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Results 81-90 of 207 (Search time: 0.004 seconds).
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Issue DateTitleAuthor(s)
2021-08-27Direct and indirect transmission of typhoid fever model with optimal controlPeter, O. J.; Ibrahim, M. O.; Edogbanya, H. O.; Oguntolu, F. A.; Oshinubi, K.; Ibrahim, A. A.; Ayoola, T. A.; Lawal, J. O.
2021-11-01Enhanced Cuckoo Intelligence Search AlgorithmOguntolu, F. A.; Oluwayemi, O.
2021-02-23Mathematical model for the control of lymphatic filariasis transmission dynamicsOguntolu, F. A.; Bolarin, G.; Peter, O. J.; Enagi, A. I.; Oshinubi, K.
2021-06-01Forecasting of COVID-19 pandemic in Nigeria using real statistical dataAbioye, A. I.; Umoh, M. D.; Peter, O. J.; Edogbanya, H. O.; Oguntolu, F. A.; Kayode, O.; Amadiegwu, S.
2021-08-11Modelling fire spread reaction rate in atmospheric-weather conditionZhiri, A. B.; Olayiwola, R. O.; Somma, S. A.; Oguntolu, F. A.
2021APPROXIMATE SOLUTIONS FOR THE MATHEMATICAL MODELING OF MONKEY POX VIRUS INCORPORATING QUARANTINE CLASSSomma, S. A.; Akinwande, N. I; Ashezua, T. T.; Nyor, N.; JIMOH, OMANANYI RAZAQ; Zhiri, A. B.
2021-03Method of Lines Analysis of MHD Effect on Convective Flow of Dusty Fluid in the Presence of Viscous Energy DissipationUgwu, U. C.,; Cole, A. T.; Olayiwola, R. O.; Kazeem, J. A.
2022-11Mathematical model of COVID-19 transmission dynamics incorporating booster vaccine program and environmental contaminationAkinwande, N. I.; Ashezua, T. T.; Gweryina, R. I.; Somma, Samuel Abu; Oguntolu, F. A.; Usman, A.; Abdurahman, O. N.
2022Mixed Convective Mmagnetohydrodynamics Micropolar Boundary Layer Flow Past a Stretching Sheet with Heat Generation 1Yusuf, A., 1 Ishaq, M. A., 1Salihu, N. O., 2Salisu, A. and 1Bolarin, G. 1Department of Mathematics, Federal University of Technology, Minna, Niger State, Nigeria 2Department of Computer Science, Niger State Polytechnic, Zungeru, Niger State, Nigeria ABSTRACT The problem of mixed convective magnetohydrodynamics micropolar boundary layer past a stretching sheet with heat generation was presented in rectangular form. The partial differential equations formulated are transformed into nonlinear ordinary differential equations using the stream functions and appropriate similarity variables. The solution to the nonlinear coupled ordinary differential equations is presented via decomposition method. The results are validated with the literatures and there is an agreement. The effects of dimensionless physical parameters which occur in the presented results are graphically studied in the absence of microstructural slip. The micro rotation is found to be a reducing agent of thermal and mass Grashof numbers while the fluid is an increasing agent due to the increase in the temperature which resulted in reduction of the viscousity.YUSUF, A.; ISHAQ, M. A.; SALIHU, NASIRU OMEIZA; SALISU, A.; BOLARIN, G.
2022BOUNDARY LAYER ANALYSIS FLOW PAST A POROUS ROTATING DISK WITH DUFOUR AND SORET EFFECTSYUSUF, ABDULHAKEEM; Abdulrahman, BIMA; SALIHU, NASIRU OMEIZA