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C. Israel-Cookey

Publications (4)

Effect of Vadasz Number on Magnetoconvection in a Darcy Porous Layer with Concentration Based Internal Heating

C. Israel-Cookey, L. Ebiwareme & E. Amos · Asian Research Journal of Mathematics · 2019

In this research article, the effect of Vadasz number on magnetoconvection in a Darcy Porous Layer with concentration based internal heating is studied. The flow is governed by the Oberbeck-Boussineq model for Newtonian fluid. The stability analysis method based on the perturbati...

Open access Research Article 10.9734/arjom/2019/v12i430093

Effect of Vertical Magnetic Field on the Onset of Double Diffusive Convection in a Horizontal Porous Layer with Concentration Based Internal Heat Source

C. Israel-Cookey, L. Ebiwareme & E. Amos · Asian Research Journal of Mathematics · 2017

This study considers the effects of concentration based internal heat and vertical magnetic field on the onset of double diffusive convection in a horizontal porous layer using normal mode analysis. The normal mode analysis is used to find solutions for the fluid variables, the c...

Open access Research Article 10.9734/ARJOM/2017/36503

Modeling of Blood Flow through Stenosed Artery with Heat in the Presence of Magnetic Field

K. W. Bunonyo, C. Israel-Cookey & E. Amos · Asian Research Journal of Mathematics · 2018

An investigation of an oscillatory blood flow in an indented artery with heat source in the presence of magnetic field was carried out. The formulated governing models are solved using Frobenius method where the solutions are transformed into Bessel functions I0(βr) and K0(βr) of...

Open access Research Article 10.9734/ARJOM/2018/37767

MHD Oscillatory Flow of Jeffrey Fluid in an Indented Artery with Heat Source

K. W. Bunonyo, C. Israel-Cookey & E. Amos · Asian Research Journal of Mathematics · 2017

In this article we studied blood flow through an indented artery and assumed blood to be Jeffrey fluid. The study investigates the influence of heat transfer on the flow profile of Jeffrey fluid in an indented artery. Also, the formulated governing equations are transformed into...

Open access Research Article 10.9734/ARJOM/2017/37604