of matched asymptotic method to fractional boundary layers problems A Atangana, EF Doungmo Goufo Mathematical Problems in Engineering 2014 (1), 107535, 2014 | 99 | 2014 |
Agent-Based Modelling and Simulation for evacuation of people from a building in case of fire S Kasereka, N Kasoro, K Kyamakya, EFD Goufo, AP Chokki, MV Yengo Procedia Computer Science 130, 10-17, 2018 | 98 | 2018 |
On the mathematical analysis of Ebola hemorrhagic fever: deathly infection disease in West African countries A Atangana, EFD Goufo BioMed research international 2014 (1), 261383, 2014 | 97 | 2014 |
Some properties of the Kermack-McKendrick epidemic model with fractional derivative and nonlinear incidence EF Doungmo Goufo, R Maritz, J Munganga Advances in Difference Equations 2014, 1-9, 2014 | 81 | 2014 |
Chaotic processes using the two-parameter derivative with non-singular and non-local kernel: Basic theory and applications EF Doungmo Goufo Chaos 26 (8), 2016 | 78* | 2016 |
A biomathematical view on the fractional dynamics of cellulose degradation EF Doungmo Goufo Fractional Calculus and Applied Analysis 18 (3), 554-564, 2015 | 77 | 2015 |
An epidemic prediction from analysis of a combined HIV-COVID-19 co-infection model via ABC-fractional operator I Ahmed, EFD Goufo, A Yusuf, P Kumam, P Chaipanya, K Nonlaopon Alexandria Engineering Journal 60 (3), 2979-2995, 2021 | 64 | 2021 |
HIV and shifting epicenters for COVID-19, an alert for some countries EFD Goufo, Y Khan, QA Chaudhry Chaos, Solitons & Fractals 139, 110030, 2020 | 62 | 2020 |
A fractional SEIR epidemic model for spatial and temporal spread of measles in metapopulations EF Doungmo Goufo, SC Oukouomi Noutchie, S Mugisha Abstract and applied analysis 2014 (1), 781028, 2014 | 61 | 2014 |
Analytical and numerical schemes for a derivative with filtering property and no singular kernel with applications to diffusion EF Doungmo Goufo, A Atangana The European Physical Journal - Plus 131 (8), 2016 | 60 | 2016 |
Nonlinear optimal control strategies for a mathematical model of COVID-19 and influenza co-infection MM Ojo, TO Benson, OJ Peter, EFD Goufo Physica A: Statistical Mechanics and its Applications 607, 128173, 2022 | 56 | 2022 |
Attractors for fractional differential problems of transition to turbulent flows EFD Goufo, JJ Nieto Journal of Computational and Applied Mathematics 339, 329-342, 2018 | 56 | 2018 |
Analysis and simulation of a mathematical model of tuberculosis transmission in Democratic Republic of the Congo S Kasereka Kabunga, EF Doungmo Goufo, V Ho Tuong Advances in Difference Equations 2020 (1), 642, 2020 | 50 | 2020 |
Computational Analysis of the Model Describing HIV Infection of CD4+T Cells A Atangana, EF Doungmo Goufo BioMed research international 2014 (1), 618404, 2014 | 46 | 2014 |
Self-similarity techniques for chaotic attractors with many scrolls using step series switching EFD Goufo, C Ravichandran, GA Birajdar Mathematical Modelling and Analysis 26 (4), 591-611, 2021 | 45 | 2021 |
A peculiar application of Atangana–Baleanu fractional derivative in neuroscience: Chaotic burst dynamics EFD Goufo, M Mbehou, MMK Pene Chaos, Solitons & Fractals 115, 170-176, 2018 | 45 | 2018 |
Mathematical model for control of tuberculosis epidemiology MM Ojo, OJ Peter, EFD Goufo, HS Panigoro, FA Oguntolu Journal of Applied Mathematics and Computing 69 (1), 69-87, 2023 | 42 | 2023 |