Dynamical analysis of a fractional-order Rosenzweig–MacArthur model incorporating a prey refuge M Moustafa, MH Mohd, AI Ismail, FA Abdullah Chaos, Solitons & Fractals 109, 1-13, 2018 | 87 | 2018 |
Stability analysis and optimal control of covid-19 with convex incidence rate in Khyber Pakhtunkhawa (Pakistan) A Khan, R Zarin, G Hussain, NA Ahmad, MH Mohd, A Yusuf Results in physics 20, 103703, 2021 | 68 | 2021 |
Scenario analysis of COVID-19 transmission dynamics in Malaysia with the possibility of reinfection and limited medical resources scenarios AM Salman, I Ahmed, MH Mohd, MS Jamiluddin, MA Dheyab Computers in biology and medicine 133, 104372, 2021 | 66 | 2021 |
Bifurcations and chaos in a discrete SI epidemic model with fractional order MAM Abdelaziz, AI Ismail, FA Abdullah, MH Mohd Advances in Difference Equations 2018, 1-19, 2018 | 59 | 2018 |
Unravelling the myths of R0 in controlling the dynamics of COVID-19 outbreak: A modelling perspective MH Mohd, F Sulayman Chaos, Solitons & Fractals 138, 109943, 2020 | 49 | 2020 |
Effects of dispersal and stochasticity on the presence–absence of multiple species MH Mohd, R Murray, MJ Plank, W Godsoe Ecological Modelling 342, 49-59, 2016 | 43 | 2016 |
Dynamical analysis of a fractional-order eco-epidemiological model with disease in prey population M Moustafa, MH Mohd, AI Ismail, FA Abdullah Advances in Difference Equations 2020, 1-24, 2020 | 39 | 2020 |
An SVEIRE model of tuberculosis to assess the effect of an imperfect vaccine and other exogenous factors F Sulayman, FA Abdullah, MH Mohd Mathematics 9 (4), 327, 2021 | 37 | 2021 |
Stage structure and refuge effects in the dynamical analysis of a fractional order Rosenzweig-MacArthur prey-predator model M Moustafa, MH Mohd, AI Ismail, FA Abdullah Prog. Fract. Differ. Appl 5 (1), 49-64, 2019 | 35 | 2019 |
Stability analysis of the fractional-order prey-predator model with infection P Ramesh, M Sambath, MH Mohd, K Balachandran International Journal of Modelling and Simulation 41 (6), 434-450, 2021 | 32 | 2021 |
Effects of different dispersal patterns on the presence-absence of multiple species MH Mohd, R Murray, MJ Plank, W Godsoe Communications in Nonlinear Science and Numerical Simulation 56, 115-130, 2018 | 30 | 2018 |
Effects of biotic interactions and dispersal on the presence-absence of multiple species MH Mohd, R Murray, MJ Plank, W Godsoe Chaos, Solitons & Fractals 99, 185-194, 2017 | 30 | 2017 |
A review of dynamic and intelligent honeypots WZA Zakaria, MLM Kiah ScienceAsia 39S, 1-5, 2013 | 30 | 2013 |
Measuring time-varying effective reproduction numbers for COVID-19 and their relationship with movement control order in Malaysia KI Musa, WN Arifin, MH Mohd, MS Jamiluddin, NA Ahmad, XW Chen, ... International journal of environmental research and public health 18 (6), 3273, 2021 | 26 | 2021 |
Diversity in interaction strength promotes rich dynamical behaviours in a three-species ecological system MH Mohd Applied Mathematics and Computation 353, 243-253, 2019 | 24 | 2019 |
Codimension one and two bifurcations of a discrete-time fractional-order SEIR measles epidemic model with constant vaccination MAM Abdelaziz, AI Ismail, FA Abdullah, MH Mohd Chaos, Solitons & Fractals 140, 110104, 2020 | 20 | 2020 |
Local dispersal, trophic interactions and handling times mediate contrasting effects in prey-predator dynamics MH Mohd, MSM Noorani Chaos, Solitons & Fractals 142, 110497, 2021 | 18 | 2021 |
Computational Dynamical Systems Using XPPAUT OJ Omaiye, MH Mohd Dynamical Systems, Bifurcation Analysis and Applications, 175-203, 2019 | 16 | 2019 |
Numerical Bifurcation and Stability Analyses of Partial Differential Equations with Applications to Competitive System in Ecology MH Mohd Dynamical Systems, Bifurcation Analysis and Applications, 117-132, 2019 | 16 | 2019 |
Modelling the Presence-Absence of Multiple Species. MHB Mohd PhD University of Canterbury, New Zealand., 2016 | 16 | 2016 |