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M

M. Veera Krishna

Researcher at Rayalaseema University

Publications -  73
Citations -  2695

M. Veera Krishna is an academic researcher from Rayalaseema University. The author has contributed to research in topics: Nusselt number & Porous medium. The author has an hindex of 16, co-authored 55 publications receiving 692 citations.

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Hall and ion slip effects on MHD rotating boundary layer flow of nanofluid past an infinite vertical plate embedded in a porous medium

TL;DR: In this paper, the diffusion-thermo, radiation-absorption and Hall and ion slip effects on MHD free convective rotating flow of nano-fluids (Ag and TiO2) past a semi-infinite permeable moving plate with constant heat source are discussed.
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Hall and ion slip effects on MHD rotating flow of elastico-viscous fluid through porous medium

TL;DR: In this paper, the Hall and ion slip effects on the MHD convective flow of elastico-viscous fluid through porous medium between two rigidly rotating parallel plates with time fluctuating sinusoidal pressure gradient were investigated.
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Hall and ion slip effects on unsteady MHD free convective rotating flow through a saturated porous medium over an exponential accelerated plate

TL;DR: In this paper, the effects of the non-dimensional parameters on the governing flow velocity, temperature and concentration are examined with graphical profiles, and for engineering interest the shear stress, Nusselt number and Sherwood number are obtained analytically and discussed computationally with reference to foremost flow parameters.
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Radiative MHD flow of Casson hybrid nanofluid over an infinite exponentially accelerated vertical porous surface

TL;DR: In this article, the radiative unsteady magnetohydrodynamic flow of an incompressible viscous electrically conducting non-Newtonian Casson hybrid nanofluid over an infinite exponentially accelerated vertical moving porous surface under the influence of slip velocity in a rotating frame has been explored.
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Hall and ion slip impacts on unsteady MHD convective rotating flow of heat generating/absorbing second grade fluid

TL;DR: In this paper, the authors explored theoretically the Hall and ion slip impacts on an unsteady laminar MHD convective rotating flow of heat generating or absorbing second grade fluid over a semi-infinite vertical moving permeable surface.